Toshiba AEC-Q101 Bipolar Transistors
Toshiba AEC-Q101 Bipolar Transistors are AEC-Q101 automotive-qualified transistors that have integrated bias resistors. The resistors reduce the number of external parts required. This makes it possible to reduce system size and assembly time. Transistors are available with a wide range of resistance to accommodate various circuit designs.Features
- AEC-Q101 qualified
- The integrated bias resistor reduces the number of external parts required, making it possible to reduce system size and assembly time
- Transistors are available with a wide range of resistance to accommodate various circuit designs
Applications
- Switching
- Inverter circuits
- Interfacing
- Driver circuits
View Results ( 42 ) Page
| Part Number | Datasheet | Description |
|---|---|---|
| RN2302,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single PNP , R1=10kOhm, R2=10kOhm, VCEO=-50V, IC=-0.1A (SOT-323) |
| RN1906,LXHF(CT | ![]() |
Digital Transistors AUTO AEC-Q 2-in-1 (Point-Sym) NPN x 2 , R1=4.7kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-363) |
| RN2301,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single PNP , R1=4.7kOhm, R2=4.7kOhm, VCEO=-50V, IC=-0.1A (SOT-323) |
| RN1301,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=4.7kOhm, R2=4.7kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1302,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=10kOhm, R2=10kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1304,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=47kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1305,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=2.2kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1306,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=4.7kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1307,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=10kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-323) |
| RN1308,LXHF | ![]() |
Digital Transistors AUTO AEC-Q Single NPN , R1=22kOhm, R2=47kOhm, VCEO=50V, IC=0.1A (SOT-323) |
Published: 2021-09-30
| Updated: 2022-03-11

