VIPER267KDTR is a high-voltage power MOSFET manufactured by STMicroelectronics. It is designed for use in a wide range of applications, including power switching, motor control, and power management.
Description:
The VIPER267KDTR is a N-channel enhancement mode field-effect transistor (MOSFET) with a drain-source voltage (VDS) of 600V and a continuous drain current (ID) of 2.7A. It is available in a TO-220AB package, which is suitable for use in a variety of power applications.
Features:
Some of the key features of the VIPER267KDTR include:
- High voltage rating: The VIPER267KDTR has a high drain-source voltage rating of 600V, making it suitable for use in high-voltage applications.
- Low on-state resistance: The VIPER267KDTR has a low on-state resistance (RDS(on)) of 4.5 milliohms, which helps to minimize power dissipation and improve efficiency.
- High switching speed: The VIPER267KDTR has a fast switching speed, which makes it suitable for use in high-frequency applications.
- Robust design: The VIPER267KDTR is designed to be robust and reliable, with built-in protection features such as over-voltage and over-temperature protection.
Applications:
The VIPER267KDTR is suitable for use in a wide range of applications, including:
- Power switching: The VIPER267KDTR can be used in power switching applications, such as in power supplies and converters.
- Motor control: The VIPER267KDTR can be used in motor control applications, such as in industrial motor drives and robotics.
- Power management: The VIPER267KDTR can be used in power management applications, such as in battery management systems and power distribution systems.
- Lighting: The VIPER267KDTR can be used in lighting applications, such as in LED drivers and ballast circuits.
Overall, the VIPER267KDTR is a versatile and high-performance power MOSFET that is suitable for use in a wide range of power applications. Its high voltage rating, low on-state resistance, and fast switching speed make it an excellent choice for designers looking for a reliable and efficient power switching solution.