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IPI80N04S2H4AKSA2

IPI80N04S2H4AKSA2

Product Overview

Category

The IPI80N04S2H4AKSA2 belongs to the category of power MOSFETs.

Use

It is used as a high-performance switching device in various electronic circuits and power applications.

Characteristics

  • High voltage capability
  • Low on-resistance
  • Fast switching speed
  • Low gate charge

Package

The IPI80N04S2H4AKSA2 is typically available in a TO-220 package.

Essence

This MOSFET is essential for efficient power management and control in electronic systems.

Packaging/Quantity

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

Specifications

  • Drain-Source Voltage (VDS): 80V
  • Continuous Drain Current (ID): 80A
  • On-Resistance (RDS(on)): 4.2mΩ
  • Gate-Source Voltage (VGS): ±20V
  • Total Gate Charge (Qg): 120nC
  • Operating Temperature Range: -55°C to 175°C

Detailed Pin Configuration

The IPI80N04S2H4AKSA2 typically has three pins: 1. Gate (G) 2. Drain (D) 3. Source (S)

Functional Features

  • High voltage capability allows for use in various power applications.
  • Low on-resistance minimizes power loss and improves efficiency.
  • Fast switching speed enables rapid response in switching circuits.

Advantages and Disadvantages

Advantages

  • High voltage capability suitable for diverse applications
  • Low on-resistance for improved efficiency
  • Fast switching speed for responsive performance

Disadvantages

  • May require careful handling due to sensitivity to static electricity
  • Higher cost compared to standard MOSFETs

Working Principles

The IPI80N04S2H4AKSA2 operates based on the principles of field-effect transistors, utilizing its gate-source voltage to control the flow of current between the drain and source terminals.

Detailed Application Field Plans

The IPI80N04S2H4AKSA2 is commonly used in the following applications: - Switching power supplies - Motor control - Inverters - DC-DC converters - Automotive electronics

Detailed and Complete Alternative Models

Some alternative models to the IPI80N04S2H4AKSA2 include: - IRF840 - FDP8870 - STP80NF03L

In conclusion, the IPI80N04S2H4AKSA2 power MOSFET offers high-performance characteristics suitable for a wide range of power applications, despite its potential drawbacks. Its specifications, pin configuration, functional features, and application field plans make it a valuable component in electronic systems.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací IPI80N04S2H4AKSA2 v technických řešeních

  1. What is the maximum drain current of IPI80N04S2H4AKSA2?

    • The maximum drain current of IPI80N04S2H4AKSA2 is 80A.
  2. What is the maximum voltage rating of IPI80N04S2H4AKSA2?

    • The maximum voltage rating of IPI80N04S2H4AKSA2 is 40V.
  3. What is the on-resistance of IPI80N04S2H4AKSA2?

    • The on-resistance of IPI80N04S2H4AKSA2 is typically 8.5mΩ at Vgs=10V.
  4. What is the power dissipation capability of IPI80N04S2H4AKSA2?

    • The power dissipation capability of IPI80N04S2H4AKSA2 is determined by the thermal resistance and the operating conditions.
  5. Is IPI80N04S2H4AKSA2 suitable for high-frequency applications?

    • IPI80N04S2H4AKSA2 is optimized for use in high-current, low-frequency applications such as motor control and power supplies.
  6. Does IPI80N04S2H4AKSA2 require a heat sink for operation?

    • Depending on the application and operating conditions, a heat sink may be necessary to ensure proper thermal management.
  7. What are the typical applications for IPI80N04S2H4AKSA2?

    • Typical applications for IPI80N04S2H4AKSA2 include motor drives, inverters, and power supplies.
  8. What is the gate threshold voltage of IPI80N04S2H4AKSA2?

    • The gate threshold voltage of IPI80N04S2H4AKSA2 is typically 2.5V.
  9. Can IPI80N04S2H4AKSA2 be used in automotive applications?

    • Yes, IPI80N04S2H4AKSA2 is designed to meet the requirements for automotive applications.
  10. What are the key differences between IPI80N04S2H4AKSA2 and similar MOSFETs?

    • The key differences may include on-resistance, voltage ratings, and switching characteristics, which should be carefully evaluated based on the specific application requirements.