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MBR460MFST1G

MBR460MFST1G

Introduction

The MBR460MFST1G is a rectifier diode belonging to the category of power semiconductor devices. This diode is commonly used in various electronic circuits and power supply applications due to its unique characteristics and performance.

Basic Information Overview

  • Category: Power Semiconductor Device
  • Use: Rectification in electronic circuits and power supply applications
  • Characteristics: High current capability, low forward voltage drop, fast switching speed
  • Package: TO-252-2 (DPAK)
  • Essence: Efficient rectification and power conversion
  • Packaging/Quantity: Typically available in reels or tubes containing multiple units

Specifications

  • Maximum Average Forward Current: 4A
  • Peak Reverse Voltage: 60V
  • Forward Voltage Drop: 0.57V at 2A
  • Reverse Recovery Time: 35ns

Detailed Pin Configuration

The MBR460MFST1G features a standard TO-252-2 (DPAK) package with two pins: 1. Pin 1: Anode 2. Pin 2: Cathode

Functional Features

  • High current carrying capability
  • Low forward voltage drop for reduced power dissipation
  • Fast reverse recovery time for improved efficiency
  • Compact and rugged DPAK package for easy mounting and handling

Advantages and Disadvantages

Advantages

  • High current capability allows for use in demanding applications
  • Low forward voltage drop minimizes power loss
  • Fast reverse recovery time enhances efficiency

Disadvantages

  • Limited maximum reverse voltage compared to higher voltage diodes
  • Relatively larger package size compared to SMD counterparts

Working Principles

The MBR460MFST1G operates based on the principles of rectification, allowing the flow of current in one direction while blocking it in the opposite direction. When forward biased, the diode conducts with minimal voltage drop, enabling efficient power conversion.

Detailed Application Field Plans

The MBR460MFST1G finds extensive application in the following fields: - Switching power supplies - DC-DC converters - Battery charging circuits - Motor drive circuits - Solar power systems

Detailed and Complete Alternative Models

Some alternative models to MBR460MFST1G include: - MBR360RLG - MBR1045CT - MBRF20100CT

In conclusion, the MBR460MFST1G rectifier diode offers high-performance characteristics suitable for various power supply and electronic circuit applications. Its efficient operation, compact package, and robust design make it a preferred choice for designers and engineers seeking reliable rectification solutions.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací MBR460MFST1G v technických řešeních

  1. What is MBR460MFST1G?

    • MBR460MFST1G is a Schottky barrier rectifier diode designed for high efficiency and low power loss applications.
  2. What are the key features of MBR460MFST1G?

    • The key features include a low forward voltage drop, high current capability, and fast switching speed.
  3. What are the typical applications of MBR460MFST1G?

    • Typical applications include DC-DC converters, freewheeling diodes, OR-ing diodes, and reverse battery protection.
  4. What is the maximum forward voltage of MBR460MFST1G?

    • The maximum forward voltage is typically around 0.55V at a forward current of 4A.
  5. What is the maximum reverse voltage of MBR460MFST1G?

    • The maximum reverse voltage is 60V.
  6. What is the operating temperature range of MBR460MFST1G?

    • The operating temperature range is from -65°C to 150°C.
  7. What is the package type of MBR460MFST1G?

    • It comes in a surface mount SMB (DO-214AA) package.
  8. What are the advantages of using MBR460MFST1G in DC-DC converters?

    • The advantages include low forward voltage drop, high efficiency, and fast switching speed, which can improve overall system performance.
  9. Can MBR460MFST1G be used in automotive applications?

    • Yes, it is suitable for automotive applications such as reverse battery protection and power supply circuits.
  10. Are there any recommended layout considerations when using MBR460MFST1G?

    • Yes, it is recommended to minimize the length of the PCB traces to reduce parasitic inductance and optimize thermal management for reliable operation.