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MVR1600-4601 Air Cooled Rectifier Module

3BHE046836R0102 GFD563A102 AC 800PEC system excitation controller

Manufacturers :ABB

Model(s)  :3BHE046836R0102 GFD563A102

Additional Information :AC 800PEC system excitation controller

Estimated Shipping Size
Dimensions: 263 × 58 × 28mm
Weight:.4.3 kg
Country of Origin: United States of America

 

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Description

Overview


Essential details:MVR1600-4601 Air Cooled Rectifier Module

Product Description

An air-cooled rectifier module is an electronic component commonly used to convert alternating current to direct current. It usually consists of one or more semiconductor devices (such as diodes, transistors), which can control the direction of flow of current.
Air-cooled rectifier modules usually have high efficiency, high power density and good heat dissipation performance, so they are commonly used in applications that require high power and high efficiency, such as industrial control, power supplies, electric vehicle chargers, etc.
Air cooled rectifier modules usually use air cooling to dissipate heat, that is, through air flow to take away the heat generated inside the module. This heat dissipation method is simple and effective, but it is necessary to pay attention to the direction and speed of air flow to ensure that the internal temperature of the module is uniform and avoid local overheating.
In short, the air-cooled rectifier module is an efficient and reliable electronic component, which is widely used in a variety of occasions that need to convert alternating current to direct current.

MVR1600-4601

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MVR1600-4601 Air Cooled Rectifier Module

Product Description

3BHE046836R0102 GFD563A102 The AC800PEC System excitation controller is a module in ABB’s Programmable logic controller (PLC) system that controls the excitation current of a generator or motor. Its working principle can be summarized as the following steps:
Signal acquisition: The excitation controller collects signals related to the generator or motor through the sensor or input module, such as voltage, current, speed, etc.
3BHE046836R0102 GFD563A102 Control algorithm: According to the collected signal, the excitation controller uses a preset control algorithm to calculate the required excitation current.
Output control signal: The excitation controller converts the calculated excitation current value into a control signal and sends it through the output module to the actuator of the excitation system, such as the exciter or the excitation transformer.
3BHE046836R0102 GFD563A102 Actuator action: The actuator adjusts the excitation current according to the received control signal, thereby controlling the output voltage of the generator or the speed of the motor.
Feedback and regulation: The excitation controller constantly monitors the actual generator output voltage or motor speed and compares it to the set value. If there is a deviation, it will adjust the control algorithm based on the feedback signal to maintain the stability and precise control of the system.
In this way, the AC800PEC system excitation controller can achieve precise control of the excitation current of the generator or motor, thus ensuring the normal operation and performance optimization of the system.