

ROHM Semiconductor
UMY1NTR
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UMY1NTR Description
UMY1NTR Description
The UMY1NTR is a Bipolar Transistor Array manufactured by ROHM Semiconductor. This NPN/PNP transistor pair is designed for high-performance applications, offering a range of features that make it ideal for various electronic devices. With a maximum operating temperature of 150°C (TJ) and a frequency transition of 180MHz and 140MHz, the UMY1NTR delivers exceptional performance in demanding environments.
UMY1NTR Features
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Technical Specifications: The UMY1NTR boasts a maximum collector current (Ic) of 150mA and a Vce saturation of 400mV @ 5mA, 50mA / 500mV @ 5mA, 50mA. It can handle a maximum power of 150mW and has a collector-emitter breakdown voltage of 50V. The device is surface mount, making it suitable for compact designs.
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Performance Benefits: The UMY1NTR offers a minimum DC current gain (hFE) of 120 @ 1mA, 6V, ensuring reliable operation. Its low moisture sensitivity level (MSL) of 1 (Unlimited) makes it suitable for use in humid environments.
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Unique Features: The UMY1NTR stands out with its 5UMT package, which is smaller than many similar models, allowing for more compact designs. Its REACH unaffected status and ROHS3 compliance make it an environmentally friendly choice.
UMY1NTR Applications
The UMY1NTR is ideal for a variety of applications, including:
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Automotive Electronics: Its high operating temperature and robust performance make it suitable for automotive applications, such as engine control units and power management systems.
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Industrial Control Systems: The UMY1NTR's ability to handle high temperatures and high-frequency signals makes it ideal for use in industrial control systems, where reliability and performance are crucial.
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Communication Equipment: Its high-frequency capabilities make it suitable for use in communication equipment, such as radio frequency (RF) amplifiers and signal processing circuits.
Conclusion of UMY1NTR
The UMY1NTR is a high-performance Bipolar Transistor Array from ROHM Semiconductor that offers a range of features and benefits, making it ideal for demanding applications in automotive, industrial, and communication sectors. Its unique combination of technical specifications, performance benefits, and unique features make it a standout choice for designers looking to create compact, reliable, and environmentally friendly electronic devices.



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