Vishay Telefunken BYM36E, BYM36D, BYM36C, BYM36B, BYM36A Datasheet

Vishay Telefunken
g
R
Very Fast Soft–Recovery Avalanche Rectifier
Features
Glass passivated
Hermetically sealed package
Very low switching losses
Low reverse current
High reverse voltage
Applications
BYM36
Switched mode power supplies High–frequency inverter circuits
Absolute Maximum Ratings
Tj = 25_C
Parameter Test Conditions Type Symbol Value Unit
Reverse voltage BYM36A V =Repetitive peak reverse voltage
Peak forward surge current tp=10ms, half sinewave I Average forward current BYM36A
Non repetitive reverse avalanche energy
Junction and storage temperature range
I
=400mA,
(BR)R
inductive load
BYM36B BYM36C 600 V BYM36D 800 V BYM36E 1000 V
–BYM36C
BYM36D
–BYM36E
=V
Tj=T
RRM
FSM
I
FAV
I
FAV
E
R
R
stg
94 9588
200 V 400 V
65 A
3 A
2.9 A
10 mJ
–55...+175
°
C
Maximum Thermal Resistance
Tj = 25_C
Parameter Test Conditions Symbol Value Unit
Junction ambient l=10mm, TL=constant R
on PC Board with spacing 37.5 mm R
Document Number 86012 Rev. 2, 24-Jun-98
thJA thJA
www.vishay.de FaxBack +1-408-970-5600
25 K/W 70 K/W
1 (4)
BYM36
g
R
m
R
Vishay Telefunken
Electrical Characteristics
Tj = 25_C
Parameter Test Conditions Type Symbol Min Typ Max Unit
Forward voltage IF=3A BYM36A
–BYM36C
BYM36D
–BYM36E
IF=3A, Tj=175°C BYM36A
–BYM36C
BYM36D
–BYM36E
Reverse current VR=V
Reverse breakdown voltage IR=100mA BYM36A V
Reverse recovery time IF=0.5A, IR=1A,
RRM
VR=V
RRM
iR=0.25A
, Tj=150°C I
BYM36B V BYM36C V BYM36D V BYM36E V BYM36A
–BYM36C
BYM36D
–BYM36E
V
F
V
F
V
F
V
F
I
R
R (BR)R (BR)R (BR)R (BR)R (BR)R
t
rr
t
rr
1.6 V
1.78 V
1.22 V
1.28 V
5
m
100
m
300 V 500 V 700 V 900 V
1100 V
100 ns
150 ns
A A
Characteristics (Tj = 25_C unless otherwise specified)
600
500
R
=25K/W
thJA
1000V
800V
600V
400V
200V
R
P – Maximum Reverse Power Dissipation ( mW )
95 9705
400
300
R
=70K/W
200
100
0
0 40 80 120 160
thJA
Tj – Junction Temperature ( °C )
Figure 1. Max. Reverse Power Dissipation vs.
Junction Temperature
200
4
BYM36A, BYM36B, BYM36C
3
2
R
=70K/W
thJA
PCB
1
FAV
I – Average Forward Current ( A )
0
0
VR=V
RRM
Half Sinewave
40 80 120 160
T
– Ambient Temperature ( °C )95 9706
amb
Figure 2. Max. Average Forward Current vs.
Ambient Temperature
R
,
thJA
=25K/W
L=10mm
200
www.vishay.de FaxBack +1-408-970-5600 2 (4)
Document Number 86012
Rev. 2, 24-Jun-98
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