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MOSFET Datasheet, PDF

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Searched Keyword : 'MOSFET' - Total: 331 (1/17) Pages
ManufacturerPart #DatasheetDescription
Company Logo Img
NXP Semiconductors
PMD9010D Datasheet pdf image
148Kb/16P
MOSFET driver
Rev. 01-20 November 2006
PMD2001D Datasheet pdf image
181Kb/15P
MOSFET driver
Rev. 02-28 August 2009
PMD9003D Datasheet pdf image
129Kb/15P
MOSFET driver
Rev. 01-24 November 2006
PMD9050D Datasheet pdf image
138Kb/13P
MOSFET driver
Rev. 01-27 November 2006
PMD5003K Datasheet pdf image
150Kb/15P
MOSFET driver
Rev. 01-6 November 2006
PMD3001D Datasheet pdf image
180Kb/16P
MOSFET driver
Rev. 02-28 August 2009
PMD5001K Datasheet pdf image
153Kb/15P
MOSFET driver
Rev. 01-3 November 2006
PMD4001K Datasheet pdf image
156Kb/15P
MOSFET driver
Rev. 01-3 November 2006
PMD4002K Datasheet pdf image
150Kb/15P
MOSFET driver
Rev. 01-3 November 2006
PMD4003K Datasheet pdf image
151Kb/15P
MOSFET driver
Rev. 01-3 November 2006
PMD5002K Datasheet pdf image
151Kb/15P
MOSFET driver
Rev. 01-6 November 2006
PMD9001D Datasheet pdf image
128Kb/15P
MOSFET driver
Rev. 01-16 November 2006
PMD9002D Datasheet pdf image
129Kb/15P
MOSFET driver
Rev. 01-20 November 2006
BF1107 Datasheet pdf image
60Kb/8P
N-channel single gate MOSFET
Rev. 04-9 January 2007
BF1217WR Datasheet pdf image
185Kb/17P
N-channel dual gate MOSFET
Rev. 2 - 20 June 2011
A2T23H160-24S Datasheet pdf image
455Kb/16P
N--Channel Enhancement--Mode Lateral MOSFET
Rev. 0, 11/2015
A3T21H360W23S Datasheet pdf image
402Kb/16P
N-Channel Enhancement-Mode Lateral MOSFET
Rev. 0, 08/2017
AFT09S220-02N Datasheet pdf image
481Kb/19P
N-Channel Enhancement-Mode Lateral MOSFET
Rev. 0, 9/2015
MRF6V3090N Datasheet pdf image
723Kb/20P
N-Channel Enhancement-Mode Lateral MOSFET
Rev. 2, 10/2015
MRF6VP121KH Datasheet pdf image
1Mb/20P
N-Channel Enhancement-Mode Lateral MOSFET
Rev. 3, 4/2010

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What is MOSFET


Metal-Oxide-Semiconductor Field-Effect Transistor (MOSFET) is a type of power semiconductor device used for controlling high-power applications, such as in power supplies, motor drives, and inverters.

It is a type of field-effect transistor (FET), which means it operates by controlling the flow of current between its source and drain terminals using an electric field.

In a MOSFET, the flow of current is controlled by a thin metal oxide film that acts as a gate, which is isolated from the rest of the device by a thin insulating layer.

The gate voltage controls the width of the channel between the source and drain terminals, which determines the flow of current through the device.

There are two main types of MOSFETs: N-channel and P-channel. N-channel MOSFETs have a channel that is doped with an n-type material, while P-channel MOSFETs have a channel that is doped with a p-type material.

MOSFETs offer several advantages over other types of power semiconductors, including high input impedance, low on-state resistance, fast switching speeds, and high efficiency.

They are also highly versatile and can be used in a variety of applications, such as power supplies, motor drives, and inverters.

However, MOSFETs also have some disadvantages, including a limited voltage rating and the need for a gate drive circuit to control the device.

Additionally, they are susceptible to thermal runaway, which can cause the device to fail if it overheats.

To mitigate this risk, MOSFETs are often used in combination with other components, such as thermal protection devices or snubber circuits.

*This information is for general informational purposes only, we will not be liable for any loss or damage caused by the above information.


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