CPS041-2N5064-WN Allicdata Electronics
Allicdata Part #:

CPS041-2N5064-WN-ND

Manufacturer Part#:

CPS041-2N5064-WN

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Central Semiconductor Corp
Short Description: SCR CHIP 1A 600V WAFER WAFER
More Detail: SCR Surface Mount Die
DataSheet: CPS041-2N5064-WN datasheetCPS041-2N5064-WN Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tray 
Part Status: Discontinued at Digi-Key
Mounting Type: Surface Mount
Package / Case: Die
Supplier Device Package: Die
Description

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Thyristors, or silicon controlled rectifiers (SCRs), are solid-state devices which contain three terminals and are used in electronic circuits for switching and regulating current. The CPS041-2N5064-WN, a thyristor module, is specifically designed for higher DC voltage applications and features a fast switching time. This article will provide an overview of the application field and working principle of the CPS041-2N5064-WN.

Application Fields

The CPS041-2N5064-WN is used in electric power grids, industrial control systems, electric vehicles, and other systems that require high current and high voltage control. These modules can be used as switching elements and provide a solution for uninterruptable power systems and motor control. They are often used in electric cars, allowing the car to switch power transistors quickly to provide optimal performance.

The CPS041-2N5064-WN can also be used in solar inverters, LED lighting applications, and power factor correction systems. It has a working temperature range from -40 to +125 degree Celsius, and can handle voltage ranges from 2 to 5kV. The surge current of the device is up to 150A, which makes it suitable for usage in high-power applications.

Working Principle

The working principle of the CPS041-2N5064-WN involves a number of components. The module consists of a bidirectional thyristor, a diode and two secondary gates, which are connected in parallel. The bidirectional thyristor part serves as the main switching component, and the other two components serve as protection elements. The module is designed to be efficient and reliable, and can be used in either current control or voltage control working modes.

When in current control mode, the multilayer SCR (silicon controlled rectifiers) is used to control current. This is done by regulating the gate drive current, which increases or decreases the voltage delivered to the device. In voltage control mode, this voltage is allowed to vary between the limiting values of 2-5kV, and the current is controlled by regulating the gate drive voltage. The advantage of this mode is that it can increase efficiency and reduce noise. It can also be used for pulse width modulation (PWM) control, allowing for precise and fast current control.

The CPS041-2N5064-WN additionally has thermal protection, allowing the device to prevent thermal overloads and protect sensitive components from being damaged. This thermal protection ensures a longer lifespan and better performance of the device over extended periods of time. The module also has current limiting protection, which reduces the risk of overcurrent caused by incorrect wiring or misuse of the module.

Conclusion

The CPS041-2N5064-WN is a thyristor module that is specifically designed for higher DC voltage applications. It has a working temperature range from -40 to +125 degree Celsius, and can handle voltage ranges from 2 to 5kV. The module is used in electric power grids, industrial control systems, electric vehicles, and other systems that require high current and high voltage control. The working principle of the module involves a bidirectional thyristor, a diode and two secondary gates, which are connected in parallel, and can be used in either current control or voltage control working modes. The module has thermal protection, current limiting protection, and can be used for pulse width modulation (PWM) control.

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

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