MJ10007
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 (Table 1)
(IC = 250 mA, IB = 0, Vclamp = Rated VCEO)
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Collector–Emitter Sustaining Voltage (Table 1, Figure 12)
(IC = 1 A, Vclamp = Rated VCEX, TC = 100
_
C)
(IC = 5 A, Vclamp = Rated VCEX, TC = 100
_
C)
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Collector Cutoff Current
(VCEV = Rated Value, VBE(off) = 1 5 Vdc)
(VCEV = Rated Value, VBE(off) = 1.5 Vdc, TC = 150
_
C)
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Collector Cutoff Current
(VCE = Rated VCEV, RBE = 50 Ω, TC = 100
_
C)
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Emitter Cutoff Current
(VEB = 2 Vdc, IC = 0)
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Second Breakdown Collector Current with base forward biased
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DC Current Gain
(IC = 2.5 Adc, VCE = 5.0 Vdc)
(IC = 5.0 Adc, VCE = 5.0 Vdc)
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Collector Emitter Saturation Voltage
(IC = 5.0 Adc, IB = 250 mAdc)
(IC = 10 Adc, IB = 1.0 Adc)
(IC = 5.0 Adc, IB = 250 mAdc, TC = 100
_
C)
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Base–Emitter Saturation Voltage
(IC = 5.0 Adc, IB = 250 mAdc)
(IC = 5.0 Adc, IB = 250 mAdc, TC = 100
_
C)
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Diode Forward Voltage (1)
(IF = 5.0 Adc)
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Small Signal Current Gain
(IC = 1.0 Adc, VCE = 10 Vdc, ftest = 1.0 MHz)
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Output Capacitance
(VCB = 10 Vdc, IE = 0, ftest = 100 kHz)
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SWITCHING CHARACTERISTICS
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(VCC = 250 Vdc, IC = 5.0 A,
IB1 = 250 mA, VBE(off) = 5.0 Vdc, tp = 50 µs,
Duty Cycle
v
2.0%)
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(VCC = 250 Vdc, IC = 5.0 A,
IB1 = 250 mA, VBE(off) = 5.0 Vdc, tp = 50 µs,
Duty Cycle
v
2.0%)
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IB1 = 250 mA, VBE(off) = 5.0 Vdc, tp = 50 µs,
Duty Cycle
v
2.0%)
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Inductive Load Clamped (Table 1)
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(I
C = 5.0 A(pk), Vclamp = Rated VCEX, IB1 = 250 mA,
VBE(off) = 5.0 Vdc, TC = 100
_
C)
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(IC = 5.0 A(pk), Vclamp = Rated VCEX, IB1 = 250 mA,
VBE(off) = 5.0 Vdc, TC = 100
_
C)
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(I
C = 5.0 A(pk), Vclamp = Rated VCEX, IB1 = 250 mA,
VBE(off) = 5.0 Vdc, TC = 25
_
C)
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(IC = 5.0 A(pk), Vclamp = Rated VCEX, IB1 = 250 mA,
VBE(off) = 5.0 Vdc, TC = 25
_
C)
µs
(1) The internal Collector–to–Emitter diode can eliminate the need for an external diode to clamp inductive loads.
(1) Tests have shown that the Forward Recovery Voltage (Vf) of this diode is comparable to that of typical fast recovery rectifiers.
(2) Pulse Test: PW = 300 µs, Duty Cycle
v
2%.