FR107 Diode


3.00

The FR107 Diode is a fast recovery rectifier diode designed for high efficiency rectification and switching applications in power supply and signal processing circuits. Key Technical Specifications (Datasheet Snapshot): Fast recovery rectifier diode design Suitable for high frequency switching and rectification Low reverse recovery time for improved efficiency Stable performance in general purpose power circuits Axial lead through hole package for printed circuit board mounting

  • AVAILABILITY: AVAILABLE
  • SKU: 644

Stock: -


The FR107 Diode is a fast recovery rectifier component engineered for applications that require quicker switching performance than standard rectifier diodes. It is particularly well suited for use in switching power supplies, inverters, adapters, and other electronic circuits where reduced switching losses and improved efficiency are important.

Unlike ordinary rectifier diodes, the FR107 Diode is designed to return to its non conducting state much faster after each switching cycle. This characteristic significantly reduces power loss and heat generation in high frequency circuits, helping to improve overall system reliability and performance.

This diode is commonly used in high speed rectification stages, freewheeling paths for inductive loads, snubber circuits, and general purpose power management designs. Its axial lead package allows easy installation on through hole printed circuit boards and ensures strong mechanical and electrical connections after soldering.

Key Technical Specifications (Datasheet Snapshot):

  • Fast recovery rectifier diode type

  • Designed for high frequency rectification and switching applications

  • Low reverse recovery time for higher efficiency operation

  • Reliable performance in power supply and converter circuits

  • Axial lead through hole package for secure and durable mounting

The FR107 Diode is an excellent choice for designers who need a dependable and efficient rectifier solution in modern high speed electronic power systems.