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RFR005N25FU7TL

Part No RFR005N25FU7TL
Manufacturer Rohm Semiconductor
Catalog HOT - SALES and EOL Components (Q - R)
Sample
Rohs State rohs
ECAD Module
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Manufacturer Rohm Semiconductor
Win Source Part Number 294114-RFR005N25FU7TL
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian RFR005N25FU7TL CAD Model

Description

The RFR005N25FU7TL is an N-channel power MOSFET manufactured by Rohm Semiconductor. This MOSFET is designed for high-efficiency switching applications, offering low on-resistance and fast switching speeds. It is well-suited for various power management and motor control applications.

Applications:

  • DC-DC converters
  • Motor control circuits
  • Load switches
  • Power management systems
  • LED lighting applications

Features:

  • Low On-Resistance (RDS(on))
  • Fast Switching Speed
  • Trench Gate Structure
  • Lead-Free and RoHS Compliant
  • Halogen-Free

Benefits:

  • High efficiency: Low RDS(on) minimizes conduction losses, improving overall efficiency and reducing heat generation.
  • Fast switching: Fast switching speed reduces switching losses, further improving efficiency and allowing for higher frequency operation.
  • Reduced size: Compact packaging allows for use in space-constrained applications.
  • Environmentally friendly: Lead-free and RoHS compliant, meeting environmental standards.
  • Reliable performance: Designed for robust and reliable performance in demanding applications.

Additional Details:

The RFR005N25FU7TL features a drain-to-source voltage (VDS) of 250V and a continuous drain current (ID) of 5A. Its ultra-low RDS(on) contributes to its high efficiency. The device is available in a compact SMD package. The MOSFET's fast switching speed and low gate charge contribute to reduced switching losses, enhancing its performance in high-frequency applications. It is compliant with RoHS standards, making it suitable for environmentally conscious applications. The trench gate structure enhances the device's performance by providing a lower on-resistance for a given chip size. It is commonly used in synchronous rectification circuits to improve efficiency.

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