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SKOLKOVO INNOVATION PROJECTS ADVANCED MANUFACTURING, RADIATION AND NUCLEAR TECHNOLOGIES CLUSTER

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SKOLKOVO INNOVATION PROJECTS

ADVANCED MANUFACTURING, RADIATION AND NUCLEAR TECHNOLOGIES CLUSTER

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119

12141617

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119

3

ABOUT THE FOUNDATION

Mission

Goals

Ecosystem

Benefits and opportunities for participants

Statistics and facts

Skolkovo industrial partners — first achievements

ADVANCED MANUFACTURING, RADIATION AND NUCLEAR TECHNOLOGIES CLUSTER

About the cluster

Innovative priorities

Achievements

DESCRIPTION OF THE PARTICIPANTS PROJECTS

CLUSTER TEAM

INDEX OF PARTICIPANTS PROJECTS

56778

1011

12141617

19

123

CONTENTS

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ABOUT THE FOUNDATION

Mission

Goals

Ecosystem

Benefits for the participants

Statistics and facts

Skolkovo industrial partners — first achievements

6778

1011

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6

Energy efficiency

Information technologies

Biomedical technologies

Space technology and telecommunications

Advanced manufacturing, radiation and nuclear technologies

The mission of the Skolkovo Innovation Centre and the Skolkovo Foundation, that established it, is to create an ecosystem in Russia conducive to the development of innovations to support cutting edge research and development and then to commercialize of its results by five priority directions of technological development.

The Skolkovo Foundation aims to ensure that the Innovation Center can provide facilities for the full cycle of the innovation process, including education, R&D, experimental research and design and commercialization of the results.

The Skolkovo Foundation is creating a model for the development of an innovation-based economy for all Russia. The Innovation Centre serves as proving grounds to test the mechanisms for promotion the practical application of cutting edge ideas proposed by Russian academic and applied research institutions.

SKOLKOVO IS THE KEY ELEMENT OF THE SYSTEM OF RUSSIAN DEVELOPMENT INSTITUTES that seeks to support the innovation projects at every stage of development – from when it’s just an idea all the way through sales and marketing, creating a system of continuous support that startups can draw upon as they work on their projects. The Skolkovo Foundation focuses on the pre-seed and seed stages of business development and some of the aspects of the launch stage. Subsequent stages such as business growth and development, IPO and financing are supported by RVK, RUS-NANO and VEB, respectively by RVC, RUSNANO, and VEB, correspondingly.

THE SKOLKOVO INNOVATION CENTRE WAS ESTABLISHED BY FEDERAL LAW NO.244 “ON SKOLKOVO INNOVATION CENTRE” (SEPTEMBER 28, 2010) AS THE COUNTRY’S RESPONSE TO THE NEW CHALLENGE OF THE GLOBAL ECONOMY: ACCELERATING TECHNOLOGICAL PROGRESS AND RISING COMPETITION FOR KNOWLEDGE AND COMPETENCIES BETWEEN LEADING NATIONS

Education and R&D Experimental design and research

Commercialization of results

SKOLKOVO FOUNDATION MISSION

$

$

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7

PARTNERSIndustrial partners (major international and Russian

companies), accredited venture capital investors

PARTICIPANTSThe kernel of the ecosystem, early-stage high-tech startup companies that have been given the status of the Skolkovo project participants.

EDUCATIONAL ENVIRONMENT

Skoltech, Open University Skolkovo (OpUS),

international and Russian -partner universities.

TECHNOPARKLaboratory and research

infrastructure

SKOLKOVO INNIVATION

CENTER INFRASTRUCTURE

The ecosystem consisits of the following key elements: startups, R&D centres of the industrial partners, venture capital investors, the Technopark, Skolkovo Institute of Science and Technology (Skoltech), and the infrastructure, i.e. the city of Skolkovo.

ESTABLISHING AN INNOVATION ECOSYSTEM INCLUDES CREATING AND DEVELOPING EDUCATIONAL, RESEARCH AND ENTREPRENEURIAL ENVIRONMENTS, AS WELL AS THE PHYSICAL INFRASTRUCTURE OF THE SKOLKOVO INNOVATION CENTER.

SKOLKOVO ECOSYSTEM

SKOLKOVO’S GOAL IS TO CRE-ATE AN INNOVATION ECOSYSTEM CONDUCIVE TO RESEARCH AND ENTREPRENEURSHIP

OPEN UNIVERSITY

SKOLKOVO

$

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EXPERT PANELS

Assess the project in detail a. Is it feasible in principle?b. What significant advantages does it offer over foreign competitors? c. What is it commercialization potential?d. Does the project team has the requisite experience to successfully implement the project on international level?

SKOLKOVO

FOUNDATION

Assesses the application based on formal criteria: а. Have all the necessary information and documents been provided? b. Is the applicant a Russian legal entity? с. Does the applicant meet the technology criteria of the Skolkovo Foundation?

APPLICANT

Complete the online application form at www.sk.ru

8

BENEFITS AND OPPORTUNITIES SKOLKOVO PROJECT FOR PARTICIPANTSTAX & CUSTOMS BENEFITS:

• Social tax* – 14%• Income tax – 0%• VAT – 0%• Property tax – 0%• Customs tariffs on imported research equipment – 0%

* tax fees payable by the employer

HOW TO BECOME A PARTICIPANT:

GRANT SUPPORT

ACCESS TO INFRASTRUCTURE AND CONSULTING:

• R&D infrastructure and common use centres, consultations for applicants for Skolkovo participant status, office leases• International and national events• Education and mentoring (OpUS, Skoltech)

SUPPORT WITH RASING FINANCE AND ACCELERATION:

• VC and angel investors• Infrastructure and technologies offered by industrial partners

01 02

03

CANDIDATES PARTICIPANT STATUS IS GRANTED TO THE APPLICANT

~1 month

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HOW FINANCING IS ALLOCATED

BASIC PRINCIPLES OF GRANT FINANCING BY THE SKOLKOVO FOUNDATION

Grant amount

PROJECT NEEDS MORE WORK (A MINI-GRANT MAY BE GIVEN)

REFUSAL WITH EXPLANATIONor

Co-financing terms

GRANT MEMORANDUM REVIEW BY THE FOUNDATION

GRANT COMMITTEE

APPLICATION

The Participant prepares the presentation according to the recommended format and submits it via sk.ru

The Participant submits the Grant memorandum with appendixes

The Foundation services check the application and have it reviewed by external experts

Preparation for the meeting Grant Committee

10 days no more than 90 (+10) days ~ 1.5 months ~ 2 weeks

The Foundation decides whether the presentation will be reviewed

The Foundation checks whether all the necessary information and documents have been submitted completeness

The Participant is notified the results of the review

The Grant Committee makes the decision on grant allocation

A business plan and R&D program are developed, the market is researched and search for investors is initiated

Idea 80up toK

$

K

$

K

$

M

$

M

$

$

up to 100%

Skolkovo

Concept working prototype is manufactured, a technical design is developed and the concept is tasted

Seed stage 500up to

up to 75%Skolkovo

More

than 25%Co-Investor

R&D is completed, an industrial prototype is developed and pre-clinical trials and phase I clinical trials are conducted

Early stage 2,5up to

up to 50%

Skolkovo

More than 50%

More than 75%

Co-Investor

up to 25%

Skolkovo

R&D and clinical trials are completed, pilot batches are manufactured and trialed

Advanced stage

5up to

Intellectual property protection, prototyping, testing, participation in exhibitions and conferences

Micro grants 75up to 100%

Skolkovo

PARTICIPANT STATUS IS GRANTED TO THE APPLICANT

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$ 165M500

1172M

$

$$

as of May, 2015

STATISTICS AND FACTS

6873 $ 67

13 5001288 $ 670M

Patents and certificates

Grant financing

$ 172MInvestments

Participants from 49 regions of the country

hard commitments of the accredited investors on financing of the Participants:

applications for the Participant status

IP applications Participants’ prosids

Personnel

as of December 2015

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SKOLKOVO INDUSTRIAL PARTNERS — FIRST ACHIEVEMENTSIndustrial partners place the R&D centres in Skolkovo and act as the Customer and Consumer of the start-ups’ innovative solutions, thus integrating the research and business environments of the Skolkovo innovative ecosystem.

KEY ADVANTAGES OF COOPERATION WITH SKOLKOVO FOR INDUSTRY PARTNERS• Access to the advanced personnel and cutting edge Russian science — Skolkovo is the attractive place of employment and becomes the attraction centre of the best experts from Moscow and other cities.• Convenience of R&D and engineering based on concentration of human and technological resources, cooperation with Skolkovo Institute of Science and Technology (SkolTech), leading Russian institutes and other Industrial partners.• Access to advanced technologies being created by Skolkovo start-ups.• Simplification of administrative procedures, absence of bureaucratic obstacles. • Tax benefits the same as for the Skolkovo start-ups.

Development strategy of Skolkovo Innovation Centre presumes special attention to be paid to the development of the ecosystem interaction with Industrial partners.First of all Industrial partners support creation of qualified work places, bring research and engineering competencies and invest into creation of the partners’ R&D centres research and engineering infrastructure. Jobs at R&D centres will account for at least a quarter of all jobs within the ecosystem.A number of leading industrial partners, including, Rosatom, Boeing, Samsung, Panasonic, Accenture already established R&D departments in the Innovation Centre. The total area of R&D centres planned to be set up within the Innovation Centre is approximately 130,000 m2.

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и нду Стриа Льные партнеры «Ско Лково» — первые у Спехи

компаний индустриальных партнеров

о ценка численности сотрудников в центрах ниокр на 2015 г, чел.

о ценка суммарного бюджета ниокр до конца 2015 г.

>40>3 500>33

инду Стриа Льные партнеры фонда «Ско Лково» Сегодн Я

человек

млрд руб.

и ндустриальные партнеры размещают центры ниокр в «Сколково» и выступают заказчиком и потребителем инновационных решений стартапов – тем самым они интегрируют исследовательскую и бизнес-среду инновационной системы «Сколково».

кЛ ючевые преимуще Ства Сотрудниче Ства Со «Ско Лково» д ЛЯ отра СЛевых партнеров• д оступ к лучшим кадрам и передовой российской науке – «Сколково» является

привлекательным местом для работы и центром притяжения лучших специалистов из других городов и м осквы.

• удобство проведения исследований и экспериментов с учетом концентрациитехнологических и людских ресурсов, сотрудничества со Сколковским институтом науки и технологии (Сколтех), профильными российскими институтами, партнерами «Сколково».

• д оступ к передовым технологиям, создаваемым стартапами, резидентами «Сколково», в том числе при государственной поддержке.

• упрощение административных процедур, отсутствие бюрократизма и волокиты. • н алоговые и таможенные льготы, как для компаний-участников «Сколково».

В рамках «тонкой» настройки стратегии развития инно-вационного центра особое внимание уделяется разви-тию экосистемного взаимодействия с индустриальнымипартнерами. Прежде всего это поддержка партнеров в создании рабочих мест, формировании необходимых исследова-тельских компетенций и привлечении инвестиций в соз-дание исследовательской инфраструктуры центровНИОКР партнеров. Рабочие места в центрах НИОКР составят не менее четверти всех рабочих мест экосистемы. Еще одним приоритетным направлением взаимодей-ствия с индустриальными партнерами является обес-печение заполнения офисно-исследовательскихобъектов и социально-бытовой инфраструктуры инно-вационного центра. Ряд крупных индустриальных партнеров уже размести-лись на территории инновационного центра – это«Камаз», Росатом, «Даурия», «Татнефть», «Техносерв».Общие площади центров НИОКР, запланированных дляразмещения на территории Инновационного центра, со-ставляют около 130 тысяч м 2.

ВАЖНЫМ НАПРАВЛЕНИЕМ ВЗАИМОДЕЙСТВИЯ ЯВЛЯЕТСЯ ОБЕСПЕЧЕНИЕ ЗАПОЛНЕНИЯ ОФИСНО-ИССЛЕДОВАТЕЛЬСКИХ ОБЪЕКТОВ И БЫТОВОЙИНФРАСТРУКТУРЫ ИННОВАЦИОННОГО ЦЕНТРА.

60industrial companies became the Foundation partners

260 000 m2

area for R&D centres

49industrial partners will establish R&D centres

5000employees in R&D centres

2015IN

DU

STRIAL

PARTN

ERSHIP

ИНВЕСТОРЫИ МЕНТОРЫ

СОЗДАВАЯ ИННОВАЦИИ – 2015

В рамках «тонкой» настройки стратегии развития инно-вационного центра особое внимание уделяется разви-тию экосистемного взаимодействия с индустриальнымипартнерами. Прежде всего это поддержка партнеров в создании рабочих мест, формировании необходимых исследова-тельских компетенций и привлечении инвестиций в соз-дание исследовательской инфраструктуры центровНИОКР партнеров. Рабочие места в центрах НИОКР составят не менее четверти всех рабочих мест экосистемы. Еще одним приоритетным направлением взаимодей-ствия с индустриальными партнерами является обес-печение заполнения офисно-исследовательскихобъектов и социально-бытовой инфраструктуры инно-вационного центра. Ряд крупных индустриальных партнеров уже размести-лись на территории инновационного центра – это«Камаз», Росатом, «Даурия», «Татнефть», «Техносерв».Общие площади центров НИОКР, запланированных дляразмещения на территории Инновационного центра, со-ставляют около 130 тысяч м 2.

ВАЖНЫМ НАПРАВЛЕНИЕМ ВЗАИМОДЕЙСТВИЯ ЯВЛЯЕТСЯ ОБЕСПЕЧЕНИЕ ЗАПОЛНЕНИЯ ОФИСНО-ИССЛЕДОВАТЕЛЬСКИХ ОБЪЕКТОВ И БЫТОВОЙИНФРАСТРУКТУРЫ ИННОВАЦИОННОГО ЦЕНТРА.

ПАРТНЕРЫ«СКОЛКОВО»

60индустриальных компанийстали партнерами Фонда

260 тысяч м 2

площадь для центровНИОКР

49индустриальных партнеровразместят центры НИОКР

5000сотрудников в центрахНИОКР

2015И

НД

УСТРИА

ЛЬНО

Е П

АРТН

ЕРСТВО

ИНВЕСТОРЫИ МЕНТОРЫ

11

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About the cluster

Innovative priorities

Achievements

141617

ADVANCED MANUFACTURING, RADIATION AND NUCLEAR TECHNOLOGIES CLUSTER

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ABOUT THE CLUSTER

The new developments by Russian engineers and researchers in nuclear, beam, laser, and plasma technologies, as well as new materials and coatings can play a significant role in international markets of mechanical engineering, instrumentation control equipment, electronics, safety equipment, and non-destructive testing. Despite the fact that in many fields it takes between 5–7 years to go from an idea to product, our innovative companies have recently been quite successful in promoting their products and services to the international market.The Cluster’s objective is to support the commercialization of huge amount of research of the nuclear industry,

promotion of new technology solutions, and determination of “explosive” growth zones in order to focus the efforts of the R&D community on the challenges most demanded by the market. The present Report describes 100 of about 200 Cluster Participants, demonstrating diversified and promising portfolio of innovative projects in the field of new nuclear and radiation technologies, advanced manufacturing and materials.

IGOR KARAVAEVVice-President,Executive Director

Advanced manufacturing, Radiation and Nuclear Technologies Cluster Skolkovo Foundation

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OBJECTIVES

The Advanced manufacturing, Radiation and Nuclear Technologies Cluster develops applications the of technologies originally emerged from nuclear science and used primarily in mechanical engineering and metalworking, in instrumentation and electronics, nuclear medicine, in agriculture, in the design and engineering of complex technological systems. In nuclear industry the Cluster is focused on technologies of radioactive waste management.

MAIN DIRECTIONS OF WORK WITH SKOLKOVO PARTICIPANTS:

• Attraction new Participants and helping existing Skolkovo residents to create new technologies and commercialize them within the innovation Cluster priorities; creating new jobs and intellectual property.

• Supporting participants working on breakthrough technological solutions process that have the most potential for commercialization, including rising of co-funding for investment projects.

• Creation and maintenance of attractive and self-reproducing innovative ecosystem aimed at improving the efficiency of interaction between its main elements: participants, industrial partners, sources of financing and R&D centres.

• Global international industrial companies interested in R&D cooperation with Russia are among the potential partners of the Cluster. Also, of great interest for the Skolkovo ecosystem are technology-intensive engineering companies being attracted to increase the efficiency of participants’ acceleration and to attract new international partners.

MAIN DIRECTIONS OF WORK WITH SKOLKOVO PARTNERS:

• Co-determination and development activities within the Cluster’s innovative priorities, and increasing of foresight integration by forming partners market requests for participants, and their inclusion in the value chains and development activities.

• Development of partners’ R&D centres at the Skolkovo, establishing a research infrastructure, new jobs and attraction of highly-skilled laborers.

• Attracting of new participants engaged in business development based on technological developments of the partners.

As a part of ecosystem the Cluster actively cooperate with universities and Russian Academy of Science -the sources of 40% of the Cluster’s projects. Cluster is also cooperating with Skoltech University on creating the R&D centres, working closely with Skolkovo Technopark to develop the infrastructure for future Skolkovo residents, holding contests for innovative projects in cooperation with industrial partners, and successfully implementing joint initiatives with other institutions for development such as Rusnano, RVC, VEB-Innovations and others.

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THE CLUSTER OPERATION PRIORITY AREAS HAVE TAKEN SHAPE AS A RESULTOF CLOSE INTERACTION WITH BUSINESS, SCIENTIFIC COMMUNITY, STATEBODIES, AND EXPERTS.

TECHNOLOGICAL PRIORITIES QUANTITY OF PARTICIPANTSAS OF DECEMBER 2015

CLUSTER INNOVATIVE PRIORITIES

ENGINEERING MATERIALS (CERAMICS, POLYMERS, COMPOSITES)

MATERIALS FOR PHOTONICS, OPTICS, ELECTRONICS AND ELECTRICAL ENGINEERING

TECHNOLOGY AND EQUIPMENT FOR DESIGN, PRODUCTION AND PROCESSING OF METALS AND ALLOYS

COATINGS, FILTERS, FILMS

PROJECTSNEW MATERIALS

19

15

14

14

PROJECTSEQUIPMENT AND DEVICES

DETECTORS, SENSORS, DOSIMETERS 24

ANALYTICAL AND MEASUREMENT EQUIPMENT 19

LASER AND PLASMA SOURCES, IONIZING RADIATION 23ELECTROMAGNETIC AND ULTRA-HIGH FREQUENCY DEVICES 16

AUTOMATION, ROBOTICS, NDT AND DATA ANALYSIS 18

DECOMMISSIONING, NUCLEAR FUEL MANAGEMENT AND RADWASTE, ENGI-NEERING OF RADIATION-DANGEROUS OBJECTS MINING, RECYCLING AND REFINING TECHNOLOGIES

PROJECTSNUCLEAR AND RADIATION TECHNOLOGIES

108

RADIATION TECHNOLOGIES INCLUDING NUCLEAR MEDICINE 11

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In 2014:• with the active support of the Cluster, the participants demonstratehigh growth rate - the number of startups who shows revenue increased2-fold. Total revenue grew up to $10mln;• over 170 IP applications cumulatively filed and 70+ titles of protectionfor intellectual property issued, including PCT;• more than 700 high-tech jobs created;• funding of Cluster’ projects amounted to about $20mln;• 40 grants approved totaling about $15mln;• high level of private co-financing in the Cluster’ projects reached - about$13mln cumulatively;• more than 70 investors supported Cluster’ projects;• the number of Cluster’ industrial partners grew up to 10 companies;• Cluster’ expert pool constitutes now more than 150 external experts;• more than half of Cluster’ projects origin from Russian Academyof Science and leading universities;• every 10th Cluster project comes from abroad;

Plans for 2016–2017 are as follows:

The main priority of the Cluster remains the growing number of highqualitystartups.

In the year 2016-2017 Cluster plans to put emphasis on commercializationand acceleration of participants both on Russian and foreign markets.Cooperation with foreign technology parks and business incubators willbe continued.

The main objective of the Cluster is creation and maintenance ofan attractive and self-perpetuating innovation ecosystem aimed atincreasing the efficiency of mutually beneficial cooperation of its basicelements: participants, industrial partners, sources of funding andscientific research centers.

CLUSTER PERFORMANCE

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DESCRIPTION OF THE PARTICIPANT PROJECTS COMPANIES

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ELECTRON-BEAM WELDING/CUTTING FACILITY BASED ON GUNS WITH PLASMA CATHODE AND ELECTRON BEAM RELEASE TO THE AIR

PRODUCT /Electron-beam equipment based on plasma cathode for non-vacuum electron-beam welding, cutting and replating of metals. Applications:• aircraft building: weld joining structural parts of aircrafts, weld joining node parts of turbines;• automotive industry / ship building: weld joining of critical nodes (transmission), welding high-strength steels for crane building, welding/cutting of ship-building steels;• atomic industry; weld joint of critical structures at APP.

COMPETITIVE ADVANTAGES /• Using thermocathode gun to provide longer resource and higher efficiency of the equipment.• High precision of operations: minimum beam diameter (0.005–1.5 mm); electronic beam alignment system; high speed of welding/cutting operations (up to 20 m/min).• Extension of the treated materials range: welding/cutting of curly metals (tungsten, tantalum, aluminium); welding/cutting chemically active metals (niobium, zirconium, molybdenum); welding ceramics.• Performing welding/cutting operations without vacuum, the equipment can be installed on a conveyor line.

ESSENCE OF INNOVATION / Principally novel structure of the de vice for forming high-voltage electron beam based on plasma cathode with the system of gas-dynamic window, allowing release of the high-voltage beam into the air.

MARKET POTENTIAL /• Welding equipment market: View of weld sample made of the material 15 mm thick after the stretch testing -$19.3bn.Target segment - high-precision metal welding/cutting: $2.1bn (11% of the market).

CURRENT STATUS /• A pilot unit of non-vacuum facility was developed (in collaboration with the Institute of Material Sciences at the Leibnitz University of Hannover, Germany).• Testing was performed.• A production site was created.

TEAM /NIKOLAY REMPEPhD in Engineering, research project manager. Management of scientific research and developments in the frames of the Project, interaction with customers and co-contractors.SERGEY KORNILOV PhD in Engineering, Executive Project Manager. Providing the work execution in accordance with Plan, planning and providing execution of the R&D activities on the plasma cathode gun.STANISLAV SHIDLOVSKYDoctor of Engineering, Head of the modelling scientific team. Modelling of gas-dynamic processes in the systems of electron beams transport into the atmosphere.

ADVANCED BEAM TECHNOLOGY

CONTACTS /Tomsk +7 (3822) 488 575

[email protected]

www.sygma-tomsk.ru

Робот «Бабочка»

View of weld sample made of the material 15 mm thick after the stretch testing

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PRODUCT /Equipment for 3D-printing of functional articles from composite materials reinforced with continuous fibres. Applications: mechanical engineering, instrument engineering, aerospace industry, robotic engineering, medicine, wearable articles.

COMPETITIVE ADVANTAGES /• The material’s strength is higher than that of all existing materials for 3D-printing.• No special-purpose rigging is required, the process is fully automated.• Resulting parts have all advantages of composites with thermoplastic matrix: requires no hardening, high ornamentality and resilience.• The technology enables manufacturing of articles featuring complex reinforcement patterns which cannot be made using traditional methods.• Different types of plastic materials and reinforcement fibres can be used.• The equipment cost is by times lower in comparison with laser sintering.

ESSENCE OF INNOVATION / The essence of innovation consists in preparation of a reinforcement fibre to achieve a good treatment and ensure a good adhesion with plastic material, and also in the special design of extruder that allows for the proper blending of fibre with resin and accurate material let-up.

MARKET POTENTIAL /• Global 3D-printing market is estimated to be $4bn with the prospective growth up to $12bn by 2017.• Target segment: 5% of the marketin monetary terms, 3% of the market in volume terms.• Key segments: industrial equipment for functional articles with complicated shape 3D-printed from composite materials, personal 3D-printers for printing of functional articles.

TECHNOLOGY FOR ADDITIVE MANUFACTURING OF ARTICLES FROM COMPOSITE MATERIALS REINFORCED WITH CONTINUOUS FIBRES

ANISOPRINT

CONTACTS /Moscow +7 (499) 399 35 19

[email protected]

www.anisoprint.ru

CURRENT STATUS /• A functional prototype is created.• Physical and mechanical tests of materials have been conducted.• Patent applications are being prepared.• Negotiations withpotential customers are being held.

TEAM /FEDOR ANTONOVCEO.ANDREY AZAROVCTO, Chief Design Engineer.ALEXEY KHAZIYEVChief Research Assistant.

Shaped articles of composite material manufactured by 3D-printing technique.

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CREATION OF PULSE NEUTRON GENERATOR ON GAS TUBE TO SURVEY OIL WELLS WITHIN GEOPHYSICAL PROCESSING SYSTEMS

PRODUCT /APEB-28 pulse neutron tube and neutron generator with diameter of 34 mm. They are intended for operation within geophysical processing systems for oil wells survey. Applications: oil and gas industry.

COMPETITIVE ADVANTAGES /• No need to use radioactive sources in geophysical survey during construction of oil and gas wells.• Elimination of radiation hazard during performance of works.• Increase of the system’s information content.• Operability at temperatures up to 150°C, neutron stream 108 n/sec, neutron generation frequency 400 Hz-20 kHz, neutron pulse ratio 3–5.

ESSENCE OF INNOVATION / Fitting of oil well logging equipment with pulse neutron source, the design of which uses no radioactive substances, thus ensuring basic porosity and permeability properties of container rocks and eliminating radiation hazard during survey works.

MARKET POTENTIAL / Globally, only market leaders —Schlumberger, Baker Hughes, Halliburton, Weatherford — possess well equipment of this class.

CURRENT STATUS /• The technique and pilot samples of АРЕВ-28 pulse neutron tube that is able to generate neutrons by D+T reaction and ensure yield of neutrons of approximately 108 n/sec with operational life of up to 600 hours were developed.• Intense marketing among customers is being conducted.

TEAM /VLADIMIR CHERMENSKYDoctor of Engineering, Co-founder and CEO. SERGEY BUTOLINCo-founder and Director for Development, Director for Economics and Finance of the largest Russian geophysical service company in 1990s-2000s. VASILY SAMCHENKOCTO, held leading positions in performance of many international projects in oil and gas industry (India, China, Brazil, Peru, Kazakhstan, Malaysia).YULIY DAVYDOVthe Project Scientific Advisor; development of instruments, techniques, and methods of nuclear geophysical testing of mineral deposits have passed full-scale tests and have been implemented into production.

ANTARIUS

CONTACTS /Moscow

АРЕВ-28 neutron tube

+7 (963) 635 85 78

[email protected]

www.power-np.ru

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TECHNOLOGY AND EQUIPMENT TO ENSURE SAFETY IN PLACES OF MASS GATHERING

PRODUCT /HSR_GO is a unit for real-time remote automatic detection of hazardous objects hidden on a human body and in portable luggage without disturbing a human flow.Applications: places of mass gathering, transport and industrial infrastructure.

COMPETITIVE ADVANTAGES /• Examination distance is up to 10 m.• Simultaneous examination of up to 5 persons.• Allowable motion speed is up to 6 km/h.• Examination of up to 4000 persons per hour.• Real-time mode.• Automatic decision making.• Low operating cost.

ESSENCE OF INNOVATION /• The technology of active microwave sounding restores a 3D microwave image of a human body and objects hidden on the body in a real-time mode with simultaneous automatic hazard degree determination based upon similarity of the detected objects’ dielectric properties with those of explosive substances.• Additional technology of cross-polarization scattering provides automatic detection of metal weapons.

MARKET POTENTIAL / Global market of human body examination equipment will grow from $3bn (2011) to $7bn (2020). The segment of equipment for simultaneous detection of different hazards is the fastest growing one (CAGR is 34% per year). According to the company assessment, its technologies can occupy up to 15% of the global market, or $1bn to 2020.

CURRENT STATUS /• Several prototypes were created.• Semi-scale tests were conducted including those at operated station of Paris subway, also with the use of real objects.• Recognition of the independent international expert board was obtained.• Intellectual property protection was carried out. The company is the finalist of Global Security Challenge (Singapore/London, 2009), “The most promising starting company/technologyin security field“.

TEAM /IGOR GORSHKOVCEO, PhD in Physical and Mathematical Sciences, Manager of the largest international project STANDEX (STANdoff Detection of EXplosives) being conducted by NATO Scientific Committee within Russia–NATO Council. The company’s scientific and engineering personnel: 20 persons (including 3 PhDs in Physical and Mathematical Sciences, 4 post-graduate students).

APSTEK LABS

CONTACTS /St. Petersburg +7 (911) 225 79 37

[email protected]

www.apstecsystems.com

Screen of security announcing device in case of detection of hazard on the body of the person being

examined

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DEVELOPMENT AND IMPLEMENTATION OF NEW REMOTE TOOLS FOR ECOLOGY MONITORING IN NATURAL ENVIRONMENTS

PRODUCT /Fluorescent lidars and sensors for detection and assessment of crude oil and petroleum products content on the water surface and dry land.Applications:environmental monitoring of oil production facilities, fresh and sea water areas, water reservoirs, port infrastructure facilities, on- and offshore pipelines; monitoring of film thickness at contamination volume assessment and during decontamination.

