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2N6300

VPT
Part Number 2N6300
Manufacturer VPT
Description NPN Darlington Power Silicon Transistor
Published Oct 28, 2019
Detailed Description 2N6300 & 2N6301 NPN Darlington Power Silicon Transistor Features • Available in JAN, JANTX, JANTXV per MIL-PRF-500/539 •...
Datasheet PDF File 2N6300 PDF File

2N6300
2N6300


Overview
2N6300 & 2N6301 NPN Darlington Power Silicon Transistor Features • Available in JAN, JANTX, JANTXV per MIL-PRF-500/539 • TO-66 (TO-213AA) Package • Designed for High Gain Amplifier and Medium Speed Switching Applications Rev.
V4 Electrical Characteristics (TA = +25oC unless otherwise noted) Parameter Test Conditions Symbol Units Min.
Max.
Collector - Emitter Breakdown Voltage Collector - Emitter Cutoff Current Collector - Emitter Cutoff Current Emitter - Base Cutoff Current IC = 100 mA dc; 2N6300 IC = 100 mA dc; 2N6301 VCE = 30 V dc; 2N6300 VCE = 40 V dc; 2N6301 VCE = 60 V dc; VBE = -1.
5 V dc; 2N6300 VCE = 80 V dc; VBE = -1.
5 V dc; 2N6301 VEB = 5 V dc V(BR)CEO V dc ICEO mA dc ICEX1 µA dc IEBO mA dc 60 80 — — — Forward Current Transfer Ratio Collector - Emitter Saturation Voltage Base - Emitter Saturation Voltage IC = 1 A dc; VCE = 3 Vdc IC = 4 A dc; VCE = 3 Vdc IC = 8 A dc; VCE = 3 Vdc IC = 4 A dc; IB = 16 mA dc IC = 8 A dc, IB = 80 mA dc IC = 8 A dc; IB = 80 mA dc hFE - VCE(SAT)1 VCE(SAT)2 V dc VBE(SAT)2 V dc Base - Emitter Voltage Dynamic Characteristics IC = 4 A dc; VCE = 3 V dc VBE(ON) V dc Magnitude of Small-Signal Short-Circuit Forward Current Transfer Ratio VCE = 3 V dc; IC = 3 A dc; f = 1.
0 MHz | hfe | Small-Signal Short-Circuit Forward Current Transfer Ratio VCE = 3 V dc; IC = 3 A dc; f = 1.
0 kHz hfe Output Capacitance VCB = 10 V dc; IE = 0; 100 kHz ≤ f ≤ 1 MHz Cobo Switching Characteristics Turn-On Time Turn-Off Time VCC = 30 Vdc; IC = 4.
0 A dc; IB1 = 16 mA dc VCC = 30 Vdc; IC = 4.
0 A dc; IB1 = -IB2 = 16 mA dc ton toff pF µs µs 500 700 100 — — — 25 300 — — — — 0.
5 0.
5 10 10 2.
0 18,000 2.
0 3.
0 4.
0 2.
8 350 — 200 2.
0 8.
0 1 1.
Pulse Test: Pulse Width = 300 μs, Duty Cycle ≤2.
0%.
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