IRFP150NPBF Overview
The IRFP150NPBF is a high-performance N-channel power MOSFET designed for demanding industrial and commercial applications. With its robust construction and efficient switching characteristics, this device delivers reliable power handling and enhanced thermal performance. Its standard TO-247 package ensures compatibility with automated assembly processes and heat dissipation solutions. Optimized for high-speed switching and low on-state resistance, this MOSFET is a versatile choice for designers seeking efficiency and durability. For advanced power electronics solutions, see more at IC Manufacturer.
IRFP150NPBF Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Maximum Drain-Source Voltage (VDS) | 100 V |
| Continuous Drain Current (ID) | 42 A |
| RDS(on) (Max) | 0.055 ?? |
| Gate Charge (QG) | 170 nC |
| Package / Case | TO-247 |
| Mounting Type | Through Hole |
| Polarity | N-Channel |
IRFP150NPBF Key Features
- Low on-resistance (RDS(on)) ensures reduced conduction losses, contributing to higher system efficiency in power switching designs.
- High drain current capability (up to 42 A) allows handling of substantial load currents, making it ideal for industrial power supplies and inverters.
- Robust TO-247 package supports superior thermal management, increasing reliability in high-power applications.
- Fast switching performance due to optimized gate charge enhances efficiency in high-frequency circuits.
IRFP150NPBF Advantages vs Typical Alternatives
Compared to typical alternatives, this MOSFET offers a favorable balance of low RDS(on) and high current handling, ensuring lower power dissipation and improved thermal stability. Its TO-247 package and high gate charge efficiency provide reliable operation in demanding environments, making it suitable for industrial switching and power conversion tasks.
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Typical Applications
- Switch mode power supplies: The device??s low on-resistance and high current rating make it suitable for efficient energy conversion and reduced power loss in SMPS topologies.
- Motor control circuits: Used in industrial and commercial motor drivers where high current and fast switching are required for precise speed and torque regulation.
- DC-DC converters: Ideal for step-up or step-down voltage regulation in a wide range of power management systems.
- Uninterruptible power supplies (UPS): Applied in inverter sections to provide reliable switching and power continuity during outages.
IRFP150NPBF Brand Info
This device is manufactured by an established global supplier renowned for robust power semiconductor solutions. The IRFP150NPBF belongs to a series of MOSFETs engineered for high reliability and efficiency in industrial, energy, and automation sectors. Compliance with RoHS standards ensures environmental responsibility, while the use of a familiar package format facilitates straightforward design integration and replacement.
FAQ
What package type is used for the IRFP150NPBF, and why is it advantageous?
The device is provided in a TO-247 package, which offers mechanical robustness and effective heat dissipation. This package is widely used in high-power applications for its ability to handle significant thermal and electrical stresses.
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Is the IRFP150NPBF suitable for high-speed switching applications?
Yes, its gate charge characteristics and low on-resistance allow for efficient performance in circuits requiring high-speed switching, such as switch mode power supplies and motor controllers.
Can this MOSFET be used in automotive or industrial environments?
With its high current capability and durable construction, the device is well-suited for industrial settings and can be considered for automotive designs where applicable voltage and current ratings are within required limits.
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What are the mounting requirements for this device?
The IRFP150NPBF is designed for through-hole mounting, making it compatible with standard PCB layouts and suitable for applications where secure mechanical attachment and heat dissipation are priorities.
How does this MOSFET improve efficiency in power conversion circuits?
Its low RDS(on) minimizes conduction losses, while fast switching reduces transition losses, both of which contribute to higher overall efficiency in power management and conversion applications.






