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SPW47N60C3
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SPW47N60C3 Description
SPW47N60C3 Description
The SPW47N60C3 from Infineon Technologies is a high-performance N-channel MOSFET belonging to the CoolMOS C3 series, designed for demanding power electronics applications. With a 650V drain-source breakdown voltage (Vds) and 47A continuous drain current (Id), it delivers robust switching performance in high-voltage circuits. The device features an ultra-low 70 mΩ drain-source resistance (Rds(on)) and a gate charge (Qg) of 252 nC, ensuring efficient power handling with minimal conduction losses. Packaged in a TO-247-3 through-hole format, it offers excellent thermal dissipation (415W power dissipation) and mechanical stability, making it ideal for high-power designs.
SPW47N60C3 Features
- High Voltage & Current Rating: 600V Vds and 47A Id for robust power switching.
- Low Rds(on): 70 mΩ minimizes conduction losses, improving efficiency.
- Fast Switching: Rise time (27 ns) and fall time (8 ns) enable high-frequency operation.
- CoolMOS C3 Technology: Optimized for reduced switching losses and enhanced thermal performance.
- High Threshold Voltage (Vgs th): 2.1V ensures reliable turn-on/off with noise immunity.
- RoHS Compliant: Meets environmental standards for lead-free manufacturing.
SPW47N60C3 Applications
- Switched-Mode Power Supplies (SMPS): High-efficiency PFC and DC-DC converters.
- Motor Drives & Inverters: Suitable for industrial and automotive motor control systems.
- Renewable Energy Systems: Solar inverters and wind power converters.
- UPS & Industrial Power Modules: Reliable performance in backup power and heavy-load scenarios.
Conclusion of SPW47N60C3
The SPW47N60C3 stands out as a high-efficiency MOSFET for power electronics, combining low Rds(on), fast switching, and superior thermal management. Its CoolMOS C3 technology ensures optimal performance in high-voltage applications, making it a preferred choice for designers of SMPS, motor drives, and renewable energy systems. With Infineon’s proven reliability, this MOSFET is engineered to meet the demands of modern power conversion challenges.



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