COMPETITIVE ADVANTAGES /• Reliable detection of presence of oil film on the surface of water, assessment of the film thickness.• Wide range of functional capabilities with lower market value.• Possibility to use petroleum products’ lidar measuring elements (PP LME) from board of fast small vessels and low-altitude aircraft.• Use of PP LME on board of unmanned aerial vehicles.

ESSENCE OF INNOVATION / Developed procedures, hardware know-hows and accumulated direct experience of usage of fluorescent lidar systems enable to create PP LME instruments for commercial use in many fields of economy; no analogues exist.

MARKET POTENTIAL /• The volume of petroleum product sensors market is $0.5-1bn. Target segment: up to 50% of the market.• Key segments: supplies of portable PP LMEs for fixed above-water and immersed structures, mobile PP LMEs to be used from board of marine and air crafts, of ultra-portable sensors to be used on unmanned aerial vehicles.

CURRENT STATUS /• Several R&D works were performed, procedures developed and tested, operational prototypes created.• Multiple field tests were performed which proved the usability of the technique and hardware solutions.• Works are being performed on patenting in the RF and abroad.• Prototypes of new portable PP LMEs are being developed.

TEAM /PYOTR ZAVIYALOVDoctor of Geographical Sciences, Research Project Manager,Deputy Director of P.P. Shirshov Institute of Oceanology of RAS.VADIM PELEVINCEO, 15-year experience in the field of remote fluorescent sounding, chief designer of UFL lidars.Project Chief Technical Officer.YURY LAPENKOManager on economics and finance.IGOR VESELOVSKYPhD in Physical and Mathematical Sciences, globally recognized scientist in the field of lidar studies, possesses wide international experience.

AQAMARIN

CONTACTS /Moscow +7 (926) 737 13 04

Fax: +7 (499) 124 73 92

[email protected]

www.lidars.ru

The most portable in the world fluorescent lidar UFL-7, the Atlantic Ocean, 2003. Over 30 expeditions

were conducted with UFL lidars in saline and fresh water areas.

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SET OF FIBER-OPTIC PROBES FOR SCANNING NEAR-FIELD OPTICAL MICROSCOPY

PRODUCT /Fiber-optic probes with an axicon-shaped tip could be in the following various modifications: • plated probe with aperture, • unplated nonaperturate probe,• probe with nanoantenna.Applications:Scanning near-field optical microscopy. Getting an optical sample image in a subwave scale, local laser modification, mapping plasmons, mapping refractive indexes of transparent samples.

COMPETITIVE ADVANTAGES /• Increased spatial resolution due to nanoantenna resonance focusing properties.• New shape of the probe working area increases the optical effectiveness and enhances the probe mechanical and optical strength. It is possible to affect for a certain specified sample depth with probes of laser modification.• A combined manufacturing technology diminishes quantity of working surface roughness and increases qualitative probe characteristics.

MARKET POTENTIAL / • The market of probes for scanning near-field optical microscopy is $4.25mln. • Target segment: 15-20 % of the market in monetary terms.

STAGE IN PROGRESS /• Laboratory R&D has been performed; the results have been published in international journals. • Russian Federation patent has been obtained.• Active marketing among the customers is in progress.

TEAM /DMITRY STOROZHENKO PhD in Engineering Science, Co-founder and CEO.ALEXANDR KUCHMIZHAK PhD in Physical and Mathematical Sciences, scientific director of the project, experience in studies in the area of probe (atomic-force, near-field optical) microscopy, nanophotonics, plasmonics and laser treatment of materials.

AXICON

CONTACTS /Vladivostok +7(924) 240 22 58

[email protected]

Focusing properties of the unplated nonaperturate probe

The surface of the probe workpiece tip in the form of an axicon lens.

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PRODUCT /Selective ion-exchange resins for extraction of rare earth metals (REMs), radionuclides (plutonium, thorium, americium, europium, caesium), indium, platinum-group metals (PGMs).Applications:extraction of metals from liquid radioactive waste and underground leaching solutions, electrolyte purification.

COMPETITIVE ADVANTAGES /• Extraction of one, two, or a group of metals.• Effective extraction from strongly acidic solutions with a complex saline background.• High sorption capacity (up to 5–8 mg-eq/g), 3–4 times higher as compared to foreign analogues.• Distribution coefficient is 103-104.• Reusable.• Reduced number of extraction stages.

ESSENCE OF INNOVATION /At the synthesis stage, the technology enables adapting the properties of obtained ion-exchange material to specific tasks of selective extraction of the target metal from a multi-component solution.

MARKET POTENTIAL /• Global resin market is $1bn.• Target segment: 25–30% of the market in monetary terms, 5–10% of the market in physical terms.• Key segments: waste treatment with extraction of commercial radionuclides (Am-241), refining, production and processing of rare and precious metals.

DEVELOPMENT AND IMPLEMENTATION OF A DESIGN TECHNOLOGY FOR PRODUCTION OF SELECTIVE ION-EXCHANGE RESINS AXIONIT

AXION: RARE AND PRECIOUS METALS

CONTACTS /Perm +7 (342) 211 00 90

Fax: +7 (342) 253 07 69

[email protected]

www.axion-rnm.com

Granules of AXIONIT ion-exchange resin for extrac-tion of REMs and Am-241 from strongly acidic

media

CURRENT STATUS /• Laboratory research studies were conducted.• Positive findings by the Federal State Unitary Enterprise Production Association Mayak were obtained, and the technology efficiency was confirmed.• 5 RF patents were obtained, 2 PCT applications filed.• Intense marketing among the customers.

TEAM /DMITRY KONDRUTSKYPhD in Chemical Sciences, Co-founder and CEO.VIKTOR KABLOVDoctor of Engineering, professor, research project manager, 40-year experience in polymer chemistry, honoured inventor.ALEXANDER BOBROVPhD in Chemical Sciences, Executive Officer responsible for customer relations, experienced in scaling and implementation of chemical engineering projects in Russia and abroad.GADZHI GADZHIYEVPhD in Engineering Sciences, Chief Chemist.

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AUTOMATIC MICROWAVE BABY BOTTLE WARMER-STERILIZER WITH DIRECT NON-CONTACT TEMPERATURE MONITORING

PRODUCT / Fully automated baby food heater with temperature monitoring. Irrespective of the type, initial temperature and quantity of the baby food, the heater guarantees the preset target temperature of the food. COMPETITIVE ADVANTAGES / • Accuracy. Heating exactly up to the target temperature regardless of initial conditions. • Quickness. Baby wants to get the bottle promptly. The warmer heats 2 times faster than fastest water-steam competitors thanks to volumetric heating. • Usability. There is no need to fill the device with water, adjust or service it. User cannot make any mistake. • Safety. There is no hot water of steam. There are no any hot parts. Scalds of user or baby are impossible. • Careful heating. Not merely surface but whole volume is heated under permanent forced mixing. SmartField™ technology controls the microwave intensity and keep it at low safe level. The local temperature does not exceed 60°C; all important nutrients survive. • Possibility to heat up frozen milk. • No maintenance required. • Attractive design.

ESSENCE OF INNOVATION / The technology of non-contact temperature monitoring with forced mixing and volumetric heating is applied. Inverter control of magnetron with SmartField™ careful heating technology is applied, providing monitoring and control of the field strength in the heating chamber. MARKET POTENTIAL / Russia – 500,000 devices — $40mln; global market: over 7 mln. devices -over $800mln.

CURRENT STATUS /• Attractive design has been developed.• The prototype device has been produced.• Prototypes with sterilization and cooling functionsare under development.• The Russian patent has been obtained, PCT application has been filed..• The prototypes are demonstrated at exhibitions.

TEAM /ALEXEY LEVCHENKOPhD in Physical and Mathematical Sciences, founder and General Director, Project Manager.OLGA LUKOYANOVAPhD in Medical Sciences, pediatrician of the highest category, certificates in pediatrics and dietetics; Research Manager (medical, chemical, biological research).IGOR STUCHEBRYUKHOVDevelopment Manager.DMITRY SEVOSTIYANOVSenior Research Assistant (electronics, programming).MIKHAIL LEVCHENKOChief Developer (CAD).

BABYFIELD

CONTACTS /Moscow +7 (916) 619 61 86

[email protected]

3D model of the heater’s prototype

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PRODUCT /“Femtosecond surgical laser: optic forceps” laser package (LP) and biomedical technologies based on it. Applications: reproductive and regenerative medicine, applied and fundamental research in the field of cellular biology and medicine.

COMPETITIVE ADVANTAGES /• Contact free and sterility of manipulations performed at cellular and subcellular level.• High precision and selectivity of manipulations performed, minimized risk of a thermal damage of the object being studied due to the use of a femtosecond-duration source.• Versatility and adaptability of the package for the requirements of specific task and technology being implemented.

ESSENCE OF INNOVATION / Integration of two laser tools, femtosecond surgical laser and optic forceps, in one system intended for contact-free high-precision micromanipulations and microsurgery, including those performed on live biological objects.

MARKET POTENTIAL / Key consumers are: research and academic institutions, laboratories and clinics of reproductive and regenerative medicine.

CURRENT STATUS /• The LP laboratory sample for cellular biology and medicine has been developed, constructed and tested.• 1 RF patent has been obtained, 1 certificate for registration of Laser Package Software.• Intense marketing among the customers. Participation in the program by the Ministry of Education and Science as the industrial partner for development of LP-based advanced technologies. In 2014–2015, an associate contractor by the RAS Presidium program “Fundamental Research for Medical Technology Development”.

DEVELOPMENT OF LASER EQUIPMENT FOR CELLULAR BIOLOGY AND MEDICINE

BIOMEDICAL LASER TECHNOLOGIES

CONTACTS /Moscow +7 (495) 229 42 40

Fax: +7 (495) 362 51 36

[email protected]

“Femtosecond surgical laser: optic forceps” laser package

TEAM /MIKHAIL AGRANATDoctor of Physical and Mathematical Sciences, co-founder and Research Project Manager.SERGEY ASHITKOVPhD in Physical and Mathematical Sciences, Co-founder and leading research assistant.DMITRY SITNIKOVPhD in Physical and Mathematical Sciences, Chief Design Engineer, expert in the field of laser technologies and equipment.ANDREY OVCHINNIKOVPhD in Physical and Mathematical Sciences, Chief Engineer, expert in the field of laser technologies and equipment.INNA ILYINAPhD in Physical and Mathematical Sciences, CEO, expert in the field of biomedical technologies.ANDREY YURKEVICHPhD in Medical Sciences, business planning, marketing, financial advising.

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PRODUCT /Small broadband and ultra-broadband antennas for frequency range from 800 MHz to 3.5 GHz, frequencies based upon anisotropic ferroelectric materials. Applications: mobile communication devices (smartphones, tablets), multi-function antennas for vehicles, service communication devices.

COMPETITIVE ADVANTAGES /• One Bisant antenna functionally substitutes several “conventional” narrowband antennas.• Decrease of antenna unit size down to 50% with enhancement of engineering parameters.• Increase of stability and communication radius up to 10–15%.• Decrease of energy consumption to 10%. ESSENCE OF INNOVATION / The technology is based on the use of custom made anisotropic ferroelectric materials (meta-material subclass) as active components of antenna units. Devices using this technology allow receipt and transmission of radio waves and radio pulses at various operating frequencies with various output in operating frequencies’ narrow, broad and ultrabroad bands.

MARKET POTENTIAL / According to the company’s assessment, the global market of antennas for smartphones and tablets amounts from $7bn to $10bn. According to the company’s assessment, the global market of antennas for vehicles amounts to $7bn. Share of Bisant R&D antennas can reach 5%-7% of the market.

BROADBAND ANTENNA MODULES FOR MICROWAVE COMMUNICATION SYSTEMS BASED ON ANISOTROPIC COMPOSITES

BISANT, SCIENCE LAB

CONTACTS /Moscow Region

Mytishchi

+7 (495) 539 23 03

[email protected]

www.bisant.ru

CURRENT STATUS /• Research works, laboratory examination, and test measurements confirming the stated parameters have been conducted.• Records of interest have been signed with leading Russian and foreign organizations and companies.• Pilot production of multi-function broadband automotive antennas has been established.

TEAM /GENNADY KARPUNINCEO. The technology developer and project author. Author of over 20 scientific publications and 5 patents.ALEXANDER KORNEYEVDeputy CEO.Experience in market launch of communication devices. Author of over 20 scientific publications and 5 patents.KONSTANTIN TATARINTSEVDeputy CEO, PhD in Physical and Mathematical Sciences, international qualification in the field of finance, CMA.

Samples of ferroelectric ceramics

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PRODUCT /Case of silicone carbide for nuclear waste and spent nuclear fuel burying.Applications:for long-term underground burying of NW and SNF as part of the dedicated packages in rocks.

COMPETITVE ADVANTAGES / No corrosion of base material with preservation of the rest of characteristics.

ESSENCE OF INNOVATION /• For the first time in the world practice,on the basis of comprehensive research, the offer appeared to create cases of silicone carbide (SiC) for nuclear waste burying.• The key component of innovations are several technologies unrivalled in the world such as:- welding of silicone carbide ensuring weld structure which is identical to that of base material, case sealing and vacuum tightness;- the technology of manufacturing of uniform-density large items of silicone carbide.

MARKET POTENTIAL /• Market of cases is $0.8bn per year.• Target segment: 15–20% of the market.• Key segments: HLW in the internal and external market; SNF in the internal market.

CURRENT STATUS /• Owing to private investments, development of the laboratory technology of SiC ampoules production succeeded.• Critical process areas have been developed, possibility of manufacturingof thin-wall SiC ampoules (diameter 220 mm, wall thickness 6 mm, length 1,500 mm) obtained.• Active marketing among the customers (ROSATOM, ROSRAO, AREVA etc.).

CREATION OF PILOT TECHNOLOGY OF PRODUCTION OF CASES OF SILICONE CARBIDE FOR BURYING OF NUCLEAR WASTE (NW) AND SPENT NUCLEAR FUEL (SNF)

CERAMICS TECHNOLOGIES

CONTACTS /Moscow (Troitsk) +7 (495) 851 00 97

Fax: +7 (495) 851 01 155

[email protected]

www.sic-ceramics.com

TEAM /GENNADY BABAYANTSPhD in Engineering Sciences, Co-founder and CEO.SERGEY PILOSYANDeputy CEO for Science. Scientific advising in the project, justification of experiments; calculations and simulation of properties.ALAN KHUMAROVDirector for Finance. Commercialization of the development, construction of relations with customers, business model formation.

Weld structure identical to that of base material

SiC cylinder

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APPLIED RESEARCH WORKS IN THE FIELD OF FUNCTIONAL THIN-FILM COATINGS

PRODUCT /Solid-state electrochromic devices.Applications:architecture glass, vehicle glass, plane and helicopter windows, protective goggles and masks, scientific electrooptical devices.

COMPETITIVE ADVANTAGES /• Improved specifications:- switching time;- transparency;- colour of the device in tined mode.• Low prime cost of the product.• Possibility to manufacture product without substantial retrofitting of process lines being used by manufacturers of coated glass.

ESSENCE OF INNOVATION / Electrochromic device is completely solid-state and is produced through magnetron sputtering using new materials.

MARKET POTENTIAL /• The volume of electrochromic devices market will amount to $300mln by 2020.• Cost of electrochromic glass available in the market is approx. $700 per m2.• Planned prime cost of the product does not exceed $300 per m2 with dimensions of up to 2х3 m2.

TEAM /LYUBOV EBRALIDZEPhD in Juridical Sciences, CEO.DMITRY KRYLSKYDoctor in Chemical Sciences, Scientific Advisor, Research Project Manager. Experience of electrochromic device development in Research Institute of Applied Acoustics, Dubna.VLADIMIR MESHCHERYAKOVPhD in Chemical Sciences, Project Manager/Process Engineer. Experience of research of organo-element compounds in the Institute of Organo-Element Compounds of RAS of the RF and also in universities of USA and SAR. ARNO ROSSOW Process Engineer. Participant of the joint project on development of thin membranes and films in the Laboratory of nuclear reactions named after G.N. Flyorov of Joint Institute of Nuclear Research, Dubna.

COMBERRY

CONTACTS /Ulyanovsk +7 (8422) 27 24 27

[email protected]

www.comberry.ru

The product will increase building energy efficiency and improve its aesthetic appeal by allowing for the implementation of different colour solutions. colour

solutions.

Combinatorial research platform Comberry (manufac-tured by Intermolecular, Inc., USA).

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DEVELOPMENT OF INNOVATIVE AND COST-EFFICIENT TECHNOLOGIES OF PAN-POLYMER SYNTHESIS AND PAN-FIBRE FORMING

PRODUCT /The technology of producing of high-quality PAN-precursor for processing thereof into high-strength carbon fibre with low prime cost.Applications:production of light-weight and high-strength parts and structures of carbon fibres (CF) and fabrics (prepregs) on their basis for various industries.

COMPETITIVE ADVANTAGES /• High strength of PAN-precursor-based CF in microplastic at 5–7 GPa tension.• High elasticity module of PAN-precursor-based CF in microplastic (260–320 GPa).• Low production cost of PAN-precursor and CF based on it (and, consequently, high marginality), less than $20/kg,that is 3–4 times lower as compared to the best foreign analogues.

ESSENCE OF INNOVATION / The technology allows producing at the synthesis stage of polymer product of higher quality and monitoring of the polymer molecular weight; at forming stage, to reduce non-uniformity and defects at nanolevel, and form macromolecules (polyacrylonitrile) with target supramolecular structure.

MARKET POTENTIAL /• Carbon fibre market is $3.5bn.• Target segment: 10–20% of the market in monetary terms, 5–10% of the market in physical term.

CURRENT STATUS /• Applicability of the procedure under consideration has been confirmed for synthesis of high-molecular composition-uniform of acrylonitrile terpolymer.• Polymerization regularities according to the procedure being proposed have been studied. First results of research work.• Intense marketing among the customers.

TEAM /DAVID SERVICEPhD chemistry, Project Mentor, experience of development, implementation and scaling of chemical projects and technologies in the field of composite fibres in Great Britain, China, and Russia.ANDREY GASYAKCEO, experience in innovative entrepreneurship and commercialization of technologies.VASILY MEDVEDEVHead of Laboratory of forming, Chief Expert, PhD in Engineering Sciences, over 20-year experience of development of PAN-precursor and carbon fibre production technologies, author of over 30 scientific articles and certificates of authorship.YELENA CHERNIKOVADoctor of Chemical Sciences, Associate Professor, Chief Chemist, expert in the field of chemical projects and technologies, author of over 50 articles, books, reports and theses.

COMPOSITE, R&D CENTRE

CONTACTS / Moscow +7 (495) 787 88 28

Fax: +7 (495) 783 73 31

[email protected]

www.hccomposite.com

/company/structure

The HC Composite technology – CF possessing lesser share of defects and higher uniformity

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PRODUCT /Library of algorithms of robot motion control with due account for peculiarities of the tasks being performed during interaction with manipulated object, environment, other robots.

COMPETITIVE ADVANTAGES /• Possibility to use existing robots (>1 mln. pcs.) in applications of material processing with the required accuracy within 0.05–0.1 mm allowing for turning and grinding of large parts of arbitrary geometry.• Possibility to implement automatic assembling which in addition to precision positioning, requires high-precision control of interaction forces arising at pressing, embedding, and engagement.

ESSENCE OF INNOVATION /The company has developed original methods of searching, presentation, and control of motions and interaction forces:• keeping of solid, soft, brittle objects,etc.;• manipulating of large objects using several manipulators, assembly of articles from parts with different stiffness.

MARKET POTENTIAL / The project responses the main challenge of the robotics market related to increase of robot operation accuracy and fitting of its characteristics to accuracy and to the closest simulation of human operation. The total market of the project product use deals with over 1 mln. robots installed all over the world.

TECHNOLOGY OF ROBOTICS SYSTEMS’ MOTION CONTROL

COMPUTATIONAL ROBOTICS

CONTACTS /St. Petersburg

CURRENT STATUS /• The prototype of robotics package has been developed and created for the product adjustment and testing and possible illustration of complexity.• The prototype of software package has been developed for control of industrial manipulators with assurance of high accuracy.

TEAM /ANTON SHIRIYAYEVPhD in Physical and Mathematical Sciences, professor, automation of industrial processes, control of complex mechatronic systems.SERGEY GUSEVPhD in Physical and Mathematical Sciences, Associate Professor, control of non-linear mechanical systems, optimization, numerical maths and software development.LEONID FREIDOVICHPhD in Physical and Mathematical Sciences, Associate Professor, simulation, planning, control and analysis of motions of non-linear mechanical systems.

1)Модель устройства DO-RA.Uni

+7 (921) 403 97 12

[email protected]

www.robotics-spb.ru

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PRODUCT /CdZnTe detectors of nuclear radiations. Range of 10–2000 keV. Current, counting and spectral modes. Applications: medical imaging, tomography, X-raying, speed scanning; non-destructive testing and technical diagnostics; monitoring of radioactive materials; X-ray fluorescent analysis of substance composition.

COMPETITIVE ADVANTAGES /• Multiple-fold reduction of irradiation dose.• Image of higher quality.• Light-weight and compact-size devices.

ESSENCE OF INNOVATION /Proprietary AHP (axial heat processing) method of monocrystal growing provides:• High quality and uniformity of the crystal throughout the volume regardless of diameter.• High growth speed.• Possibility to grow unlimitedly large diameters.

MARKET POTENTIAL /• The market of detectors and detecting modules by 2020:world market up to $7bn, the RF market up to $50mln.• Main foreign players are as follows: Redlen (Canada), Acrorad (Japan), eV_Product (USA).The company’s technology can potentially occupy up to 2% of the world market.

CURRENT STATUS /• The laboratory technologies of CdZnTe, CdTe, ZnTe crystals growth and manufacturing of pilot samples of detectors have been developed.• NIITFA, IFTP (ROSATOM), Medical Company UNIX have revealed interest to the products.

AHP TECHNOLOGY OF CDZNTE MONOCRYSTALS FOR RADIATION DETECTORS

CRYSTALSNORD

CONTACTS /Aleksandrov,

Vladimir region

+7 (49244) 980 86

Fax: +7 (903) 294 50 01

[email protected]

www.CrystalsNord.ru

TEAM /ALEXEY YAKOVLEVCEO.VLADIMIR GOLYSHEVPhD in Engineering Sciences, Project Manager, Chief Technical Officer, author of the new method of crystal growing. Over 100 publications, 6 patents.SVETLANA BYKOVAChief Process Engineer, 20-year experience in the field of crystal growing, over 30 publications, 4 patents.VLADIMIR TSVETOVSKIYSenior Engineer, over 25-year experience, over 40 publications, 4 patents.

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COMMERCIALIZATION OF CVD-TECHNOLOGY FOR MANUFACTURING DIAMOND WAFERS PRODUCT /Poly- and monocrystallic diamond wafers obtained using the CVD method and next-level products based on them.Applications:• power electronics (heat removal elements based on SCD diamond with thermal conductivity 5-times higher than that of copper);• optical and radioelectronic instrument engineering;• laser hardware (output windows on high-power laser systems);• SHF-teraHertz devices (windows for gyrotrons);• cutting and machining tools (extreme hardness and possibility to grow monocrystallic CVD diamond);• nuclear technology (monocrystallic CVD diamond of electronic quality is an active element of ionising radiation detectors).

COMPETITIVE ADVANTAGES / Synthetic diamonds possess a unique combination of properties (high thermal conductivity, hardness, chemical inertness, radiation resistance, etc.), which makes them irreplaceable materials for use in extreme conditions.

ESSENSE OF INNOVATION / CVD-technology enables growing synthetic diamonds with high rate and big sizes with predetermined properties.

MARKET POTENTIAL /• In 2015 the global market of synthetic diamonds was $1.7bn.• Target segment: 10–15% of the market in monetary terms.• Key segments: optics, electronics, machining tools.

CURRENT STATUS /• Industrial production technology for diamond optics basing on polycrystallic plates has been developed. • Technology of obtaining extra-pure monocrystallic diamonds of electronic quality has been developed.• Prototype of diamond detector for radiotherapy has been developed.

TEAM /MARINA BORISENKO CEO, Company development, attraction of customers, market analysis.VIKTOR RALCHENKO Deputy Executive Officer for Science, PhD in Physics and Mathematics, Head of laboratory of diamond materials at GPI NSC RAS, internationally recognized specialist in the field of CVD diamonds.IGOR BALASHOV Chief Technologist, PhD in Engineering, specialist in technologies of diamond-like coatings for surgical instruments. GENNARO CONTE Consultant, professor, Head of laboratory of diamond detectors of the Third University of Roma (Italy).

CVD. SPARK

CONTACTS /Moscow

+7 (499) 271 71 75

[email protected]

www.cvdspark.com

Теплоотводящая пластина из поликристаллического алмаза

Heat removal wafers made of polycrystallic diamond

Monocrystallic diamond wafers

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NEW GENERATION OF SOLID-STATE MULTIPLIER PHOTOTUBE FOR SCIENCE AND ENGINEERING

PRODUCT /New generation of solid-state multiplier phototubes (SMP) capable of replacing of vacuum multiplier phototubes (VMP) and ensuring of quantum leap in parameters of final systems in several major fields of science and engineering:• medical rendering systems (PET, CT, gamma chambers);• biotechnologies (flow cytometers, DNA sequencing);• industry (surface analysers, mass spectrometers, thickness gauges, laser scanners);• physics of high energies (calorimeters, Cherenkov counters);• ecology (LIDARs, ozone layer scanners);• astronomy (telescopes etc.);• aerospace field (deep-space communication, location).

COMPETITIVE ADVANTAGES / The developed DEFAN design eliminates fundamental difference between dynamic range and sensitivity inherent to previous generation of SMPs, thus significantly expanding scope of their application.

ESSENCE OF INNOVATION /The new technology allows integration of avalanche amplifier channels into the single photo-sensitive area, thereby substantially increasing geometric factor as compared to the existing “matrix” SMPs.

MARKET POTENTIAL /• The market of photon sensors and detectors will amount to $15bn by 2019.• Target segment: 5–10% of the market in monetary terms.• Key segments: solid-state multiplier phototubes for biomedical (diagnostic) equipment, diagnostic equipment of nuclear engineering, analytical instrumentation, and environment monitoring equipment.

CURRENT STATUS /• The instrument laboratory sample has been developed and manufactured,in which the SMP design proposed by the authors of the project has been approved. Positive testing results have been obtained.• Launching of the manufacturing technology in modern experimental and production factory is being completed, within the Skolkovo grant, output of the instrument engineering sample is being prepared.• Commercialization plan and the project business model have been developed.• International applications for protection of the technology in USA, Europe, and Japan are being prepared.

TEAM /DMITRY SHUSHAKOVScientific Director, planning, coordination and monitoring of fulfilment of all R&D programs of the project, development of the instrument design.VITALY SHUBINDoctor of Physical and Mathematical Sciences, Research Project Manager, over 25 years of experience in the field of study of physical principles of solid-state multipliers and designs thereof.NIKOLAY KOLOBOVDoctor of Engineering, Chief Process Engineer, over 120 articles and 10 certificates of authorship in the field of electronic equipment development.ALEXANDER LEONOVadvisor on commercialization, structuring of investment transactions and negotiations (projects on investment of more than $10bn).

DEFAN — ANALOGUE PHOTON DETECTOR

CONTACTS /Skolkovo,

Moscow Region +7 (495) 280 12 91

[email protected]

The photodetector is the key component determining efficiency and cost of complex final

systems

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DEVELOPMENT OF YB-169-BASED INNOVATIVE SOURCES FOR BRACHYTHERAPY

PRODUCT /Ceramic ytterbium Yb-169-based source for AGAT-VT/VP apparatus with intensity of approx. 10 Curie. Applications: high dose-rate brachytherapy (HDRB) and pulse-brachytherapy. Localization of malignancies: prostate, female reproductive system, cervical region.

COMPETITIVE ADVANTAGES /• Low production cost as compared to Ir-192 and Co-60 due to the use of laser technology of isotopes separation.• Milder radiation spectrum as compared to Ir-192 for optimal brachytherapy in some localizations (localization of malignanciesin cervical region, tongue base cancer).• The source requires no heavy bioshield. This allows placing of equipment for HDRBin conventional X-ray rooms and making HDRB operations affordable for significantly larger number of patients.• The new source is adapted for operation both with domestic and imported HDRB equipment.

ESSENCE OF INNOVATION /The source with design intensity of ~10 Curie possess high-density ceramic core (density of ~ 9–10 g/cm3) with weight of approximately 10 mg (the analogues have intensity not exceeding 6 Curie). Ytterbium enrichment is performed according to the patented laser technology.

MARKET POTENTIAL /• The volume of global market of sources for brachytherapy was estimated to be approximately $500mln in 2013. Now brachytherapy is used mostly for treatment of prostate cancer.• As of 2013 there are 111 devices in Russia (140 oncologic dispensaries). About half of them has no sources. Minimum estimate of the market is 600 sources per year (approx. $3mln). In USA ytterbium sources are being developed,but no offer of such sources exists in the market.

CURRENT STATUS /• Pilot samples of high-density ceramic cores with density of up to 10 g/cm3 have been developed.• Possibility to obtain specific intensity of 1 Curie/mg at ytterbium oxide enrichment with Yb-168 isotope at the level of 20% has been shown.• Preparation is being conducted for pre-clinical research at the level of cellular technologies.

