BYM36A to C−−100ns
BYM36D and E−−150ns
BYM36F and G−−250ns
diode capacitancef = 1 MHz; VR=0V;
BYM36A to C−85−pF
BYM36D and E−75−pF
BYM36F and G−65−pF
maximum slope of reverse recovery
current
BYM36A to C−− 7A/µs
BYM36D and E−− 6A/µs
BYM36F and G−− 5A/µs
IF= 0.5 A to IR=1A;
measured at IR= 0.25 A;
see Fig. 26
see Figs 23 and 24
when switched from
IF= 1 A to VR≥ 30 V and
dIF/dt = −1A/µs;
see Fig.27
SYMBOLPARAMETERCONDITIONSVALUEUNIT
R
th j-tp
R
th j-a
Note
1. Device mounted on an epoxy-glass printed-circuit board, 1.5 mm thick; thickness of Cu-layer ≥40 µm, see Fig.25.
For more information please refer to the
thermal resistance from junction to tie-pointlead length = 10 mm25K/W
thermal resistance from junction to ambientnote 175K/W
‘General Part of Handbook SC01’
.
1996 Sep 184
Philips SemiconductorsProduct specification
Fast soft-recovery
controlled avalanche rectifiers
GRAPHICAL DATA
handbook, halfpage
3
I
F(AV)
(A)
2
1
0
0200
BYM36A toC
a =1.42; VR=V
Switched mode application.
RRMmax
; δ= 0.5.
lead length (mm)20 15 10
100
o
T ( C)
tp
MSA884
handbook, halfpage
3
I
F(AV)
(A)
2
1
0
0200
BYM36D andE
a =1.42; VR=V
Switched mode application.
RRMmax
; δ= 0.5.
BYM36 series
lead length (mm)20 15 10
100
o
T ( C)
tp
MSA885
Fig.2Maximum average forward current as a
function of tie-point temperature (including
losses due to reverse leakage).
4.0
handbook, halfpage
I
F(AV)
(A)
3.2
2.4
1.6
0.8
0
0200
BYM36F andG
a =1.42; VR=V
Switched mode application.
RRMmax
lead length 10 mm
100
; δ= 0.5.
o
T ( C)
tp
MBD418
Fig.3Maximum average forward current as a
function of tie-point temperature (including
losses due to reverse leakage).
amb
MLB492
o
2.0
I
F(AV)
(A)
1.6
1.2
0.8
0.4
0
0200
BYM36A toC
a =1.42; VR=V
Device mounted as shown in Fig.25.
Switched mode application.
RRMmax
; δ= 0.5.
100
T ( C)
Fig.4Maximum average forward current as a
function of tie-point temperature (including
losses due to reverse leakage).
1996 Sep 185
Fig.5Maximum average forward current as a
function of ambient temperature (including
losses due to reverse leakage).
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