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Simulation of Surge Immunity using EN61000-4-5 ビビ ビビビビビビ http://www.beetech.info/ 2014 ビ 3 ビ 26 ビ ビビ ビ

Simulation of Surge Immunity

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Page 1: Simulation of Surge Immunity

Simulation of Surge Immunity using EN61000-4-5

ビー・テクノロジーhttp://www.beetech.info/

2014年 3月 26日堀米 毅

Page 2: Simulation of Surge Immunity

測定機器の簡易等価回路図

菊水電子工業株式会社の資料より抜粋http://www.kikusui.co.jp/catalog/pdf/files/2000/iec61000-4-5.pdf

Page 3: Simulation of Surge Immunity

電圧サージ波形 (1.2/50us)

菊水電子工業株式会社の資料より抜粋http://www.kikusui.co.jp/catalog/pdf/files/2000/iec61000-4-5.pdf

Page 4: Simulation of Surge Immunity

電圧サージ波形 (8/20us)

菊水電子工業株式会社の資料より抜粋http://www.kikusui.co.jp/catalog/pdf/files/2000/iec61000-4-5.pdf

Page 5: Simulation of Surge Immunity

測定機器の簡易等価回路図

菊水電子工業株式会社の資料より抜粋http://www.kikusui.co.jp/catalog/pdf/files/2000/iec61000-4-5.pdf

Page 6: Simulation of Surge Immunity

Case1: Circuit Simulation for capacitive coupling of 1-Phase AC line Overvoltage Phase - Neutral

V 1

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 1

1

R 21 k

R 31

C 11 8 u

C 21 8 u

C 31 8 u

C 41 8 u

L 1

1 . 5 m H

1 2

L 2

1 . 5 m H

1 2

0

V 2

TD = 0 . 0 0 5

TF = 7 0 uP W =P E R = 1 0 0

V 1 = 0

TR = 1 0 u

V 2 = 5 0 0 0

VV

Page 7: Simulation of Surge Immunity

Case1: Circuit Simulation for capacitive coupling of 1-Phase AC line Overvoltage Phase - Neutral

Page 8: Simulation of Surge Immunity

Case2: Circuit Simulation for capacitive coupling of 1-Phase AC line Overvoltage Phase - Earth

V 1

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 1

1

R 21 k

R 31 k

C 19 u

C 29 u

C 39 u

C 49 u

L 1

1 . 5 m H

1 2

L 2

1 . 5 m H

1 2

0

V 2

TD = 0 . 0 0 5

TF = 7 0 0 uP W =P E R = 1 0 0

V 1 = 0

TR = 1 0 u

V 2 = 5 0 0 0

R 41 0

VV

Page 9: Simulation of Surge Immunity

Case2: Circuit Simulation for capacitive coupling of 1-Phase AC line Overvoltage Phase - Earth

Page 10: Simulation of Surge Immunity

Case3: Circuit Simulation for capacitive coupling of 3-Phase AC line Overvoltage Phase - Phase

V 1

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 1

1

R 21 k

R 31 k

C 11 8 u

C 41 8 u

L 1

1 . 5 m H

1 2

L 2

1 . 5 m H

1 2

0

V 2

TD = 0 . 0 0 5

TF = 7 0 0 uP W =P E R = 1 0 0

V 1 = 0

TR = 1 0 u

V 2 = 5 0 0 0

V 3

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 4

1

L 3

1 . 5 m H

1 2

R 51 k

V 4

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 6

1

L 4

1 . 5 m H

1 2

R 71 k

C 21 8 u

C 31 8 u

C 51 8 u C 6

1 8 uC 71 8 u

C 81 8 u

C 91 8 u

C 1 01 8 u

V V-

V+

Page 11: Simulation of Surge Immunity

Case3: Circuit Simulation for capacitive coupling of 3-Phase AC line Overvoltage Phase - Phase

Page 12: Simulation of Surge Immunity

Case4: Circuit Simulation for capacitive coupling of 3-Phase AC line Overvoltage Phase - Earth

V 1

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 1

1

R 21 k

R 31 k

C 19 u

C 49 u

L 1

1 . 5 m H

1 2

L 2

1 . 5 m H

1 2

0

V 2

TD = 0 . 0 0 5

TF = 7 0 0 uP W =P E R = 1 0 0

V 1 = 0

TR = 1 0 0 u

V 2 = 5 0 0 0

V 3

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 4

1

L 3

1 . 5 m H

1 2

R 51 k

V 4

F R E Q = 5 0V A M P L = 2 3 0

V O F F = 0

R 6

1

L 4

1 . 5 m H

1 2

R 71 k

C 29 u

C 39 u

C 59 u C 6

9 uC 79 u

C 89 u

C 99 u

C 1 09 u

R 81 0

V V

Page 13: Simulation of Surge Immunity

Case4: Circuit Simulation for capacitive coupling of 3-Phase AC line Overvoltage Phase - Earth