TEAM /VASILI DERZHIYEVCo-founder and CEO, chief technology expert, possesses successful 40-year experience of work in the field of laser separation of isotopes.SERGEY AKULINICHEVResearch Project Manager, manager of the Laboratory of medical physics of Institute of Nuclear Research of RAS. Governed by S.V. Akulinichev, the Proton Therapy Complex of the Institute of Nuclear Research of RAS (Troitsk) has been created, and also nuclear physical research is being conducted of ytterbium source in radiation experiments at proton accelerator of the Institute of Nuclear Research of RAS (Troitsk).

DELIZ

CONTACTS /Moscow

(Troitsk)

+7 (495) 851 07 24

[email protected]

Ceramic Yb-169 source for AGAT VP, VT apparatus (Research Institute of Applied Physics and

Automation, OJSC)

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THE ENERGY-EFFICIENT “M500 MACHINE” GROWS PARTICULARLY LARGE (UP TO 500 KG) SAPPHIRE MONOCRYSTALS OF HIGH OPTICAL QUALITY USING THE GOI METHOD

PRODUCT /• Self-sintered ceramicsand manufacturing technology of extra-strong ceramic crucibles for growing of leucosapphire boules with weight of up to 500 kg.• Energy-efficient plant for growing of large sapphire monocrystals.

COMPETITIVE ADVANTAGES /• Allows growing of large leucosapphires (up to 500 kg) and of high optical quality.• Maximum weight of batch-produced crystals in the world is 85 kg.• Prime cost of 1 kg of crystals is by more than 45% lower than that at similar plants.

ESSENCE OF INNOVATION / Composite ceramic crucibles allow for the growing of particularly large crystals that have a high optical quality. Increasing the size will reduce the specific energy consumption by 4-5 times and bring up the plant efficiency by 6 times.

MARKET POTENTIAL / Global market of leucosapphires amounts to 15,000 tonnes per year, over $4bn per year. Annual market growth rate is 30%. The volume of global market of the product is $125mln per year. Target share of the market in 2017: > 12%.

CURRENT STATUS /• Research stage has been completed, samples have been obtained.• The plant prototype is being manufactured and optimized.• Patents have been obtained for feedstock supply device and for sapphire crystal growing technique with the device for additional loading of the feedstock.

TEAM /VLADIMIR TYUTINmanagement and development of comprehensive engineering solutions.VIKTOR TIKHONOVscientific developments in the field of machine building, strength of structural materials, new engineering equipment.

DELTA-SAPFIRE

CONTACTS /Sarov +7 (831) 306 33 95

+7 (904) 918 08 29

[email protected]

http://community.sk.ru/

net/1110289

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USE OF TAGGED NEUTRONS TECHNIQUE TO DETERMINE ELEMENTAL COMPOSITION OF ROCKS AND MINERALS

PRODUCT /• Plant for diamonds’ detection in kimberlite ore without its destruction (starting from 1 carat).• Detector of rock and mineral elemental composition in the field conditions. Applications: diamond-producing industry, ore-processing industry, oil exploration, geological exploration.

COMPETITIVE ADVANTAGES /• Detection of diamondsin kimberlite lump ore without its destruction.• Detection of concentrations of 24 elements in rocks in the field conditions.• Sample preparation is not required.

ESSENCE OF INNOVATION /Irradiation of examination object with fast neutrons with subsequent registration of gamma radiation peculiar to each element.

MARKET POTENTIAL /• Target segment: 5% of the Russian market (ALROSA) – $200mln.• International market – $70-100mln.• Key segments: diamond-producing industry, analysis of core samples and slurries, monitoring of feedstock qualityat mining processing facilities. CURRENT STATUS /• Tagged neutrons technology has been approved at laboratory testing stage. • Diamonds have been foundin kimberlite lump samples.• The RF invention patent has been obtained.• The prototype of pilot plant for dry recovery of kimberlite has been tested at Severalmaz’s Lomonosovsky mining and concentrating enterprise.• The pilot sample of elemental composition detector has passed testing at Olkhonsky geodynamic proving ground.

TEAM /TATYANA SYROVATSKAYACEO.MIKHAIL SAPOZHNIKOVDoctor of Physical and Mathematical Sciences, Research Project Manager, 130 scientific papers and 18 mechanical patents.ANDREY SADOVSKYPhD in Physical and Mathematical Sciences, Chief Engineer, wide experience in experimental research in ZERN (Geneva) and Fermilab (USA).

DIAMANT

CONTACTS /Dubna,

Moscow Region+7 (496) 216 39 46

Fax: +7 (496) 216 39 35

[email protected]

www.diamant-sk.ru

Two diamond inclusions of 7–9 mm found inside the

kimberlite sample with weight of 1.5 kg

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DEVELOPMENT AND IMPLEMENTATION OF RARE EARTH ELEMENTS’ SEPARATION TECHNOLOGY

PRODUCT /Multi-purpose extraction nitrate technology of aggregate concentrate separation into groups with subsequent obtaining of individual REEs. Applications: separation of individual rare earth elements from aggregate concentrate being obtained at deposits.

COMPETITIVE ADVANTAGES /• Single nitrate medium throughout all process. No emissions of gaseous wastes related to transfer between media.• No solid waste emissions.• Versatility as regards initial concentrate of various deposits.

ESSENCE OF INNOVATION / The technology ensures all stages of rare earth elements separation only in nitrate medium with no transfer into sulphuric or hydrochloric acid media. As a result, no solid and gaseous toxic waste is generated, electric energy and consumables use is reduced.

MARKET POTENTIAL /• The global market of rare earth metals will amount to approximately $80bn in 2017.• The market of engineering services and supplies of the technology will take about 5% of the finished product market, which is $4bn.• The project aims to take 20% of the global market of such services that amounts to approx. $80mln.• Key segments: separation of rare earth elements.

CURRENT STATUS / The technology is currently being elaborated (the pilot project is Kutessai deposit) in continuous mode at experimental separation cascades. The technologies of separation of aggregate REE-concentrate from Kutessai-II deposit into light-weight and moderate-weight groups with obtaining of oxides of yttrium, neodymium, dysprosium, terbium, europium, and lutetium.

TEAM /ANDREY FYODOROVCEO.VALERY KOSYNKINDoctor of Engineering, Research Project Manager, over 40-year experience in chemistry of rare earth elements.SERGEY KOLEGOVover 20-year experience in technologies of rare earth elements including 10 years in commercialization and international cooperation.GENNADY SAVCHENKOPhD in Geological and Mineralogical Sciences, over 40-year experience in field development and analytical chemistry of rare earth elements.

DIDIM

CONTACTS /Moscow +7 (917) 536 64 35

[email protected]

Rare earth metals in the periodic table

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DEVELOPMENT OF A PUMP & COMPRESSOR PIPE CLEANING MOBILE FACILITY INTENDED TO REMOVE ASPHALT, RESIN, PARAFFIN AND SALT DEPOSITS

PRODUCT /The technology is based on two cleaning methods: air-vibrational and inductive. Applications: decontamination services for oil extracting and servicing companies.

COMPETITIVE ADVANTAGES /• Mobile transportable facility.• Low costs of PCP disposal sites arrangement directly in their storage areas.• High environmental friendliness of the process due to the use of decontamination closed cycle. • Absence of hazardous chemical environments in the process.• Versatility both in part of decontamination of various PCPs and contaminants types.

ESSENCE OF INNOVATION / The process combines two methods of decontamination: air-vibrational and inductive. A transportable facility enabling to undertake PCP decontamination from ARPD and salts in their accumulation and storage areas, is being developed for the first time.

MARKET POTENTIAL /• Russian market of contaminated gas equipment constitutes at least $100mln.• Target segment: 25% of the market in monetary terms.• The key segment is oilfield equipment decontamination from ARPD and salts containing natural radionuclides.

CURRENT STATUS /• Positive results of PCP decontamination are achieved on pilot facility with the use of induction heating method with further air-vibration cleaning. • RF patent application is filed.• 2 letters of interest are signedon work performance and process application.

TEAM /ANDREY MUKHANOVCo-Founder and CEO.MIKHAIL ZOKHONCo-Founder, 20 years of experience in the claimed field, including international collaboration experience in commercialization of obtained results. SERGEY PRUSHCHAKDoctor of Economics, Financial Director, possesses large-scale experience in oil and gas sector projects implementation.BORIS BURAKOVDoctor of Geology and Mineralogy, radiation research manager; over 100 scientific publications and the work with international projects in the field of radiation research.

ECOPOL ТЕCHNOLOGIES

CONTACTS /St. Petersburg

+7 (911) 214 71 26

+7 (812) 652 06 61

Fax +7 (812) 652 06 60

[email protected]

http://sk.ru/net/1120419

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TECHNOLOGY OF CONTROL OF MOTIONS AND INTERACTIONS WITH MANIPULATED OBJECT AT UNRETENTIVE CONTACT AND NON-FULL-DRIVE DYNAMICS IN ROBOTICS APPLICATIONS

PRODUCT /Educational mechatronic facility for academical robotics laboratories.Applications:improvement of robot user skills and accuracy of robots including development of new applications for robots.

COMPETITIVE ADVANTAGES / There are no educational facilities in the market that could account the force of interaction between the manipulated object and the robot.

ESSENCE OF INNOVATION / Mechatronic complex with open architecture for university research activities and research laboratories in the field of motion control, artificial vision and robotics, which demonstrates:• a new method of search and representation of motions compatible with dynamic restrictions;• a new method of motion control with account for dynamic restrictions;•new numerical methods of feedback determination.

MARKET POTENTIAL /• Market of educational and research robotics equipment is $1.5bn.• Target segment: 5–10% of the market.

CURRENT STATUS /• R&D on the method implementation of test software versions development were conducted to detect motions for the scenarios of both subsystems and robot with the object of manipulation on the whole.• Model experiments on high-precision motion control of simple robots in no-touch operations were conducted.• Positive feedbacks were obtained from the leading world research centres of USA, Europe and Asia.• Intense marketing among the consumers.

TEAM /ROMAN USATOV-SHIRYAEVСo-founder and CEO.LEONID PARAMONOVPhD in Engineering, engineering manager.ANTON SHIRYAEVPhD in Physics and Mathematics, professor, scientific advisor.SERGEY GUSEVPhD in Physics and Mathematics, associated professor, research advisor.LEONID FREYDOVICHPhD in Physics and Mathematics, research advisor.

EDUCATIONAL ROBOTICS

CONTACTS /St. Petersburg +7 (921) 403 97 12

[email protected]

www.robotics-spb.ru

The “Butterfly” robot

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ROBOTIC INTEGRATED FACILITYWITH LASER 3D-SCAN SYSTEM

PRODUCT /Robotic integrated facility with laser 3D-scan system.Applications:automotive industry, mechanical engineering and metal processing.

COMPETITIVE ADVANTAGES /• Cost reduction for complex geometry parts repair.• Higher quality of parts machining.• Unique 3D scan system.

ESSENCE OF INNOVATION /Software and hardware solution has been developed, enabling to integrate 3D scanner in robotic solutions and existing industrial manipulators to perform laser cladding and thermal strengthening in a real time.

MARKET POTENTIAL / Automotive industry: from $10-15mln per year, mechanical engineering: $7-10mln with growth prospect up to $30mln per year till 2020. Key segments: automotive industry, mechanical engineering and metal processing.

CURRENT STATUS /• The computer vision system has been developed based on the proprietary laser 3D scanner.• Software and hardware solution has been developed, enabling to integrate 3D scanner in the existing industrial manipulators.• Positive outcomes were received from the tests at FSUE PA Mayak, the process operability was confirmed.• The contract with Robotics Centre (Kazan) to deliver eight facilities equipped with proprietary systems for part geometry laser scanning, amounted to $2.8mln; in 2015 their supply is scheduledfor the total amount of $3,5mln.

TEAM /RAMIL GAYNUTDINOV Co-Founder and Project ideologist. VLADIMIR ANDRYASHINCEO.TIMUR SATDAROVCommercial Director.

EIDOS-ROBOTICS

CONTACTS /Kazan +7 (843) 227 40 63

[email protected]

www.oooeidos.ru

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DEVELOPMENT AND IMPLEMENTATION OF EXTRA-PURE HIGH DENSITY GRAPHITE PRODUCTION TECHNOLOGY

PRODUCT /Extra pure high density graphite of isostatic pressing.Applications:nuclear energy, microelectronics and photovoltaics, electro-erosion treatment electrodes, heating elements, friction couples, etc.

COMPETITIVE ADVANTAGES /• High degree of properties isotropy.• High chemical stability. High mechanical stability.• Low porosity, outstanding surface roughness characteristics.• Possibility to produce large-sized blanks. ESSENCE OF INNOVATION / The process of isostatic graphite production with the increased sintering and coking properties to produce new generation composite materials with enhanced physical and mechanical characteristics.

MARKET POTENTIAL / The market of high density graphites is about $1bn. Expected share: 3% of the market.

CURRENT STATUS /• The laboratory R&D has been performed.• Test industrial prototypes of IG-175 graphite are manufactured.

TEAM /ANATOLY MATVEEVPhD in Chemistry, 9 years of high technology projects management, 5 years of work experience in oil and gas industry.ALEXANDER DUNAYEVPhD in Chemistry, over 10 years of experience in the field of carbon materials.ALEXEY KVANINPhD in Physics and Mathematics, over 8 years experience in the field of surface physics and carbon composite materials.VLADIMIR FOKINPhD in Engineering, Deputy General Director for new engineering and processes at ENERGOPROM MANAGEMENT JSC.

ENERGOPROM, R&D CENTRE

CONTACTS / Moscow

Memorial sign made of the first batch of high density extra-pure graphite

+7(495) 789 96 46

Fax: +7 (495) 789 96 47

[email protected]

www.energoprom.ru/rdcenter

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ENERGOPROM, R&D CENTRE

CREATION OF THE SOURCES OF EXTREME ULTRAVIOLET RADIATION (13.5 NM) FOR NANOLITHOGRAPHY

PRODUCT /The project is targeted to solve the range of key problems preventing to organise the commercially beneficial production of next-generation microchips based on EUV nanolithography:• process development for industrial sources of extreme ultraviolet radiation (13.5 nm) for nanolithography;• methods development to decontaminate multilayer optics under EUV radiation impact;• process of fast response optical nanodiagnostics development.

COMPETITIVE ADVANTAGES /• Revolutionary approach to EUV radiator development, stipulating the radiation source capacity theoretical limit over 700 W, compared with 200-250 W in alternative technology, but more simple and cheaper.• The developed nanodiagnostics methods considerably expand the possibility to control lithographic process for 22 nm technology, compared to the existing methods of near field microscopy.

ESSENCE OF INNOVATION /• The use of liquid metal jets as discharge electrodes to generate EUV radiation.• The use of spectra of chromophoric molecules incorporated into research medium as spectral probes for the purposes of nanodiagnostics. • The use of EUV-induced plasma for decontamination of optics and mirror surfaces.

MARKET POTENTIAL /• Lithographic equipment market capacity is $30bn.• The main customer and process consumer is ASML, the largest manufacturer of lithographic machines (62% of the world market).

CURRENT STATUS /• The designed prototype characteristics are demonstrated:- tin pumping velocity is minimum 5 m/sec.;- applied electric power 4 kW;- the possibility to develop EUV sources with over 100 W capacity was demonstrated.• Nano-probe molecules coordinates identification method is optimizedin prototype lateral plate with precision up to 5 nm.• Multilayer optics decontamination methods have been developed with amorphous carbon under EUV radiation.

TEAM /KONSTANTIN KOSHELEVPhD in Physics and Mathematics, Chief Research Assistant, Head of Laboratory of Plasma Spectroscopy at RAS Institute of Spectroscopy, Chief Research Assistant at the Institute of Plasma Physics (the Netherlands), Professor of Paris-Sud and Pierre et Marie Curie Universities (France).ARTEM KROTOVCEO, international experience in innovation projects management, investments involvement and structuring transactions.

EUV LABS

CONTACTS /Moscow (Troitsk) +7 (985) 217 88 00

[email protected]

www.euvlabs.ru

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DEVELOPMENT OF NEW GENERATION FEMTOSECOND INDUSTRIAL LASER

PRODUCT /Femtosecond laser of new generation with increased average emission power and nearby pulse groups generation system. Applications: photolithographic masks processing, solar panels production, cardiovascular stents production, diamonds processing, production of channels for injection ICE nozzles, sapphire protection screens processing, etc.

COMPETITIVE ADVANTAGES /• “Cold ablation” mode: at ultrashort pulse durations, there are no side heat effects at processing.• High average emission power.• Pulse groups generation mode to increase performance and efficient processing depth.

ESSENCE OF INNOVATION /The innovative mode of nearby pulse groups generation enables to increase the system efficiency and to cover more potential applications.

MARKET POTENTIAL /• Microprocessing laser systems market is $3bn/year.• Target segment: 2-4% of the market in monetary terms.• Key segments: lithography technologies, sapphire microprocessing, stents production, ICE nozzles production. Photoresist areas removed from a photomask surface by femtosecond laser.

CURRENT STATUS /• Laboratory R&D on possible pulse groups generation methods are conducted.• The project team successfully commercialised and launched the market sales of the first generation of laser sources.• Femtosecond microprocessing various processes testing and adjustment for the wide range of customers.

TEAM / МАТVEY КОNYASHCHENKOCo-founder and CEO, over 10 years of experience in international sales of laser equipment.LEONID LOSEV Doctor of Engineering, Research Project Manager, over 30 years of scientific work in the field of laser physics.SERGEY TENYAKOV Chief Engineer, over 15 years of experience in amplifying laser systems development and productionANTON TAUSENEV Senior Engineer, over 10 years of experience in fibre laser systems development and production.

FEMTONICS

CONTACTS /Moscow (Troitsk)

+7 (495) 967 94 73

Fax: +7 (495) 646 04 95

[email protected]

www.femtonica.ru

Photoresist areas removed from a photomask surface by femtosecond laser

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DEVELOPMENT OF FIBRE-OPTIC SENSOR SYSTEMS BASED ON FEMTOSECOND RECORDING PROCESS

PRODUCT /Fibre-optic sensor systems developed by the refraction index femtosecond modification in optic fibres.

COMPETITIVE ADVANTAGES /• Possibility to use non-photosensitive fibres to produce sensors that can be used in tough environments (operating temperatures up to 350°С, expanded deformations up to 2%, operation in environment with increased hydrogen content).• Possibility to record without removing the protective shield increases sensor's durability.• No fibre pre-treatment, thus reducing sensor recording times.

ESSENCE OF INNOVATION / Application of the technology of transparent materials femtosecond modification for producing fibre-optic sensors.

MARKET POTENTIAL /• World market of fibre-optic sensors is $1.6bn with estimated average annual growth by 20%. • Promising market segments: oil and gas wells thermometry, monitoring in medicine, operational monitoring of composite materials.

CURRENT STATUS /• An experimental device for sensor femtosecond recording in non-photosensitive fibres has been developed.• Fibre-optic sensors have been produced with improved technical characteristics.• Positive feedback from potential customers has been received.

TEAM /ALEXANDER ZELENINCo-Founder and CEO, extensive experience in R&D management and implementation of R&D results in production processes.ALEXANDER DOSTOVALOVPhD in Physics and Mathematics, Co-Founder and CTO, extensive experience in R&D management and implementation of R&D results in production processes.

FEMTOTECH

CONTACTS /Novosibirsk +7 (383) 332 82 54

[email protected]

www.femtotech.ru

Fibre-optic sensor

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DEVELOPMENT OF X-RAY FLUORESCENT SPECTROMETERS FOR THE STUDY OF ELEMENTAL COMPOSITION OF SOLIDS AND LIQUIDS

PRODUCT /• Portable X-ray fluorescent spectrometer for the analysis of heavy metals in ecology, medicine and pharmacy.• Spectrometers for automated service on the expertise of various materials.

COMPETITIVE ADVANTAGES /• The spectrometer is 3 times cheaper than its laboratory analogues.• Round-the-year maintenance of the spectrometer is 6–8 times cheaper than that of the laboratory analogues.• Sensitivity is several orders of magnitude higher as compared with other portable systems.• One facility allows determination of a big variety of elements in a wide range of concentrations.

ESSENCE OF INNOVATION / The project is about the development of a XRF-spectrometer basing on modern components of X-ray optics. This technique allows the determination of mass shares of chemical elements important for human health at the level previously inaccessible for such types of spectrometers.

MARKET POTENTIAL /• Global market of X-ray equipment is $0.9bn.• Global market of the equipment for elemental analysis in ecology, medicine and pharmacy is about $1bn.• Annual CAGR market growth is 6–7%.• Target segment: В2В and B2G sales to governmental and private laboratories (ecology, medicine, pharmacy).

CURRENT STATUS /• A new element of X-ray optics was offered and implemented (patented invention).• A facility prototype was tested in laboratory conditions, unique analytical parameters were demonstrated.• Special features of the analysis and sample preparation of some materials — water, food products, etc. — were studied.

TEAM /VYACHESLAV REVENKOCEO. Project management, marketing and sales, attracting investments.VYACHESLAV GUSEVEngineering director. Structure, design, organization of production.ANATOLY REVENKODoctor of Engineering, Deputy Director of the Development. Techniques, interaction with regulatory authorities.

FIRST X-RAY LABORATORY

CONTACTS /Moscow +7 (916) 103 35 23

[email protected]

Scheme of X-ray spectrometer for heavy metal analysis.

Semiconductor detector

Primary beam

X-ray tube Sample on a wafer

Completely reflected beam

Fluorescent radiation

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DEVELOPMENT OF FOURIER SPECTROMETER WITH EXPANDED SPECTRAL RANGE

PRODUCT /Fourier spectrometer, operating in UV, visible and near IR spectral range. Applications: spectroscopy, quality control, material analysis, detection of chemical elements concentrations.

COMPETITIVE ADVANTAGES /• Operation in wide spectral range.• Several spectrometers substitution with one instrument.• Routine tests time reduction.• Settings flexibility for more precise measurements.• High dynamic range and other advantages of Fourier technology.

ESSENCE OF INNOVATION / New modulation method of optical delay in interferometer enabled to expand the spectral range of Fourier spectrometer.

MARKET POTENTIAL /• Market volume is $1.5bn (2013).• Target segment: 10% of the market.• Molecular spectroscopy market key segments: UV, visible, NIR.• Key consumers: scientific and educational institutions, quality control laboratories (food and chemical industries).

CURRENT STATUS /• Pilot prototype of Fourier spectrometer has been developed.• Joint tests with Anton Paar company (Austria) have been conducted.• 2 RF patent claims (2 PCT applications) were filed.• The search for strategic partner and co-investor to finalize a prototype to commercial version.

TEAM /ARTUR GEYVANDOVPhD in Physics and Mathematics, experience in applied R&D managementSERGEY PALTODoctor of Physics and Mathematics, scientific advisor, inventor of new optical delay method for Fourier spectrometer.ALEXEY BRATISHCHEVChief Optical Engineer, over 7 years of experience in optical instruments design of various applications, author of over 20 patents.

FOURIER PHOTONICS

CONTACTS /Moscow +7 (916) 626 53 76

[email protected]

www.fourierphotonics.com

Fourier spectrometer of UV-visible-NIR range

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PRODUCT /Laser hygrometer is the instrument for measuring gas moisture using diode laser spectroscopy. It ensures measurement of water content in gas phase within a gas mixture. It is intended for use at facilities of gas processing industry, e.g. to monitor humidity at the output of natural gas dehydration plants, and also at custody transfer meters to check gas humidity for compliance with the process specifications.

COMPETITIVE ADVANTAGES /• Its cost is 1.5 lower than that of similar foreign devices.• Insensible to contamination of the hygrometer optic components and gas mixture.• High sensitivity and selectivity ensures accurate detection of water vapours against other gas mixture components.

ESSENCE OF INNOVATION /• With the aid of a laser, a contact-free moisture content measuring technique is implemented.• The laser spectroscopic technology provides stable and precise measurement of humidity of a gas stream with high content of various hydrocarbons and process admixtures.• The hygrometer comprises sampling system, optical cell,and electronic unit. In the optical cell, laser radiation at certain wavelength passes through the tested medium and is partially absorbed by water vapours.

MARKET POTENTIAL /• Sales market is $25mln, with the instrument cost of $25,000.• Approximately 600 instruments are planned to be sold to gas production and transportation companies till 2020.• In all segments of CIS market including gas industry, sales of approximately 1,000 GALAN laser gas analysers is planned.

GL-02 LASER HYGROMETER

GALAN

CONTACTS /Sarov +7 (83130) 75353

+7 (920) 028 40 36

[email protected]

CURRENT STATUS /• The hygrometer pilot sample has been developed.• Error of the dew point measurements in the range from -55 to +20°C is ±1°C.• Production test of the hygrometer was conducted at a state district power plantin July, 2015.• A pilot batch is planned for production.• The RF patent for utility model has been obtained.• In future, R&D on expansion of range of measured gases with CH4, O2, H2S, NH3 is planned, as well as the creation of a multi-channel gas analyser.

TEAM /VALERY BOIKOVCEO, leading expert in marketing.OLEG VYSKUBENKODirector of Science, Doctor of Science degree.IVAN MOROZOVleading specialist, PhD in Physical and Mathematical Sciences.STANISLAV YEZHOVleading designer of electronic hardware package.YURY ANIKEYEVleading software designer.

GL-02 hygrometer general view

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NEW GENERATION OF INSTRUMENTS FOR FIELD GEOPHYSICAL MEASUREMENTS

PRODUCT /• Group of field instruments intended for measuring of various physical fields (radiation, magnetic, seismic etc.), including simultaneous measuring of several fields, with a wide range of service capabilities and based upon the developed unique single instrument platform.Applications:• field geological exploration and ecology;• monitoring of geotechnical systems.

COMPETITIVE ADVANTAGES /• Enhanced performance with preserved traditional metrological patterns allows 1.5–2 times increase of field measurements efficiency.• A set of interfaces for data communication and interaction with operator: global navigation, wireless Internet, voice activation.• United maintenance based upon the instrument platform.• Low price as compared to the analogues.

ESSENCE OF INNOVATION / The project’s product innovation is ensured by the use of single instrument platform. The platform was created to develop the different-purpose instruments intended for work within a single industry field. The methodical premise is a common pattern of operator’s actions and a single set of service functions.

MARKET POTENTIAL /• The global market of field radiometers, spectroradiometers, magnetometers amounts to $11-13mln, according to expert evaluations.• Target segment: 4–5% of the marketin monetary terms, 9–11% of the market in physical terms.

CURRENT STATUS /• The prototype instrument, Flagman Gamma field radiometer, has been created (launched in the market in 2013); on its base, main engineering solutions for the whole group of instruments have been checked and confirmed.• The following works are being conducted on creation of prototype instruments: elaboration of engineering solutions, creation of multi-purpose and dedicated modules.

TEAM /VIKTOR DENISOVDoctor of Engineering, Co-founder and CEO.ANDREY RADILOVDeputy CEO for R&D, one of the authors of new generation instruments’ concept.ALEXANDER SUKHIKHChief Design Engineer, managed the development of the instrument pilot models.ALEXANDER TITOVDeputy CEO for Finance and Investments.

GEOMASH ENGINEERING

CONTACTS /St. Petersburg

+7 (911) 982 39 09

[email protected]

www.flagman-geo.ru

The prototype instrument, Flagman Gamma field radiometer (during operation)

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PRODUCT /• Comprehensive automated process solutions of industrial product dimensional testing on the basis of proprietary software.• Dimensional testing systems.• Servicing and maintenance of dimensional testing systems. Applications:areas of cutting and recovery of pipe threads, quick-release couplings, complex internal surfaces of hydraulic fixtures.

COMPETITIVE ADVANTAGES /• Laser sensor automatic measuring of couplings in accordance with regulatory documentation.• The unique laser scanner provides measuring of couplings with diameters starting from 73 mm.• Multiple-fold (8–10 times) reduction of operator’s labour intensity.• Possibility to measure parameters of complicated (“premium”) joints.• Easy update of the product range.• Integration into the process line.• Automatic collection of error statistics, time; generation of reports.

ESSENCE OF INNOVATION / The technology combines the cutting-edge laser measuring techniques, coordinate measuring stations, and unique software algorithms with possibility of on-line automatic interpretation of thread scanning data.

MARKET POTENTIAL /• The market of geometry inspection systems amounts to $2bn. Target segment is 5–10% of the market in monetary terms.• Key segments: dimensional inspection of geometrically complicated parts, inspection directly at the production line.

CURRENT STATUS /• The system prototype has been created and tested.• Positive testing results have been obtained from potential customers, operability of the technology has been confirmed.

DEVELOPMENT AND IMPLEMENTATION OF DIMENSIONAL CHECK SYSTEMS FOR GEOMETRICALLY COMPLICATED PARTS

GEOMERA

CONTACTS /Yekaterinburg +7 (343) 382 52 03

+7 (912) 614 64 10

[email protected]

www.kim96.ru

• 1 patent of the RF has been obtained, and ЗСЕ application has been filed.• Intense marketing among the customers.

