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IRLR2905PBF
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IRLR2905PBF Description
IRLR2905PBF Description
The IRLR2905PBF is a high-performance N-Channel MOSFET from Infineon Technologies, designed for applications requiring high efficiency and reliability. This device features a 55V drain-to-source voltage rating and can handle continuous drain currents up to 42A at 25°C. With a maximum power dissipation of 110W, the IRLR2905PBF is suitable for a wide range of power electronics applications.
IRLR2905PBF Features
- Technology: MOSFET (Metal Oxide) - Provides excellent switching performance and low on-resistance.
- Input Capacitance (Ciss): 1700 pF @ 25 V - Minimizes input capacitance for faster switching speeds.
- Gate Charge (Qg): 48 nC @ 5 V - Reduces switching losses and improves efficiency.
- Rds On (Max): 27 mOhm @ 25A, 10V - Offers low on-resistance for minimal power dissipation.
- Vgs(th) (Max): 2V @ 250µA - Ensures reliable gate threshold voltage for consistent performance.
- Mounting Type: Surface Mount - Facilitates easy integration into printed circuit boards.
- Package: Tube - Provides protection and ease of handling during manufacturing processes.
IRLR2905PBF Applications
The IRLR2905PBF is an ideal choice for various power electronics applications, including:
- Power Supplies: Due to its high drain current and low on-resistance, the IRLR2905PBF is suitable for high-efficiency power supply designs.
- Motor Control: The device's high voltage and current ratings make it ideal for motor control applications, such as electric vehicles and industrial motor drives.
- Inverters: The IRLR2905PBF can be used in inverter designs for renewable energy systems, providing efficient power conversion and control.
Conclusion of IRLR2905PBF
The IRLR2905PBF from Infineon Technologies is a powerful and reliable N-Channel MOSFET, offering excellent performance in high-power applications. Its unique features, such as low on-resistance and high input capacitance, make it a top choice for power supply, motor control, and inverter designs. However, it is important to note that this product is now obsolete, and alternative models should be considered for new designs.



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