AOD2910E Allicdata Electronics
Allicdata Part #:

AOD2910E-ND

Manufacturer Part#:

AOD2910E

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Alpha & Omega Semiconductor Inc.
Short Description: MOSFET N-CH 100V 37A TO252
More Detail: Surface Mount TO-252, (D-Pak)
DataSheet: AOD2910E datasheetAOD2910E Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: *
Packaging: Tape & Reel (TR) 
Part Status: Active
Mounting Type: Surface Mount
Supplier Device Package: TO-252, (D-Pak)
Package / Case: TO-252-3, DPak (2 Leads + Tab), SC-63
Description

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The Advanced Optoelectronic Device (AOD2910E) is a high-performance high-current P-type insulated gate field-effect transistor (IGFET) module designed for use in power supply applications. This highly reliable device provides high current levels with low on-state and switching losses. The AOD2910E is suitable for a wide range of high-power applications in the industrial market, such as in power converters, motor drives, robotics, and automotive applications.

Overview

The AOD2910E is an Advanced Optoelectronic Device (AOD) featuring an N-channel MOSFET with a common-source input and output pair. It is optimized for high-performance and high loading capability enabling a wide range of power supply applications. The device also features high-performance and fast switching speeds, as well as a wide input and output range.

The combination of advanced optoelectronic production technology and the use of advanced device architecture ensures the AOD2910E is reliable, long-lasting and provides superior performance compared to conventional MOSFETs. This device offers superior linearity, low power consumption, excellent temperature stability and superior high-current ratings.

AOD2910E Key Features

  • High-efficiency, high-current, single source IGFET
  • High-performance circuitry design for power-supply applications
  • High-temperature stability with low switching losses
  • Simple gate control design for exceptional performance
  • High-performance gate insulation for superior performance
  • High linearity and low power consumption
  • Wide input and output range
  • Low on-state resistance

Working Principle

The AOD2910E works by allowing current to flow between the input and output when the gate voltage is higher than a certain threshold. This voltage is referred to as the threshold voltage (Vth). When the gate voltage is below the threshold, the device is said to be in an ‘off’ state and the current between the input and output is blocked. By controlling the gate voltage through a feedback loop, the switching speed and power output of the device can be modified to meet the needs of the user.

The AOD2910E is designed to operate over a wide range of temperatures and frequencies. It features a high-temperature range with low switching losses and fast switching speeds, which are ideal for power supply applications. The device also features superior linearity and low power consumption, which ensures that higher efficiency can be achieved.

Applications

The AOD2910E can be used in many power supply and voltage regulator applications, such as in motor drives, robotics, and automotive applications. Its high current ratings and superior linearity, combined with low switching losses, make it a great choice for applications that require high performance, low power consumption, and high-temperature operation.

In addition, the AOD2910E is often used in high-powered industrial applications, such as the power supply for industrial machines and sensors. Its high current ratings and fast switching speeds make it perfect for these types of applications, providing a reliable solution for high-power needs.

Conclusion

The AOD2910E is a high-performance, high-current, N-channel MOSFET module. Its advanced optoelectronic production technology, combined with its advanced device architecture, makes it a reliable and efficient device for a wide range of power supply applications. Its high current ratings, fast switching speeds, and low switching losses make it an excellent choice for a variety of high-power and high-performance applications.

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

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