TEAM /DMITRY LAVRINOVFounder and CEO.SERGEY VOROZHEVleading programmer, 5-year experience in development of applications in C++.ALEXANDER BUDNIKdesign engineer. Scientific and practical experience of development of applications for CNC systems.SERGEY POKAZANIYEVimplementation engineer. 5-year experience in sales and implementation of measuring equipment.

The system of automatic dimensional inspection of oilfield tubular coupling threads

Laser trigonometrical scanning of a three-dimensional geometry map of a tested part

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PORTABLE CURRENT SOURCES ON FUEL CELLS

PRODUCT /Portable current sources for charging portable equipment consist of a replaceable cartridge with activated aluminium and a charging device with fuel cell battery.

COMPETITIVE ADVANTAGES /• Environmentally friendly storage and operation method: the required amount of hydrogen is produced at the moment of its consumption, the initial reagents and reaction products (aluminium hydroxides) are safe for human health.• In case of power absence, starting from the second or third charging procedure, the cost of power from designed power sources becomes lower than the cost of power from lithium-ion batteries.

ESSENCE OF INNOVATION / Portable current sources are based on aluminium-water hydrogen generators and hydrogen-air fuel cells. The cartridge includes activated aluminium and water, mixed when the cartridge is inserted into the device, forming aluminium oxide and hydrogen, which pass through a proton exchange membrane, and create a current to charge electronic devices.

MARKET POTENTIAL / According to the forecasts, the market of all portable charging devices will reach $34bn by 2016. The world market of portable charging devices on fuel cells will reach about 9 mln. pcs. by 2016, i.е. it will achieve 1% penetration level with regard of global sales of smartphones.

CURRENT STATUS /• Laboratory models (2-5 W) have been manufactured and tested.• Their design was developed and the models were fabricated.• The device prototype (5 W) was produced.• Various components were purchased for testing in operating device prior to pilot batch startup.• Crowdfunding campaign is being prepared.

HANDYPOWER

CONTACTS /Moscow

Design model

Laboratory sample

Prototype relevant model

+7 (915) 492 08 43

[email protected]

http://community.sk.ru/net/1120190/

TEAM /RINAT NAFIKOVCEO.YEVGENY SHKOLNIKOVResearch Director. Since 2006 he managed over 30 projects, including the international ones. The projects were carried out in the Joint Institute for High Temperatures of the RAS in the field of aluminium-hydrogen power sector.

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DEVELOPMENT AND PRODUCTION OF ZINC-SILICATE CORROSION-PREVENTINGCOMPOUND ZINOFERR®

PRODUCT /Zinoferr® compound is a zinc-silicate corrosion-preventing compound.Applications:reliable long-term protection of various steel products against corrosion in the atmosphere, fresh and sea water, petroleum products etc.

COMPETITIVE ADVANTAGES /• Fire and intrinsic safety (-60°C to +600°C).• Comprehensive mechanism of corrosion protection (protection even at damage of the layer).• Environmental friendliness.• Service life is 25–50 years.• Processability (to be applied using common equipment).• Resistance to petroleum products, water, radiation.

ESSENCE OF INNOVATION / Obtaining of high-module sustainable and stable liquid glass allows to use it as binder for Zinoferr two-component zinc-containing coating with high performance characteristics.

MARKET POTENTIAL /• Global market of protective coatings amounts to $1bn.• Target segment: 5–7% of the market in monetary terms.• Key segments: waste treatment with extraction of commercial radionuclides (Am-241), refining, production and processing of rare and precious metals.

CURRENT STATUS /• Production with capacity of 500 t/year has been established.• All required certificates and findings of many research laboratories have been obtained.• 5 RF patents have been obtained.• Over 30 clients.

TEAM /ALEXANDER MIKHAILOVPhD in Economic Sciences, CEO, general management, strategy, finance, over 20 years in business, experience of implementation of two successful projects.ANDREY KUTUZOVCTO, over 8years in industry-specific laboratories, contractual corrosion research for state and commercial organizations.ANTON VOLGINCPO, production, application technique, 10-year experience as shop foreman, Production Manager at chemical enterprises.KONSTANTIN KUZNETSOVCMO, marketing, sales, 10 years of sales of corrosion preventing materials.

INNOVATION. TECHNOLOGIES. PRODUCTION

CONTACTS /Moscow +7 (495) 778 00 14

[email protected]

www.zinoferr.ru

Graphic representation of operation of electrochemi-cal mechanism of corrosion protection of damaged

(non-painted) area of a metallic sample

Electric dehydrator with Zinoferr® coating

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MOBILE MULTI-PURPOSE SCANNER OF RFID TAGS AND BAR CODES

PRODUCT /Mobile multi-purpose scanner providing the possibility to read and write RFID tags of UHF range and bar codes including those applied immediately on the product surface.Applications:automation of manufacturing and logistics processes.

COMPETITIVE ADVANTAGES /• Reading and writing of RFID tags of UHF range. The RFID UHF technology provides the possibility to read at distance of up to 5 m and to quickly change the information of the product in the tag itself.• Possibility of simultaneous reading of several tags.• Reading of optical data carriers – linear and two-dimensional bar codes, including those applied immediately onto the product surface.• Modular design allowing the user to “assemble” the scanner meeting the user needs to the maximum extent.• Wide range of interfaces: BlueTooth, WiFi, USB-OTG, SDCARD.

ESSENCE OF INNOVATION /Within one mobile device of modular design, reading of both optical data carriers (bar codes) and radio frequency ID tags is ensured.

MARKET POTENTIAL /• In the next two years, income from RFID market will amount to approximately $1.2bn with annual growth of 24%.• Key segments: retail trade, logistics, and warehousing systems.

CURRENT STATUS /• The scanner dummy in enclosed casing has been fabricated intended for elaboration of the selected solution including testing as regards electromagnetic compatibility of the components, thermal conditions, energy consumption, and user interface.• The patent for invention has been obtained.

TEAM /SERGEY KARPOVPhD in Engineering Sciences, Co-founder and CEO.ALEXEY BALUKHTODoctor of Engineering, Research Manager.ALEXANDER MUDRETSOV Head of software development department.ROMAN PARAMONOVChief Design Engineer.VASILY SECHENYKHLeading Design Engineer.

INTELCOM ID

CONTACTS /Moscow Region

Mytishchi

+7 (495) 515 52 91

+7 (495) 662 38 77

Fax: +7 (495) 662 38 78

[email protected]

www.intelcom.ru

Multi-purpose scanner. 3D model

Optical and RFID tags.

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DEVELOPMENT OF “RATIOPLATFORM” INSTRUMENT TO DETECT FOREIGN AND POTENTIALLY HAZARDOUS INCLUSIONS IN FOOTWEAR

PRODUCT /The instrument to reveal potentially hazardous inserts in footwear.Applications:• airports, passenger stations, subway;• places of mass gathering;• public institutions, enterprises;• facilities of power-wielding agencies;• strategic and dedicated facilities.

COMPETITIVE ADVANTAGES /• Reduction of examination zone maintenance staff.• Significant reduction of passenger examination time and, consequently, substantial reduction of expenses for additional equipment.

ESSENCE OF INNOVATION / The device operation is based upon use of the multi-zone broadband tomography technology using neural network and optimization algorithms of data processing and solving of reverse task to search for non-uniformities and aberrant areas in the objects being examined.

MARKET POTENTIAL /Market segments:• air safety – $6.7bn;• anti-terrorism safety – $25.2bn;• safeguarding of dedicated facilities – $16.3bn.

CURRENT STATUS /• The pilot sample has been developed, the instrument prototype has been tested in Sheremetyevo airport.• The algorithms of reverse task solving for quasi-static electric field have been developed.• Sensors and measuring circuits of metal detectors optimized for search of suspicious inclusions in footwear and compatible with measuring system of capacitive/electric-field imaging system have been developed.

TEAM /SERGEY KARABYSHEVCEO.ALEXANDER KORZHENEVSKIYDirector of R&D, Chief Designer.MARIANNA SKRAGANDirector for Sales and Investments.

INTELLIGENT SCANNING SYSTEMS

CONTACTS /Moscow +7 (499) 579 82 88

[email protected]

www.intelscan.net

Прибор для выявления потенциально опасных вложений в обуви «Ратиопластина»

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PRODUCT /Compact-size personal dosimeters-radiometers and main modules of these such as silicone detector, reading electronics for modular smartphones with integration level in the form of dedicated integrated circuit, and also for standard smartphones, smart wrist watch and tablets. Applications: assurance of safety of consumed food and liquid, obtaining of data concerning radiation situation of the present location, informing about radiation risks, tracking of irradiation dose being received, search for maximum safe escape route from contaminated ground.

COMPETITIVE ADVANTAGES /• Range of energies of radiation being measured: 60 keV – 10 MeV, range of dose intensity being measured:0.02–20,000 µSv.• Possibility of integration into a mobile device in the form of chip and silicone detector.• Measuring device with i2c interface, and household device with Bluetooth Low Energy communication interface.• Cross-platform solution for world major mobile operating systems including Windows/Linux/ MacOS.

ESSENCE OF INNOVATION /There has been developed the portable compact-size dosimeter-radiometer pluggable to a user smartphone with integration into global information network of radiation situation monitoring.

MARKET POTENTIAL /• Global market of air transport exceeds 1 bn. persons a year.• Four target groups of final consumersare under consideration: Family, Tourists, Professionals, and Teenagers.• The main motive to buy the radiometer is anxiety about own health and health of relatives, feeling of safety.

DO-RA – DOSIMETER-RADIOMETER FOR SMARTPHONES AND COMPUTERS: SMART TECHNOLOGIES FOR ENVIRONMENT MONITORING

INTERSOFT EURASIA

CONTACTS /Moscow +7 (495) 781 00 07

[email protected]

www.intersofteurasia.ru

CURRENT STATUS /• The whole family of devices has been developed – from portable dosimeter-radiometer to small chips.• The production partner is being actively searched for.• Over 50 intangible assets (inventions, utility models, industrial prototypes, trademarks, exclusive rights) have been obtained in Russia, China, USA, Japan, Belarus, Ukraine.• The patents are at the stage of obtaining by the end of 2015 in South Korea, India, EU, EurAsEC countries.

TEAM /VLADIMIR YELINPhD in Engineering Sciences, Chairman of Board of Directors, manager and designer of DO-RA project.ALEXEY KIBKALOPhD in Physical and Mathematical Sciences, manager of DO-RA program developments.

1. DO-RA.Uni device model

1)

2. DO-RA.Ultra-1device prototype with BLE protocol

2)

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THE WORLD'S FIRST 3D HYDROSENSOR (HYDROSENSOR SORPTION CABLE) – THE BASIS OF EARLY WARNING SYSTEMS FOR WATER LEAKS AND VAPOUR BREAKTHROUGH

PRODUCT /High-sensitive 3D hydrosensor cable. Response threshold on any portion of the length from 0.05 ml of water in the form of liquid or vapour.

COMPETITIVE ADVANTAGES /• Water leaks and condensation can be detected for the first time on any surfaceincluding on ceilings and walls, i. e. 3D-indication area.• For the first time, steam leaks can be detected by cable over its entire length.• Due to the multiple reducing the time of leakage detection, the damage caused by water leaks is decreased drastically. For example, 60 seconds – the proposed hydrosensor cable; 3000 seconds – the best conventional sensor.• All components and materials used in the cable are manufactured in Russia.

ESSENCE OF INNOVATION /The design of the cable contains porous sorption shell. Its surface easily adsorbs water molecules and forms numerous conductive microchannels from inside, eventually closing the surface of electrodes shells. It "works" in any orientation of the cable. Shells are made of specifically formulated polymer composites (flexible, corrosion-resistant, electrically conductive). One cable provides hundreds of checkpoints.

MARKET POTENTIAL /• Market volume is about $700 mln. • Target segment: 20-25% of the market, in monetary terms, 10-15% of the market. Key segments: nuclear power plants, heat electric generation plants, housing and utilities (vapour leaks – for the first time), sea and river transport (3D monitoring of water leaks – for the first time), the Federal State Reserve Agency storage systems (moisture sensors – for the first time

STAGE IN PROGRESS/• 500 m of fully functional prototype – hydrosensor cable are designed and manufactured in laboratory. • Two options of prototypes of early detection system for water and vapour leaks (stationary and mobile GSM-systems) were successfully tested.• 2 RF patents for invention were obtained.

TEAM /SAKUNENKO YURI Ph.D. in Engineering, Co-founder, the patent holder for the project, CEO, 45 years of working experience on special polymer composites.KONDRATENKO VLADIMIR Sc.D in Engineering, Full frofessor, Co-founder, the patent holder for the project, research project manager, 40 years of working experience on creating the materials and components for electronic equipment. ROGOV ALEXANDER Project manager, 23 years of working experience in application developments support.LU HUNG-TU Ph.D., President of Nanoplus Technology Сompany (FOXCONN Group), Taiwan, promotion of the project in the markets of Taiwan and China.

INZHIMATIK (ENGINEERING MATERIALS AND COMPONENTS)

CONTACTS /Moscow

+7 (916) 659-13-19

+7 (985)923-26-63

[email protected]

[email protected]

Conventional (2D) sensors

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CENTRIFUGAL MACHINES FOR HIGH-INTENSITY CRUSHING AND MIXING – ISM

PRODUCT /• Centrifugal millsand mixers being created based upon high-intensity crushing (ISM) technology.• Fine and ultradispersed powders. Applications:producing of fine and ultradispersed powders at commercial scale using techniques of mechanical crushing, mechanochemical synthesis (including powders with special properties, composites, construction materials, ores concentration).

COMPETITIVE ADVANTAGES / Reduction of fine milling prime cost with high output and short crushing time. As compared to ball mills:• compact size (up to 10 times reduction of mills’ material consumption and prime cost);• cost efficiency (reduction of energy consumption up to 30%);• performance (up to 8–20 times reduction of milling time depending on the material);• effectiveness (reduction of over-crushing by 80%).

ESSENCE OF INNOVATION / The ISM technology implements comprehensively the most effective processes of material treatment existing in ball, centrifugal, and percussion-ball mills. The negative phenomena in these types of mills are either substantially reduced or eliminated. This allows production of fine powders at commercial scale.

MARKET POTENTIAL / Global market of crushing equipment amounts to $4.4bn, the RF market - $88mln. Target segments are:• equipment for fine and extra-fine crushing: 11–20% of the market; growth pace is 12.8% per year;• production of fine and ultradispersed ceramic, composite polymer, and metallic powders.

CURRENT STATUS /• The experimental industrial prototype of intermittent mills has been fabricated.• Patents for the method, design have been obtained; 10 patent applications filed.• 28 pieces of equipment have been sold.• Development works on creation of assortment range of mills are being conducted.

TEAM /IVAN AFANASIYEVCEOmanager, Project Manager, over 10 years of managing experience.ALEXEY AFANASIYEVPhD in Engineering Sciences, author of the technology. 68 scientific and teaching papers, implementation of 5 developments in the field of material crushing and mixing, 18 inventions.SERGEY SOSEDOVPhD in Engineering Sciences, co-investor, expert in the field of designing of industrial facilities and upgrading of chemical production facilities, manager of design and construction company.

ISM TECHNOLOGIES

CONTACTS /Moscow +7 (915) 424 64 94

[email protected]

Experimental industrial prototype

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TECHNOLOGY OF SHOES’ SOLES CLEANING FROM CONTAMINATIONS INCLUDING RADIOACTIVE, CHEMICAL, AND MICROBIOLOGICAL ONES

PRODUCT /The device for quick high-efficient cleaning of footwear from contaminations using jets of compressed air with detergents and disinfectants. The contaminants are removed safely by vacuum and utilized. The device can be used in enterprises, emergency zones, households, medical institutions, at transport, in public places etc.

COMPETITIVE ADVANTAGES /• Processing of any amount of any contaminations (liquid, solid, viscous).• Possibility of handling of large streams of people.• Utilization of processed contaminations: possibility to work with toxic and radioactive contaminations.• Cleaning of deep sole protector.• Possibility to wash, disinfect, and dry soles.

ESSENCE OF INNOVATION / Contaminations are processed by jets of compressed air (optionally with detergent and disinfecting additives) and decontamination products are removed by vacuum. The design has been developed ensuring high efficiency, reliability, and life.

MARKET POTENTIAL /The RF market is estimated to be $1.5bn per year.Key segments:• industrial and special use;• use in public places;• private use;• service and consumables.

CURRENT STATUS /• The device concept has been developed, 3D model has been made in CAD.• Gas dynamics has been simulated at cell operation.• The laboratory prototypes of device assemblies have been fabricated and are being tested now.• Application for the Russian patent has been filed, PCT application is under

preparation.• Advisory work with potential customers and investors is being conducted.

TEAM /ALEXEY LEVCHENKOPhD in Physical and Mathematical Sciences, Сo-founder and Project Manager.OLEG LEVCHENKOChief Technical Officer, about 30 years of experience in the field of dosimetry, designing of decontamination stations, sluices, biological protection, clean rooms.DMITRY BOLTYANSKIYDirector for Commerce.

JETFIELD

CONTACTS /Moscow +7 (916) 619 61 86

[email protected]

The device general view

3D gas dynamic model of cleaner cell operation

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CODING-APERTURE-BASED RAMANSPECTROMETER FORIDENTIFICATION OF SUBSTANCES

PRODUCT /• Raman spectrometer, laser wave length is 785 nm.• Vast library of pre-installed substances: 3,600+ medicaments, 200+ addictive substances.• Full-scale mobile laboratory. Scope of application: identification of substances and mixtures thereof using Raman spectroscopy. Network registration and processing of measurement results.

COMPETITIVE ADVANTAGES /• Low cost of the device.• Comfortable interface of the library user extension.• Determination of percentage composition of multi-component mixtures. Adequate independence of measuring and processing of results.• Enclosed version of the measuring chamber provides user protection against laser radiation.

ESSENCE OF INNOVATION / Use of coding aperture performing signal amplitude modulation as diffraction opening in the spectrometer optic path, and subsequent digital processing of 2D spectral picture is the unique patented approach.

MARKET POTENTIAL / The market of portable Raman spectrometers amounts to approximately $100mln. Substantial expansion of the market niche of such class devices upon launching in the market of the instrument, the price of which does not exceed $10,000. Key segments are:• market of public safety: counter-narcoticactions.• pharmaceutics: revealing of piracy medicaments and precursors. CURRENT STATUS /• The instrument implementing the operation principle has been launched by Centice Corporation in the USA market. Base of potential clients has been shaped.• Basic technology has been transferred

from USA to Russia, and soft-landed in Skolkovo.• Ideas for development of the new-generation device of miniature sizeand with price of about $5,000 have been elaborated.

TEAM /DMITRY KRAVTSOVCo-founder and CEO.SERGEY NIKITINCTO, over 15-year experience in development of laser systems for science and industry and of methods of substance detection and identification using Raman spectroscopy.ANATOLY KONUKHOVDirector for Business Development, over 8-year experience in technology-intensive business.PRASANT POTULURIPhD, designer of the basic technology of coding aperture in Duke University and Centice Corporation.

KARS TECHNOLOGY (CODING APERTURE FOR RAMAN SPECTROSCOPY)

CONTACTS /Moscow +7 (916) 474 42 05

[email protected]

www.cars-technology.ru

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PULSE LASER WELDING UNIT FOR PRECISION COPPER PARTS

PRODUCT /Laser welding unit for copper parts or parts made from other metals featuring high reflection factor. Applications:electrical engineering, microelectronics, detectors and sensors.

COMPETITIVE ADVANTAGES /• Smaller dimensions of bonding pads made of copper and other metals.• Higher quality characteristics of junctions.• Unique technique of bonding contacts of different thickness. ESSENCE OF INNOVATION / Laser source that generates two types of laser radiation (1064 and 532 nm) and has a patented design which allows for adjusting the parameters of each type of radiation in combination with welding technique.

MARKET POTENTIAL / The expected market share for the unit in microelectronics and electrical engineering industries is about $120bn by 2020. Key segments: MEMS, electric motors and equipment, medical devices.

CURRENT STATUS /• There was a prototype of a laser source developed that has unique features which enable combining two types of laser radiation for processing of copper and other metals with high reflection factor.• The patent application has been filed.• There was a research plan developed to refine the parameters of laser welding together with Arteos GmbH.

TEAM /ALEXANDER KAZAKOVCo-founder and CEO. Over the last 10 years of experience in laser engineering, there were about 1,000 laser devices supplied for research and industrial purposes.VLADISLAV OFERChief Process Engineer. Key competence in laser welding of metals, over 20 years experience as a chief specialist and head of an independent engineering company engaged in laser welding in the global market.ALEKSANDR LYASHENKOResearch Manager, scientific project management in SCHWABE.

LAGRAN NAMED AFTER E.M. SHVOM

CONTACTS /Moscow

+7 (499) 956 39 42

[email protected]

www.hypertech-lasers.de

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PRODUCT /• Multiplex laser artificial arm based on femtosecond laser for microsurgical manipulations with cells.• Technique of non-invasive reconstruction of early mammal embryos for further obtaining pure lines of genetically modified animals using f/s laser microsurgery.Applications: biotechnology, medicine, pharmaceutics and agriculture:• obtaining genetically modified animals;• EF;• fluorescent spectroscopy.

COMPETITIVE ADVANTAGES /• Efficiency of operations requiring micromanipulations growsdue to the non-invasive character and optimally selected radiation parameters.• The system can be integrated with any type of microscope.• No-touch manipulation technique and corresponding interactive control system secure simplicity of use and do not require preliminary training.

ESSENSE OF INNOVATION / Perforation of cell membranes, as well as manipulation on the cell merging and transportation using laser radiation.

MARKET POTENTIAL / World market of auxiliary reproduction technologies will reach 21 bn. USD by 2020.Key segments: EF clinics and perinatal centres, animal facilities.

CURRENT STATUS /• An experimental set of f/s combines with microscopy / spectroscopy with nanometer microscopy.• A prototype of multi-beam holographic optical manipulator was manufactured, its capabilities for the operation with single submicrosize objects were demonstrated on examples.• A method of the bacteria cell membrane optoperforation with the use of nonlinear optical effects in the modes of the short-range field of nanosize gold plasmonic particles was offered.

LASER TECHNIQUES FOR NON-INVASIVE MICROSURGERY AND MAMMALS CLONING

LASER NANOSURGERY

CONTACTS /Moscow

+7 (499) 271 71 75

[email protected]

www.technospark.ru

• Using the f/s microsurgery method, pure lines of genetically modified mice were obtained.

TEAM /VIKTOR NADTOCHENKOCEO, Doctor of Chemical Sciences, PhD in Physics and Mathematics, ICP RAS chief scientist, Head of laboratory at IPCP RAS.ALEXANDER KRIVOKHARCHENKOadvisor on laser techniques in embryology, researcher in Max Delbrück Centre of molecular medicine (Berlin, Germany).ALEXANDER ZALESSKYengineer, three-time winner of the competition of young scientists in ICP RAS and the winner of the N.N. Semyonov reward; ICP RAS research engineer.

Non-invasive reconstruction technique for early embryos of mammals.

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PRODUCT /Laboratory prototype of a compact highly stale femtosecond laser with the parameters ensuring its wide application in medicine and technology. Applications:• refraction surgery;• other top-of-the-line directions of ophthalmology laser surgery (treatment of glaucoma, cataract, etc.);• dentistry.

COMPETITIVE ADVANTAGES /• Better technical parameters (shorter pulses, higher energyin the radiation pulse).• Significantly higher operation stability.• Affordable cost (up to 1.5 times cheaper than the existing analogues) due to the refusal to use saturable semiconductor reflectors.

ESSENCE OF INNOVATION /• Totally fibre extra-short pulse laser without elements requiring manual tuning.• No unreliable or expensive elements in the scheme (such as saturable semiconductor reflectors).• Using the self-start and synchronization mode of modulators based on grapheneand carbon nanotubes.

MARKET POTENTIAL / Can be integrated with the new generation facilities for refraction surgery. Confirmed demand is 15–20 lasers a year starting from 2016. Target cost is $25,000-33,000. Target share on the Russian market is 40% by 2018.

COMPACT HIGHLY STABLE FEMTOSECOND LASER

LASERSPARK

CONTACTS /Moscow (Troitsk)

+7 (925) 006 15 65

[email protected]

http://laserspark.ru/

CURRENT STATUS /• Fiber femtosecond generator with the following target parameters was developed:- pulse radiation energy >10 nJ;- laser pulse repetition rate up to 1 MHz;- availability of laser pulse compression at the outlet of the optical scheme up to 250 fs;- stability of energy, pulse repetition frequency and duration not worse than ±5%.• The patent search was performed and the application for Russian patent was submitted.

TEAM /SERGEY VARTAPETOVScientific manager, RAS GPI PIC Head, managed the investment project on the development and organization of batch production of ophthalmological excimer lasers.KONSTANTIN POPOVCEO, director of “Russian Technoparks”. Managing Company, founder of technological startups with the experience of innovation project management.IGOR VESELOVSKYHead of research group, RAS GPI PIC, Goddard Space Flight Center (GSFC), NASA, Manager of the project on the creation of aircraft location lidar.

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PRODUCT /Mobile facility for surgery field irradiation with electron beam after carcinectomy. Applications:• surgical interventions at practically all types of cancer;• non-invasive treatment of benign and malignant tumours with shallow localization (up to 5 mm);• performing all these manipulationsin standard operating rooms without radiation protection.

COMPETITIVE ADVANTAGES /using rare-earth magnets and split-type microtron secure the patient’s safety in contrast to competitive solutions with linear accelerators and electric magnets with frustrating statistics of deadly irradiation due to shadow currents and improperly tuned magnets.

ESSENSE OF INNOVATION / The research started in the USSR and successfully applied not so long ago in inspection facilities, enable the creation of compact and reliable accelerators practically non-copyable by foreign competitors due to different scientific approach and presence of unique multi-beam klystrons produced in Russia only.

MARKET POTENTIAL / $5.4bn. 5,400 clinics performing carcinectomy and already possessing radiation therapy facilities. Three times wider market of commercial clinics that perform mammectomy and skin disease treatment. CURRENT STATUS /• The prototype of the accelerating structure is developed.• Ready-made accelerators based on the analogous accelerators are developed and improved.• Two patents (the domestic patent for rare-earth magnets and Spanish patent for a medical accelerator based on split-type microtron) underlie the project.

DEVELOPMENT AND ESTABLISHMENT OF THE PRODUCTION OF INTRAOPERATIONAL IRRADIATION FACILITY

LIMF

CONTACTS /Moscow +7 (495) 230 10 33

[email protected]

TEAM /V. ISHVEDUNOVthe project started with his report on the intraoperative radiation therapy (IORT) in 2001.Skobeltsyn Institute of Nuclear Physics (SINP), Moscow State University, professor.Yu. AKUBYSHINSINP employee, Head of the IORT project in the Polytechnic University of Catalonia.A. CHERNYAEVMSU Provost, founder of the Medical physics subdepartment.K. SHADRINentrepreneur experienced in the launch of production and international activity.

Технологии неинвазивной реконструкции ранних эмбрионов млекопитающих

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PRODUCT /Low-power lithium-ion batteries with flexible anode and cathode and hard-polymer electrolyte. Applications: power sources for electrical drives, communication tools, low-power portable electronic devices, mobile telephones, drones.

COMPETITIVE ADVANTAGES /• The accumulator capacity increased by 15% comparing to the existing devices.• Flexible accumulator can be used for the production of thin-film electronic devices.• Increased accumulator durability. Number of charge-discharge cycles without loss of capacity is 10–15 times higher.• Production of the accumulator components, cathode and anode mass is easily scalable with the quality preservation.

ESSENCE OF INNOVATION /The process of refinement and dispersion stabilisation of active component in the organic matrix forming a gel structure is at the base of the production process of the anode and cathode mass.

MARKET POTENTIAL /• Target market of electrical drives, electric models and civil UAV is $2,500.Total market of chemical current sources is $30bn.• Target segment of the target market: up to 100% of the market. Target segment of the total market - up to 5%.• Key segments: electrical drives, civil air drones, electrical models.

DEVELOPMENT OF A TECHNOLOGY FOR INDUSTRIAL-SCALE PRODUCTION OF HIGH-CAPACITY LITHIUM-ION BATTERIES FOR PORTABLE ELECTRONICS

LITHIUM NANOTECHNOLOGY FOR POWER GENERATION

CONTACTS /Moscow

+7 (925) 083 74 34

[email protected]

CURRENT STATUS /• Laboratory R&D.• Prototypes of cathode and anode masses are obtained. Resource testing preparation is on.• Intense marketing among the consumers.

TEAM /VALERY DEGTYAREVCo-founder and CEO. Experienced in launching production capacities, development of resource accounting distribution systems.VITALY GOVOROVPhD in Chemistry, associated professor, scientific research project manager, completed projects on obtaining various pigment substances based on non-organic oxides for polymer systems.

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AUTOMATED DOSIMETRY SYSTEM “GREY” FOR INDUSTRY, ECOLOGY AND MEDICINE

PRODUCT /Multipurpose automated dosimetry system with a set of dosimeters for metering low and high doses of ionising radiation. Applications: atomic industry, research organizations, enterprises, using radiation technologies in their production processes, nuclear medicine centres.

COMPETITIVE ADVANTAGES /• X-ray and γ-radiation dose metering range 10-8-105 Gy.• Multiple (not less than 100 times) use of one high-dose detector in the irradiation-dose reading cycles.• Increase of the radiation proofness by 1–2 orders of magnitude.• Radiation control in various-type mixed-radiation fields: (γ + β), (γ + neutrons).

