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FET Datasheet, PDF

Searched Keyword : 'FET' - Total: 11 (1/1) Pages
ManufacturerPart #DatasheetDescription
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International Rectifier
IRF7413ZPBF Datasheet pdf image
289Kb/10P
Control FET for Notebook Processor Power
IRF7807ZTR Datasheet pdf image
266Kb/10P
Control FET for Notebook Processor Power
IRF7807ZTRPBF Datasheet pdf image
220Kb/10P
Control FET for Notebook Processor Power
IRF7413ZTRPBF Datasheet pdf image
272Kb/10P
Control FET for Notebook Processor Power
IRF7413ZTR Datasheet pdf image
272Kb/10P
Control FET for Notebook Processor Power
IRF7807ZPBF Datasheet pdf image
220Kb/10P
Control FET for Notebook Processor Power
IRF7413ZGPBF Datasheet pdf image
292Kb/10P
Control FET for Notebook Processor Power
IRFH7911PBF Datasheet pdf image
320Kb/11P
Control and synchronous FET in one package
IRFH7911PBF Datasheet pdf image
325Kb/10P
Control and synchronous FET in one package
IRF7413ZPBF Datasheet pdf image
266Kb/10P
Control FET for Notebool Processor Power, Control and Synchronous Rectifier
IRF3709PBF Datasheet pdf image
236Kb/12P
High Frequency Buck Converters for Server Processor Power Synchronous FET

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What is FET


FET stands for Field Effect Transistor and is one of the electronic components.

FET is a device that controls the output current according to the magnitude and direction of the input voltage.

FETs use less power and are suitable for high-frequency and high-performance applications.

FETs work by applying an electrical signal to the channel to control its conductivity.

It behaves in a different way than conventional bipolar transistors.

A FET induces a current in the channel by applying a voltage to the semiconductor element forming the channel.

In this way, the FET uses a small amount of power to control the output current.

There are various types of FETs, such as MOSFET (Metal Oxide Semiconductor FET) and JFET (Junction FET).

MOSFETs are the most common type and operate using electrically isolated channels.

A JFET is a structure that uses a pn junction to form a channel, and operates without applying a voltage.

FETs are extensively used in electronic components. The main applications are high-frequency and high-performance applications, integrated circuits, amplifiers, switching circuits, filters, etc.

FETs play a huge role in improving the performance of electronic devices by offering lower power consumption and higher speeds than traditional bipolar transistors.

*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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