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IRF7821PBF
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IRF7821PBF Description
IRF7821PBF Description
The IRF7821PBF is a high-performance N-channel MOSFET from Infineon Technologies. With a drain-to-source voltage (Vdss) of 30V and a continuous drain current (Id) of 13.6A at 25°C, this device is designed for demanding applications requiring high power and efficiency. The IRF7821PBF features a low on-resistance (Rds(on)) of 9.1mOhm at 13A and 10V, ensuring minimal power dissipation and heat generation. The device is manufactured using advanced MOSFET technology, providing excellent electrical characteristics and reliability.
IRF7821PBF Features
- N-channel MOSFET with 30V drain-to-source voltage and 13.6A continuous drain current
- Low on-resistance (Rds(on)) of 9.1mOhm at 13A and 10V for minimal power dissipation
- Advanced MOSFET technology for excellent electrical characteristics and reliability
- Surface-mount packaging for easy integration into modern electronic designs
- RoHS3 compliant and REACH unaffected, ensuring environmental compliance
- Moisture Sensitivity Level (MSL) of 1, allowing for unlimited storage without baking
- Obsolete product status, indicating limited availability and potential need for alternative solutions
IRF7821PBF Applications
The IRF7821PBF is ideal for a variety of high-power applications, including:
- Power switching and control in industrial and automotive systems
- Motor control and drive circuits for electric vehicles and robotics
- High-efficiency power supplies and converters for consumer electronics
- Battery management systems for energy storage and renewable energy applications
Conclusion of IRF7821PBF
The IRF7821PBF is a high-performance N-channel MOSFET designed for demanding power switching applications. Its low on-resistance, high voltage and current ratings, and advanced MOSFET technology make it an excellent choice for high-efficiency power management. However, due to its obsolete status, it is essential to consider alternative solutions for new designs. The IRF7821PBF remains a reliable option for existing systems and applications where high power and efficiency are critical.



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