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Synchronous Motor Excitation Panel


The XY-WLT6200D synchronous motor microcomputer excitation control device is suitable for large, medium, and small-sized synchronous motors. The load on the synchronous motor can be either constant or characterized by impact features. The power unit employs a three-phase fully controlled bridge configuration. The motor can be started either at full voltage or with reduced voltage—allowing for both light-load and heavy-load starting conditions—and the system can be equipped with dynamic braking functionality as needed. Application areas include various synchronous motor-driven loads such as ball mills, fans, gas compressors, water pumps, and rolling mills.


Product Details


Introduction to the Cabinet
The XY-WLT6200D synchronous motor microcomputer excitation control device is suitable for large, medium, and small-sized synchronous motors. The load on the synchronous motor can be either constant or characterized by impact features. The power unit employs a three-phase fully controlled bridge configuration. The motor can be started either at full voltage or with reduced voltage—allowing for both light-load and heavy-load starting conditions—and the system can optionally be equipped with dynamic braking functionality as needed. Applicable load types include ball mills, fans, gas compressors, water pumps, rolling mills, and various other synchronous motor-driven applications.

 

Technical Features
It features both "automatic" and "manual" operating modes. In automatic mode, it employs a dual closed-loop control system with inner and outer loops, ensuring that the excitation output remains unaffected by grid voltage for optimal control performance. Additionally, control parameters can be adjusted online.
All operating parameters are displayed online; the system boasts high operational reliability. It can seamlessly connect with PCs or computer-based monitoring systems for real-time communication, allowing users to continuously monitor the running status and easily adjust control parameters as needed.
Fault data memory function, capable of storing detection data from the 12 cycles preceding the fault and the 4 cycles immediately following, including excitation current, power factor, active power, reactive power, stator current, stator voltage, firing angle, and more.


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