VS-8EWF10S-M3, VS-8EWF12S-M3 Soft Recovery Series
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Vishay Semiconductors
Revision: 24-Nov-16
1
Document Number: 93377
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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Surface Mount Fast Soft Recovery Rectifier Diode, 8 A
FEATURES
• Glass passivated pellet chip junction
• Meets MSL level 1, per J-STD-020,
LF maximum peak of 260 °C
• Material categorization:
for definitions of compliance please see
www.vishay.com/doc?99912
APPLICATIONS
• Output rectification and freewheeling diode in inverters,
choppers and converters
• Input rectifications where severe restrictions on
conducted EMI should be met
DESCRIPTION
The VS-8EWF..S-M3 fast soft recovery rectifier series has
been optimized for combined short reverse recovery time,
low forward voltage drop and low leakage current.
The glass passivation ensures stable reliable operation in
the most severe temperature and power cycling conditions.
PRODUCT SUMMARY
Package TO-252AA (D-PAK)
I
F(AV)
8 A
V
R
1000 V, 1200 V
V
F
at I
F
1.3 V
I
FSM
150 A
t
rr
80 ns
T
J
max. 150 °C
Diode variation Single die
Snap factor 0.6
Base
cathode
+
2
13
node
--
Anode
MAJOR RATINGS AND CHARACTERISTICS
SYMBOL CHARACTERISTICS VALUES UNITS
I
F(AV)
Sinusoidal waveform 8 A
V
RRM
1000/1200 V
I
FSM
150 A
V
F
8 A, T
J
= 25 °C 1.3 V
t
rr
1 A, 100 A/μs 80 ns
T
J
Range -40 to +150 °C
VOLTAGE RATINGS
PART NUMBER
V
RRM
, MAXIMUM PEAK
REVERSE VOLTAGE
V
V
RSM
, MAXIMUM NON-REPETITIVE
PEAK REVERSE VOLTAGE
V
I
RRM
AT 150 °C
mA
VS-8EWF10S-M3 1000 1100
4
VS-8EWF12S-M3 1200 1300
ABSOLUTE MAXIMUM RATINGS
PARAMETER SYMBOL TEST CONDITIONS VALUES UNITS
Maximum average forward current I
F(AV)
T
C
= 96 °C, 180° conduction half sine wave 8
A
Maximum peak one cycle
non-repetitive surge current
I
FSM
10 ms sine pulse, rated V
RRM
applied 125
10 ms sine pulse, no voltage reapplied 150
Maximum I
2
t for fusing I
2
t
10 ms sine pulse, rated V
RRM
applied 78
A
2
s
10 ms sine pulse, no voltage reapplied 110
Maximum I
2
t for fusing I
2
t t = 0.1 ms to 10 ms, no voltage reapplied 1100 A
2
s