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FETS Datasheet, PDF

Searched Keyword : 'FETS' - Total: 51 (1/3) Pages
ManufacturerPart #DatasheetDescription
Company Logo Img
Texas Instruments
TPS54372-Q1 Datasheet pdf image
334Kb/17P
3-A OUTPUT TRACKING/TERMINATION SYNCHRONOUS PWM SWITCHER WITH INTEGRATED FETs
TPS54372 Datasheet pdf image
788Kb/21P
3-A OUTPUT TRACKING/TERMINATION SYNCHRONOUS PWM SWITCHER WITH INTEGRATED FETs
LM5113 Datasheet pdf image
1Mb/15P
5A, 100V Half-Bridge Gate Driver for Enhancement Mode GaN FETs
LM5113 Datasheet pdf image
2Mb/24P
5A, 100V Half-Bridge Gate Driver for Enhancement Mode GaN FETs
TPS55010 Datasheet pdf image
1Mb/40P
2.95V To 6V Input, 2W, Isolated DC/DC Converter with Integrated FETs
JUNE2011
LM5113_1211 Datasheet pdf image
2Mb/24P
LM5113 5A, 100V Half-Bridge Gate Driver for Enhancement Mode GaN FETs
TPS54672 Datasheet pdf image
667Kb/20P
6-A OUTPUT ACTIVE BUS TERMINATION SYNCHRONOUS PWM SWITCHER WITH INTEGRATED FETs(SWIFT)
TPS54010 Datasheet pdf image
1Mb/30P
2.2 ??4 -V, 14-A OUTPUT SYNCHRONOUS BUCK PWM SWITCHER WITH INTEGRATED FETs
TPS51463 Datasheet pdf image
1Mb/27P
3.3-V/5-V Input, D-CAP+Mode Synchronous Step-Down Integrated FETs Converter
LM5113-Q1 Datasheet pdf image
2Mb/26P
100-V, 1.2-A, 5-A, Half-Bridge Gate Driver for Enhancement Mode GaN FETs
TPS53317 Datasheet pdf image
835Kb/25P
3.3-V/5-V Input, 6-A, D-CAP+ Mode Synchronous Step-Down Integrated FETs
TPS54010-EP Datasheet pdf image
1Mb/31P
2.2-V to 4-V, 14-A OUTPUT SYNCHRONOUS BUCK PWM SWITCHER WITH INTEGRATED FETs
LMG1205 Datasheet pdf image
1Mb/24P
100-V, 1.2-A, 5-A, Half-Bridge Gate Driver for Enhancement Mode GaN FETs
TPS54673 Datasheet pdf image
671Kb/22P
3-V TO 6-V INPUT, 6-A OUTPUT SYNCHRONOUS BUCK SWITCHER WITH INTEGRATED FETs
BQ24100 Datasheet pdf image
1Mb/45P
Synchronous Switched-Mode, Li-Ion and Li-Polymer Charge-Management IC With Integrated Power FETs
TPS54310 Datasheet pdf image
1Mb/28P
3-V to 6-V Input, 3-A Output Synchronous-Buck PWM Switcher With Integrated FETs
TPS54917 Datasheet pdf image
952Kb/21P
3-V TO 4-V INPUT, 9-A, SMALL SYNCHRONOUS-BUCK SWITCHER WITH INTEGRATED FETs (SWIFT??
TPS51317 Datasheet pdf image
774Kb/25P
3.3-V/5-V Input, 6-A, D-CAP+??Mode Synchronous Step-Down Integrated FETs Converter
MARCH2011
TPS54611-EP Datasheet pdf image
967Kb/22P
3-V TO 6-V INPUT, 6-A OUTPUT SYNCHRONOUS BUCK PWM SWITCHER WITH INTEGRATED FETs
TPS54810 Datasheet pdf image
734Kb/22P
4-V TO 6-V INPUT, 8-A OUTPUT SYNCHRONOUS BUCK PWM SWITCHER WITH INTEGRATED FETS

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What is FETS


FET stands for Field-Effect Transistor, and it is a type of semiconductor device that is used as a switch or an amplifier in electronic circuits. FETs are three-terminal devices, with a source, a drain, and a gate.

The operation of an FET is based on the control of the flow of charge carriers (electrons or holes) by an electric field, rather than by the injection of charge carriers, as is the case with bipolar transistors.

There are two main types of FETs: the junction FET (JFET) and the metal-oxide-semiconductor FET (MOSFET).

In a JFET, a reverse-biased PN junction is used to create a depletion region that forms a channel between the source and drain terminals. The width of the channel is controlled by the voltage applied to the gate terminal, which modulates the width of the depletion region and hence the conductivity of the channel.

JFETs are typically used in low-noise amplifier circuits, as they have a very low input capacitance and a high input impedance.

In a MOSFET, an oxide layer is used to separate the gate from the channel region.

The oxide layer acts as an insulator, and the gate terminal is used to create an electric field that controls the conductivity of the channel.

MOSFETs are widely used in digital and analog circuits, as they have a high input impedance, a low output impedance, and a fast switching speed.

FETs have a number of advantages over other types of transistors, including a high input impedance, a low power consumption, and a high switching speed.

They are used in a wide range of applications, including in amplifiers, oscillators, switches, and voltage regulators, as well as in digital circuits such as logic gates and memory cells.

*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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