

Vishay / Siliconix
SI7942DP-T1-E3
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SI7942DP-T1-E3 Description
The SI7942DP-T1-E3 is a high voltage, high-speed, N-channel MOSFET from Vishay Siliconix. It is designed for use in a variety of power electronic applications, including motor control, power supplies, and battery management systems.
Description:
The SI7942DP-T1-E3 is a high voltage N-channel MOSFET that features a low on-state resistance (RDS(on)) and fast switching capabilities. It is available in a DPak package, which provides excellent thermal performance and ease of use in a variety of applications.
Features:
- High Voltage: The SI7942DP-T1-E3 is rated for a maximum drain-source voltage (VDS) of 60V.
- High-Speed Switching: The device features low gate charge (Qg) and fast switching times, making it well-suited for high-frequency applications.
- Low On-State Resistance: The low RDS(on) of the SI7942DP-T1-E3 helps to minimize power dissipation and improve efficiency in power electronic applications.
- Avalanche-Rated: The device is designed to withstand high-energy pulses, making it suitable for use in applications where transient voltages may be present.
Applications:
The SI7942DP-T1-E3 is suitable for a wide range of power electronic applications, including:
- Motor Control: The high voltage and fast switching capabilities of the SI7942DP-T1-E3 make it well-suited for use in motor control applications, such as brushless DC motor drivers and AC motor controllers.
- Power Supplies: The device can be used in power supply applications, such as battery chargers, power adapters, and DC-DC converters.
- Battery Management Systems: The SI7942DP-T1-E3 is suitable for use in battery management systems, where it can be used to control the flow of current to and from the battery.
- Class D Audio Amplifiers: The high-speed switching capabilities of the device make it well-suited for use in Class D audio amplifiers, which require high-efficiency and low distortion.
Overall, the SI7942DP-T1-E3 is a versatile and high-performance MOSFET that is well-suited for a variety of power electronic applications. Its combination of high voltage, high-speed switching, and low on-state resistance make it an excellent choice for designers looking to improve the performance and efficiency of their power electronic systems.



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