ESSENCE OF INNOVATION /• The material of high-dose detectors are nano-structure luminescent ceramic composites with high radiation proofness.• When the dosimetry information is read out the method of photo-thermoluminescence is used to allow multiple use of detectors.

MARKET POTENTIAL / Market of high-dose systems is 31mln. Target segment: Asia and Near East: $2.5mln (25% of the market), Russia: $1mln (100% of the market), Europe and USA: $0.5mln (5% of the market). Key segments: radiation cross-linking of polymers (overall production cost $100bn), irradiation of food products ($2bn), nuclear medicine, atomic industry. Trends: market of radiation technologies increases by 50% each year. Growth of demand 10% a year in high-dose equipment.

CURRENT STATUS /• R&D performed.• Practically all technical parameters of the system were achieved on the experimental facility.• 5 Russian patents for the invention are obtained.

TEAM /VSEVOLOD KORTOVDoctor of Technical Sciences, Professor, Meritorious Scientist of Russia, RANS academician, Project Manager. 30 years of experience in the dosimetry devices development and distribution.SERGEY ZVONAREVPhD in Physics and Mathematics, associated professor, Co-founder and director.SERGEY NIKIFOROVPhD in Physics and Mathematics, associated professor.

LUMINESCENT DOSIMETRY

CONTACTS /Yekaterinburg

+7 (343) 375 45 94

+7 (343) 375 44 15

[email protected]

Prototype of a dosimetry system and raster electron microscopy of the detector material images.

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PRODUCT /Organosilicon nanostructured luminophores (OSNL).Using OSNL in ionising radiation detectors makes possible the improvement of the major characteristics of the detectors to the level which significantly outmatches the world data.

COMPETITIVE ADVANTAGES /• High light yield, up to 120% as compared with the standard light yield (anthracene crystal).• High performance: flash duration 1.7–1.8 ns.• Various types of detectors with various spectral sensitivity can be used.• Consumer properties of the detectors: sensitivity increase by 50%; energy resolution increase by 10%; double increase of serviceability duration; material consumption reduced by 30%.

ESSENCE OF INNOVATION /• A new type of luminophores – OSNL has been developed for the first time in the world, we offer to use it in plastic scintillators.• In OSNL the activator and the spectrum shifter are joined into a single nanostructure, which results in practically 100% energy transport from the activator to the spectrum shifter; due to this, two main parameters of plastic scintillators are improved: light yield is increasedand the fluorescence time is decreased.

MARKET POTENTIAL / The market volume of luminophores for scintillator detectors will be $1.2bn in 2016.

SILICONE CERAMIC NANOSTRUCTURED LUMINOPHORES FOR IONISING RADIATION DETECTORS

LUMINESCENT INNOVATIVE TECHNIQUES

CONTACTS /Moscow

+7 (916) 849 43 86

[email protected]

www.luminnotech.com

CURRENT STATUS /• A wide range of OSNL compositions with various absorption (160–400 nm)and luminescence (370–700 nm) ranges has been developed.• OSNL laboratory samples were tested, the competitive advantages were proved.• Samples of scintillators with OSNL and with light yield of 90-120%, flash duration1.7-1.8 ns and high transparency (500-600 cm) were obtained.• First lots of OSNL compositions were sold to large foreign consumers.

TEAM /SERGEY PONOMARENKOScientific Director, corresponding member of RAS, Doctor of Chemical Sciences, head of laboratory of functional materials for organic electronics and photonics, ISPM RAS.OLEG BORSHCHEVCEO, PhD in Chemistry, ISPM RAS Senior research assistant.NIKOLAY SURINLeading specialist, PhD in Physics and Mathematics, ISPM RAS leading research assistant.

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PRODUCT /A technology of hot galvanization or aluminium plating of graded and shaped rolled steel by putting it into a chamber with melt. Applications: equipment production for anticorrision treatment of graded and shaped rolled steel for any types of building structures.

COMPETITIVE ADVANTAGES /• 10-times reduction of capital investments into metal for coating (Zn/Al).• 5-times reduction of operation costs on the maintenance of baths with melt.• Improvement of environmental parameters of the production due to the exclusion of oxygen etching treatment from the production cycle.• Possibility to use aluminium as a covering material with high pay-off.• No limits on the maximum length of treated objects.

ESSENSE OF INNOVATION / The proposed technology uses the horizontal feeding method when an object passes through the metallization chamber under the surface of the melt, while the liquid metal is prevented from leakage by means of electromagnetic field created by magnetohydrodynamic devices.

MARKET POTENTIAL /• The hot galvanization market volume is $10bn. The number of galvanization plants exceeds 2,500.• Key segments: for technology sale: manufacturers of equipment for hot galvanization; for equipment: companies providing hot galvanization services; manufacturers of graded and shaped rolled steel, manufacturers of metal structures.

CURRENT STATUS /• $125,000 of pre-sowing investments are received from various sources (2012–2014).• An alpha-prototype on cold metal is manufactured (2013).• A patent analysis was conducted (2014).• Marketing research was performed.• A series of industrial consultations was conducted.

HORIZONTAL HOT METALLIZATION OF STEEL OBJECTS

MAGIDI

CONTACTS /St. Petersburg

+7 (905) 662 34 10

[email protected]

www.mahydy.com

TEAM /EKATERINA RUNOVAPhD in Biology, Co-founder, CEO.OLEG POSPELOVCo-founder, Technical Director, project R&D coordinator.NIKOLAY ADAMOVICHCo-founder, business-angel, advisor on commercialization processes.VALERY KOROVIEVDoctor of Engineering, professor of the R.E. Alekseev NNTU, project scientific advisor.KATE BERESFORDBeresford & Co, project partner on legal services in the field of intellectual property.

General schematic of the line for hot metallization of steel objects.

Metallization chamber: 1. Bath with melt, 2. Melted Zn (or Al, or alloy), 3. Prepared steel article without coating,

4. Work channel, 5. Magnetohydrodynamic device, 6. Inductance coil winding, 7. Steel article with coat-ing.

DIRECTION OF THE MHD FACILITY FIELD ACTION

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SYSTEM OF HIGH THROUGHPUT SCREENING OF ANAESTHETIC DRUGS

TEAM /PYOTR GORELKINPhD in Physics and Mathematics, Co-founder and CEO.YURY KORCHEVPhD in Biology, professor of biophysics, research project manager, Hirsch index: 36, total citation rate: over 3,500, the inventor of principles of the contemporary ion-conducting scanning microscopy.ALEXANDER EROFEEVPhD in Physics and Mathematics, development director, project coordination, patent work, development of marketing activities, commercialization.ANDREY SHEVCHUKchief engineer, PhD in Biophysics, Medical Physics and Bioengineering, Imperial College, London, UK.

MEDICAL NANOTECHNOLOGIES

CONTACTS /Moscow

+7 (495) 926 37 59

[email protected]

www.nanotomed.com

Live neuron topography image obtained using SIMS method

Mechanical module for neuron processing system by MNT LLC

PRODUCT /System of high throughput screening of anaesthetic drugs. Applications:screening of pharmaceuticals that affect ion channels, particularly anaesthetic agents.

COMPETITIVE ADVANTAGES /• Single cell analysis.• 1,000 times less volume of material to be analyzed.• Dose response curve obtained in less than 1 second.• 100 times reduction in expenses for screening of pharmaceuticals.

ESSENCE OF INNOVATION /The system based on methods of 3D scanning ion-conducting (SIMS), optic and confocal miscroscopy will allow for a fully automated high throughput screening of anaesthetic agents done in several minutes. One conventional Petri dish with neuronal cells is sufficient for all measurements.

MARKET POTENTIAL /• Global pharmaceuticals screening market: $15bn.• Ion modulators screening market: $375mln.• Target segment: 20–30% of the market.• Key segments: development and testing of ion modulators of sensory neurons, development of anaesthetic agents affecting TRPV channels.

CURRENT STATUS /• Laboratory research studies were conducted.• Preliminary results are obtained at the developed experimental unit to minimize project risks.• 3 RF patents and PCT patent license are obtained.• A letter of support from Pfizer was received.

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PRODUCT /Multilayer metalloceramic nanostructured membranes and membrane modules on their basis.

COMPETITIVE ADVANTAGES /• Preserve high mechanical, chemical and corrosion strength, stable at temperatures up to 600°C.• Can be used as electrodes, sizes of pores can be varied by means of applying the 3rd layer.• Lower cost as compared with ceramic membranes.• Antibacterial properties.• Can be used in moving (including vibrational) filtering systems, usage as a catalyst, application of the third zeolite layer.

ESSENSE OF INNOVATION / A multilayer inorganic membrane with the size of pores <0.1 µm basing on the techniques of heavy metal isotope separation. The basics of the technology is a serial application of various materials on a base level, the levels of the materials differ by thickness and power sizes (metal or ceramics layers with thickness up to 1 mm).

MARKET POTENTIAL / Prospective market sectors: liquid waste (including radioactive waste) and sewage water treatment, separation and purification of gases in chemical, nuclear and petroleum industry. Using as electrodes in medical equipment, production equipment for pharmacy products, using for filtration and thickening food industry products. Water purification and demineralization.

DEVELOPMENT OF MULTILAYER METALLOCERAMIC NANOSTRUCTURED MEMBRANES AND MEMBRANE MODULES ON THEIR BASIS

MEMBRANE NANOTECHNOLOGY

CONTACTS /Moscow

+7 (499) 613 05 55

Fax: +7 (499) 613 04 44

[email protected]

www.menatech.ru

CURRENT STATUS / Production and improvement of pilot three-layer membranes for various applications.

TEAM /ALEXEY SVITSOVPhD in Engineering, Prof. of D.I. Mendeleev University of Chemical Technology, scientific management. Field of scientific interests: application of membrane technique in power production, biotechnology, nuclear power industry.VIKTOR NOVIKOV Development of the MCM production technology, patents in the field of nanotechnology of materials, equipment using MCM.

Nanostructured membranes

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DEVELOPMENT OF ELECTRON-BEAM MAGNETRON FACILITY FOR FORMING SURFACE ALLOYS WITH MANAGED COMPOSITIONS

PRODUCT /Equipment for forming wear-resistant surface alloys with managed chemical compositions and 100% adhesion on parts under load in machine building. Applications: hardening particles under load: blades of compressors and gas-turbine motors; machine tools; gears, teeth in reduction gear boxes; elements of transmission and internal combustion engines, etc.

COMPETITIVE ADVANTAGES /• Creation of alloy multilayers with required properties: strengthening layer, damping layer.• Maximum hardness - 1,200 HB. Surface alloy cannot split off due to 100% adhesion.• No need to process the parts before and after modification.• Duration of the hardening cycle is 1–3 hours.• Possibility to modify any steels and impart them any degree of roughness.

ESSENСE OF INNOVATION / The process of creation of new alloys is completed in a single vacuum cycle in two phases (the phases may take turns if necessary): magnetron nanofilm deposition (PVD process) on the treated object and further liquid-phase mixing of deposited nanofilm with base level using the technique of electron-beam mixing (e-beam). Surface layer with predetermined chemical composition becomes fused into the base level and makes with it the integrated whole, the surface alloy. MARKET POTENTIAL /• Market of facilities for the deposition of strengthening thin-film covers comprises - $10bn.• Russian market of the facilities for the deposition of strengthening thin-film covers is $1bn (about 10%).

CURRENT STATUS /• Jointly with the Institute of High Current Electronics, Tomsk Scientific Centre of Siberian Branch of RAS, an industrial sample with various loads was created.• Industrial tests were performed.

TEAM /VLADIMIR VESNINCEO. Enterprise management, coordination of R&D activity, production and product introduction to the market.ALEXEY MARKOVPhD in Physics and Mathematics, head of R&D department. Development and organization of facility production.

MICROFUSION

CONTACTS /Tomsk +7 (3822) 488 575

[email protected]

www.sygma-tomsk.ru

Laboratory sample of the facility for forming surface alloys with managed compositions

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DEVELOPMENT AND IMPLEMENTATION OF MICROCHANNEL PLATE PRODUCTION TECHNOLOGY

PRODUCT /A microchannel plate is an amplifier of weak radiation fluxes in the wave range of 102 – 10-6 nm, it is a glass disc with thickness l=0.2÷1.0 mm consisting of millions of channel electronic multipliers laid parallel and at small angle to the disc axis. Applications:• production of electronic-optical transformers for night-vision devices or visualization of images obtained in the nearest IR-range or short-wave spectrum (from ultraviolet to neutron radiation);• detectors (transformers, amplifiers, counters, etc.) of various events and high-speed processes in physico-analytical instruments.

COMPETITIVE ADVANTAGES /• Present limitations of free circulation of such products on global market and on shipments to Russia.• Constant expansion of the produced products nomenclature.• Product quality, stability of shipments.• Cost parameters.

ESSENCE OF INNOVATION /This technology enables production of microchannel plates for night-vision devices without “cell structure” defect on the electronic image of the object.Increased resolution of the plate.

MARKET POTENTIAL / Cost of one multichannel plate depending on the purpose and design varies from $150 to $17,000. Target segment: 32–45% of Russian market with further emergence on the markets of India, Vietnam and Western Europe. Key segments: microchannel plate for night-vision devices.

CURRENT STATUS /• At the end of 2014, the production line for microchannel plates was launchedthe plates will be used in the 2–3 generation electronic-optical transformers.• Reaching the project capacityof 4,000 plates per month is planned for the first half of 2016.• Positive test results were obtained from major Russian manufacturers of electronic-optical transformers.

TEAM /VLADIMIR NAUMCHIK PhD in Physics and Mathematics, co-founder and CEO.EVGENY MAKAROV 32 years of experience in the field of organization of microchannel plate production, Chief Engineer of the project.

MICROCHANNEL SYSTEMS

CONTACTS /Gatchina,

Leningrad region

+7 (812) 327 99 64

[email protected]

www.mcptrade.ru

Прототип дозиметрической системы и РЭМ изображения материала детекторов

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PRODUCT /Advanced technology: epitaxy of narrow-band-gap semiconductors based on GaSb-InAs solid solutions and using them as the basis for development of unique components and devices for mid-IR range (1.6–4.6 µm) optic spectroscopy purposes:• light emitting and photo diodes;• optical cells;• light emitting diode matrices;• sensor modules.

APPLICATION AREA /• Process monitoring (monitoring of paper humidity, plastic thickness, measuring of water content in oil and oil products etc.).• Medical diagnostics (monitoring of content of СО2, acetone in expiratory air, determining of dextrose content in blood and urine).• Environmental monitoring (monitoring of content of СО2, exhaust gases in the atmosphere; monitoring of methane and propane leaks; monitoring of hydrocarbons content in water).• Food industry and agriculture (control of food products composition (content of water, fats, proteins etc.), determination of moisture in grain, silage and feed stuff).

COMPETITIVE ADVANTAGES /• Low energy consumption.• Long service life with no frequent recalibration required.• Fast response time.• Compact size.

MARKET POTENTIAL / The target market is the global market of sensors for analysis of gas, liquid and solid media. The volume of global market of chemical sensors (according to data of Global Industry Analysts, Inc., “Chemical Sensors”) constitutes ~$17bn.The company’s share may reach up to 10%.

DEVELOPMENT OF OPTICAL MICROSENSORS ON THE BASIS OF MID-INFRARED LIGHT EMITTING DIODE MATRIXES FOR CHECKING THE CHEMICAL ANALYSIS OF GAS, LIQUID AND SOLID MEDIA

MICROSENSOR TECHNOLOGY

CONTACTS /St. Petersburg

+7 (812) 633 06 35

+7 (812) 633 06 34

Fax: +7 (812) 633 06 37

[email protected]

www.lmsnt.com

CURRENT STATUS /• There have been 3-, 4-, 6-, 8-element light emitting diode matrices developed.• The working prototypes have been developed for methane sensor module and liquid media analyser based on 8-element LED matrix of СО2 sensor module.• 2 new PCT applications have been filed, and another 3 are in progress.• Over 50 active projects on implementation of the company’s sensor (including Draeger, Hitachi, Figaro, Samsung, SpaceX, etc.).

TEAM /NIKOLAY DEEV STOYANOVPhD in Physics and Mathematics, technology author, CEO.TATYANA GURINA production manager.KIRA KALININAmarketing and sales.

Light emitting diodes and photocells

Methane sensor module prototype

Prototype of optical analyser of liquid media

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DEVELOPMENT OF PRODUCTION TECHNOLOGY OF LEAN POLYMER COMPOSITE MATERIALS WITH NANOFIBERS AND ALUMINIUM OXIDE NANOPARTICLES

PRODUCT /Prototypes of compounds and master-batches in basic polymer materials with the 10–20% content of nanofibres and nanoparticles of aluminium oxide (Nafen) Applications:• adhesive systems;• coatings;• engineering thermoplastics;• concrete.

COMPETITIVE ADVANTAGES /• Nafen can be used as threads for matrix reinforcement, which provides better mechanical properties, in contrast to spherical particles and nanoclay plates.• In contrast to carbon nanotubes, Nafen is hydrophilic, it can be easily introduced into many polymeric matrices.• Codirectional fibres allow to use the unique methods of introduction into the polymer to exclude agglomeration.• Prime cost of composite materials is a little higher than the polymeric matrices due to low cost of Nafen.

ESSENCE OF INNOVATION /The project uses nanofibres of aluminium oxide released under the Nafen trademark which can be used as an additives to simultaneously improve a number of critical parameters of the end product, such as tensile and compression strength, thermal strength, adhesion and wear resistance.

MARKET POTENTIAL / Market of polymer materials:~$500bn in monetary terms.~200 mln. tonnes in physical terms.Key segments: engineer and high-quality polymers, coatings for critical applications.

CURRENT STATUS /• Technologies of nanoparticles introduction is tested and proved in laboratory conditions and their economic feasibility is validated.• It was shown that Nafen nanoparticles can be successfully applied for the creation of a number of composite materials with unique parameters.• Market hypotheses are formed, potential consumers are identified, the development of the technology of pilot prototype production has been started.

TEAM /ALEXANDER TIMOFEEV PhD in Physics and Mathematics, CEO.VENIAMIN ALPERN Doctor of Chemical Sciences, Senior advisor on technology, author of multiple investigations and publications on polymer chemistry.SERGEY KNIGAPhD in Economy, Director of experimental laboratory production.DENIS LIZUNOV PhD in Chemistry, research engineer.

NANOCOMPOSITE

CONTACTS /Moscow

+7 (495) 648 60 72

[email protected]

Nafen fibres.

Nafen nanofibres in epoxy dispersion

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DEVELOPMENT OF A TECHNOLOGY FOR OBTAINING NANOSTRUCTURED CERAMO-MATRIX COMPOSITE MATERIAL BASED ON ALUMINIUM OXIDE

PRODUCT /Development prototypes of ceramic wafers with 99% content of Al2O3. Applications: electronics and microelectronics; ceramic wafers for metallization, using thin-film and thick-film technology.

COMPETITIVE ADVANTAGES /• Better mechanical (bendingstrength> 450 MPa), electrophysical parameters (ρ - 2х1015, tgδ - 1х10(-4), high surface smoothness (grade 16) with Ra ~10.0 nm, thermal conductivity 35 W/m·K, which significantly improves the parameters and reliability of end products.• Optical transparency.• Lower cost.

ESSENCE OF INNOVATION /• Using the new material when building 2D and 3D objects improves significantly the performance characteristics of the end product without growth of cost.• Technology of treatment with copper metallization and active metal soldering is ideal for power electronics.• Thermal metallization system with the minimum layer thickness up to 6 µm.• High possibility of thermocycling at high values of flexing strength (500 MPa).• Integration of the power density.• Miniaturization at high performance parameters of the products.

MARKET POTENTIAL / Russian market of ceramic wafers:• communication equipment: $210mln;• industrial electronics: $180mln;• medical electronics: $50mln;• consumer electronics: $58mln.Share of imported products on the RF market is >70%.Major demand area: enterprises of radio electronic industry.

CURRENT STATUS /• Pilot product sample with the parameters close to the claimed ones is developed:- bending strength – 450 MPa- ρ – 2х1015

- tg δ – 1х10-4

- Ra ~10.0 nm- thermal conductivity - 35 W/m·K• Activity on the protection of intellectual property in RF and abroad is underway.

TEAM /EVGENY LUKIN Head of R&D group, Doctor of egineering, Professor.NELLYA POPOVA Leading specialist of R&D group, PhD in Engineering.ROMAN KOSHELEV CEO.

NANOCORAL

CONTACTS /Moscow

+7 (903) 561 73 85

[email protected]

http://nanokoral.com/

Surface roughness

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PRODUCT / Wide range of rods of nanotitanium and alloys (BT-6), as well as objects of complicated profile for orthopaedics. COMPETITIVE ADVANTAGES / The nanostructuring technology helps improve the strength of the Grade 4 pure titanium by 2 times, of the Ti-6Al-4V (Grade 23, Grade 5 ELI) titanium alloy by 1.5 times and relative elongation of the strengthened material (δ) – from 10%.

ESSENCE OF INNOVATION / Elastic plastic deformation helps change the structure of metals and alloys with the formation of “nanoclusters” (titanium, aluminium, copper).

MARKET POTENTIAL / Annual demand for nanostructured titanium and alloys is 30 tonnes (~$50mln). Official interest in purchasing the technology was expressed by the producers of materials (Carpenter), and medical instruments (Basic Dental).

CURRENT STATUS / • Pilot nunostructured titanium and titanium alloy production technology is elaborated. • Successful discussions with two foreign consumers on the shipment of pilot lots of materials were conducted.

TEAM / RUSLAN VALIEV Doctor of Physics and Mathematics, Professor, author of technology. Over 30 patents, Hirsch Index above 75. RUSTEM BIKBULATOV CEO.

NANOSTRUCTURE METALS AND ALLOYS FOR MEDICAL IMPLANTS

CONTACTS /Ufa +7 (917) 343 33 07

[email protected]

NANOTECHNOLOGIES OF MEDICAL METALS

Structure of the plate for craniofacial surgery ob-tained with electrochemical processing (ECP)

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DEVELOPMENT OF TECHNOLOGY FOR COMPLEX PROCESSING OF WASTE WATERS OF METALLURGICAL ENTERPRISES AND THEIR NEUTRALIZATION SLUDGES WITH EXTRACTION OF HIGH-PURITY NON-FERROUS AND RARE MATERIALS

PRODUCT /Development of technology for complex processing of waste waters of metallurgical enterprises and their neutralization sludges with extraction of high-purity non-ferrous and rare metals.Applications:metal extraction from mining acid water neutralization sludges at copper-zinc mines with their further processing into gypsum binder.

COMPETITIVE ADVANTAGES /• Extraction of several high-quality metals from waste: copper, zinc, rare metals.• Low prime cost of obtained products.• Environmental friendliness: environmental issues are solved.• No wastes: after the metals are extracted, the sludge is processed into a construction material.• Versatility: the technology can be adapted for other types of wastes.

ESSENСE OF INNOVATION / The innovative character of the project is in the comprehensive processing of mining waste (mining water, sludge) with obtaining high-purity non-ferrous and rare metals, with the application of hydrometallurgy techniques (carbon in leaching, extraction).

MARKET POTENTIAL /• Copper and zinc market in Russia is $8.3bn.• Target segment: 0.05–0.1% of the market.

CURRENT STATUS /The technology was tested in larger-scale testing: the robustness and economical viability were confirmed.• Two Russian patents have been obtained. Business plan have been made up, technical documentation for the designing is in the process of issuing.• Sludge depository was investigated: the reserves of copper and zinc and their distribution were determined.• The site for plant construction was rented, some part of the engineering survey of the site was conducted.

TEAM /ANTON MASHKINCo-founder and CEO.VLADIMIR RYCHKOVDoctor of Engineering, Professor, project scientific advisor, more than 30 year of experience in hydrometallurgy.MAXIM CHERNYPhD in Engineering, R&D Director, 15 years of experience.ANTON PASTUKHOVexperience in the construction and launching of pilot production.

NEW METALLURGY

CONTACTS /Kirovgrad,

Sverdlovsk region

+7 (343) 344 65 60

Fax: +7 (343) 344 44 11

[email protected]

www.novo-met.ru

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at the neutralization point in Levikha village

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INDUSTRIAL TECHNOLOGY OF OBTAINING ANHYDROUS HYDROGEN FLUORIDE (AHF) FROM FLUORINE-CONTAINING INDUSTRY-RELATED MATERIALS

PRODUCT / Industrial technology of obtaining AHF used at the production all industrial fluorine compounds including uranium hexafluoride, fluorine polymers, halocarbon products, electron gases, cryolite for aluminium production industry, etc.

COMPETITIVE ADVANTAGES / • AHF production cost, if obtained by the developed technology, will be about 0.3-0.5$/kg, while the analogous parameters of the standard technology based on the imported natural raw materials will be about 0.9$/kg. • Application of the technology will exclude further accumulation of toxic industrial wastes, including depleted uranium hexafluoride and other.

ESSENСE OF INNOVATION / The new AHF production technology is based not on the expensive natural fluorite, but on the fluoride-containing waste of nuclear fuel, phosphate fertilizers and aluminium production, which currently are accumulated and stored at the plants, and present a threat to the environment.

MARKET POTENTIAL / Global AHF production is 1.5 mln. tonnes per year. This technology can solve the issue: • russian fluorine production dependence on the raw material delivery from abroad, including the uranium hexafluoride, fluoride polymer, ozone-safe halocarbon products production; • storage of toxic fluoride-containing waste accumulated during the second half of the XX century.

CURRENT STATUS /The AHF production technology is testedon the laboratory level, the development is patented.

TEAM /A. MAMAEVCEO, venture investment specialist, including the field of chemical technology.D. PASHKEVICHDoctor of Engineering, Deputy Director for science, chemistry and fluorine compounds specialist,Chief Process Engineer.D. MUKHORTOVPhD in Engineering, specialist on the development of implementation of the fluorine compounds production technology, Chief Designer.Yu. ALEKSEEVPhD in Engineering, specialist in chemical reactors, including those for the synthesis of fluorine compounds.

NEW CHEMICAL PRODUCTS

CONTACTS /St. Petersburg

+7 (921) 951 55 90

[email protected]

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DEVELOPMENT OF EQUIPMENT AND LASER THERMAL STRENGTHENING INDUSTRUAL TECHNOLOGIES FOR MACHINE OBJECTS OPERATING AT MULTI-FACTOR WEAR CONDITIONS

PRODUCT /Robotic universal smart laser system. Applications: improvement of ware resistance for critical parts in machine building, including internal cylindrical surfaces of long pipes operating at multi-factor wear conditions.

COMPETITIVE ADVANTAGES /• Multichannel diode radiation source with the power 5 kW, able to change the operation mode for each unit during processing.• Special optical head for surface treatment inside cylindrical parts shall provide the possibility to treat the inner surface of cylinders with diameter from 50 mm to the depth of not less than 1,000 mm.• Focusator for the spot geometry alteration.

ESSENCE OF INNOVATION /• Smart control system allows automatic determining the modes of treatment.• The system for laser treatment monitoring is developed in real-time scale.• A system of automated non-destructive surface control is integrated into the complex.

MARKET POTENTIAL /• Russian market of laser material treatment is over $100mln.• Target sales volume for Russian consumers: not less than $15mln. /year• Key segments: oil and gas production, machine building sector, engine building.

CURRENT STATUS /• Laboratory research studies were conducted.• ALTKU-3, ALTKU-5 type complex are developed.• The new generation prototype is under the development now.• Intense marketing among the consumers.

TEAM /GRIGORY ENSTYUNIN PhD in Economics, Co-founder and CEO.GEVORK MIKAELYANDoctor of Physics and Mathematics, Professor at NRNU MEPhI, scientific advisor (execution of activities associated with the development of new products and commercialization of the R&D results under the project).SERGEY ARAKELYAN Doctor of Physics and Mathematics, Professor. R&D goal and task setting, R&D and engineering, R&D coordination and control.VITALY ZHURAVEL Doctor of Engineering, Professor. R&D management and coordination.

NEW LASER THERMAL STRENGTHENING TECHNOLOGIES

CONTACTS /Vladimir

+ 7 (4922) 45 90 51

Fax: +7 (4922) 45 90 52

[email protected]

www.lhit.ru

Developed ALTKU-3 type complex.

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NEW LASER THERMAL STRENGTHENING TECHNOLOGIES

METHODS AND INSTRUMENTATION OF ATOMIC-FORCE MICROSCOPY FOR BIOMEDICAL, NUCLEAR AND POWER-PRODUCTION FIELDS OF TECHNOLOGYPRODUCT /Atomic-force microscopes (AFM) with newly developed techniques, as well as combined instruments (AFM with optical microscopes, Raman and IR spectra).

COMPETITIVE ADVANTAGES /• Increase of the rate and number of techniques of parallel AFM measurements.• Obtaining local data of spectroscopy measurements of samples’ surfaces.• Maximum possible number of techniques in one device.• Automation of measurements.

ESSENCE OF INNOVATION /• Using “hopping” AFM measurements, numerical mathematical processing of experimental data.• Intensification of visible and IR spectra absorption in the vicinity of the needle point of the atomic-force microscope.• Integration of IR nanoscopy techniques with the visible spectral range techniques. Universal solution in one device: SNOM, TERS, local thermal expansionand measurement of electrical and mechanical properties at the IR excitation, local IR dispersion.

