The PSMN017-80PS is a robust and high-performance N-Channel MOSFET from NXP Semiconductors, designed to deliver efficient power management and conversion in a wide range of applications. This MOSFET is part of NXP's portfolio of power MOSFETs that offer low on-state resistance, high switching speed, and excellent thermal performance.
Key Features
- Low On-State Resistance (R<sub>DS(on)): The device boasts an exceptionally low on-state resistance, which minimizes conduction losses and improves overall efficiency, making it ideal for high-efficiency power supplies and DC-DC converters.
- High Continuous Drain Current (I<sub>D): With a high continuous drain current capability, the PSMN017-80PS is well-suited for applications requiring high current handling, such as motor control and power inverters.
- High-Speed Switching: The MOSFET's fast switching characteristics enable high-frequency operation, which is critical for reducing the size of passive components and improving power density in power conversion systems.
- Enhanced Thermal Performance: The device's excellent thermal characteristics ensure reliability under high-temperature operating conditions, which is essential for maintaining performance and extending the lifespan of electronic systems.
- Standard TO-220 Package: The PSMN017-80PS comes in a widely used TO-220 package, which is compatible with standard mounting processes and provides a good balance between thermal performance and compactness.
Applications
The PSMN017-80PS is versatile and can be used in a variety of applications, including:
- Power supply units (PSUs)
- DC-DC converters
- Motor drives
- Inverters
- Automotive systems
- Switching regulators
Technical Specifications
Parameter
Value
Drain-Source Voltage (V<sub>DS)
80V
Continuous Drain Current (I<sub>D)
17A
Power Dissipation (P<sub>D)
48W
R<sub>DS(on) Max @ V<sub>GS = 10V
14.5mΩ
Operating Temperature Range
-55°C to +175°C
With these specifications, the PSMN017-80PS N-Channel MOSFET from NXP stands out as a reliable and efficient solution for power management challenges in both industrial and automotive environments.