Oriental Motor BMU6200C-C Product Overview
The Oriental Motor BMU6200C-C is a robust 200 W (1/4 HP) brushless DC motor speed control system engineered for heavy-duty industrial environments demanding high torque, space efficiency, and precise speed regulation. Designed for versatile power configurations, this unit operates on both single-phase and three-phase 200-240 VAC power supplies. By utilizing the advanced NexBL optimal magnetic stator design, this system significantly reduces energy consumption and heat generation while maintaining a highly compact structural footprint.
Key Technical Specifications
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Output Power: 200 W (1/4 HP)
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Power Supply Voltage: Single-Phase / Three-Phase 200-240 VAC
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Variable Speed Range: 80 to 4000 r/min
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Speed Regulation: ±0.2% maximum against load, voltage, and temperature fluctuations
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Degree of Protection: Motor [IP40], Driver [IP20]
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Time Rating: Continuous
Multi-Speed Control and Digital Driver Interface
The system includes a panel-mount digital driver that streamlines velocity configuration via a tactical «turn-and-push» front dial. This interface allows operators to adjust and view rotation speeds in exact increments of 1 r/min on the integrated digital panel, eliminating the need for separate monitoring hardware. The driver supports multi-stage manufacturing processes with up to 4 independently programmable speed steps, along with adjustable acceleration and deceleration profiles ranging from 0.0 to 15.0 seconds.
Diagnostic Monitoring and Integrated Protective Circuits
To prevent unplanned downtime and ensure machine longevity, the BMU6200C-C features a real-time Load Factor Display that tracks active machine stress from 40% up to 200% of the rated torque. The driver’s built-in self-diagnostic protection architecture automatically triggers safety shutdowns and outputs clear fault codes to the digital panel when critical thresholds are exceeded. These protection circuits actively monitor for overcurrent, main circuit overheating, overvoltage, undervoltage, sensor errors, and extended motor overloads.
