NPN transistors in SOT-23 or TO-236AB packages
Manufacturer: ['diodes', 'infineon', 'nxp', 'onsemi', 'fairchild', 'peria', 'nexperia', 'rochester']
The BSS64 Series is a family of N-channel MOSFETs designed for high-efficiency switching applications, known for their robust performance, low on-resistance, and compact surface-mount packaging. These MOSFETs feature a maximum drain-source voltage rating of 60V and a continuous drain current rating that allows for efficient management of power in various applications. With an on-resistance as low as 0.1 ohm, the BSS64 Series minimizes power losses and enhances thermal stability, making them ideal for energy-sensitive designs.
Designed with a focus on reliability and versatility, the BSS64 Series incorporates advanced semiconductor technology that ensures fast switching speeds and efficient thermal management. These MOSFETs are available in a compact SMD package, allowing for high-density circuit design without compromising performance. The series is optimized for use in a wide array of applications, including power management systems, motor control, and LED lighting systems, where space constraints and thermal performance are critical.
Typical use cases for the BSS64 Series include switching power supplies, DC-DC converters, and battery management systems in consumer electronics and industrial equipment. The low gate threshold voltage ensures compatibility with low-voltage control signals, making these MOSFETs suitable for modern digital circuits and microcontroller interfacing. Additionally, the BSS64 Series is frequently utilized in automotive applications, where high reliability and temperature resilience are paramount.
In summary, the BSS64 Series stands out in the semiconductor market for its combination of low resistance, high efficiency, and compact design. Whether in consumer, industrial, or automotive sectors, these N-channel MOSFETs provide engineers with the flexibility and performance needed to meet the demands of contemporary electronic designs, ensuring optimal functionality and energy conservation across a multitude of applications.
SOT-23-3
SOT-23-3_527AG
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