2 Motorola Bipolar Power Transistor Device Data
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*ELECTRICAL CHARACTERISTICS (TC = 25
_
C unless otherwise noted)
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Collector Emitter Sustaining Voltage (1)
(IC = 200 mAdc, IB = 0)
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Collector Cutoff Current
(VCE = 140 Vdc, VBE(off) = 1.5 Vdc)
(VCE = 140 Vdc, VBE(off) = 1.5 Vdc, TC = 150
_
C)
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Collector Cutoff Current
(VCE = 140 Vdc, IB = 0)
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Emitter Cutoff Current
(VEB = 5 Vdc, IC = 0)
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Second Breakdown Collector Current with Base Forward Baised
(VCE = 50 Vdc, t = 1 s (non repetitive))
(VCE = 100 Vdc, t = 1 s (non repetitive))
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DC Current Gain
(IC = 5 Adc, VCE = 2 Vdc)
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Collector Emitter Saturation Voltage
(IC = 5 Adc, IB = 0.5 Adc)
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Base Emitter On Voltage
(IC = 5 Adc, VCE = 2 Vdc)
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Current Gain — Bandwidth Product
(IC = 0.5 Adc, VCE = 10 Vdc, ftest = 0.5 MHz)
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Output Capacitance
(VCB = 10 Vdc, IE = 0, ftest = 1 MHz)
pF
(1) Pulse Test: Pulse Width = 300 µs, Duty Cycle
v
2%.
IC, COLLECTOR CURRENT (AMP)
5
Figure 1. Active–Region Safe Operating Area
VCE, COLLECTOR–EMITTER VOLTAGE (VOLTS)
5 7 10 200
10
2
2 3 50 70 10020 30
7
20
1
3
0.5
0.2
0.7
0.3
TC = 25
°
C
15
150
TJ = 200
°
C
BONDING WIRE LIMITED
THERMAL LIMITATION (SINGLE PULSE)
SECOND BREAKDOWN LIMITED
CURVES APPLY BELOW RATED VCEO
There are two limitations on the powerhandling ability of a
transistor: average junction temperature and second break-
down. Safe operating area curves indicate IC – VCE limits of
the transistor that must be observed for reliable operation;
i.e., the transistor must not be subjected to greater dissipa-
tion than the curves indicate.
The data of Figure 1 is based on TJ(pk) = 200
_
C; TC is
variable depending on conditions. At high case temper-
atures, thermal limitations will reduce the power that can be
handled to values less than the limitations imposed by
second breakdown.