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NVMFD5C466NT1G
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NVMFD5C466NT1G Description
The NVMFD5C466NT1G is a high-performance, high-voltage MOSFET from ON Semiconductor. It is designed for use in a variety of power electronic applications, including motor control, power supplies, and renewable energy systems.
Description:
The NVMFD5C466NT1G is a N-channel MOSFET with a drain-source voltage (VDS) of 100V and a continuous drain current (ID) of 46A. It features a low on-state resistance (RDS(on)) of 4.6mOhm, which helps to minimize power dissipation and improve efficiency in power conversion applications.
Features:
- High drain-source voltage (VDS) of 100V
- Continuous drain current (ID) of 46A
- Low on-state resistance (RDS(on)) of 4.6mOhm
- High switching speed and low switching losses
- Integrated body diode for efficient energy transfer
- Suitable for use in high-voltage, high-current applications
Applications:
The NVMFD5C466NT1G is suitable for use in a wide range of power electronic applications, including:
- Motor control: The MOSFET's high current and voltage ratings make it well-suited for use in motor control applications, such as in industrial machinery and automotive systems.
- Power supplies: The device's low on-state resistance and high switching speed make it an excellent choice for use in power supply applications, such as in telecom equipment and computer power supplies.
- Renewable energy systems: The NVMFD5C466NT1G can be used in renewable energy systems, such as solar power inverters and wind turbine converters, to help improve efficiency and reduce power losses.
- Automotive applications: The MOSFET's high voltage and current ratings make it suitable for use in automotive applications, such as electric vehicle charging systems and power steering control.
Overall, the NVMFFD5C466NT1G is a high-performance MOSFET that offers excellent efficiency and reliability in a wide range of power electronic applications. Its high voltage and current ratings, low on-state resistance, and fast switching speed make it an ideal choice for use in demanding power conversion applications.



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