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IRF640 vs IRF740: What is the difference? [FAQ]

  • Contents

This post contains details about IRF740 and  IRF640 pinout, equivalent, uses, features and other important information about how and where to use this MOSFET device.

 

Catalog

MOSFET Explained / Description

CAD Model

Pinout : IRFf640 vs IRF740

Replacement and Equivalent

Features / Technical Specifications : IRF640 vs IRF740

Applications : IRF640 vs IRF740

Where We Can Use it & How to Use: IRF640 vs IRF740

How to Safely Long Run in a Circuit: IRF640 vs IRF740

Circuits: IRF640 vs IRF740

Product Attributes : IRF740 vs IRF 640

 Product Datasheet

FAQ

 

 

MOSFET Explained / Description

IRF740 is a high voltage N channel MOSFET, the transistor is basically designed for high voltage and high speed switching applications. The max load voltage this transistor can drive is up to 400V with a maximum load current of 10A. The maximum current in pulse mode is 40A and the on-resistance or (RDS) is 0.55 ohms.

The max drain to source voltage of 400V makes it ideal to drive a variety of high voltage loads in electronic circuits.

 

IRF640 is an N Channel MOSFET designed for high speed switching purposes. This high speed switching capability can be very useful in applications where switching speed is crucial, for example in a UPS circuit or in any other application where a user wants to change the load input power from one source to another.

The transistor is capable of driving a load of up to 18A and the voltage can be upto 200V with the minimum saturation voltage of only 2V to 4v at its gate. The pulsed drain current is 72A means this MOSFET can drive a load of upto 72A in short intervals or when the load is not continuously connected and only connected for a 300us (Microseconds) time period with the duty cycle of 1.5%.

How To Test a MOSFET Transistor Using a Multimeter

 

CAD Model

 

 

Symbol

Symbol

 

 

 

Footprint

Footprint

 

 

2D-Model

2D Model

 

Pinout : IRFf640 vs IRF740

 

Pinout-irf640-vs-irf740

no difference in  pinout

 

 

Replacement and Equivalent

 

IRF740  :   2SK1400A, BUK457-400B, BUZ61A, IRF740S, MTP10N40E, RFP7N35, RFP7NA40

 

IRF640 :  YTA640, IRF641, IRF642, IRFB4620, IRFB5620, 2SK740, STP19NB20, YTA640, BUK455-200A, BUK456-200A, BUK456-200B, BUZ30A, MTP20N20E, RFP15N15, 2SK891, 18N25, 18N40, 22N20

 

 

Features / Technical Specifications : IRF640 vs IRF740

IRF640 IRF740
Package Type: TO-220 Package Type: TO-220 And Other Packages
Transistor Type: N Channel Transistor Type: N Channel
Max Voltage Applied From Drain to Source: 400V Max Voltage Applied From Drain to Source: 200V
Max Gate to Source Voltage Should Be: ±20V Max Gate to Source Voltage Should Be: ±20V
Max Continues Drain Current is : 10A Max Continues Drain Current is : 18A
Max Pulsed Drain Current is: 40A Max Pulsed Drain Current is: 72A
Max Power Dissipation is: 125W Max Power Dissipation is: 125W
Minimum Voltage Required to Conduct: 2V to 4V Minimum Voltage Required to Conduct: 2V to 4V
Max Storage & Operating temperature Should Be: -55 to +150 Centigrade Max Storage & Operating temperature Should Be: -55 to +150 Centigrade

 

Applications : IRF640 vs IRF740

IRF740 IRF640
Applications that requires fast switching Battery Chargers and BMS

High voltage applications Solar Power Supply Applications

Motor Drivers Applications That Requires Fast Switching

DC Motor drivers and controllers applications Motor Drivers

UPS ups
Battery charger circuits  
Lighting and ballast circuits  

 

Where We Can Use it & How to Use: IRF640 vs IRF740

IRF640 can be used in circuits where switching speed important for example in battery backup systems, uninterruptable power supplies, etc. and it will also perform well in general-purpose switching applications. Other than that it can also be used in building blocks of audio amplifiers.

 

 

IRF740 can be used in circuits in which you want to drive a voltage load of upto 400V with 10A load current. Also, the high speed switching capability makes it suitable in applications where the user requires switching from one source to another in nanoseconds.

The 400V load capability makes it suitable to use in a variety of high voltage applications such as uninterrupted power supplies, LED and other light ballasts, etc.

