SBP13005D
High Voltage Fast-Switching NPN Power Transistor
Features
◆
◆
◆
◆
Very High Switching Speed
Minimum Lot-to-Lot h
FE
Variation
Wide Reverse Bias SOA
Built-in freewheeling diode
General Description
This Device is designed for high voltage, High speed
switching characteristics required such as lighting system,
switching mode power supply.
Absolute Maximum Ratings
Symbol
V
CES
V
CEO
V
EBO
I
C
I
CP
I
B
I
BM
P
C
T
J
T
STG
Parameter
Collector-Emitter Voltage
Collector-Emitter Voltage
Emitter-Base Voltage
Collector Current
Collector pulse Current
Base Current
Base Peak Current
Total Dissipation at TC = 25℃
Operation Junction Temperature
Storage Temperature
t
P
= 5ms
Test Conditions
V
BE
= 0
I
B
= 0
I
C
= 0
Value
700
400
9.0
4.0
8.0
2.0
4.0
75
- 40 ~ 150
- 40 ~ 150
Units
V
V
V
A
A
A
A
W
℃
℃
Thermal Characteristics
Symbol
R
θJC
R
θJA
Parameter
Thermal Resistance Junction to Case
Thermal Resistance Junction to Ambient
Value
1.67
62.5
Units
℃
/W
℃
/W
Jan 2009. Rev. 0
Copyright @WinSemi Semiconductor Co.,Ltd.,All rights reserved.
1/4
SBP13005D
Electrical Characteristics
(T
C
=25
℃
Symbol
I
CEV
V
CEO(SUS)
Parameter
Colletor Cut-off Current
( VBE = -1.5V )
Collector-Emitter Sustaining Voltage
unless otherwise noted)
Value
Test Conditions
V
CE
= 700V
V
CE
= 700V ,T
C
= 100℃
IB = 0, IC = 10mA
I
C
=1.0A, I
B
= 0.2A
Min
-
-
400
Typ
-
-
-
Max
1.0
5.0
-
0.5
-
-
0.6
1.0
-
10
10
-
1.2
1.6
40
30
3.6
1.6
-
2.5
Units
mA
V
V
CE(sat)
Collector-Emitter Saturation Voltage
I
C
= 2.0A, I
B
= 0.5A
I
C
= 4.0A, I
B
= 1.0A
V
V
BE(sat)
Base-Emitter Saturation Voltage
I
C
=1.0A, I
B
= 0.2A
I
C
= 2.0A, I
B
= 0.5A
V
h
FE
DC Current Gain
I
C
= 1.0A, VCE = 5V
IC = 2.0A, VCE = 5V
ts
tf
f
T
V
F
C
OB
Storage Time
Fall Time
Current Gain Bandwidth Product
Diode Forward Voltage
Output Capacitance
I
C
= 2.0A, V
CC
= 125V
I
B1
= 0.4A, I
B2
= -0.4A
T
P
= 25us
I
C
=0.5A ,V
CE
=10V
I
F
=2A
I
C
=0.5A ,V
CE
=10V
4
-
-
-
-
6.5
-
-
㎲
MHz
V
pF
Note:
Pulse Test : Pulse width 300, Duty cycle 2%
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.
SBP13005D
Fig. 1 DC Current Gain
Fig. 2 Saturation Voltage
Fig. 3 Power Derating
Fig. 4 Safe Operation Area
Fig. 5 Collect output capacitance
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