AOT462_001 Allicdata Electronics
Allicdata Part #:

AOT462_001-ND

Manufacturer Part#:

AOT462_001

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Alpha & Omega Semiconductor Inc.
Short Description: MOSFET N-CH 60V TO220
More Detail: Through Hole TO-220
DataSheet: AOT462_001 datasheetAOT462_001 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: *
Packaging: Tube 
Part Status: Obsolete
Mounting Type: Through Hole
Supplier Device Package: TO-220
Package / Case: TO-220-3
Description

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AOT462_001 is one of the most widely used transistors in the world today and has found its applications in many areas. It is a single field effect transistor (FET) and is usually constructed with a single, three-terminal configuration.

The three terminals of a FET are the source, gate and drain. The source is connected to a voltage reference and is the preferred location for applying voltage. The gate is a control terminal which, when biased and triggered with a signal, creates a conducting channel between the source and drain. The drain is the output of the FET and collects the current that flows through the channel.

AOT462_001 is an enhancement type FET, meaning that when the gate voltage is applied, the channel is created between the source and drain, resulting in current flow. The FET is commonly used as a switch, and when the gate voltage is high enough, it allows current to flow from the source through the channel to the drain. This type of FET is commonly used to amplify or adjust the power delivery providing linear, reliable, low-noise, clean power.

In addition to its use as a power switch, AOT462_001 FET is also used in many other applications. It is commonly used as a voltage regulator found in many electronic systems, providing low-noise, low-ripple outputs, while also providing high reliability and low power consumption. It is also used in amplifiers and waveform generators, providing clean, distortion-free signals while also providing the necessary current to drive speakers and other audio components.

The FET is also used in radio frequency (RF) circuits, such as oscillators and amplifiers, to amplify and/or filter Communications signals. This type of FET is also used in RF transceivers and amplifiers to provide low noise and higher linearity. Finally, the FET is also used in automotive, military and aerospace applications, providing clean, reliable power and superior noise performance.

AOT462_001 FETs are also widely used in analog and digital circuits and systems. In analog circuits, the FET is commonly used as a voltage-controlled switch or amplifier and provides precision control and low distortion in many circuits. It is also used as a voltage-controlled current source, providing high accuracy and low noise in many systems. In digital circuits, the FET is used as a switch and helps with digital signal switching and logic gating.

AOT462_001 FETs are also widely used in power management systems. When used in concert with power management ICs, the FET can help to convert and regulate voltages, providing the right power levels for digital and analog circuits. The FET can also help reduce the noise generated by digital circuits, providing cleaner power and higher efficiency.

Aot462_001 FETs come in many shapes and sizes, from tiny surface-mount devices to large packages. They are also available with different contact configurations, from single source-drain to multiple source-drain configurations. The most common of these is the single source-drain configuration, as it provides the most flexibility and functionality.

In summary, Aot462_001 FETs are some of the most commonly used transistors in the world today, providing a clean, reliable, low-noise power source for many applications. With their wide range of applications, they can be used to help control and regulate voltages, provide reliable amplifiers and filters, and help reduce noise levels in many types of systems.

The specific data is subject to PDF, and the above content is for reference

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