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IRFP4710PBF
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IRFP4710PBF Description
IRFP4710PBF Description
The IRFP4710PBF is a high-performance N-channel MOSFET from Infineon Technologies, designed for applications requiring high power and efficient switching. With a drain-source voltage (Vdss) of 100V and a continuous drain current (Id) of 72A at 25°C, this device is suitable for a variety of high-power applications. The IRFP4710PBF features a HEXFET® series design, which provides excellent switching performance and thermal management.
IRFP4710PBF Features
- High Power Handling: Capable of handling up to 190W of power dissipation at temperature (Tc), making it ideal for high-power applications.
- Low On-Resistance: With an Rds(on) of only 14mOhm at 45A and 10V, the IRFP4710PBF offers low conduction losses.
- Fast Switching: The device has a maximum gate charge (Qg) of 170nC at 10V, enabling fast switching times.
- Robust Voltage Ratings: The IRFP4710PBF can handle a maximum gate-source voltage (Vgs) of ±20V and a threshold voltage (Vgs(th)) of 5.5V at 250µA.
- Environmental Compliance: This MOSFET is REACH unaffected and RoHS3 compliant, ensuring environmental safety and regulatory compliance.
IRFP4710PBF Applications
The IRFP4710PBF is well-suited for applications that demand high power and efficient switching, such as:
- Power Supplies: Due to its high voltage and current ratings, the IRFP4710PBF is ideal for use in power supply designs.
- Motor Controls: The low on-resistance and fast switching capabilities make it suitable for motor control applications.
- Industrial Automation: Its robustness and high power handling make it a good fit for industrial automation systems.
Conclusion of IRFP4710PBF
While the IRFP4710PBF is an obsolete product, it was a high-performance MOSFET designed for demanding high-power applications. Its unique features, such as low on-resistance, high power dissipation, and fast switching, made it an excellent choice for power supplies, motor controls, and industrial automation. Although it is no longer in production, its legacy remains in the performance it provided in its time. For current applications, it is recommended to look for updated models that offer similar or improved performance characteristics.



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