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MBRH120200

MBRH120200

Product Overview

Category

The MBRH120200 belongs to the category of Schottky Barrier Rectifiers.

Use

It is used as a rectifier in various electronic circuits and power supply applications.

Characteristics

  • High current capability
  • Low forward voltage drop
  • Fast switching speed
  • High temperature operation

Package

The MBRH120200 is typically available in a TO-220AB package.

Essence

The essence of MBRH120200 lies in its efficient rectification capabilities and high temperature tolerance.

Packaging/Quantity

It is commonly packaged in reels or tubes, with quantities varying based on manufacturer specifications.

Specifications

  • Maximum Average Forward Current: 12A
  • Maximum Reverse Voltage: 200V
  • Forward Voltage Drop: 0.65V at 6A
  • Operating Temperature Range: -65°C to 175°C

Detailed Pin Configuration

The MBRH120200 typically has three pins: 1. Anode 2. Cathode 3. Thermal pad (connected to the metal tab of the package)

Functional Features

  • Efficient rectification of AC to DC
  • Fast switching speed for high-frequency applications
  • Low power dissipation

Advantages

  • High current capability
  • Low forward voltage drop
  • Fast switching speed
  • Suitable for high-temperature environments

Disadvantages

  • Higher cost compared to standard diodes
  • Sensitive to reverse voltage spikes

Working Principles

The MBRH120200 operates based on the Schottky barrier principle, where the metal-semiconductor junction allows for faster switching and lower forward voltage drop compared to conventional PN-junction diodes.

Detailed Application Field Plans

The MBRH120200 is widely used in: - Switching power supplies - DC-DC converters - Solar panel bypass diodes - Motor drive circuits - Inverters

Detailed and Complete Alternative Models

Some alternative models to MBRH120200 include: - MBRF20100CT: 20A, 100V - MBRB20100CT: 20A, 100V - MBRF30100CT: 30A, 100V - MBRB3030CT: 30A, 30V

In conclusion, the MBRH120200 is a high-performance Schottky Barrier Rectifier with excellent characteristics suitable for a wide range of applications in the electronics industry.

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Énumérez 10 questions et réponses courantes liées à l'application de MBRH120200 dans les solutions techniques

Sure, here are 10 common questions and answers related to the application of MBRH120200 in technical solutions:

  1. Question: What is MBRH120200?
    Answer: MBRH120200 is a Schottky barrier rectifier diode designed for high current density and low forward voltage drop applications.

  2. Question: What is the maximum forward voltage of MBRH120200?
    Answer: The maximum forward voltage of MBRH120200 is typically around 0.58V at 6A.

  3. Question: What is the maximum reverse voltage of MBRH120200?
    Answer: The maximum reverse voltage of MBRH120200 is 200V.

  4. Question: What are the typical applications of MBRH120200?
    Answer: MBRH120200 is commonly used in power supplies, converters, and other high-frequency switching applications.

  5. Question: What is the maximum average forward current of MBRH120200?
    Answer: The maximum average forward current of MBRH120200 is 12A.

  6. Question: What is the operating temperature range of MBRH120200?
    Answer: The operating temperature range of MBRH120200 is -65°C to +175°C.

  7. Question: Is MBRH120200 suitable for automotive applications?
    Answer: Yes, MBRH120200 is suitable for automotive applications due to its high reliability and performance.

  8. Question: Can MBRH120200 be used in parallel to increase current handling capability?
    Answer: Yes, MBRH120200 can be used in parallel to increase current handling capability in high-power applications.

  9. Question: Does MBRH120200 have a low leakage current?
    Answer: Yes, MBRH120200 has a low reverse leakage current, making it suitable for high-efficiency applications.

  10. Question: Are there any specific layout considerations when using MBRH120200 in a circuit?
    Answer: It is recommended to minimize the loop area and keep the diode close to the switching device to reduce parasitic inductance and optimize performance.