IXTA75N10P Allicdata Electronics
Allicdata Part #:

IXTA75N10P-ND

Manufacturer Part#:

IXTA75N10P

Price: $ 2.25
Product Category:

Discrete Semiconductor Products

Manufacturer: IXYS
Short Description: MOSFET N-CH 100V 75A TO-263
More Detail: N-Channel 100V 75A (Tc) 360W (Tc) Surface Mount TO...
DataSheet: IXTA75N10P datasheetIXTA75N10P Datasheet/PDF
Quantity: 1000
50 +: $ 2.02142
Stock 1000Can Ship Immediately
$ 2.25
Specifications
Vgs(th) (Max) @ Id: 5.5V @ 250µA
Package / Case: TO-263-3, D²Pak (2 Leads + Tab), TO-263AB
Supplier Device Package: TO-263 (IXTA)
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 175°C (TJ)
Power Dissipation (Max): 360W (Tc)
FET Feature: --
Input Capacitance (Ciss) (Max) @ Vds: 2250pF @ 25V
Vgs (Max): ±20V
Gate Charge (Qg) (Max) @ Vgs: 74nC @ 10V
Series: PolarHT™
Rds On (Max) @ Id, Vgs: 25 mOhm @ 500mA, 10V
Drive Voltage (Max Rds On, Min Rds On): 10V
Current - Continuous Drain (Id) @ 25°C: 75A (Tc)
Drain to Source Voltage (Vdss): 100V
Technology: MOSFET (Metal Oxide)
FET Type: N-Channel
Part Status: Active
Packaging: Tube 
Description

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FETs and MOSFETs (metal oxide semiconductor field-effect transistors) are widely used in various circuit designs for the purpose of switching and amplification. The IXTA75N10P is one of the MOSFET models designed for use in various circuits for use in power supply, personal computers, industrial automation control, and other commercial applications. This paper will discuss the IXTA75N10P application fields and working principles.

IXTA75N10P Application Fields

The IXTA75N10P is particularly suitable for high frequency switching applications, as it has excellent switching characteristics with a maximum drain-source voltage of 75V and a maximum drain-source current of 14A. It has a high input impedance, which makes it ideal for power supply or industrial automation control. It is also widely used in personal computers and other commercial applications, as it is able to provide low power consumption and long operational life. Aside from these, the IXTA75N10P is also suitable for voltage boost, filter, amplifier, and driver circuits.

IXTA75N10P Working Principle

The IXTA75N10P follows the classic MOSFET structure, with a drain, source, and gate terminals. This structure is surrounded by a thin layer of insulation material called bulk, which works as a barrier between the gate and the drain-source. An electric field is generated between the gate and the drain-source when a voltage is applied to the gate terminal, that is called the gate-source voltage. The strength of this electric field depends on the magnitude of the voltage, resulting in different levels of current flow through the drain-source. The amount of current flowing through the drain-source is referred to as the drain-source current, which is proportional to the strength of the electric field.

The IXTA75N10P MOSFET can be used in various circuit designs, including switching and linear modes. When used in the switching mode, the MOSFET is used to turn on and off the circuit with a certain voltage threshold. When the voltage applied to the gate terminal is greater than the threshold voltage, the electric field is strong enough to draw electrons from the source terminal to the drain terminal, resulting in a large current flow across the drain-source. The current flow will continue until the voltage applied to the gate terminal is reduced to a value lower than the threshold voltage. At that point, the electric field is reduced to a level that is insufficient to attract electrons, thus turning the current flow off.

In linear mode, the value of the current flowing through the drain source is set in proportion to the gate-source voltage. The current flowing through the drain source is higher than the threshold voltage, resulting in a linear output voltage. This linear mode is commonly used in amplifiers, filters, and other similar circuits.

The IXTA75N10P MOSFET is a very useful component with a variety of applications. Its high input impedance makes it ideal for power supply and industrial automation control, while its low power consumption and long operational life make it suitable for personal computers and other commercial applications. Its excellent switching characteristics and linear mode also make it ideal for many circuit designs.

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

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