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IRF540ZSTRLPBF
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IRF540ZSTRLPBF Description
IRF540ZSTRLPBF Description
The IRF540ZSTRLPBF is a high-performance MOSFET N-CH 100V 36A D2PAK from Infineon Technologies. This single FET is designed for applications requiring high power dissipation and efficient switching capabilities. With a maximum drain to source voltage (Vdss) of 100V and a continuous drain current (Id) of 36A at 25°C, the IRF540ZSTRLPBF delivers exceptional performance in demanding electronic systems.
IRF540ZSTRLPBF Features
- Technology: MOSFET (Metal Oxide) - Provides high efficiency and low power loss in switching applications.
- Input Capacitance (Ciss): 1770 pF @ 25V - Minimizes input capacitance for faster switching and reduced power consumption.
- Gate Charge (Qg): 63 nC @ 10V - Reduces switching losses and improves efficiency.
- Rds On (Max): 26.5mOhm @ 22A, 10V - Offers low on-resistance for minimal power dissipation.
- Vgs(th) (Max): 4V @ 250µA - Ensures reliable switching and stable operation.
- Power Dissipation (Max): 92W (Tc) - Supports high power applications.
- Mounting Type: Surface Mount - Facilitates easy integration into PCB designs.
- Package: Tape & Reel (TR) - Ideal for automated assembly processes.
IRF540ZSTRLPBF Applications
The IRF540ZSTRLPBF is ideal for various high-power applications, including:
- Power Supplies: Utilize its high Vdss and Id capabilities for efficient power conversion and regulation.
- Motor Controls: Leverage its low Rds On and high Id for precise motor speed and torque control.
- Automotive Electronics: Benefit from its robustness and high power dissipation in automotive power management systems.
- Industrial Automation: Employ its high power handling capabilities in motor drives and control systems.
Conclusion of IRF540ZSTRLPBF
The IRF540ZSTRLPBF is a powerful and efficient MOSFET designed for high-power applications. Its unique combination of high Vdss, low Rds On, and high Id make it an ideal choice for power supplies, motor controls, automotive electronics, and industrial automation systems. Despite being classified as obsolete, its performance benefits and versatility make it a valuable component for legacy systems and applications requiring its specific characteristics.



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