Moreover, this transistor can also be used in audio amplifier circuit stages and also as a separate audio amplifier.

 

How to Safely Long Run in a Circuit: IRF640 vs IRF740

 

IRF640

For long term performance, we always suggest using all components at least 20% below its maximum ratings and the same goes with IRF640. The max drain current is 18A therefore do not drive a load of more than 14.4A. The maximum load voltage is 200V and to stay under the safe side do not drive load of more than 160V. The maximum pulsed drain current is 72A so the max pulsed load should not exceed 57.6A. Use a proper heat sink with the transistor and always store or operate the device at temperature above -55 degree centigrade and below +150 degree centigrade.

 

IRF740

For long life performance of a component it’s important to not use a component on its maximum ratings and always use it at least 20% below from its max ratings, therefore same goes with IRF740 MOSFET.  The maximum continuous drain current is 10A therefore do not drive a load of more than 8A. The max drain to source voltage is 400V thus do not drive load of more than 320V. Where ever in operation use a suitable heatsink with the transistor and always store and operate this transistor in temperature above -55 degree Celsius and below +150 Celsius.

 

Circuits: IRF640 vs IRF740

 

power mosfet IRF740 as a switch circuit ( switch 300 volts DC and 5amp)

power mosfet IRF740 as a switch circuit ( switch 300 volts DC and 5amp)

 

Product Attributes : IRF740 vs IRF 640

TYPE DESCRIPTION IRF740 DESCRIPTION IFR640
Category Discrete Semiconductor Products Discrete Semiconductor Products
  Transistors - FETs, MOSFETs - Single Transistors - FETs, MOSFETs - Single
Mfr STMicroelectronics STMicroelectronics
Series PowerMESH™ II MESH OVERLAY™
Package Tube Tube
Part Status Obsolete Obsolete
FET Type N-Channel N-Channel
Technology MOSFET (Metal Oxide) MOSFET (Metal Oxide)
Drain to Source Voltage (Vdss) 400 V 200 V
Current - Continuous Drain (Id) @ 25°C 10A (Tc) 18A (Tc)
Drive Voltage (Max Rds On, Min Rds On) 10V 10V
Rds On (Max) @ Id, Vgs 550mOhm @ 5.3A, 10V 180mOhm @ 9A, 10V
Vgs(th) (Max) @ Id 4V @ 250µA 4V @ 250µA
Gate Charge (Qg) (Max) @ Vgs 43 nC @ 10 V 72 nC @ 10 V
Vgs (Max) ±20V ±20V
Input Capacitance (Ciss) (Max) @ Vds 1400 pF @ 25 V 1560 pF @ 25 V
FET Feature - -
Power Dissipation (Max) 125W (Tc) 125W (Tc)
Operating Temperature -65°C ~ 150°C (TJ) 150°C (TJ)
Mounting Type Through Hole Through Hole
Supplier Device Package TO-220 TO-220
Package / Case TO-220-3 TO-220-3
Base Product Number IRF740 IRF640

 

 Product Datasheet

 

IRF740 Datasheet

IRF640 Datasheet

 

 

FAQ

What is IRF740?

The IRF740 is an N-Channel Power MOSFET which can switch loads upto 400V. The Mosfet could switch loads that consume upto 10A, it can turned on by provide a gate threshold voltage of 10V across the Gate and Source pin. ... Hence this mosfet cannot be used in applications where high switching efficiency is required.

 

What is IRF640?

IRF640 is an N Channel MOSFET designed for high speed switching purposes. This high speed switching capability can be very useful in application where switching speed is crucial, for example in a UPS circuit or in any other application where use wants to change the load input power from one source to another.

 

What are MOSFET transistors used for?

The purpose of a MOSFET transistor is essentially to control voltage/current flow between the source and the drain.2

 

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 is an N-channel Mosfet?

N-Channel MOSFET is a type of metal oxide semiconductor field-effect transistor that is categorized under the field-effect transistors (FET). ... This type of transistor is also known as an insulated-gate field-effect transistor (IGFET). Sometimes it is also known as a metal-insulator field-effect transistor (MIFET).

 

What is the maximum load voltage of the IRF740 transistor?

400V

 

What type of MOSFET is IRF640?

N Channel MOSFET

 

What type of applications does IRF640 perform well in?

General-purpose switching applications

 

What can IRF640 be used as a separate audio amplifier?

Audio amplifier circuit stages

 

What percentage of IRF640 components are below its maximum ratings?

20%

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