AOD407
Manufacturer | AOS |
Description | MOSFET P-CH 60V 12A TO252 |
Category | Discrete Semiconductor |
Package | TO-252 |
Status | New & original |
Ship From | HK/SHENZHEN |
Stocks | 10,000 |
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Description
The AOD407 is a specific part number for a power MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor). MOSFETs are electronic devices commonly used for switching and amplifying electronic signals in various applications.
The AOD407 is specifically designed as a high-voltage, N-channel power MOSFET. It features a low on-resistance and a high current rating, making it suitable for applications that require efficient power switching and high power handling capabilities.
This MOSFET can be used in a wide range of applications, including power supplies, motor control circuits, audio amplifiers, and lighting systems. In power supplies, the AOD407 can be utilized for high-power switching regulators, DC-DC converters, and other power conversion circuits. Its low on-resistance helps minimize power losses and improve overall system efficiency, particularly in high-voltage applications.
Motor control circuits, such as those found in industrial automation, robotics, and electric vehicles, can benefit from the AOD407’s high voltage rating and high current handling capabilities. It can handle significant power levels and switch quickly, enabling precise control of motors and other high-power devices.
Audio amplifiers that require high power and low distortion can also utilize the AOD407. Its low on-resistance helps minimize signal losses and improve the efficiency of the amplification process.
Lighting systems, both in residential and commercial settings, can benefit from the AOD407 for driving high-power LEDs or controlling the power delivered to different lighting elements. Its high voltage rating and low on-resistance allow for efficient and reliable operation in lighting applications.
Overall, the AOD407 is a high-voltage, N-channel power MOSFET suitable for various applications that require efficient power switching, high power handling, and robust performance.