All Transistors. 2SB1100 Datasheet

 

2SB1100 Datasheet, Equivalent, Cross Reference Search


   Type Designator: 2SB1100
   Material of Transistor: Si
   Polarity: PNP
   Maximum Collector Power Dissipation (Pc): 30 W
   Maximum Collector-Base Voltage |Vcb|: 100 V
   Maximum Collector-Emitter Voltage |Vce|: 100 V
   Maximum Emitter-Base Voltage |Veb|: 7 V
   Maximum Collector Current |Ic max|: 10 A
   Max. Operating Junction Temperature (Tj): 175 °C
   Forward Current Transfer Ratio (hFE), MIN: 6000
   Noise Figure, dB: -
   Package: TO220

 2SB1100 Transistor Equivalent Substitute - Cross-Reference Search

   

2SB1100 Datasheet (PDF)

 ..1. Size:218K  inchange semiconductor
2sb1100.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1100DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -100V(Min)(BR)CEOHigh DC Current Gain-: h = 1000(Min)@ I = -10AFE CComplement to Type 2SD1591Minimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for audio frequency power amplifier and lowspeed high current

 8.1. Size:104K  panasonic
2sb1108.pdf

2SB1100 2SB1100

This Material Copyrighted By Its Respective Manufacturer This Material Copyrighted By Its Respective Manufacturer

 8.2. Size:404K  hitachi
2sb1101 2sb1102.pdf

2SB1100 2SB1100

 8.3. Size:36K  hitachi
2sb1103.pdf

2SB1100 2SB1100

2SB1103Silicon PNP Triple DiffusedApplicationLow frequency power amplifierOutlineTO-220AB211. BaseID2. Collector(Flange)13. Emitter 4.0 k 200 23(Typ) (Typ)32SB1103Absolute Maximum Ratings (Ta = 25C)Item Symbol Ratings UnitCollector to emitter voltage VCBO 60 VCollector to emitter voltage VCEO 60 VEmitter to base voltage VEBO 7 VC

 8.4. Size:389K  hitachi
2sb1109 2sb1110.pdf

2SB1100 2SB1100

 8.5. Size:152K  jmnic
2sb1103.pdf

2SB1100 2SB1100

JMnic Product Specification Silicon PNP Power Transistors 2SB1103 DESCRIPTION With TO-220C package DARLINGTON High DC durrent gain Low collector saturation voltage Complement to type 2SD1603 APPLICATIONS Designed for use in low frequency power amplifier applications PINNING PIN DESCRIPTION1 Base Collector;connected to 2 mounting base 3 EmitterAbs

 8.6. Size:156K  jmnic
2sb1101.pdf

2SB1100 2SB1100

JMnic Product Specification Silicon PNP Power Transistors 2SB1101 DESCRIPTION With TO-220 package Complement to type 2SD1601 DARLINGTON High DC current gain APPLICATIONS For low frequency power amplifier applications PINNING PIN DESCRIPTION1 Emitter Collector;connected to 2 mounting base Fig.1 simplified outline (TO-220) and symbol3 BaseAbsolute max

 8.7. Size:147K  jmnic
2sb1105.pdf

2SB1100 2SB1100

JMnic Product SpecificationSilicon PNP Power Transistors 2SB1105 DESCRIPTION With TO-220C package DARLINGTON High DC durrent gain Complement to type 2SD1605 APPLICATIONS Designed for use in low frequency power amplifier applications PINNING PIN DESCRIPTION1 Base Collector;connected to 2 mounting base 3 EmitterAbsolute maximum ratings(Tc=25) SYMB

 8.8. Size:150K  jmnic
2sb1102.pdf

2SB1100 2SB1100

JMnic Product Specification Silicon PNP Power Transistors 2SB1102 DESCRIPTION With TO-220 package Complement to type 2SD1602 DARLINGTON High DC current gain APPLICATIONS For low frequency power amplifier applications PINNING PIN DESCRIPTION1 Emitter Collector;connected to 2 mounting base Fig.1 simplified outline (TO-220) and symbol3 BaseAbsolute max

 8.9. Size:155K  jmnic
2sb1106.pdf

2SB1100 2SB1100

JMnic Product SpecificationSilicon PNP Power Transistors 2SB1106 DESCRIPTION With TO-220C package DARLINGTON High DC durrent gain Complement to type 2SD1606 APPLICATIONS Designed for use in low frequency power amplifier applications PINNING PIN DESCRIPTION1 Base Collector;connected to 2 mounting base 3 EmitterAbsolute maximum ratings(Tc=25) SYMB

 8.10. Size:214K  inchange semiconductor
2sb1103.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1103DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -60V(Min)(BR)CEOHigh DC Current Gain-: h = 1000(Min)@ (V = -3V, I = -4A)FE CE CMinimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for low frequency power amplifiers applications.ABSOLUTE MAXIMUM RATINGS(T =25

 8.11. Size:213K  inchange semiconductor
2sb1101.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1101DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -60V(Min)(BR)CEOHigh DC Current Gain-: h = 1000(Min)@ (V = -3V, I = -2A)FE CE CComplement to Type 2SD1601Minimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for low frequency power amplifiers applications.AB

 8.12. Size:213K  inchange semiconductor
2sb1105.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1105DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -120V(Min)(BR)CEOHigh DC Current Gain-: h = 1000(Min)@ (V = -3V, I = -1.5A)FE CE CComplement to Type 2SD1605Minimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for low frequency power amplifiers applications.

 8.13. Size:213K  inchange semiconductor
2sb1102.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1102DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -80V(Min)(BR)CEOHigh DC Current Gain-: h = 1000(Min)@ (V = -3V, I = -2A)FE CE CComplement to Type 2SD1602Minimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for low frequency power amplifiers applications.AB

 8.14. Size:214K  inchange semiconductor
2sb1106.pdf

2SB1100 2SB1100

isc Silicon PNP Darlington Power Transistor 2SB1106DESCRIPTIONCollector-Emitter Breakdown Voltage-: V = -120V(Min)(BR)CEOHigh DC Current Gain-: h =1000(Min)@ (V = -3V, I = -3A)FE CE CMinimum Lot-to-Lot variations for robust deviceperformance and reliable operationAPPLICATIONSDesigned for low frequency power amplifiers applications.ABSOLUTE MAXIMUM RATINGS(T =25

Datasheet: 2SA1179M4 , 2SA1179M5 , 2SA1179M6 , 2SA1179M7 , 2SA118 , 2SA1180 , 2SA1180A , 2SA1182 , D882 , 2SA1182Y , 2SA1183 , 2SA1184 , 2SA1185 , 2SA1186 , 2SA1186O , 2SA1186P , 2SA1186Y .

 

 
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