ON5463,118 Allicdata Electronics
Allicdata Part #:

ON5463,118-ND

Manufacturer Part#:

ON5463,118

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Nexperia USA Inc.
Short Description: 55V N CH TRENCHFET
More Detail:
DataSheet: ON5463,118 datasheetON5463,118 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Last Time Buy
FET Type: --
Technology: --
Current - Continuous Drain (Id) @ 25°C: --
Drive Voltage (Max Rds On, Min Rds On): --
Rds On (Max) @ Id, Vgs: --
Vgs(th) (Max) @ Id: --
Vgs (Max): --
FET Feature: --
Power Dissipation (Max): --
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Description

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ON5463,118, also known as Field Effect Transistor (FET) and MOSFET, is a single transistor device. It is a three-terminal device that works on the principle of semiconductor current control and modulation. This device is usually used to switch or regulate electrical and electronic signals. As a result of its simple design, high speed and low power consumption, these devices are widely used in various electronic devices. 

A FET is a type of field-effect transistor that uses a source, gate and drain to produce different resistances depending on the voltage applied to the gate. In the field of digital electronics, a FET can act as a switch. This allows engineers to easily create circuit designs that can be switched on and off with a single control signal. In the analog domain, FETs can be combined with other components to create amplifying, buffer, or voltage-controlled circuits.

It is also a type of MOSFET or metal-oxide semiconductor field effect transistor. It is a three-terminal device composed of MOSFETs to control and modulate current flow. The three terminals are the source, gate, and drain. It works by establishing a voltage potential between the source and gate, which then establishes a current flow between the source and drain. This current flow varies depending on the input or modulation given to the gate. This is called the gate threshold voltage, and it determines the amount of current flow through the device.

The ON5463,118 is one example of a MOSFET and its operation is quite simple. The voltage applied to the gate controls the flow of current between the source and the drain. If the voltage is high, then the current will flow through the FET. If the voltage is low, then the current will be blocked. This allows for precise control of a circuit, as well as the ability to switch between two different states.

The ON5463,118 is used in various applications from digital logic circuits to analog circuits. In digital logic circuits, it is used to switch between a high or low state in order to create logic circuits such as AND, OR, and NOT gates. In analog circuits, it is used to create amplifying and buffering circuits. It can also be used in power circuits to control current over temperature or voltage thresholds. Additionally, it is widely used in radio frequency circuits as a switch for controlling signals.

The ON5463,118 is also used in a variety of automotive and aviation applications, such as controlling the speed of motor vehicles and controlling altitude in aircraft. It is also used in various communication and computer applications, such as cellular phones and Wi-Fi networks.

The ON5463,118 has become the de facto standard in an increasing number of applications due to its superior performance characteristics. It is a highly reliable transistor with a low power consumption, high switching speed, and excellent linearity. The ON5463,118 is a single MOSFET that is able to provide precise control of current due to its low gate voltage and high current gain. As a result, it is an ideal choice for applications requiring high switching speed, low power consumption and excellent linearity.

In summary, the ON5463,118 is a single-transistor device, used mainly in FETs and MOSFETs, and works on the principle of semiconductor current control and modulation. It is a three-terminal device with a source, gate and drain. The voltage applied to the gate controls the flow of current between the source and the drain, allowing it to switch between two different states. The ON5463,118 is widely used in various applications, such as digital logic circuits, analog circuits, power circuits, radio frequency circuits, automotive, and aviation applications, as well as in communication and computer applications. Due to its superior performance characteristics, it is becoming the de facto standard in an increasing number of applications.

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

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