MARKET POTENTIAL /• Market of instrumentation for microscopic research is $2bn/year.• Target segment (AFM+IR): $117mln.• Key segments: instrumentation for the research in the field of biology and medicine, newly developed material semiconductor, composite, polymer, etc.

CURRENT STATUS /• Laboratory research studies were conducted.• The tasks for three directions of the instrument development are formulated.• Positive test results were obtained for the developed AFM-IR measurement head.• The application for patent is under the preparation now.• Two contracts on the development of dummy devices are signed.

TEAM /ANDREY BYKOVfounder and CEO, 15 years of experience in the AFM development.VYACHESLAV POLYAKOVPhD in Engineering, scientific manager of the instrumentation designing, 12 years of experience in the AFM development.PAVEL DOROZHKINPhD in Physics Mathematics, responsible for and contacts with customers, experienced in the development, scaling and successful commercial AFM implementation in Russia and abroad. More than 10 years of experience.STANISLAV LEESMENTPhD in Engineering, developer of AFM software, more than 13 years of experience.

NT-MDT

CONTACTS /Moscow

+7 (499) 735 77 77

Fax: +7 (499) 735 64 10

[email protected]

AFM scan 1x1 µm: dC/dZ Fluoroalcane polymer surface

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CREATION OF EXPERIMENTAL DEMO PACKAGE ON SOIL AND GROUND DECONTAMINATION FROM RADIOACTIVE NUCLIDES, MERCURY, AND OTHER HEAVY METALS AND TOXIC SUBSTANCES WITH CONDITIONING OF GENERATED WASTEPRODUCT / The mobile package with capacity of up to 5 t/h intended for soil and ground decontamination from radionuclides, mercury, and other heavy metals and toxic substances. Application: rehabilitation of territories contaminated from operation of industrial enterprises, man-made accidents.

COMPETITIVE ADVANTAGES /• High soil and ground decontamination coefficients allowing multiple-fold reduction of volume of waste to be disposed of or buried.• The plant mobility: “move the plant instead of tonnes of soil”.• Equipment impermeability.• The main reagent used in the technology is water.

ESSENCE OF INNOVATION / The package operation is based upon hydraulic classification. Hydraulic classification of initial soil slurry in rising stream of water allows separation of the soil into clean (sand) and contaminated (loamy) fractions.

MARKET POTENTIAL /• The USA market volume is estimated to be $1.5bn per year.• Within rehabilitation activities, ROSATOM plans to allocate up to $17mln a year for this purpose.

CURRENT STATUS /• Scientific and engineering and patent information on the technology of decontamination of soil polluted with radionuclides and mercury has been analysed, 1 Russian patent obtained.• Recommendations on process parameters have been prepared and input data for the plant design has been developed.

• The plan of works on development of MEDP detailed design has been composed, the market analysed as regards utilization and accessibility thereof.

TEAM /ANNA CHERNIKOVA CEO.NIKOLAY NAUMENKOPhD in Chemical Sciences, СTO, over 40-year experience in the field of nuclear industry, technology and equipment of SNF and RW handling.SVETLANA CHIZHEVSKAYADoctor of Chemical Sciences, Professor, scientific advisor, over 40-year experience in the field of rare, scattered and radioactive elements technology.VYACHESLAV CEOCEODIYAKOVHead of Process department.Over 45-year experience in the field of nuclear industry, technology and equipment of SNF and RW handling.

NUCLEAR CONTAINERS CORPORATION

CONTACTS /Moscow

+7 (495) 280 36 98

[email protected]

http://nuclearcask.ru/kpoyakru.html

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+7 (495) 280 36 98

[email protected]

http://nuclearcask.ru/kpoyakru.html

VACUUM-FREE LASER-PLASMA PROCESSES FOR SUPER HARD CORROSION-RESISTANT COATINGS AND SURFACE MODIFICATION

PRODUCT /• Unique innovative laser-plasma techniques of super-hard protective coating and modification (hardening) of metal and alloy surfaces.• Development of specialized laser equipment and technique under customer parameters.

COMPETITIVE ADVANTAGES /• Low prime cost is determined by the possibility to modify surfaces without using vacuum with cheap primary components.• The speed of the surface treatment is 7–10 times higher than for the existing analogues.• Performance parameters of the resulting coatings are inaccessible for established techniques.

ESSENCE OF INNOVATION /Method for igniting laser plasma in a high-speed gas flow at the atmospheric pressure.The customer value of the technology is defined by the possibility to extend the service lifetime, obtain new properties and characteristics of processed articles.

MARKET POTENTIAL /• Market volume of engineering solutions in the field of laser protective coating was $25bn in 2014.• Growing demand of the protective coating technique is determined by the economical loss due to the increased ware.• Potential market for the Optogard Nanotech is up to $1.5bn.

CURRENT STATUS /• Laboratory prototype of facility is made, the technique scalability is demonstrated.• Hardness parameters of 35 GPa were reached with the treatment speed 7–10 times faster than the existing techniques.• The coating quality was proved by independent laboratories.

• A Contract for the delivery of laser-plasma process facility for coating and modification of metal and alloy surfaces was signed with the company Shandong Trustpipe Industry (China).

TEAM /PAVEL SMIRNOVCEO, co-author of the inventions, experienced in the implementation of innovative techniques.SERGEY BAGAEVRAS member, Director of SB RAS Institute of Laser Physics.TAMARA SMIRNOVADoctor of Chemistry, chief research assistant, principal specialist in material engineering.

OPTOGARD NANOTECH

CONTACTS /Moscow

+7 (495) 233 23 08

[email protected]

www.optogard.ru

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DEVELOPMENT AND IMPLEMENTATION OF SINGLE PHOTON SOURCE ON CHIP TECHNOLOGY

PRODUCT /Single photons source (SPS)• in laser extension design;• in chip design. Applications:scientific research, medicine, supersensitive sensors, optic computers and quantum communications, cryptography.

COMPETITIVE ADVANTAGES /• Operation in true single-photon mode.• Stabilised spatiotemporal characteristics (frequency, operation mode upon request, polarisation).• Operation at ambient temperature.• Compatibility with conventional processes of manufacturing of integrated circuits (CMOS).

ESSENCE OF INNOVATION / To amplify generation and to control the flow of single photons from NV centre in nanodiamonds, the optical metamaterials, nano-antennas and nano-waveguides are used. The source structure enables to use microelectronic technologies in manufacturing.

MARKET POTENTIAL /• Total market capacity is $9bn.• Target segment: 10% of the marketin monetary terms, 5-10% of the market in physical terms.• Key markets: the market of photonic sensors and detectors (including quantum cryptography), the market of laser equipment components for scientific research and medical applications, the market of microscopes supporting equipment.

CURRENT STATUS /• Laboratory R&D is finished, prototyping is underway.• The agreement is achievedon collaboration with leading world manufacturers of scientific equipment and with universities (PTB, Purdue).• Active marketing among customers.

TEAM / VLADIMIR SHALAYEVthe author of SPS development concept on NV centres in diamonds and metamaterials, world-level expert in the sphere of plasmonics and metamaterials, research manager.ANDREY SMOLYANINOV entrepreneur, specialised on introduction into market the new, customer-oriented industrial devices and processes, CEO.ALEXEY AKIMOVChief Research Assistant, world-class experimentalist in the field of photonics, coherent and nonlinear optics.

PHOTONIC NANO-META TECHNOLOGIES

CONTACTS /Moscow +7 (906) 778 11 11

[email protected]

www.photonanometa.com

SPS as laser extension Cost: 15,000 USD Capacity: 500 kHz

SPS as CMOS chip Industrial production cost: 300 USD Capacity: 1-10 GHz

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MEVVA-V.RU VACUUM ARC METAL ION SOURCE FOR IONIC IMPLANTATION

PRODUCT /A source for facilities of ionic implantation of chemical elements admixtures to various materials including dielectrics to change the surface properties of the materials (microhardness, corrosion resistance, friction coefficient, etc.)Applications:new material, microelectronics.

COMPETITIVE ADVANTAGES / High ion beam intensity and surface treatment rate:• ion currents (pulsed) 300±30 mA;• ion beam cross section area 100 cm2;• current pulse duration 400 ± 30 µs;• laser pulse repetition rate - 1, 2, 5 and 10 Hz;• generation of multicharged ions.

ESSENCE OF INNOVATION /• Technology of efficient generation of high-charge ions in plasma of vacuum arc discharge.• Technology of intense low-energy ion beam formation for implantation processes.

CURRENT STATUS /• Pre-production prototype of the vacuum arc metal ion source for ion implantation has been created.• RF patent for the multicharged ion source has been obtained.• R&D agreements on the development and delivery of ion sources to Russian and foreign research institutes have been signed.

TEAM /EFIM OKS Doctor of Engineering, Professor, research project manager, long-term experience in the field of research and development of ion sources for various applications.GEORGY YUSHKOV Doctor of Engineering, key specialist on ion sources, experienced in the field of research and development of various purpose ion sources both for scientific and industrial application.ALEXEY NIKOLAEV PhD in Engineering, CEO, experienced in the ion source development for ion implantation.

PLASMA SOURCES

CONTACTS /Tomsk

+7 (3822) 491 776

[email protected]

www.plasmasources-tomsk.ru

Facility.

Vacuum arc source. Cathode node with 16 replaceable cathodes.

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PICOSECOND LASER FOR MICROTREATMENT OF MATERIALS BASED ON HEAVILY DOPED FIBRE

PRODUCT /Totally fibrous integrated laser systems (without using non-fibre or non-pigtailed optical elements) of two types: with 5 ps and 100 ps pulse duration. Applications:• high-precision material microtreatment with minimum material heating;• cutting thin sapphire wafers;• laser surgery.

COMPETITIVE ADVANTAGES /• Cost of laser system is 5–7 times lower than that of competing solutions.• Reliability, capability of 24/7 operation.• Compactness.

ESSENCE OF INNOVATION / Application of special phosphate fibre with ultra-high content of active admixtures for direct amplification of picosecond optical pulses up to high values of peak power by hundreds of kW.

MARKET POTENTIAL /• In 2014 the market of lasers for material treatment was $2.6bn. The market growth rate is 13% per year.• The estimated project market in 2016 is $4.5mln.

CURRENT STATUS /• Basic technology of totally fiber picosecond laser system has been developed.• Pre-production prototypes of laser systems have been designed and manufactured, at present they are undergoing testing by potential customer.• Agreement for the company-applicant product promotion on the Chinese market of the manufacturers of microelectronics has been signed with a distributor-company in China.

TEAM /ALEXANDER TSELIKOV PhD., co-author of 8 patents and over 20 scientific publications, over 25 years of experience in the industry, Founder, co-incorporator and CEO.PAVEL POLYNKINPhD, Professor of the University of Arizona, co-author of over 50 scientific publications, over 20 years of experience in this industry, Founder, co-incorporator and CTO.

POLARUS

CONTACTS /Moscow (Troitsk)

+7 (499) 271 71 75

[email protected]

[email protected]

Laser micro-marking and chasing

Cutting thin sapphire wafers by Stealth dicing technology

ПикосекундыНаносекундыNanoseconds Picoseconds

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NEW POLYMERIC COMPOSITION MATERIALS AND TECHNOLOGY OF POLIMER MIXTURE TREATMENT WITH ACTIVATED NANOMODIFICATORS

PRODUCT /Synthesis of new and modification of available polymers having a set of new physico-chemical properties. Applications: new composite materials are thermally stable, shock-resistant and weather-resistant, they have outstanding mechanical properties and provide stability of the products’ dimensions.The Project can be implemented on the Russian, CIS and European markets.

COMPETITIVE ADVANTAGES / Polymer mixture blocks are able to crystallize: materials with any intermediate properties can be obtained by changing the proportions of the polymer components. Preliminary investigations and the obtained data on the structure prove the possibility to create mixtures with chemical bonds in contrast to purely mechanical bonds. Modern equipment and flexible production technology oriented on mass production.

ESSENCE OF INNOVATION /The investigations are focused on the obtaining experimental dependences and development of production processes of a new class of materials for the production of high-strength and thermally resistant shock-proof and weather-resistant materials with outstanding mechanical properties of the manufactured objects.

MARKET POTENTIAL / Expected growth of the engineering structure plastic market will be from $45bn in 2014 to $76bn in 2017. Growth of the Russian market will be $6-12bn in 2017.

CURRENT STATUS /• The RF patent for the invention has been obtained.• The laboratory technology has been developed.• Material prototype samples are obtained, independent testing has been conducted.

TEAM /VLADIMIR SHUMILINCEO.SERGEY VERETENNIKOVDirector on the new product development, marketing expert.ALEXANDER LYASHKOVHead of laboratory, PhD in Physics and Mathematics, leading engineer of the A.F.Ioffe Physico-Technical Institute of RAS.

POLY-S

CONTACTS /Moscow +7 (495) 380 26 69

[email protected]

www.poly-c.ru

Examples of polymer composition material

Material microstructure without introduction of

fullerene modifier.

Material microstructure with fullerene modifier

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DEVELOPMENT OF A FACILITY AND METHODS OF ULTRASONIC VISUALIZATION BASED ON 2D GRIDS FOR MATERIAL AND PRODUCT NONDE-STRUCTIVE TESTING AND DIAGNOSTICS

PRODUCT /Ultrasonic fault detector and methods of non-destructive testing based on the application of 2D grids.Applications: fault detection for various materials and products including composites, adhesion and weld joints, coatings.

COMPETITIVE ADVANTAGES /• Forming images by means of electronic scanning of the examined object in two directions.• Increased spatial resolution in the lateral plane.• 3D visualization without mechanical scanning.

ESSENCE OF INNOVATION /• Use of advanced 2D ultrasonic grid in the design of fault-detector.• Unique methods of treatment and interpretation of spacial-time signals generated by 2D ultrasonic grid.

MARKET POTENTIAL /• Market of non-destructive test equipment is $1.5bn.• Target segment: 10–15% of the market in monetary terms, 3–5% of the market in natural terms.• Key segments: ultrasonic testing in machine building, nuclear, aerospace, automotive and other industries.

CURRENT STATUS /• Conducting of R&D.• Building and testing the prototype and the techniques.• Conducting patent search.

TEAM /ROMAN MAEVDoctor of Physics and Mathematics, Professor, Co-founder, research manager.BORIS RIERLeading engineer, CEO.SERGEY TITOVPhD in Engineering, Executive Manager, development of techniques and means of ultrasonic fault detection.ALEXEY BOGACHENKOVPhD in Engineering, research engineer, development of electronic instrumentation and software.

PROMSONIC

CONTACTS /Moscow [email protected]

Ultrasonic image of the spot weld internal structure (dimensions 10×10 mm)

Ultrasonic image of the adhesive spreading in the joint (dimensions 10×10 mm)

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INVESTIGATIONS AND DEVELOPMENTS IN THE FIELD OF RADIATION-CHEMICAL TECHNOLOGY

PRODUCT /Investigation, development and implementation of the technology based on the ionizing radiation (IR) impact:• creation of viscosity dopes;• manometer screening;• obtaining composite materials;• radiolysis of poly chlorinated biphenyls;• radiation-induced polymerization of polyoxymethylene and its co-polymers. COMPETITIVE ADVANTAGES /• Obtaining new materials with target competitive parameters.• Behaviour of chemical reactions at lower pressures and temperatures.• Decrease of the number of production phases and reduction of the chemical process duration.• Exclusion of chemical initiators and catalysts.

ESSENCE OF INNOVATION /• IR - highly efficient initiator of chemical reactions which weakly depends on temperature and is comparatively easily controlled by means of radiation power variation.• Electron accelerators are used for IR generating.

MARKET POTENTIAL /• Over 1,500 industrial electron accelerators are used all over the world.• $85bn is the volume of products treated with electron beam in 2013. The 2017 estimate is $140bn.• Key market segments: sterilization of food products and medical objects; material modification; radiation polymerization; radiation decomposition; waste water and industrial sewage treatment.

CURRENT STATUS /• A part of laboratory research has been conducted.• First results have been obtained proving the efficiency of the applied radiation-chemical technology.• Two Russian patents have been obtained.• Intense market investigation is underway. TEAM /YURY LOGINOVCEO. Project management and development, marketing, finances.ALEXANDER VARANDEngineering director. Technology development, conducting R&D.SERGEY BELOKRINITSKYEquipment design and engineering.

RADIATION-CHEMICAL TECHNOLOGY

CONTACTS /Novosibirsk

+7 (985) 970 04 84

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DEVELOPMENT OF SPECTROMETRIC DEVICES FOR GAMMA-RADIATION DETECTION BASED ON SIPM AND INORGANIC SCINTILLATORS

PRODUCT /• Individual dosimeter-spectrometer based on solid-state photo multiplier (SiPM).• Gamma-detector for automated systems of radiation monitoring.

COMPETITIVE ADVANTAGES /• Spectrometric analysis of gamma-radiation.• Depth analysis of the gamma-ray spectrum.• High-power hardware platform.• Adaptivity to any topology of theradiation monitoring system.

ESSENCE OF INNOVATION / Devices are based on the application of scintillation crystals combined with SiPM. Application of spectrometry methods at certain doze loads enables deep analysis of the radiation in contrast to the established detectors (G counters, TLD, silicon semiconductor detectors) operating in the counting mode.

MARKET POTENTIAL /• Global personal dosimetry monitoring (PDM) market is $1.5bn.• Global automated radiation monitoring system (ARMS) market is $8bn. Target segment: PDM and ARMS modernisation on the atomic industry enterprises in Russia, as well as development of spectrometric ARMS on Russian-design APP now constructed in other countries.

CURRENT STATUS /• A gamma-detector prototype has been created.• Laboratory tests were conducted.• The original method of the 3D model of personal dosimeter-spectrometer has been developed. ARMS gamma detector prototype for spectrometric signal processing.• Test software was created.• The application for Russian patent (method) was submitted.

• The development prototype meeting the industry standards is currently being developed.

TEAM /PAVEL KUDRINCEO. General and strategic management, attraction of investments.TIMOFEY ANDRIANOVPhD, Engineering Director.

RADIATION TECHNOLOGIES

CONTACTS /Moscow

3D model of personal dosimeter-spectrometer has been developed.

ARMS gamma detector prototype

+7 (925) 005 63 03

[email protected]

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DEVELOPMENT OF DEVICES AND SYSTEMSBASED ON THE NARROW BAND ANDPENCILE-BEAM SPACE SCANNING

PRODUCT /Unique technology of space scanning with radio-wave in horizontal and vertical planes with 3D visualization of results.Application:• military application (special operations);• people search under debris, site safeguarding over the area;• robotics and self-navigation;• geolocation and archaeology;• space and aviation industry;• medical application;• mobile devices (tablet computers, cell phones);• environmental monitoring of territories (mineral deposits);• vibration measurement for hidden objects and mechanisms.

COMPETITIVE ADVANTAGES /• Fast object detection.• Vivid imaging.• High precision of obtained object coordinates.• Dimensions of the object can be determined.• Noise resistanceand electromagnetic compatibility.• Operates through wet obstacles.• Very low radiation power.

ESSENCE OF INNOVATION / The developed technology enables space scanning without the Doppler effect by using narrow-band and pencil-beam electromagnetic wave and obtaining 3D results. Active phased antenna array (AFAA) is used in the devices.

MARKET POTENTIAL /• Industrial automation market volume is $150bn.• Intelligent transport system (ITS) market is $270bn.• The safety system market reaches $300bn.

CURRENT STATUS /• Test sample of the radar RK-000 able to discover objects behind rick walls 1m thick has been manufactured.• The patent for the invention was acquired RU2480787 “Method and system for distant object detection”.• The device was presented and demonstrated on specialized conferences and seminars.• A number of major companies and Russian security agenciesexpressed their interest to the Company products.

TEAM /VLADIMIR KROPOTOVauthor of the technology, Founder and President of the Company.DMITRY SHELESTOVCEO. Products promotion to various markets, implementation, extends business contacts in the technology field.

RADIO VISION

CONTACTS /Moscow +7 (495) 988 99 43

Fax: +7 (495) 988 99 43

[email protected]

www.radio-vision.ru

Kropotov radar by RADIO VISION

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One of the variants of the cargo identification sys-tem over the element composition is location on the railway road.

PRODUCT / System of cargo identification over the element composition at the rail transport/ auto transport at a motion speed 40km/h.

COMPETITIVE ADVANTAGES / • Touch-less and high-speed method of analysis. • Cargo control at a motion speed of 40 km/h. • Minimum restriction area for the personnel during the system operation and no hazard factors in the standby mode. The system can monitor the radiation background.

ESSENCE OF INNOVATION / Technical implementing of tagged neutron method for the material identification over the element composition in the systems with high-rate diagnostics provided with highly-sensitive detectors, quick-response electronics and data processing systems.

MARKET POTENTIAL / Today the overheads of additional cargo inspection for 50 major sea ports comprise $20bn. The use of the proposed systems with help save 95% of these expenses. The market of additional cargo inspection systems will be about $1bn in 2017.

CURRENT STATUS / • System miniature of the system is developed at tested on a test site. • Successful discussions on the development prototype manufacturing and trial employment of the system on a Russian Railways objects were conducted.

TEAM / YURY OLSHANSKY PhD in Engineering, CEO; vast practical experience in the development and production of advanced systems in the field of applied nuclear physics.ANDREY VISHNEVKIN PhD in Engineering, Development Director, has international experience in the implementation of new hi-tech solutions.

SYSTEM OF CARGO IDENTIFICATION OVER THE ELEMENT COMPOSITION FOR THE PURPOSES OF ECONIMICAL, TRANSPORT AND ENVIRONMENTAL SAFETY

CONTACTS /

St. Petersburg +7 (812) 587 53 97

[email protected]

www.rateclab.com

RATECLAB

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FARADAY INSULATORS (FI) FOR POWERFUL LASER EMISSIONS OF NEAR AND MIDDLE IR RANGE

PRODUCT /Faraday insulator capable to provide insulation range over 25 dB of emission with a capacity of 100 W and more for 2…8 µm wavelengths, and 10 kW and more for 1…2 µm wavelengths.

COMPETITIVE ADVANTAGES / Efficient methods of thermal induced emission defects reduction, having confirmed their potential, with record-breaking characteristics for 1 µm wavelength.

ESSENCE OF INNOVATION / Capability to ensure insulation level over 25 dB for emissions of 100 W and more, for 2…8 µm wavelengths, 10 W and more for 1…2 µm wavelengths, due to search, theoretical and experimental tests of new magnetoactive media, and new optical systems development.

MARKET POTENTIAL /• FI market for powerful laser emissions of near and middle IR ranges: $8.2bn.• Target segment: 25-30% of the market in monetary terms.• Key segment: lasers with high average power.

CURRENT STATUS /• Insulators with various heat effects suppression methods are developed.• Great amount of magneto-optical media are investigated.• Business model key parameters range is identified, the target market research is conducted.• 2 Russian patents are obtained.

TEAM /OLEG PALASHOV PhD in Physics and Mathematics, Founder, CEO. 10 years of experience of R&D in the sphere of successful commercialization of laser physics developments.DMITRY ZHELEZNO PhD in Physics and Mathematics, Deputy Director, over 3 experience in high technology laser components sales. IVAN MUKHINPhD in Physics and Mathematics, RAS golden medal for young scientists; responsible for organization of R&D, search and investigation of the possibilities to transfer the proved process solutions to non-investigated wavelength ranges.

CENTER FOR SCIENTIFIC AND TECHNOLOGICAL DEVELOPMENT (C-NTR)

CONTACTS /Nizhny Novgorod

+7 (831) 416 06 74

Fax: +7 (831) 436 37 92

[email protected]

Faraday cryogenic insulator

of high vacuum (LIGO, VIRGO projects)

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DEVELOPMENT OF COMBINED HAND ARC WELDING AND PLASMA CUTTING UNITS

PRODUCT /Rezonver Hybrid hand arc welding and air plasma cutting unit.Applications:construction, housing and public utilities, mechanical engineering, equipment repairs, fabrication of hardware items.

COMPETITIVE ADVANTAGES /• Weight: 3 kg, 10 times lighter than two separate units.• Current: 200 A for welding and 35 A for cutting (cuts metal to 8 mm with a dividing cut and to 6 mm with a quality cut).• Efficiency: 98%, i.e. exceeds the efficiency of other brands by 13%.• Easy control: one regulator only.• Voltage drop-resistant.• Short-circuit-resistant.• Continues operation even at 160 V mains power.• Does not induce electromagnetic interference.

ESSENCE OF INNOVATION /Rezonver units utilize resonant high-frequency inverters as current sources.It is different from traditional pulse inverters by having a resonant circuit to shape a sinusoidal waveform of current in the transformer power circuits. This results in higher reliability and compactness of units.

MARKET POTENTIAL /• Global welding equipment market is $36bn.• Target segment: 10% of the marketin monetary terms, 3% of the market in physical terms.• Key segments: manual arc welding 200 A devices, air-plasma cutting devices.

CURRENT STATUS /• Production samples are obtained.• RF patent number is obtained.• Intense marketing among the consumers.

TEAM / ALBERT ENALEEVCEO. SERGEY SERGEEV development manager. DANIL TIKHOMIROV marketing manager. IGOR PAVLOV analyst.

REZONVER

CONTACTS /Astrakhan +7 (917) 180 99 70

[email protected]

www.rezonver.com

Ultra-compact combined manual welding and

plasma cutting unit

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PRODUCT /• Highly sensitive heat flow sensors.• Sensor output data collection and processing equipment.Applications: housing and public utilities, agriculture, solar energy sector, security systems, scientific research.

COMPETITIVE ADVANTAGES /• High absolute sensitivity (up to 50 times higher than the one of sensors built on the basis of differential thermocouples).• Controllable heat transfer resistance factor.• Self-calibrating sensors.• Wide ranges of dimensions.• Compact design.

ESSENCE OF INNOVATION / Unlike differential thermocouples, thermoelectric modules feature a higher thermal EMF. High integration and miniaturization achieved in RMT micromodules allows for manufacturing sensors which sensitivity to heat flows exceeds the one of the current brands by several times.

MARKET POTENTIAL / 10% of the market: $200mln. Global market: $2bn. Key segments: measurement of heat flows in industrial processes and natural phenomena for the purpose of control and optimization.

CURRENT STATUS /• The technology for manufacturing of high-scale integration thermoelectric micromodules has been developed.• The theoretical calculations of micromodule-based heat flow sensors have been conducted.• A sample line of sensors of various series was developed and tested.• A patent application was filed for the“Method of calibrating thermoelectric heat flow sensors”.

TEAM /ELENA VIKTOROVACEO. Experience in financial management and investment project implementation supervision.GENNADIY GROMOVPhD in Physics and Mathematics, Research Manager. Organization of production of thermoelectric modules, the author of key processes.SEMEN GLYAZERDevelopment of thermoelectric devices.

DEVELOPMENT AND MANUFACTURING OF THERMOELECTRIC MICROMODULE-BASED HEAT FLOW SENSORS

CONTACTS /Moscow +7 (499) 678 20 82

Fax: +7 (499) 678 20 83

[email protected]

www.rmtltd.ru

RMT ELECTRONICS

Types of RMT heat flow sensors

Absolute sensitivity of Sa sensors of different brands (small points) and RMT sensors (big points)

0,00

0,20

0,40

0,60

0,80

1,00

1,20

1,40

1 10 100 1 000 10 000 100 000

S, V

W

Sensor size S, mm2

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DEVELOPMENT AND IMPLEMENTATION OF TECHNOLOGY FOR WATER LEAKAGE DIAGNOSTICS ON HORIZONTAL WELLS WATERALARM

PRODUCT /The WaterAlarm technology is an on-line diagnostic of water leakage after multizonal hydraulic fracture.Applications:diagnostics of operation and usage of horizontal wells.

COMPETITIVE ADVANTAGES /• Easy-to-use technology enables performing diagnostics without stopping the production.• Significant economical advantage as compared with foreign analogues (5 to 10 times).• Technology durability. Possibility to perform fluid analysis for within 5 years after the hydraulic fracturing of formation (HFF).

ESSENCE OF INNOVATION /• Water seepage is determined with the Indirect method: over the tracers concentration for each type in the fluid water phase.• The tracer carrier is proppant, the material always used for fixing cracks of hydraulic fracture, rather than special arrangement of well equipment.• The size of the synthesized tracers is less than 1 µm.• Quantum points are used as fluorescent agents and multicolour coding system.

MARKET POTENTIAL /• Growth of the market of multiphase HF in horizontal and lateral branches of oil wells in Russia is 20% per year.• Target segment: 25–30% of the market.• Key segments: wells with big risk of water intrusion after hydraulic fracture. Quantum points, the size is 2–10 nm.

CURRENT STATUS /• The synthesis of tracers and the system of quantum point fixing on tracers are developed.• Polymer proppant coating is developed.• Test-bench testing on the tracer removal from the coating are performed.• The technique of tracer counting in the fluid with the use of flow cytometry is developed.• Conductance of experimental industrial work is planned.• A mobile scanner based on flow cytometry is under development.

