Product Information

JANTXV2N6193

JANTXV2N6193 electronic component of Microchip

Datasheet
Trans GP BJT PNP 100V 5A 3-Pin TO-39

Manufacturer: Microchip
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

1: USD 12.7309 ea
Line Total: USD 12.73

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MOQ: 1  Multiples: 1
Pack Size: 1
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Ships to you between Mon. 20 May to Fri. 24 May

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JANTXV2N6193
Microchip

1 : USD 12.7309

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Ships to you between Mon. 20 May to Fri. 24 May

MOQ : 118
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JANTXV2N6193
Microchip

118 : USD 15.6142

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JANTXV2N6193
Microchip

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4 : USD 13.7894
20 : USD 13.7894
40 : USD 13.7894
125 : USD 13.7894

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Ships to you between Fri. 24 May to Tue. 28 May

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JANTXV2N6193
Microchip

1 : USD 13.4565

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Ships to you between Mon. 20 May to Fri. 24 May

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JANTXV2N6193
Microchip

1 : USD 15.6754

     
Manufacturer
Product Category
Technology
Mounting Style
Package / Case
Transistor Polarity
Configuration
Collector- Emitter Voltage VCEO Max
Collector- Base Voltage VCBO
Emitter- Base Voltage VEBO
Collector-Emitter Saturation Voltage
Pd - Power Dissipation
Minimum Operating Temperature
Maximum Operating Temperature
Packaging
Dc Current Gain Hfe Max
Brand
Continuous Collector Current
Cnhts
Dc Collector/Base Gain Hfe Min
Hts Code
Mxhts
Product Type
Factory Pack Quantity :
Subcategory
Taric
LoadingGif

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TECHNICAL DATA PNP MEDIUM POWER SILICON TRANSISTOR Qualified per MIL-PRF-19500/561 Devices Qualified Level JAN, JANTX 2N6193 JANTXV MAXIMUM RATINGS Ratings Symbol 2N6193 Units - Emitter Voltage 100 V CEO - 100 V C Emitter - 6.0 V EBO 5.0 I C Base Current 1.0 I B 0 Total Power Dissipation T = +25 C 1.0 W A P 0 T T = +25 C 10 W C 0 Operating & Storage Temperature Range - 65 to +200 C T T o p , TO - 39* THERMAL CHARACTERISTICS (TO - Characteristics Symbol Max. Unit 0 Thermal Resistance, Junction - - Case 17.5 R 0 0 1) Derate linearly 5.71mW/ > +25 A 0 0 2) Derate linearly 57.1mW/ > +25 C 0 ELECTRICAL CHARACTERISTICS (T = 25 C unless otherwise noted) A Characteristics Symbol Min. Max. Unit OFF CHARACTERISTICS - Emitter Sustaining Voltage V 100 I C - Emitter Cuto ff Current I 100 CEO V = 100 Vdc CE Emitter - I 100 EBO V = 6.0 Vdc EB - Emitter Cutoff Current 10 I CEX V = 90 Vdc, V = 1.5 Vdc CE BE - I 10 c V = 100 Vdc 6 Lake Street, Lawrence, MA 01841 120101 1 - 800 - 446 - 1158 / (978) 794 - 1666 / Fax: (978) 689 - 0803 1 of 2 Page CB CBO Ad Base Cutoff Current Collector Adc Collector Adc Base Cutoff Current Adc Collector = 50 mAdc CEO(sus) Vdc Collector package outline *See appendix A for C C for T C C for T JC C/W to 205AD) stg (2) (1) Adc Adc Collector Current Vdc Base Voltage BO Vdc Base Voltage Collector Vdc Collector 2N6193 JAN SERIES ELECTRICAL CHARACTERISTICS (cont) Characteristics Symbol Min. Max. Unit (3) ON CHARACTERISTICS DC Current Gain 60 I = 2.0 Vdc C CE h FE 60 240 I = 2.0 Vdc C CE 40 I = 2.0 Vdc C CE - Emitter Saturation Voltage 0.7 I V C B CE(sat) 1.2 I B Base - Emitter Saturation Voltage 1.2 I V C B BE(sat) 1.8 I B DYNAMIC CHARACTERISTICS - Signal Short Circuit - Current Transfe r Ratio 3.0 15 h I = 10 Vdc, f = 10 MHz C CE Output Capacitance C 300 obo V = 0, 100 kHz 1.0 MHz E Output Capacitance 1250 C ibo V = 0, 100 kHz 1.0 MHz BE C SWITCHING CHARACTERISTICS t 100 s V = - = 3.0 d CC t Rise Time 100 I = r s C B1 t 2.0 s V = - s CC C t Fall Time 200 I = - I = f s B1 B2 SAFE OPERATING AREA DC Tests 0 T = +25 C, 1 Cycle, t 0.5 s C Test 1 V CE C Test 2 V CE C (3) Pulse Test: Pulse Width = 300 2.0%. 6 Lake Street, Lawrence, MA 01841 12010 1 1 - 800 - 446 - 1158 / (978) 794 - 1666 / Fax: (978) 689 - 0803 Page 2 of 2 s, Duty Cycle = 55 mAdc = 90 Vdc, I = 5.0 Adc = 2.0 Vdc, I 0.2 Adc = 2.0 Adc, 40 Vdc I Storage Time 0.2 Adc = 2.0 Adc, I BE(off) Vdc 40 Vdc, V lay Time De f = 2.0 Vdc, I pF CB f = 10 Vdc, I pF = 0.5 Adc, V fe Forward Magnitude of Common Emitter Small C = 0.5 Adc = 5.0 Adc, I Vdc = 0.2 Adc = 2.0 Adc, I C = 0.5 Adc = 5.0 Adc, I Vdc = 0.2 Adc = 2.0 Adc, I Collector = 5.0 Adc, V = 2.0 Adc, V = 0.5 Adc, V

Tariff Desc

8541.21.00 16 No - - With a dissipation rate of less than 1 W Free

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