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BY9300 Datasheet, PDF (5/12 Pages) NXP Semiconductors – Fast high-voltage soft-recovery controlled avalanche rectifiers
Philips Semiconductors
Fast high-voltage soft-recovery
controlled avalanche rectifiers
GRAPHICAL DATA
handbook,2h0alfpage
IF(AV)
(mA)
16
MBK916
handbook,1h0alfpage
IF(AV)
(mA)
8
Product specification
BY9300 series
MDA853
12
a = 1.57
8
a = 6.32
4
6
a = 6.32 1.57
4
2
0
0
40
80
120
160
200
Tamb (°C)
BY9304.
a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.2 Maximum permissible average forward
current as a function of ambient temperature.
0
0
40
80
120
160
200
Tamb (°C)
BY9306.
a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.3 Maximum permissible average forward
current as a function of ambient temperature.
handbook, h5alfpage
IF(AV)
(mA)
4
3
2
MDA854
a = 6.32 1.57
handbook, h5alfpage
IF(AV)
(mA)
4
3
2
MDA859
a = 6.32
1.57
1
0
0
40
80
120
160
200
Tamb (°C)
BY9308.
a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.4 Maximum permissible average forward
current as a function of ambient temperature.
1
0
0
40
80
120
160
200
Tamb (°C)
BY9310.
a = IF(RMS)/IF(AV); VR = VRWmax; Rth j-a ≤ 120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.5 Maximum permissible average forward
current as a function of ambient temperature.
2000 Jan 10
5