TEAM /LEONID AGAPEEVPhD, innovative management, 15 years of experience.ANDREY GURIYANOVPhD, research, marketing, 15 years of experience.KONSTANTIN KOROTKOVSurgutneftegaz, geophysics, 25 years of experience in the industry.VASILY BLOKHINPhD (Lomonosov MSU), computational models, software development, 10 years of experience.

RSP TECHNOLOGY

CONTACTS /St. Petersburg +7 (812) 332 97 25

Fax: +7 (812) 332 97 25

[email protected]

www.rcptechnology.ru

Quantum points, the size is 2–10 nm.

Nucleus - Nucleus shell - Amphiphilic surface

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PRODUCT /Technology of sulphate aluminium production obtained at the processing of saline aluminium dross due to the interaction of aluminium hydroxide with sulphur acid.Applications: water purification for drinking and industrial purposes, sewage water purification in the cellulose and paper, leather-making and other industries.

COMPETITIVE ADVANTAGES /• The pay-back of the aluminium sulphate production with new technology is 7 times higher than that for the aluminium hydroxide on the existing enterprises.• Lower production cost, no need for additional expenditure on grinding or granulation.

ESSENCE OF INNOVATION / The technology of the aluminium sulphate production allowing the use of the aluminium production industry waste (salt filter cakes), instead of expensive aluminium hydroxide.

MARKET POTENTIAL /• Currently in Russia more than 1 mln. tonnes/year of aluminium sulphate are produced. The number of production plants is over 25.• In Europe, the aluminium sulphate production is over 2 mln. tonnes/year at 59 plants. Out of this number over 50% are used for paper and cellulose production, about 30% for water purification, while the rest part for sewage water treatment and other technical needs.• At present in the USA up to 1.4 mln. tonnes/year of aluminium sulphate are produced.

CURRENT STATUS /• Pilot facility is manufactured.• Positive testing results were obtained at Alchem LLC.• Laboratory stage-by-stage testing of the production process of the aluminium sulphate production on the industrial production mini-facility is finished.• Sanitary and epidemiological inspection report No. 63.STs.06.214.Т.000540.05.06. is granted.• Russian patent “Method of aluminium sulphate production” No. 2315715 is obtained.

TEAM /ALEXEY ANDREEVCEO.VITALY ZAKHAREVSKYEngineering Director, Inventor, author of the patent.ANTON IONOVCommercial Director.DENIS FILIPPOVProject Manager.

INNOVATIVE TECHNOLOGY OF NON-WASTE PROCESSING OF SALINE ALUMINIUM DROSS WITH OBTAINING ALUMINIUM SULPHATE

CONTACTS /Moscow +7 (927) 702 35 64

+7 (926) 717 01 56

[email protected]

www.ruself-r.ru

RUSELF - RECYCLING

Facility with vacuum revolver filter.

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IMPLEMENTATION OF THE PHENOMENON OF STRUCTURAL EXTRAPLASTICITY IN THE SEMICONDUCTOR TECHNOLOGY FOR MANUFACTURING THERMOELECTRICAL MODULES PRODUCT / Polycrystal semiconductor material based on tellurium and bismuth alloy. Applications: extra-strong thermoelectric branches of pre-set diameter for the use in the production of thermoelectrical modules.

COMPETITIVE ADVANTAGES /• Economy technology of key element production for thermoelectrics. Up to 50% economy of thermoelectric (TE) material.• new cylindrical shape of TE branches is most demanded in the industry.• Extra strong material as compared with the competing ones.• Total anticorrosion protection of the modules.

ESSENCE OF INNOVATION /• Implementation of the phenomenon of extraplasticity in the technology of semiconductor production.• Control of material properties over the grain boundaries enables selection of the thermoelectrical material flow mode and actual picking the branches of the optimum shape modules.

MARKET POTENTIAL /• TE material market volume is $360bn.• TE material and new technology of its production providing the strength of TE branches and saving tellurium is a candidate leader of the global market.

CURRENT STATUS /• Branches made of TE material are made.• Technology of anticorrosion protection application on the lateral ranch surfaces and the technology of the braze layers disposal on the branch ends are developed. • Applications for technology patents are submitted.• Development prototypes of the modules were assemble and successfully tested.

TEAM /VLADIMIR CHUVILDEEV Scientific Manager, Doctor of Physics and Mathematics, Professor, more than 140 printed papers on the issues of plastic deformation, author of 1 patent and 2 applications for patent on the extraplasticity and 3 patents in the field of nano- and microcrystalic materials. NIKOLAY SIDORENKO Physicist and engineer, 35 years’ research experience in the field of thermoelectricity, author of patents and scientific publications in the field of thermoelectricity. DENIS BOGOMOLOV Leading research assistant, PhD in Engineering, 5 years of experience in the field of thermoelectricity and study of thermoelectric material structure.

RUSTECH

CONTACTS /Moscow +7 (499) 356 53 89

[email protected]

Ready-made TE branches with required shapes with anticorrosion

TE material rods prior to cutting and coating with anticorrosion protection.

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TECHNOLOGIES FOR SYNTHESIS OF OPTICALLY TRANSPARENT CERAMICS

PRODUCT /L-Polikor device produces optically transparent ceramics with the following parameters: transparent ceramic plate with thickness from 0.1 mm to 5 mm, dimensions of 150x100 mm, Mohs hardness number is 9, with transparency about 96–98%. Applications: protective glass for mobile device screens, pads for electronics and microelectronics, special optic devices, armour ceramics.

COMPETITIVE ADVANTAGES /• Production prime cost is 2 times lower than that of alternative technologies.• Possibility to dope ceramics with elements of actinide series.• Possibility to obtain wide family of products (polycore ceramics, monocrystals).

ESSENCE OF INNOVATION / The project’s technology allows synthesis of optically transparent plates of mixtures of volatile precursors, the multi-stage processing of which is organically inscribed into the supercritical device.

MARKET POTENTIAL /• The market of screens for mobile devices grows by 15% and amounted to approximately $6bn in 2014.• Target segment: 5–10% of the market.• Key segments: manufacturers of protective glass and/or manufacturers of technical ceramics (Corning, Asahi GC, Schott AG, Koshima Chem Co, CeramTec, MARUWA, LEATEC, ISOVAC, CNI Laser, Nevz-Ceramics).• The volume of the world market of ceramics amounted to $7.8bn in 2013.• 80% of the Russian market of ceramics are imported goods.

CURRENT STATUS /• A working prototype has been created.• Research works have been conducted to confirm a physical character of the stated phenomena. • The first samples have been obtained.• Letters of interest have been received from LG, Samsung.

TEAM /ANDREY GOLOMYSOVProject Manager.VIKTOR TIKHONOVDoctor of Engineering, Research Project Manager, 40 years of invention activity.VLADIMIR ROMANOVPhD in Chemical Sciences, leading chemist.MARIYA IVANNIKOVAMarketing expert.

SAROV INNOVATIONS

CONTACTS /Sarov +7 (831) 306 33 95

na.polkovnikova@

gmail.com http://sk.ru/

net/1120596/

Working prototype of the device

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PRODUCTION OF MACHINES FOR MULTICOORDINATE ELECTROCHEMICAL TREATMENT WITH ROD ELECTRODE

PRODUCT /New type of universal machines for electrochemical (EC) carving and/or milling (“combo” 2 in 1 version is available) able to solve the tasks of extra-strong, heat-resistant, figurine-shaped, miniature and precision parts manufacturing with a new quality, when traditional machining methods are inefficient or/and costly.

COMPETITIVE ADVANTAGES /• No tool wearing.• No barbs.• Any hardness and strength of parts.• No thermal impact, no change of the surface structure.• No mechanical contact.• “Mirror-like” smoothness.

ESSENCE OF INNOVATION / Parts are treated with low-power electric equipment, the power is determined by the size of the non-profiled electrode-tool (ET). Size of the part are limited by the number of coordinate movements of the machine only. No need for expensive iteration-based process of ET manufacturing replicating the shape of the ready-made part.

MARKET POTENTIAL /• Market of metal-working machines in Russia is $2bn.• Market of electroerrosion (EE) machines in Russia is $20bn to 2017.• Target segment: 20% of Russian EE market in monetary terms, i.e. about 4 mln. USD/year.• Key market segments:- aviation engine building;- instrument building;- tool-making facility;- general machinery.

CURRENT STATUS /• Laboratory R&D have been conducted, business plan for special EC machines has been prepared.• Order for a EC-polishing facility for medical tools has been received.• One application for patent in RF and abroad has been submitted, trade mark has been registered.• Trial production and sales of similar types of EE-machines have been started.

TEAM /PAVEL BELIKOVCo-founder and CEO,10 years’ experience in machine tool building business.VLADIMIR BARAKOVProject Manager. Experience in the development of EC-machines and technologies since 1989, author of multiple patents and inventions.

SEMAT

CONTACTS /Moscow [email protected]

www.semat.ru

EC-Milling – electric milling.

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SOLID-STATE MEMS GYROSCOPE

PRODUCT /Sensitive gyroscope element based on the variation of paint center spin system in a diamond. Atom spin - the analogue of mechanical gyroscope — spinneret — is an ideal object without internal faults. This allows reaching exclusive gyroscope parameters.

ESSENCE OF INNOVATION /• Solution is significantly beneficial in terms of price ($2,000-3,000) and dimensions with the analogous precision.• Gyroscope allows the measurement quality non-available using the solutions now existing on the market.

MARKET POTENTIAL / Estimated market of high-precision gyroscopes was $1.3bn in 2012. Significant growth of market is expected due to the development of drones including the cargo shipment system, where precise orientation is critically important. For many customers access to high-precision gyroscopes is difficult due to significant export limitation and high prices.

CURRENT STATUS /• A mini-grant was approved by Scientific Advisory Council.• The conduction of key experiments to show the practical applicability of the idea is planned.• Searching for co-investor for the following stage and development of the demonstration prototype.

TEAM /VLADIMIR SHALAEVProfessor of Purdue university, Co-founder and advisor. Expert of international fame in the field of optical metamaterials.ALEXEY AKIMOVPhD in Physics and Mathematics, Co-founder and research project manager.World-class experimentalist in the field of photonics and nonlinear optics.ARTEM SMOLYANINOVCEO. Experience in technological management in Russian and foreign companies.VADIM VOROBIEVResearch assistant. Young researcher in the field of nanophotonics.VLADIMIR SOSHENKOResearch assistant. Experienced in the field of navigational modules as well as engineering of optical systems.

SENSOR SPIN TECHNOLOGIES

CONTACTS /Moscow +7 (906) 778 22 22

[email protected]

Gyro compass determines the North direction by means of the gyroscope and using the Earth rota-tion.

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CREATION OF ACCESSIBLE TAPES WITH A IBAD-MGO LAYER FOR SUPERCONDUCTORS AND SEMICONDUCTORS MANUFACTURING

PRODUCT /Flexible metal tape with texture oxide coating obtained using the technology of sedimentation if assisting ion beam (IBAD-MgO).Applications:• base for wires based on high-temperature superconductors (HTSC);• base for the manufacturing of flexible elements (solar batteries, light diodes).

COMPETITIVE ADVANTAGES /• High degree of biaxial texture close to the monocrystal quality.• Length of a single tape is over 500 m.• New type of substrate for disruptive materials - high-temperature superconductors and thin-film semiconductor devices.

ESSENCE OF INNOVATION / Technology enables obtaining long tapes-substrates with textured oxide layer fit for sedimentation of new materials in highly-structured form - superconductors and semiconductors.

MARKET POTENTIAL /• HTSC materials market will be $1bn by 2017, with CAGR about 30%.• HTSC segment target: 30% of global market.• Substrate market for thin-film semiconductors will be $10bn (2018).• Semiconductor segment target: entry to the market.

CURRENT STATUS /• Technologies of electrochemical polishing and soluble planarization are developed.• Development of technological sedimentation line for textured layers IBAD-MgO is finished.• First shipments are performedproduct to customers.• Letters of interest in the product were received from several potential customers.

TEAM /ANDREY KAULDoctor of Chemical Sciences, Professor, Head of laboratory of the MSU Chemical faculty, winner of State Award.ALEXANDER MOLODYKPhD in Chemistry, author of 17 scientific publications and 4 US patents. Project Technical Director.VLADIMIR MATIASPhD, Author of over 100 scientific publications and 2 US patents, Project advisor.

S-INNOVATIONS

CONTACTS /Moscow + 7 (495) 604 17 65

[email protected]

http://s-innovations.ru/

Developed equipment for layer sedimentation using the IBAD method

Atomic-power microscopy of a polished tape sur-face made of Hastelloy C276 alloy.

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DEVELOPMENT OF X-RAY SEED SEPARATOR

PRODUCT /Flow X-ray separator for seeds and crops.Applications:separation of seeds and crops from hard-separable admixtures, extraction of grains with external and internal defects.

COMPETITIVE ADVANTAGES /• Possibility to separate grains and seeds by external features, such as colour, and by internal defects.• Sorting production is up to 500 kg/h.• Efficiency of admixture and seed extraction differing by external features and internal defects is at least 70%.

ESSENCE OF INNOVATION /• Technology of X-ray quality control of commercial (mass) lots of seeds of cultivated plants provides automated separation of seeds with intrinsic defects form acceptable ones. The technology is based on the patented method of obtaining increased X-ray image of a separate seed which secures detection of up to six signs of its internal damage.

MARKET POTENTIAL /• Global market is $1bn/year.• Russian market is up to $25,000.• Target segment: 25–30% of the market.• Key segments: cleaning and pre-sowing preparation of seeds, cleaning of commercial lots of grain from hard-removable admixtures at grain elevators.

CURRENT STATUS /• Laboratory research studies were conducted.• X-ray diagnostic facility has been developed.• Singes of accessible and defective seeds have been determined.• Intense marketing among the consumers.

TEAM /ALEXEY AGEEVPhD in Engineering, CEO.NIKOLAY POTRAKHOVDoctor of Engineering, Chief Designer.Development of X-ray metering channel.NIKOLAY REVENKOPhD in Engineering, engineering manager;Development and testing management.

SMART RAY

CONTACTS /Voronezh

+7 (473) 206 77 77

Fax: +7 (473) 206 77 86

[email protected]

смартрэй.рф

X-ray images of a grain beaten by corn bug

X-ray image of a grain inhabited by insects

X-ray images of a grain without germ

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GRAVITON ALL-PURPOSE SECURITY ANNUNCIATOR

PRODUCT /All-purpose programmable annunciator that detects a change in physical properties of structures. It lifts restrictions as to the presence in the secured area and simplifies security systems making them more reliable.

COMPETITIVE ADVANTAGES /• Performs functions of three alarm annunciators of different types and at the same time it is devoid of their disadvantages.• Determines the change in physical properties of structures forming the secured perimeter.• Nanoaccelerometer detects differently directed accelerations generated in the structure under specific impact.• It excludes false alarms and lifts restrictions on the presence of people and animals inside the secured perimeter.• GRAVITON does not contravene the aesthetics of premises, improves the security alarm system reliability and significantly simplifies system installation.

ESSENCE OF INNOVATION / ALS Detect is the main innovative component which detects destruction processes in structures by changes in their physical parameters (weight, size, density, elasticity). Data on changes in physical parameters of structures result from measurements of natural vibration frequency that depends on physical properties of the structure and measured at an impact capable of destroying the structure. The system comprises an accelerometer and a microcontroller with special firmware to measure impact on and natural vibration frequency of structures. MARKET POTENTIAL /• Market share of security annunciators being the main alarm system component is $8mln. GRAVITON potential in this segment exceeds 50%.• The Russian security systems market growth is 7-10%.

CURRENT STATUS /• Functional prototype is available.• The prototype has been tested.• Patent applications are being prepared.• Negotiations with potential customers and investors are being conducted.• First rank at Startup Village 2015.

TEAM /MAKSIM SOMOVCEO.

SOMOV DESIGN BUREAU

CONTACTS /Yekaterinburg +7 (343) 219 47 47

[email protected]

http://grvt.ru

GRAVITON invisible security detector of the new generation to monitor intrusion through windows

and doors

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DEVELOPMENT OF PORTABLE AUTOMATED ELECTRON PARAMAGNETIC RESONANCE (EPR) SPECTROMETER FOR SUBSTANCE ANALYSIS AT NANOLEVEL

PRODUCT /Portable automated electron paramagnetic resonance (EPR) spectrometer. Applications: qualitatively new pathological tissue change analysis for disease diagnostics and treatment, forensic examination, and quality control of medical products.

COMPETITIVE ADVANTAGES /• Reduced mass and overall dimensions of devices in comparison with the existing analogues.• Increased reliability, weather and vibration resistance.• Dramatic cost-cutting in batch production.• Achievement of high sensibility characteristics.• Low power consumption.

ESSENCE OF INNOVATION / The scientific novelty of the project is the development of new technology for pathological tissue change analysis using first developed coherent superheterodyne electron paramagnetic resonance spectrometer.

MARKET POTENTIAL /• The market of EPR equipment covers over $1bn.• Target segment: 10-15% of market in money terms, 2-5% of market in volume terms.• Key segments: laboratories of research institutes and higher educational institutions.

CURRENT STATUS /• Pilot EPR Spectrometer batch is manufactured.• Pilot device operations have been successfully performed.• The Project team develops the product application methods for specific areas.• Three Russian patents have been obtained, one PCT application has been filed.• Searching for partners and customers for the project development.

TEAM /A. TATARKOVCEO.A. ROKEAKHPhD in Physics and Mathematics, Senior Research Associate. Development of EPR Spectrometer and its subsystems.M. ARTEMOVPhD in Physics and Mathematics, Research Assistant. Development of EPR Spectrometer and its subsystems, carrying out of tests.A. CHEREPANOVPhD in Physics and Mathematics, Senior Research Associate. Carrying out of tests and improvement of EPR Spectrometer.N. KUDREVATYKHPhD in Physics and Mathematics, Senior Research Associate. Development of the magnetic system.E. NEDOSHOPAChief Project Engineer.A. ANDREEVDesign Engineer.

SPECTRUM

CONTACTS /Yekaterinburg +7 (912) 24 63 415

[email protected]

Pilot sample of EPR Spectrometer

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PRODUCT /SeismTech3D software and hardware suite (consists of methodological, hardware and software parts). Using of SeismTech3D adapted to customer's conditions will increase vertical resolution range up to 15 cm and higher, detail level by area up to 2 m and better, while maintaining standard seismic-acoustic surveillance efficiency. Using of the suite will allow to additionally determine physical and mechanical properties of the studied deposits and to re-estimate them in soil strength properties correspondingly.

COMPETITIVE ADVANTAGES / The simultaneous use of several sources, increase of signal to disturbance ratio for regular and irregular disturbances due to increase of response ratio according to common depth point method, thus increasing seismic survey resolution at the offshore areas and increase of surveillance level of detail at preserved survey depth.

ESSENCE OF INNOVATION /• Expansion of received elastic vibrations' frequency bandwidth due to simultaneous use of several sources.• Increase of signal to disturbance ratio for regular and irregular disturbances due to increase of response ratio according to common depth point method.

MARKET POTENTIAL /• Oil services market in 2014 comprised $26bn.• Drilling market in 2014 was $15bn, due to the plans of oil and gas companies for new geological prospection and deeper horizons exploration in mature fields.

CURRENT STATUS /• Key system units have been developed.• Preliminary tests have been performed.• The first software methodological complex version has been developed.

TEAM /LEONID KULNITSKY PhD in Geology and Mineralogy, CEO. Author of over 80 scientific publications concerning marine, and land engineering seismic surveys theory, methodology, processing, and interpretation.MIKHAIL TOKAREV CTO. Geophysicist, 28 years of work experience in geophysics.VALERY GAYNANOV Research Director. Seismic-acoustic measurements at offshore areas, i.e. development of hardware and surveillance methodology, software for data collection and processing.PAVEL GOFMAN Head of IT development. Management of the laboratory in the Institute of Petrochemical Synthesis of RAS, experience in catalysts and catalytic technology development, works on contracts with international oil companies.

SEISMTECH3D SOFTWARE AND HARDWARE SUITE FOR ULTRA-HIGH RESOLUTION 3D SEISMIC-ACOUSTIC MEASUREMENTS OF SUB-BOTTOM DEPOSITS AT OFFSHORE AREAS

CONTACTS /Moscow +7 (495) 930 85 52

[email protected]

SPLIT

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DEVELOPMENT OF THE TECHNOLOGY FOR SUPERHYDROPHOBIC FUNCTIONAL COATINGS WITH PROTECTIVE AND ANTI-ICING PROPERTIES FOR VARIOUS SUBSTRATES

PRODUCT /Superhydrophobic coatings with water repellent, anti-icing, antiseptic and other protective properties for use with various substrates, applied in liquid or aerosol form. Applications:• buildings and structures;• aviation and railway transport;• coatings for automotive vehicles, auto care product market;• coatings for glass and plastics;• coatings for construction materials and wood;• coatings for textiles and leather.

COMPETITIVE ADVANTAGES /• The coatings are specifically formulated for different weather conditions (tolerate temperatures from -50°C to +70°C and humidity from 2% to 98%).• Low consumption rate (from 15 to 30 mg per 1 m2).• Single-component product.• Contact angle greater than 150°.

ESSENCE OF INNOVATION / Development of a nano-composite material which serves as a base component for coatings with superhydrophobic properties, i.e. contact angle greater than 150°, contact angle hysteresis below 5°, light transmission above 90% with high resistance to rapid changes in temperature (from +70°C to -50°C) and to abrasive wear.

MARKET POTENTIAL /Global technological coating market is estimated $5.75bn.Key segments: large retailers, JSC Russian Railways, facilities management in commercial and industrial sectors, fleet maintenance in transport sector.

CURRENT STATUS /• Unique coating compositions have been developed.• Laboratory testing of superhydrophobic coatings for “anti-ice” effect and for water-repellent textiles has been completed.• Process optimisation work for the functional nanoparticles generation and adhesion onto various substrates is carried out.

TEAM /DMITRY BRUNCEO.ROMAN NOVICHKOVPhD in Chemistry, Research Project Manager, research interests are: colloidal chemistry and chemistry of nano-sized systems; development of synthesis methods for various functional modifiers, nanoparticles and composite mixtures.STANISLAV INDUCHNYInternational business consultant, experienced in technology development and commercialisation.

SUPERHYDROPHOBIC PROTECTIVE COATINGS

CONTACTS /Dubna,

Moscow region

+7 (916) 100 21 95

[email protected]

http://nc-dubna.ru

Surface treated with superhydrophobic coating. On the right: untreated surface

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DISTRIBUTED FIBRE-OPTIC SENSOR WITH VIBROACOUSTIC IMPACT CLASSIFICATION

PRODUCT /Distributed fibre-optic sensor with vibroacoustic impact classification for extended objects monitoring and protection.Applications:the sensor is designated for extended perimeters monitoring and protection. The system is optimal for use in remote areas without infrastructure.

COMPETITIVE ADVANTAGES /• The use of existing cabling infrastructure, i.e. a fibre solely is enough.• Hidden, i.e. underground installation of fibre-optic cable (FOC).• Passive distributed sensor is an optic fibre resistant to external electromagnetic interferences.• The cost per kilometre is lower than the cost of other solutions, i.e. the sensor does not require any maintenance nor power supply for distances up to 40 km (75 km with ROPA).

ESSENCE OF INNOVATION /• A new method of signal detection according to the restored phase, i.e. high linearity of response to impact along the whole passage length.• Signal to noise relation is increased twofold.• New algorithms for detected signal phase processing, i.e. events classification based on a multidimensional vector analysis.• Software protection from false responses.

MARKET POTENTIAL /• Fibre-optic sensors market by 2017: world - $1.5bn, Russia~$10-20mln.• Growth driver is a maximum use of production potential of the Russian Federation at protection of the objects: Gazprom, Transneft, the Ministry of Defence of the Russian Federation.• An interest has been expressed and the negotiations have been conducted with: Russian Railways, Rosatom, security companies.• Major industrial players:OptaSense (The United Kingdom), Future Fiber Technologies (Australia). Market

in the Russian Federation: T8 Sensor and some countries at the pre-startup stage.

CURRENT STATUS /The first sensor version is already developed and is being successfully implemented. The disadvantages of the first version have been detected, and the templates have been collected and analysed for the detection system. The next system generation is at the active development stage.

TEAM /VLADIMIR TRESHCHIKOVPhD in Physics and Mathematics, Project Manager; has developed and brought to market Volga DWDM platform; 55,000 km of DWDM systems have been installed; experience in establishment and management of the scientific and engineering company including >150 persons; the author of 7 patents.OLEG NANIYDoctor of Physics and Mathematics, Scientific Consultant, Professor at MSU, over 30 years of experience in research work in laser physics and fibre-optics, the author of over 170 publications.SERGEY NIKITINPhD in Physics and Mathematics, leading developer, 20 years of experience in laser and optic devices development and commercialization.VLADIMIR POTAPOVDoctor of Engineering, scientific consultant, Head of the Department of Fryazino branch of V.A. Kotelnikov Radio Engineering and Electronics Institute of RAS.

T8 SENSOR

CONTACTS / Moscow +7 (495) 585 80 96

www.t8.ru

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DEVELOPMENT OF NON-INVASIVE LIQUID LEVEL INDICATOR FOR PROCESS RESERVOIRS ON THE BASIS OF LAMB WAVE ENERGY MEASUREMENT

PRODUCT /Non-invasive ultrasonic liquid level indicator for process reservoirs and pipelines on the basis of Lamb wave energy measurement.Intended for use at the facilities of oil and gas, chemical and other industries, for example, for liquid level alarms in a reservoir, for residual oil level tracking in oil pipelines, etc.

COMPETITIVE ADVANTAGES /• The device can be used in reservoirs with internal structures and mechanisms.• The device can be used for contact-free hazardous substances control without opening a storage tank.• The device can be portably remounted on another facility, because it is fixed by magnetic brackets outside of a reservoir and can be quickly automatically adjusted for new operation conditions.

ESSENCE OF INNOVATION / The operation of the indicator is based on generation of probing ultrasonic Lamb wave on the external side of the controlled reservoir's wall. A part of Lamb wave energy is absorbed by contents of the reservoir. Therefore, the level of the contents can be determined according to the probing wave's attenuation degree. The embedded indicator software implements the self-adjusting and self-correction functions, as well as continuous level meter function.

MARKET POTENTIAL / Sales market: $5.5mln. The domestic market demand is estimated as approximately 11,000 devices for all branches of national economy.

CURRENT STATUS /• Over 100 Rubin-1M devices have been developed, and are currently operated.• Rubin-1M is included in recommended equipment list for the use by Gazprom.• A new Rubin-1M product has been successfully tested in Transneft at linear sections of main oil pipelines.

TEAM /OLEG KACHANOVCo-Founder and CEO.DMITRY ARISTOVProject Manager.ANTON KURENKOVChief Design Engineer.

TECHNOAUTOMAT, R&D CENTRE

CONTACTS /Engels

+7 (8453) 53 27 44

+7 (8453) 55 80 74

[email protected]

www.tehnoavtomat.ru

картинки не помещаюся

Rubin-1M set

Device scheme

Reservoir

A pair of one level sensors

Signal processing unit with embedded

Probing ultrasonic wave (conventionally)

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DEVELOPMENT AND IMPLEMENTATION OF CONTROL AND MEASURING EQUIPMENT FOR SEARCH OF WATER LEAKAGES FROM PIPELINES, PIPELINE AND CABLE LINES ROUTE LOCATION

PRODUCT /Multi-functional software and hardware correlative suite for the search of heat carrier leakages from a pipeline.

COMPETITIVE ADVANTAGES /• Search of leakages based on correlation signal processing in metal and plastic pipelines.• Search of leakages using acoustic method by a simple replacement of a sensor.• Search of pipelines, including the plastic ones and cables (sensor replacement).• Examination of possible leakage locations using electromagnetic methods (sensor replacement).• Direct sound velocity measurement.• Localization of pipeline insulation defects (sensor replacement).

ESSENCE OF INNOVATION / The essence of the development is creation of a device combining the functions, which are necessary to carry out all set of works for detection of the pipeline route location, leakage points, and emergency areas examination prior to excavation works. The set combines correlative, acoustic and electromagnetic methods, as well as potential difference method. Each of these methods additionally includes own know-hows.

MARKET POTENTIAL /• Equipment market: $300-700mln.• Target segment: 25-30% of the market.• Basic markets: Utilites, large enterprises, Gazprom, Transneft. Over 10,000 enterprises using heating systems, CWS (cold water supply) and HWS (hot water supply) networks,oil and gas pipelines.

CURRENT STATUS /• Prototypes of sensors and processing unit are available.• Correlative leakage search principles have been tested.• Technical solutions for acoustic leakage detector, electromagnetic route detector, and potential difference control method have been tested.• Patents have been obtained.• The world market analysis has been conducted and competitive advantages over the world analogues have been defined by the time of market entry.• The product parameters essential to consumers have been determined.• Pilot sales of product analogues have been performed and the market interest in the new products has been confirmed.

TEAM /SERGEY SERGEEV CEO, PhD in Engineering, associate member of Metrological Academy of the Russian Federation, Honoured Inventor of the Russian Federation.ALEXEY TADZHIBAEV R&D Manager, Doctor of Engineering.

TECHNOAS-SK

CONTACTS /

Moscow region

Kolomna

+7 (496) 615 16 90

[email protected]

www.technoac.ru

Visiting of TECHNOAS-SK LLC booth by the Chairman of the Government of the Russian

Federation D.A. Medvedev at Startup Village 2015.

