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IMT17T110
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IMT17T110 Description
IMT17T110 Description
The IMT17T110, manufactured by ROHM Semiconductor, is a Bipolar Transistor Array that offers a dual 2 PNP configuration. It is designed for high performance in a variety of electronic applications. With an operating temperature range of 150°C (TJ), this device can handle high-temperature environments, making it suitable for industrial and automotive applications. The IMT17T110 features a maximum collector-emitter breakdown voltage of 50V and a maximum power dissipation of 300mW, ensuring robust operation under various conditions.
IMT17T110 Features
- High Operating Temperature: Capable of withstanding up to 150°C (TJ), making it ideal for high-temperature applications.
- Frequency - Transition: 200MHz, suitable for high-speed switching applications.
- Current - Collector (Ic) (Max): 500mA, providing ample current handling capabilities.
- Vce Saturation (Max): 600mV @ 50mA, 500mA, ensuring low power consumption in saturation.
- DC Current Gain (hFE) (Min): 120 @ 100mA, 3V, offering consistent performance.
- Mounting Type: Surface Mount, facilitating easy integration into modern electronics.
- RoHS Status: ROHS3 Compliant, adhering to environmental regulations.
- REACH Status: REACH Unaffected, indicating compliance with EU chemical regulations.
IMT17T110 Applications
The IMT17T110 is well-suited for a variety of applications where high temperature and high-speed performance are required:
- Automotive Electronics: For use in engine control units and other high-temperature automotive components.
- Industrial Control Systems: In applications where high-temperature stability is crucial, such as in manufacturing equipment.
- Communications Equipment: Due to its high transition frequency, it can be used in high-speed data transmission systems.
- Power Management: For power switching and control in various electronic devices.
Conclusion of IMT17T110
The IMT17T110 from ROHM Semiconductor stands out due to its ability to operate at high temperatures and handle significant current loads. Its compliance with environmental regulations and high transition frequency make it a versatile choice for a range of applications. Despite being classified as obsolete, it remains a reliable option for legacy systems or where its specific performance characteristics are required.



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