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IRF640N Mosfet: Datasheet, Equivalent, Pinout [Video&FAQ]

  • Contents

Product Overview

The IR MOSFET family of power MOSFETs utilizes proven silicon processes offering designers a wide portfolio of devices to support various applications such as DC motors, inverters, SMPS, lighting, load switches as well as battery powered applications.The devices are available in a variety of surface mount and through-hole packages with industry standard footprints for ease of design.

 

This blog will introduce LM3900 systematically from its features, pinout to its specifications, applications, also including LM3900 datasheet and so much more.

 

Video: IRF640N Mosfet controls led via buttons on off

 

Catalog

Product Overview

IRF640N Features

IRF640N Benefits

IRF640N Pinout

IRF640N Circuit Diagram

IRF640N Test Circuits

Replacements and Equivalents of IRF640N

IRF640N Specifications

IRF640N Manufacturer

IRF640N Datasheet

Using Warnings

IRF640N FAQ

 

IRF640N Features

  • Planar cell structure for wide SOA
  • Optimized for broadest availability from distribution partners
  • Product qualification according to JEDEC standard
  • Silicon optimized for applications switching below <100kHz
  • Industry standard through-hole power package
  • High-current rating

 

IRF640N Benefits

  • Increased ruggedness
  • Wide availability from distribution partners
  • Industry standard qualification
  • High performance in low frequency applications
  • Standard pin-out allows for drop-in replacement
  • High current capability

 

IRF640N Pinout

The following figure is the diagram of IRF640N pinout.

 

IRF640N Pinout

IRF640N Pinout

 

IRF640N Circuit Diagram

Following is the circuit diagram of IRF640N.

 

IRF640N Light Control Circuit

IRF640N Light Control Circuit

 

IRF640N Test Circuits

Following are the diagrams of testing IRF640N circuit.

 

Unclamped Energy Test Circuit

Unclamped Energy Test Circuit

 

Gate Charge Test Circuit

Gate Charge Test Circuit

 

Switching Time Test Circuit

Switching Time Test Circuit

 

Replacements and Equivalents of IRF640N

You can replace the IRF640N with the IRFB23N20D, IRFB260N, IRFB31N20D, IRFB38N20D, IRFB4127, IRFB4227, IRFB4229, IRFB4233, IRFB42N20D, IRFB4332

 

IRF640N Specifications

Parametrics IRF640N
ID (@25°C)   max 18.0 A
Mounting THT
Ptot max 150.0 W
Package TO-220
Polarity N
QG (typ @10V) 44.7 nC
Qgd 22.0 nC
RDS (on) (@10V)   max 150.0 mΩ
RthJC max 1.0 K/W
Tj max 175.0 °C
VDS max 200.0 V
VGS(th) min max 3.0 V 2.0 V 4.0 V
VGS max 20.0 V

 

IRF640N Manufacturer

International Rectifier was an American power management technology company manufacturing analog and mixed-signal ICs, advanced circuit devices, integrated power systems, and high-performance integrated components for computing. On 13 January 2015, the company became a part of Infineon Technologies.

 

IRF640N Datasheet

You can download this datasheet for IRF640N–Datasheet from the link given below:

IRF640N Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

IRF640N FAQ

What are power MOSFETs used for?

Power MOSFETs (Metal-Oxide Semiconductor Field Effect Transistors) are three-terminal silicon devices that function by applying a signal to the gate that controls current conduction between source and drain.

 

What are N-channel MOSFETs?

Channel MOSFET is a type of metal oxide semiconductor field-effect transistor that is categorized under the field-effect transistors (FET). MOSFET transistor operation is based on the capacitor. ... These transistors also consist of three terminals which referred to as the source, drain, and the gate.

 

How does MOSFET work?

It works by varying the width of a channel along which charge carriers flow (electrons or holes). The charge carriers enter the channel at source and exit via the drain. The width of the channel is controlled by the voltage on an electrode is called gate which is located between source and drain.

 

How do I know if my MOSFET is bad?

A good MOSFET should have a reading of 0.4V to 0.9V (depends on the MOSFET type). If the reading is zero, the MOSFET is defective and when the reading is “open” or no reading, the MOSFET is also defective. When you reverse the DMM probe connections, the reading should be “open” or no reading for a good MOSFET.

 

What causes MOSFET failure?

If the maximum operating voltage of a MOSFET is exceeded, it goes into Avalanche breakdown. If the energy contained in the transient over-voltage is above the rated Avalanche energy level, then the MOSFET will fail. The device fails short circuit, initially, with no externally visible signs.

 

Why N channel is better than P channel MOSFET?

The N-Channel MOSFET has the higher packing density which makes it faster in switching applications due to the smaller junction areas and lower inherent capacitance. The N-channel MOSFET is smaller for the same complexity than P-channel device.

 

Is MOSFET current controlled?

MOSFET Drive Circuits. The power MOSFET is a voltage-controlled device. By providing a positive voltage to the gate, with respect to the source, current will be made to flow in the drain. Reducing the voltage to zero will turn the drain current off.

 

How do you identify a MOSFET?

The MOSFETs are the slightly smaller SC-72 package. The polarity of these devices is important, and usually referenced by pin number. To identify the pins, hold the device so that the marking side is factng you, and the legs are pointing downwards.

 

Why is my MOSFET getting hot?

Defective component; Heater draws too much current for the particular MOSFET you are using; or. The MOSFET is functioning normally, but it needs a heat sink due to significant power dissipation.

 

How can I stop my MOSFET from overheating?

Generally speaking, a MOSFET passing high current will heat up. Poor heat sinking can destroy the MOSFET from excessive temperature. One way of avoiding too-high current is to parallel multiple MOSFETs so they share load current.

 

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