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DTC143ZETL
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DTC143ZETL Description
DTC143ZETL Description
The DTC143ZETL is a high-performance, single, pre-biased NPN bipolar transistor from ROHM Semiconductor. This device is designed for applications requiring low power consumption and high-frequency operation. With a maximum collector-emitter breakdown voltage of 50V and a maximum collector current of 100mA, the DTC143ZETL is suitable for various electronic circuits. The device is available in a compact EMT3 package and is surface mountable, making it ideal for space-constrained applications.
DTC143ZETL Features
- 250 MHz transition frequency for high-speed operation
- 100 mA maximum collector current for low power consumption
- 4.7 kOhms base resistor (R1) and 47 kOhms emitter-base resistor (R2) for stable operation
- 300 mV maximum Vce saturation at 250 µA and 5 mA collector current
- 150 mW maximum power dissipation for efficient operation
- 80 minimum DC current gain (hFE) at 10 mA collector current and 5V collector-emitter voltage
- Moisture Sensitivity Level (MSL) 1 for unlimited storage time
- REACH unaffected and RoHS3 compliant for environmental compliance
- EAR99 ECCN and HTSUS 8541.21.0075 for international trade
DTC143ZETL Applications
The DTC143ZETL is ideal for various applications due to its high-frequency performance, low power consumption, and compact package size. Some specific use cases include:
- Audio amplifiers and preamplifiers in consumer electronics
- RF and IF stages in communication systems
- Low-noise amplifiers in precision measurement equipment
- Driver stages in automotive electronics
- Power management circuits in portable devices
Conclusion of DTC143ZETL
The DTC143ZETL is a versatile, high-performance pre-biased NPN bipolar transistor from ROHM Semiconductor. Its unique combination of high-frequency performance, low power consumption, and compact package size makes it an excellent choice for a wide range of applications. With its robust technical specifications, the DTC143ZETL offers superior performance and reliability compared to similar models, making it an ideal choice for demanding electronic circuits.



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