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IRF135SA204
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IRF135SA204 Description
IRF135SA204 Description
The IRF135SA204 is a high-performance N-channel MOSFET from Infineon Technologies, featuring a drain-to-source voltage (Vdss) of 135V and a continuous drain current (Id) of 160A at 25°C. This device is part of the HEXFET® and StrongIRFET™ series, known for their superior performance and reliability in power electronics applications.
IRF135SA204 Features
- High Voltage and Current Ratings: With a Vdss of 135V and Id of 160A, the IRF135SA204 is suitable for high-power applications.
- Low On-Resistance: The maximum Rds(on) is 5.9mΩ at 96A and 10V Vgs, ensuring efficient power transfer with minimal losses.
- Fast Switching Speed: The gate charge (Qg) is 315nC at 10V Vgs, enabling rapid switching and reducing power dissipation.
- Robust Construction: The device is designed for power dissipation up to 500W (Tc) and has a moisture sensitivity level (MSL) of 1, indicating unlimited storage time before use.
- Surface Mount Packaging: The D2PAK-7 package allows for easy integration into surface-mount applications, improving manufacturing efficiency.
- Compliance and Regulations: The IRF135SA204 is RoHS3 compliant and REACH unaffected, ensuring environmental and regulatory compliance.
IRF135SA204 Applications
The IRF135SA204 is ideal for applications requiring high voltage and current handling capabilities, such as:
- Power Supplies: In high-power switching applications within power supply units.
- Industrial Automation: For motor control and inverter applications in industrial settings.
- Electric Vehicles: In battery management systems and electric drivetrains.
- Renewable Energy: For power conversion and control in solar and wind energy systems.
Conclusion of IRF135SA204
The IRF135SA204 is a powerful and reliable N-channel MOSFET, offering high voltage and current ratings, low on-resistance, and fast switching capabilities. Its robust construction, compliance with environmental regulations, and surface mount packaging make it an excellent choice for high-power applications in various industries. Despite being classified as obsolete, its unique features and performance benefits make it a valuable option for legacy systems and specific applications where high performance is critical.



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