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STD13003D

KODENSHI
Part Number STD13003D
Manufacturer KODENSHI
Description NPN Silicon Power Transistor
Published Jun 15, 2014
Detailed Description STD13003D NPN Silicon Power Transistor Applications • Power amplifier application • High current switching application ...
Datasheet PDF File STD13003D PDF File

STD13003D
STD13003D


Overview
STD13003D NPN Silicon Power Transistor Applications • Power amplifier application • High current switching application PIN Connection Features • High speed switching • VCEO(sus)=400V • Suitable for Switching Regulator and Motor Control TO-252 Ordering Information Type NO.
STD13003D STD13003 Marking Package Code TO-252 Absolute Maximum Ratings Characteristic Symbol Collector-base voltage Collector-emitter voltage Emitter-base voltage Collector current Base current Collector power dissipation Junction temperature Storage temperature *: Single pulse, tp= 300 ㎲ Characteristic Symb Thermal resistance Junction-Ambient R Junction-Case R ol th(J-A) th(J-C) (Ta=25℃) Ratings VCBO 700 VCEO 400 VEBO 9 IC 1.
5 ICP* 3 IB 0.
75 PC(J-A) PC(J-C) Tj 150 Tstg -55~150 1.
2 15 Unit V V V A(DC) A(Pulse) A(DC) W W °C °C Typ.
Max 104.
1 8.
3 Unit ℃/W ℃/W - KSD-T6O006-002 1 http://www.
Datasheet4U.
com STC13003D Electrical Characteristics Characteristic Symbol Collector-emitter sustaining voltage Collector cut-off current Emitter cut-off current DC current gain VCE(sus) I ICBO IEBO V hFE* (Ta=25℃) Test Condition C=5mA, Min.
Typ.
Max.
10 10 35 0.
5 1 3 1 Unit V uA uA IB=0 400 VCB=700V, IE=0 EB=9V, IC=0 - IC=0.
5A, VCE=2V 15 IC=1A, VCE=2V 5 IC=0.
5A, IB=0.
1A - Collector-emitter saturation voltage VCE(sat)* IC=1A, IB=0.
25A IC=1.
5A, IB=0.
5A - - - V Base-emitter saturation voltage VBE(sat)* IC=0.
5A, IB=0.
1A IC=1A, IB=0.
25A - V 4 13 1.
1 4 1.
2 ㎲ MHz pF Transition frequency Output capacitance Turn o n T ime Storage Time Fall Time * Pulse test: PW≤300 ㎲, Duty cycle≤2% Pulse fT V Cob ton tstg - CB=10V, IC=0.
1A, f=1MHz VCB=10V, IE=0, f=0.
1MHz < tf - 0.
7 KSD-T6O006-002 2 STD13003D Electrical Characteristic Curves Fig.
1 PC - Ta Fi g.
2 IC - VCE Fi g.
3 VCE(sat) - IC Fi g.
4 VBE(sat) - IC Fig.
5 hFE - IC Fig.
6 Safe operating area KSD-T6O006-002 3 STD13003D Electrical Characteristic Curves Fig.
7 Turn on time Fig.
8 Turn off time KSD-T6O006-002 4 STD13003D...



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