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Vsk.71.. series, Vishay high power products – C&H Technology VSK.71.. Series User Manual

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Document Number: 94626

2

Revision: 17-Dec-08

VSK.71.. Series

Vishay High Power Products

ADD-A-PAK Generation VII Power Modules

Standard Diodes, 80 A

ELECTRICAL SPECIFICATIONS

VOLTAGE RATINGS

TYPE NUMBER

VOLTAGE

CODE

V

RRM

, MAXIMUM REPETITIVE

PEAK REVERSE VOLTAGE

V

V

RSM

, MAXIMUM NON-REPETITIVE

PEAK REVERSE VOLTAGE

V

I

RRM

MAXIMUM

AT T

J

= 150 °C
mA

VSK.71

04

400

500

10

06

600

700

08

800

900

10

1000

1100

12

1200

1300

14

1400

1500

16

1600

1700

FORWARD CONDUCTION

PARAMETER

SYMBOL

TEST CONDITIONS

VALUES

UNITS

Maximum average forward current
at case temperature

I

F(AV)

180° conduction, half sine wave

80

A

110

°C

Maximum RMS forward current

I

F(RMS)

DC at 90 °C case temperature

126

A

Maximum peak, one-cycle forward,
non-repetitive surge current

I

FSM

t = 10 ms

No voltage
reapplied

Sinusoidal half wave,
intitial T

J

= T

J

maximum

1500

t = 8.3 ms

1570

t = 10 ms

100 % V

RRM

reapplied

1260

t = 8.3 ms

1320

Maximum I

2

t for fusing

I

2

t

t = 10 ms

No voltage
reapplied

11.25

kA

2

s

t = 8.3 ms

10.26

t = 10 ms

100 % V

RRM

reapplied

7.95

t = 8.3 ms

7.23

Maximum I

2

√t for fusing

I

2

√t

t = 0.1 ms to 10 ms, no voltage reapplied

112.5

kA

2

√s

Low level value of threshold voltage

V

F(TO)1

(16.7 % x

π x I

F(AV)

< I <

π x I

F(AV)

), T

J

= T

J

maximum

0.73

V

High level value of threshold voltage

V

F(TO)2

(I >

π x I

F(AV)

), T

J

= T

J

maximum

0.83

Low level value of forward
slope resistance

r

f1

(16.7 % x

π x I

F(AV)

< I <

π x I

F(AV)

), T

J

= T

J

maximum

3.22

m

Ω

High level value of forward
slope resistance

r

f2

(I >

π x I

F(AV)

), T

J

= T

J

maximum

2.89

Maximum forward voltage drop

V

FM

I

FM

=

π x I

F(AV)

, T

J

= 25 °C, t

p

= 400 µs square wave

1.6

V

BLOCKING

PARAMETER

SYMBOL

TEST CONDITIONS

VALUES

UNITS

Maximum peak reverse
leakage current

I

RRM

T

J

= 150 °C

10

mA

RMS insulation voltage

V

INS

50 Hz, 1 s

3500

V