IRF540NPBF Overview
The IRF540NPBF is a robust N-channel power MOSFET designed for high efficiency and reliable switching in demanding power management applications. Its advanced silicon technology enables low on-resistance and fast switching performance, making it a strong choice for environments requiring both durability and performance. This device is widely adopted in industrial, automotive, and consumer electronics sectors, thanks to its excellent thermal characteristics and proven reliability. Engineers and sourcing specialists value the IRF540NPBF for its consistent performance and ease of integration into a wide range of circuit designs. For more details, visit IC Manufacturer.
IRF540NPBF Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-channel MOSFET |
| Drain-Source Voltage (VDS) | 100V |
| Continuous Drain Current (ID) | 33A |
| RDS(on) (Max) | 44 m?? |
| Gate-Source Voltage (VGS) | ?I20V |
| Power Dissipation (PD) | 130W |
| Package Type | TO-220AB |
| Operating Temperature Range | -55??C to +175??C |
| Mounting Style | Through Hole |
IRF540NPBF Key Features
- Low on-resistance (RDS(on)) minimizes conduction losses, enhancing system efficiency and reducing heat generation.
- High drain current capability supports demanding loads, making it suitable for power conversion and motor control applications.
- Wide operating temperature range ensures reliable performance in harsh industrial and automotive environments.
- Standard TO-220AB package simplifies thermal management and enables straightforward integration into existing designs.
IRF540NPBF Advantages vs Typical Alternatives
Compared to typical power MOSFET alternatives, this device stands out with its low RDS(on) and high current handling, offering superior efficiency and reduced power loss. Its robust construction and wide temperature tolerance provide reliable operation in challenging environments, while the industry-standard package streamlines design and replacement for sourcing specialists and engineers.
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Typical Applications
- Switching power supplies??leveraging low on-resistance and high current capability, this device is ideal for efficient power conversion and voltage regulation in industrial and consumer electronic equipment.
- DC motor drives??used for precise speed and torque control in automation systems, robotics, and automotive actuators.
- Load switching??reliable operation makes it suitable for switching resistive and inductive loads in process control and automation panels.
- Uninterruptible power supplies (UPS)??provides efficient battery switching and inverter stages for backup power solutions.
IRF540NPBF Brand Info
The IRF540NPBF is part of a proven series of N-channel MOSFETs recognized for reliability and consistent performance in industrial and commercial power management applications. This component is manufactured to meet stringent quality standards, ensuring dependable operation in high-stress environments and supporting long-term service in field applications. Its combination of electrical performance and rugged packaging makes it a preferred choice for engineers and system designers seeking both value and longevity in their designs.
FAQ
What is the maximum drain-source voltage tolerated by this MOSFET?
This device supports a maximum drain-source voltage of 100V, allowing it to handle a wide range of high-voltage switching and power conversion applications without risk of breakdown under normal operating conditions.
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Which package type does the IRF540NPBF use and what are its mounting options?
It is supplied in a TO-220AB package, a popular standard for power semiconductors. This through-hole mounting style supports efficient heat dissipation and straightforward assembly in both prototypes and production environments.
What is the maximum continuous drain current supported?
The maximum continuous drain current supported by this device is 33A, making it suitable for high-load switching and driving applications where robust current handling is essential.
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Can this MOSFET operate in extreme temperature environments?
Yes, it features an operating temperature range from -55??C to +175??C, ensuring reliable performance in both low-temperature and high-temperature industrial or automotive environments.
How does the low RDS(on) benefit my design?
Low RDS(on) (maximum 44 m??) reduces conduction losses, resulting in higher efficiency, less heat generation, and improved overall reliability in power electronic circuits and switching applications.