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TECHNOLOGY OF MINERAL COATINGS FORMATION FOR LARGE-SIZE PARTS IN EXTREME OPERATION CONDITIONS

PRODUCT /Technology for development of modified mineral layers intended for metal parts surface protection in engineering, metallurgy, shipbuilding, power industry, transport, oil and gas production.

COMPETITIVE ADVANTAGES /• The technology does not require the use of baths, furnaces, vacuum chambers and special conditions.• The layers provide 3-50 times increase of the friction pairs wear resistance.• It does not change the processed parts geometry and does not require the drawings change.• Provides the possibility of application to the parts of complex shapeand configuration.

ESSENCE OF INNOVATION / Mineral layers on metal mechanical systems friction pair surface attain high resistance against wear, corrosion, abrasion, as well as anti-frictional properties after special treatment.

MARKET POTENTIAL /• Power engineering market: about $2bn in Russia, $100bn globally.• Turbine blades market: about $200mln in Russia, about $10bn globally.• Turbine shafts market: about $75mln in Russia, about $3.8bn globally.• Conveyor rollers market: about $100mln in Russia, $2.9bn globally.

CURRENT STATUS /• The conclusion of the Ministry of Defence of the Russian Federation concerning technology application in mechanical systems on Russian Navy ships is recieved.• The certificate of Russian Maritime Register of Shipping is received.• Two patents of the Russian Federation have been obtained, international patent is being prepared.

• The work on technology robotization is being performed.• The agreements on testing stop valve parts with mineral coating have been signed.

TEAM /STANISLAV KISLOVCEO.PAVEL BALASHPhD in Economics, Co-Founder, specialist in power engineering.ALEXANDER SKAZOCHKINPhD in Physics and Mathematics, specialist in solid state physics and innovation control.

ТЕCHNOLOGIES OF MINERAL COATINGS

CONTACTS /Kaluga

+7 (4842) 75 15 15

Fax: +7 (4842) 75 05 05

[email protected]

www.geoen.ru

Rolling mill conveyor roller with mineral coating after 25 months of operation.

Rolling mill conveyor roller without mineral coating after 8 months of operation.

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DEVELOPMENT OF ULTRA-SENSITIVE GAS SENSORS BASED ON PRINTED ELECTRONICS

PRODUCT /• Multi-component portable gas analyser based on organic sensors developed by means of printed electronics methods.• Low cost high-sensitive selective gas sensors based on organic field-effect transistors. Applications:• toxic and explosive gas concentration control in working and living rooms;• ecological environmental facilities control;• toxic exhaust gases control (road tunnels; underground and closed parkings; ventilation control);• fire hazard prevention at early stages;• medical technologies;• food quality control.

COMPETITIVE ADVANTAGES /• Ultra-high sensitivity (several parts per billion).• Fast response (dozens of seconds).• Multi-tasking performance: simultaneous detection of several gases with high selectivity.• Compactness, lightness, flexibility.• Energy efficiency.

ESSENCE OF INNOVATION / The designed gas sensor is represented as a set of separate organic field-effect transistors with additional receptor layers. The analysis of each transistor response in comparison to other transistors characteristics from this set provides simultaneous high-accuracy detection of several target gases.

MARKET POTENTIAL /• In oil and gas industry, the market volume is $18mln in 2015, 37% of total Russian gas analytical equipment market.• In chemical industry, a share is 30%, the controlled gases may vary depending on production characteristics.

CURRENT STATUS /• The technology for producing organic field-effect transistors has been proven.• The possibility for their use as gas sensors has been shown.

TEAM /ELENA AGINAPhD in Chemistry, Project Manager, Co-Founder, specialist in gas sensors architecture development.SERGEY PONOMARENKODoctor of Chemistry, associate member of RAS, Co-Founder, specialist in organic and silicone substances for functional gas sensor layers.ALEXEY SIZOVCo-Founder, specialist in gas sensors characterization.MARIA SHCHERBAKPhD in Physics and Mathematics, experience in innovative companies establishment and development.

ТЕCHNOLOGIES OF PRINTING ELECTRONICS

CONTACTS /Moscow

+7(916) 849 43 86

[email protected]

Organic field-effect transistor as gas sensor.

Analyte impact area

Organic semiconductor

Receptor layer

sourcedrain

dielectricgate

gate

Target analyte

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NEW-GENERATION LASER SYSTEMS FOR INFO-, NANO- AND BIOTECHNOLOGIES

PRODUCT /• Completely electronically-driven fibre laser with variable impulse duration from 100 fs to continuous generation period, variable impulse power from nanojoules to 1 µJ and variable wave length from 530 nm to 2200 nm.• Solid-state, fibre or hybrid laser with completely electronically-driven narrow emission line within the whole wide spectral laser generation range (operating spectral range: 275-1400/2050-2800 nm), automatic narrow line tuning within generation band in the fundamental and second emission harmonics up to 660 GHz.

COMPETITIVE ADVANTAGES /• Universal smart Technoscan laser systems provide wide variability and convenient radiation characteristics controllability.• The cost of the set of parameters implemented at the company's plants, as well as the cost of ownership is lower than the cost of the same set implemented in the competitors' products.• Laser with the smooth automatic narrow emission line scanning mode can be easily operated not only by laser specialists.

ESSENCE OF INNOVATION /• The system architecture allows to get record-high impulse power without using additional amplification stages in the driving generator.• The spectral range is changed due to the selection of various active media or the wave length transformation using additional modules (stimulated Raman scattering (SRS)/Raman).• Only two selective elements provide a narrow emission line and can be tuned synchronously within the whole generation spectrum. CURRENT STATUS /• The structure and the prototypes (pilot samples) of the new-generation fibre, solid-state and hybrid laser systems with the specified parameters have been developed.• Key technical solutions are patented.

TEAM /SERGEY KOBTSEVDoctor of Physics and Mathematics, CEO, work experience in laser physics, non-linear and fibre optics. Author/co-author of over 200 scientific publications and over 10 patents.SERGEY KUKARINPhD in Physics and Mathematics, experience in laser systems' commercial prototypes development and testing. Author/co-author of over 120 scientific publications and 2 patents.ALEXEY IVANENKOPhD in Physics and Mathematics, experience of developing fibre laser systems including those with ultra-long resonators. Practical training and work in the Aston Institute of Photonic Technologies of Aston University.

TECHNOSCAN – LAB

CONTACTS /Novosibirsk

+7 (383) 363 42 65

[email protected]

Erbius-Femto fibre femtosecond erbium laser

TIS-SF-777 continuous-wave single-frequency titanium-sapphire laser

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DEVELOPMENT AND IMPLEMENTATION OF THE TECHNOLOGY FOR PRODUCTION OF MONOMERS AND THERMOPLASTIC NANOMODIFIED POLYIMIDES ON THEIR BASE

PRODUCT /The technology for production of original monomers and thermoplastic nanomodified polyimides on their base. Applications: power-plant engineering, high current electric engineering, microengineering, aerospace and nuclear industry.

COMPETITIVE ADVANTAGES /• The performance is twofold-threefold higher in comparison with the best world analogues.• They exceed the best foreign analogues in terms of heat resistance (300°C against 200-250°C), strength (1,500-2,000 J/m2

against 500 J/m2).• Easy processing.• Low prime cost.

ESSENCE OF INNOVATION / • Original technology for production of monomers for the specified polyimides will allow to optimize and significantly reduce the cost of the synthesis process. • Monomer unit structure. • Nanomodification.

MARKET POTENTIAL /• Polyimide materials market: $1.7bn.• Target segment: Russian market (70%).• Key segments at the external market: aircraft engineering, nuclear industry, electronic engineering.

CURRENT STATUS /• R&D stage has been completed.• Five patents of the Russian Federation for monomers and polyimides are available.• Samples test certificates are available. The project is represented by industrial companies PORCHER industries (R&D agreement), Kazanorgsintez (R&D agreement).

TEAM /VLADIMIR MILTO Doctor of Chemistry, Co-Founder and CEO.VALENTIN SVETLICHNYDoctor of Chemistry, Professor, Head of technology development for thermoplastic polyimide production.ALEXEY FEDYUSHKIN Projecr Manager in Technology Transfer Centre of RAS and ROSNANO, Project Manager. Responsible for Project fund raising.

TEKHKHIM-PROM

CONTACTS /Moscow

+7 (903) 823 97 26

[email protected]

[email protected]

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DEVELOPMENT OF TECHNOLOGICAL BASE FOR DEVICES USING TERAHERTZ RADIATION FOR REMOTE PROBING AND IDENTIFICATION

PRODUCT /Technology based on the use of terahertz radiation for remote probing and identification.Applications:medical diagnostics and remote object detection devices.

COMPETITIVE ADVANTAGES / The unique terahertz intravision unit technology joint the approaches used in competing technologies and significantly increases the studied object's image contrast and information capacity, and extends the capabilities of THz-systems.

ESSENCE OF INNOVATION / Multi-frequency radiation generator provides “colour vision” function and is combined into one device with an ultra-sensitive detector. The running and localized plasmons interference on subwave structures is used for spectrum control.

MARKET POTENTIAL / A non-expensive device for medical diagnostics market ensures high diagnosis accuracy due to high resolution by space and tissue types. THz-devices for remote objects detection are in demand at the security systems market.

CURRENT STATUS /• The possibility to obtain THz images of biological tissues and chemical substances in laboratory conditions is shown.• Spectral analysis and new signal processing methods allowed to get information about early stage of skin cancer development.• Pilot sample has been developed. Laboratory prototype for obtaining of THz images.

TEAM /ALEXANDER SHKURINOV Doctor of Physics and Mathematics, Professor, Research Manager. Experience in development of terahertz range devices and their application technologies.ILYA OZHEREDOV Chief Researcher. Experience in assignment and solving of tasks related to terahertz nanophotonics.ALEXEY BALAKIN CEO. Experience in administration and company management.

TERALIFE

CONTACTS /Moscow

+7 (495) 939 11 06

[email protected]

Laboratory prototype for obtaining of THz images.

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THE TECHNOLOGY FOR HIGH TEMPERATURE MULTI-LAYER THIN-FILM FUNCTIONAL COATING SYNTHESIS FOR THE STRAIN-GAUGE TRANSDUCERS OF PHYSICAL PARAMETERS

PRODUCT /• The technology for production of key components for physical parameter sensors, i.e. sensitive elements and strain gauge modules.• Samples of strain gauge modules and sensitive elements (key sensor components).Applications:instrument-making engineering for the needs of the petrochemistry, aviation, shipbuilding, space and nuclear industries.

COMPETITIVE ADVANTAGES /• Operability under the influence of strong destabilizing factors: high impact and vibration loads, radiation effect, operating temperature range from -220° to +350°C, multi-cycle loads.• High sensitivity – 20÷50 times higher than in metal and cermet strain gauge structures.• The possibility to control aggressive liquid and gaseous media pressure.• Dielectric strength is 500 V.

ESSENCE OF INNOVATION / Generation of stable strain gauge multi-layer semiconductive structure based on samarium monosulphide directly on the metal elastic element structure.

MARKET POTENTIAL /• World market is $1.5-2bn or 5-6 million pcs., in Russia –$250-500mln or 0.5-0.6 mln. pcs. Annual market growth rate is 18%.• Growth drivers: new possibilities for the equipment technological operation parameters control in the limit operation modes for power industry, transport and aviation.

CURRENT STATUS /• Working design documentation has been developed for pressure sensor pilot samples.• The technology for functional coating synthesis with the existing parameters has been documented.• License agreements for 5 patents have been signed. International applications are being prepared for granting innovation and utility model patents.

TEAM /VIKTOR LOBTSOVCo-Founder and CEO. Co-author of 5 scientific inventions.ALEXANDER SHCHEPIKHINCo-Founder and Deputy CEO for scientific and technical work.R&D organization.GRIGORY ULKINCo-Founder and Deputy CEO for business development. Over 10 years of experience in investment promotion, project management, strategic marketing.

THIN FILM TECHNOLOGIES

CONTACTS /Moscow +7 (945) 937 12 01

[email protected]

www.tft-sensor.com

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DEVELOPMENT OF THIN-FILM SENSORS FOR FINGERPRINTS PRODUCT /PDFingerprint thin-film finger-printing sensors.Applications:stationary biometric devices, access control and record systems, bank payment authorization systems, biometric systems for state law enforcement authorities.

COMPETITIVE ADVANTAGES /• Thickness is less than 2 mm.• Resolution is over 500 dpi.• Cost is less than $20.

ESSENCE OF INNOVATION / The use of PDFingerprint sensor in biometric equipment allows to reduce its cost and size due to implementation of the existing expensive optical system functions in a thin-film form factor.

MARKET POTENTIAL /• AFIS devices market comprises ~60 mln. devices; $6bn in 2020.• Key segments: access control and record systems (12%), state institutions (33.3%), bank sector (7.1%).

CURRENT STATUS /• The laboratory R&D have been performed.• The sensor prototype has been developed.• The biometric scanner prototype has been developed.• Two applications for obtaining Russian patents have been filed.

TEAM /ALEXEY LACHINOVPhD in Physics and Mathematics, Founder and CEO.ALEXEY LACHINOVDoctor of Physics and Mathematics, Professor, Research Project Manager, author of over 10 patents and over 400 publications.DANFIS KARAMOVChief Project Developer.

THIN-FILM ELEMENTS

CONTACTS / Ufa

+7 (917) 430 27 14

[email protected]

Finger print image obtained by means of PDFingerprint sensor.

General view of PDFingerprint sensor

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FASTDEV SOFTWARE AND HARDWARE PLATFORM FOR EMBEDDED SYSTEMS

PRODUCT /FastDev platform is a complex of software and hardware tools, which generates a new approach for embedded systems development for the producers of small- and medium-batch professional electronics and special-purpose electronics.

COMPETITIVE ADVANTAGES / Universal embedded system allows:• to reduce prime cost of the end products in comparison with independent embedded system development;• to use optimal technical solutions for structural configuration in comparison with the use of finished SBC boards;• to reduce the complexity of module coupling with the device components in comparison with the use of new CoM modules.

ESSENCE OF INNOVATION / The innovativeness of the proposed approach consists in combination of a range of modern technical solutions from various scientific and technological fields within one software and hardware platform.

MARKET POTENTIAL / The market of electronic components focused on target category producers is estimated at $1-1.5bn. The volume of target “embedded systems as components” segment constitutes up to $200-400mln.

CURRENT STATUS /• Marketing research has been completed.• R&D have been started.• The customized works have been performed with the use of proposed architecture elements.

TEAM /ALEXEY STERINOVICHDirector of the company with 20 years of experience in software development.ALEXEY LUKASHOVHead of the Department for Electronic Engineers with 20 years of experience in hardware development.

UNISCAN-RESEARCH

CONTACTS /Novosibirsk

+7 (383) 363 10 03

[email protected]

www.uniscan-research.ru

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POWER PLANT ON SOLID OXIDE FUEL CELLS FOR CATHODE PROTECTION STATIONS OF THE OIL AND GAS SECTOR AND RANGE OF PLANTS FOR OTHER INDUSTRIES

PRODUCT /Independent power plant on solid oxide fuel elements with 7 kW capacity.Applications:Independent power supply to cathode protection stations of main oil and gas transport pipelines due to direct natural gas energy conversion to electricity.

COMPETITIVE ADVANTAGES /• Direct natural gas energy conversion to electricity.• Efficiency is up to 70%.• Ecological cleanliness, exhaust gases do not contain NOx and SOx.• Structure modularity.• Maintenance interval is up to 2 years.• Remote control.

ESSENCE OF INNOVATION /• The implemented automatic plant operation modes provide effective, safe and independent work of HOT-BOX to the maximum extent.• Thermal schemes have been introduced allowing to implement steam, carbon dioxide and/or air reforming depending on the operation mode.

MARKET POTENTIAL /• Plant market is $860bn.• Target segment: 35-50% of market in monetary terms, 5-10% in physical terms.• Key segments: current sources providing cathode protection system power supply, power supply to basic stations of mobile communications providers, power supply sources for telemetry.

CURRENT STATUS /• R&D have been performed.• Factory tests have been performed with confirmation of the specified characteristics in 40, 60, 70 and 110% load modes.• Two prototypes of PP on SOFC with the capacity of up to 3.5 and 7 kW have been developed.• Six patents of the Russian Federation have been obtained and four patent.

applications have been filed.• Organization of small-batch production.• Products diversification for emergency power sources.

TEAM /NIKITA PLOTNIKOVCEO, experience in implementation and investing in innovative projects.ALBERT BASKAKOVDoctor of Engineering, Honoured Master of Science and Technology, Scientific Consultant.ALEXEY MITINChief design Engineer, development of technological processes control systems.YULIA VOLKOVAExperience in innovative products market promotion, cooperation establishment, equipment concepts development.

URAL PRODUCTION COMPANY

CONTACTS /Yekaterinburg +7 (902) 874 99 20

[email protected]

www.sofcrus.com

Power plant on SOFC with the capacity of up to 3.5 kW.

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CLUSTER TEAM

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IGOR KARAVAEVVice-President, Executive Director

Tel.: +7 (495) 956 00 33 (2296)e-mail: [email protected]

ALEXANDER FERTMAN Science & Technology Director

Tel.: +7 (495) 956 00 33 (2088)e-mail: [email protected]

KONSTANTIN GIBALODirector of Business Development and Industrial Partners

Tel.: +7 (495) 956 00 33 (2084)e-mail: [email protected]

KIRILL DANILENKO Grant Manager

Tel.: +7 (495) 956 00 33 (2497)e-mail: [email protected]

CLUSTER TEAM

VLADIMIR TURTIKOVProject Manager

Tel.: +7 (495) 956 00 33 (2169)e-mail: [email protected]

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MAXIM IRISHKINProject Manager

Tel.: +7 (495) 956 00 33 (2436)e-mail: [email protected]

EVGENY MOLCHANOVProject Manager

Tel.: +7 (495) 956 00 33 (2034)e-mail: [email protected]

EKATERINA RYZHKOVA Operation Manager

Tel.: +7 (495) 956 00 33 (2050)e-mail: [email protected]

NIKITA KUZNETSOV Analyst

Tel.: +7 (495) 956 00 33 (2651)e-mail: [email protected]

LILIYA TARELKINA Assistant

Tel.: +7 (495) 956 00 33 (2296)e-mail: [email protected]

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INDEX OF PARTICIPANT PROJECTS

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ADVANCED BEAM TECHNOLOGY Electron-beam welding/cutting facility based on guns with plasma cathode and electron beam release to the air

АNIZOPRINT Technology for additive manufacturing of articles from composite materials reinforced with continuous fibres

ANTARIUS Creation of pulse neutron generator on gas tube to survey oil wells within geophysical processing systems

АPSTEK LABS Technology and equipment to ensure safety in places of mass gathering

AQUAMARIN Development and implementation of new remote tools for ecology monitoring in natural environments

AXICONSet of fiber-optic probes for scanning near-field optical microscopy

АXION – RARE AND PRECIOUS METALSDevelopment and implementation of a design technology for production of selective ion-exchange resins Axionit

BABYFIELD Automatic microwave heater-sterilizer for bottles with infant food, with direct pyrometric temperature monitoring

BIOMEDICAL LASER TECHNOLOGIES Development of laser equipment for cellular biology and medicine

BISANT, SCIENCE LABBroadband antenna modules for microwave communication systems based on anisotropic composites

CERAMICS TECHNOLOGIESCreation of pilot technology of production of cases of silicone carbide for burying of nuclear waste (NW) and spent nuclear fuel (SNF)

CОМBERRY Applied research works in the field of functional thin-film coatings

A-D18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

COMPOSITE, R&D CENTREDevelopment of innovative and cost-efficient technologies for PAN-polymer synthesis and PAN-fibre forming

COMPUTATIONAL ROBOTICS Technology of robotics systems’ motion control

CRYSTAL NORDAHP technology of CdZnTe monocrystals for radiation detectors

CVD. SPARK Commercialization of CVD-technology for manufacturing diamond wafers

DEFAN - ANALOGOUS PHOTON DETECTORNew generation of solid-state multiplier phototube for science and engineering

DELIZ Development of Yb-169-based innovative sources for brachytherapy

DELTA-SAPFIREMashina M500 energy-efficient plant for growing of large sapphire monocrystals of high optical quality by Kyropoulos method

DIAMANT Use of tagged neutrons technique to determine elemental composition of rocks and minerals

DIDIM Development and implementation of rare earth elements’ separation technology

E-GECOPOL ТЕCHNOLOGIESDevelopment of a pump & compressor pipe cleaning mobile facility intended to remove asphalt, resin, paraffin and salt deposits

EDUCATIVE ROBOTICSTechnology of control of motions and interactions with manipulated object at unretentive contact and non-full-drive dynamics in robotics applications

EIDOS-ROBOTICSRobotic facility with laser 3D-scan system

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43

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49

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51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

ENERGOPROM, R&D CENTREDevelopment and implementation of extra-pure high density graphite production technology

EUV LABSCreation of the sources of extreme ultraviolet radiation (13.5 nm) for nanolithography

FEМТОNICS Development of new generation femtosecond industrial laser

FЕМТОТЕCH Development of fibre-optic sensor systems based on femtosecond recording process

FIRST X-RAY LABORATORYDevelopment of X-ray fluorescent spectrometers for the study of elemental composition of solids and liquids

FOURIER PHOTONICSDevelopment of Fourier spectrometer with expanded spectral range

GALAN GL-02 laser hygrometer

GEOMASH ENGINEERINGNew generation of instruments for field geophysical measurements

GEOMERADevelopment and implementation of dimensional check systems for geometrically complicated parts

H-JHANDYPOWER Handy current sources on fuel cells

INNOVATION. TECHNOLOGIES.PRODUCTION Development and production of zinc-silicate corrosion-preventing compound Zinoferr®

INTELCOM ID Моbile multipurpose scanner of RFID tags and bar codes

INTELLECTUAL SCANNING SYSTEMS Development of “Ratioplastina” instrument to detect foreign and potentially hazardous inclusions in footwear

INTERSOFT EURASIADO-RA dosimeter-radiometer for smartphones and computers: smart technologies for environment monitoring

INZHIMATIK (ENGINEERING MATERIALS AND COMPONENTS) The world's first 3D hydrosensor (hydrosensor sorption cable) – the basis of early warning systems for water leaks and vapour breakthrough

ISM ТЕCHNOLOGIESCentrifugal machines for high-intensity crushing and mixing – ISM

JETFIELD Technology of footwear cleaning from contaminations including radioactive, chemical, and microbiological ones

K-MКАRS ТЕCHNOLOGYCoding-aperture-based Raman spectrometer for identification of substances

LAGRAN NAMED AFTER Е.М. SHVOMPulse laser welding unit for precision copper parts LАSER NANOSURGERY Laser techniques for non-invasive microsurgery and mammals cloning

LASER SPARK Compact highly stable femtosecond laser

LIMFDevelopment and establishment of the production of intraoperational irradiation facility

LITHIUM NANOTECHNOLOGY FOR POWER GENERATIONDevelopment of a technology for industrial-scale production of high-capacity lithium-ion batteries for portable electronics

LUMINESCENT DOSIMETRY Automated dosimetry system “Grey” for industry, ecology and medicine

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84

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86

LUMINESCENT INNOVATIVE TECHNOLOGIES Silicone ceramic nanostructured luminophores for ionising radiation detectors

МАGIDI Hot metallization of steel articles by horizontal method

МЕDICAL NANOTECHNOLOGIES System of high throughput screening of anaesthetic drugs

МЕМBRANE NANOTECHNOLOGY Development of multilayer metalloceramic nanostructured membranes and membrane modules on their basis

МICROFUSION Development of electron-beam magnetron facility for forming surface alloys with managed compositions

МICROCHANNEL SYSTEMSDevelopment and implementation of microchannel plate production technology

МICROSENSOR TECHNOLOGYDevelopment of optical microsensors on the basis of mid-infrared light emitting diode matrixes for checking the chemical analysis of gas, liquid and solid media

N-PNANOCOMPOSITEDevelopment of production technology of lean polymer composite materials with nanofibers and aluminium oxide nanoparticles

NANOCORALDevelopment of a technology for obtaining nanostructured ceramic matrix composite material based on aluminium oxide

NANOTECHNOLOGIES OF MEDICAL METALS Nanostructured metals and alloys for medical implants

NEW METALLURGYDevelopment of technology for complex processing of waste waters of metallurgical enterprises and their neutralization sludges with extraction of high-purity non-ferrous and rare materials

NEW CHEMICAL PRODUCTSIndustrial technology of obtaining anhydrous hydrogen fluoride (AHF) from fluorine-containing industry-related materials

NEW LASER THERMAL STRENGTHENING TECHNOLOGIESDevelopment of equipment and laser thermal strengthening industrial technologies for machine objects operating at multi-factor wear conditions

NT-МDTMethods and instrumentation of atomic-force microscopy for biomedical, nuclear and power-production fields of technology

NUCLEAR CONTAINERS CORPORATIONCreation of experimental demo package on soil and ground decontamination from radioactive nuclides, mercury, and other heavy metals and toxic substances with conditioning of generated waste

ОPTOGARD NANOTECHVacuum-free laser-plasma processes for super hard corrosion-resistant coatings and surface modification

PHOTONIC NANO-МЕТА ТЕCHNOLOGIESDevelopment and implementation of single photon source on chip technology

PLASMA SOURCESMevva-V.Ru vacuum arc metal ion source for ionic implantation

POLARUSPicosecond laser for microtreatment of materials based on heavily doped fibre

POLY-S New polymeric composition materials and technology of polymer mixture treatment with activated nanomodifiers

PROMSONICDevelopment of a facility and methods of ultrasonic visualization based on 2D grids for material and product nondestructive testing and diagnostics

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102

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104

105

106

107

108

R-SRADIATION-CHEMICAL TECHNOLOGY Investigations and developments in the field of radiation-chemical technology

RADIATION TECHNOLOGYDevelopment of spectrometric instrument for gamma-radiation detection based on solid-state PEM and inorganic scintillators

RADIO VISIONDevelopment of devices and systems based on the narrow band and pencile-beam space scanning

RATECLABSystem of cargo identification over the element composition for the purposes of economical, transport and environmental safety

CENTER FOR SCIENTIFIC AND TECHNOLOGICAL DEVELOPMENT (C-NTR)Faraday insulators (FI) for powerful laser emissions of near and middle IR-range

REZONVERDevelopment of combined hand arc welding and plasma cutting units

RМТ ELECTRONICSDevelopment and production of heat flux sensors based on thermoelectric micromodules

RSP ТЕCHNOLOGYDevelopment and implementation of technology for water leakage diagnostics on horizontal wells WaterAlarm

RUSELF – RECYCLINGInnovative technology of non-waste processing of saline aluminium dross with obtaining aluminium sulphate

RUSТЕCHImplementation of the phenomenon of structural extraplasticity in the semiconductor technology for manufacturing thermoelectrical modules

SAROV INNOVATIONSTechnologies for synthesis of optically transparent ceramics

SЕМАТ Production of machines for multicoordinate electrochemical treatment with rod electrode

SENSOR SPIN ТЕCHNOLOGIES Solid-state MEMS gyroscopeaccelerating facilities

S-INNOVATIONSCreation of accessible tapes with a IBAD-MgO layer for superconductors and semiconductors manufacturing

SМАRТ RAYDevelopment of X-ray seeds separator

SОМОV DESIGN BUREAUGRAVITON all-purpose security annunciator

SPECTRUMDevelopment of portable automated electron paramagnetic resonance (EPR) spectrometer for substance analysis at nanolevel

SPLITSeismTech3D software and hardware suitefor ultra-high resolution 3D seismic-acoustic measurements of sub-bottom deposits at offshore areas

SUPERHYDROFOBIC PROTECTIVE COATINGSDevelopment of process to produce super hydrophobic functional coatings with anti-icing and protective properties for various surfaces

T-UТ8 SENSORDistributive fibre-optic sensor with classification ТЕCHNOAUTOMAT, R&D CENTREDevelopment of non-invasive liquid level indicator for process reservoirs on the basis of Lamb wave energy measurement

ТЕCHNOAS-SKDevelopment and implementation of control and measuring equipment for search of water leakages from pipelines, pipeline and cable lines route location

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ТЕCHNOLOGIES OF MINERAL COATINGSTechnology of mineral coatings formation for large-size parts in extreme operation conditions

ТЕCHNOLOGIES OF PRINTING ELECTRONICS Development of ultra-sensitive gas sensors based on printed electronics

ТЕCHNOSCAN-LABNew-generation laser systems for info-, nano- and biotechnologies

ТЕCHKHIM-PROMDevelopment and implementation of the technology for production of monomers and thermoplastic nanomodified polyimides on their base

ТЕRALIFEDevelopment of technological base for devices using terahertz radiation for remote probing and identification

ТHIN-FILM ТЕCHNOLOGIES The technology for high temperature multi-layer thin-film functional coating synthesis for the strain-gauge transducers of physical parameters ТHIN-FILM ЕLEMENTS Development of thin-film sensors for fingerprints UNISCAN-RESEARCH FastDev hardware and software platform for embedded systems

URAL PRODUCTION COMPANY Power plant on solid oxide fuel cells for cathode protection stations of the oil and gas sector and range of plants for other industries

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