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Sunday, December 15, 2024

Mitsubishi FM400TU-07A: High-Performance Power MOSFET for Industrial Applications

 For authentic Mitsubishi power modules, including the FM400TU-07A, visit https://www.uscomponent.com/buy/MITSUBISHI/FM400TU-07A, a trusted and official distributor of Mitsubishi Electric MOSFETs. With genuine components and reliable service, USComponent ensures your industrial systems operate with the highest performance and reliability. Experience the outstanding efficiency and power-handling capabilities of the Mitsubishi FM400TU-07A—a trusted solution for powering industrial excellence.


The Mitsubishi FM400TU-07A is a high-performance Power MOSFET Module developed by Mitsubishi Electric as part of their FM series. Designed for demanding industrial and power supply applications, this advanced module delivers exceptional efficiency and reliable operation in high-power environments.


Built with Silicon Carbide (SiC) technology, the FM400TU-07A offers superior thermal conductivity and reduced switching losses compared to traditional silicon-based devices. This makes it an energy-efficient solution capable of handling significant power loads with ease.


Key Specifications and Features:


  • Maximum Voltage Rating: 1700V

  • Continuous Current Capacity: 400A

  • Low On-Resistance: 11 milliohms (minimizing power loss and boosting efficiency)

  • Fast Switching Speed: Ideal for high-frequency applications

  • Robust Protection: Integrated short-circuit protection and thermal shutdown for enhanced safety and durability


Housed in a standard module package, the Mitsubishi FM400TU-07A supports seamless integration into industrial systems. Its slightly lower current capacity compared to the FM600TU-07A is offset by its exceptional reliability and performance for high-demand applications.


Applications:


The Mitsubishi FM400TU-07A Power MOSFET Module is tailored for:


  • Industrial power management systems

  • High-frequency switching operations

  • Power supplies requiring high efficiency and thermal stability

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