Oriental Motor BMU6200A-A Product Overview
The Oriental Motor BMU6200A-A is a high-capacity 200 W (1/4 HP) brushless DC motor speed control system designed for industrial automation demands that require robust torque distribution and strict speed regulation. Operating on a single-phase 100-120 VAC power input, this system leverages the proprietary NexBL advanced magnetic stator layout. This innovative architecture lowers core secondary losses by up to 26% while delivering a compact footprint that drastically minimizes machine framework requirements.
Key Technical Specifications
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Output Power: 200 W (1/4 HP)
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Power Supply Voltage: Single-Phase 100-120 VAC
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Variable Speed Range: 80 to 4000 r/min
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Speed Regulation: ±0.2% max. (against standard variations in load, voltage, and temperature)
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Degree of Protection: Motor [IP40], Driver [IP20]
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Time Rating: Continuous
High-Precision Multi-Speed Setup and Digital Driver
The package incorporates a panel-mount digital driver equipped with a signature «turn-and-push» front-side adjustment dial. Machine operators can configure and view rotation velocities in precise 1 r/min increments directly on the integrated digital display screen. The driver supports sophisticated multi-speed operations with up to 4 independent speed settings, alongside adjustable independent acceleration and deceleration ramp settings ranging from 0.0 to 15.0 seconds to mitigate mechanical shock during high-inertia load transfers.
Continuous Monitoring and Diagnostic Guard Circuits
To ensure reliable operation and avoid critical equipment damage, the BMU6200A-A features a comprehensive suite of built-in safety alerts and automatic shut-down mechanisms. The driver includes an interactive Load Factor Display that monitors real-time system stress from 40% up to 200% of the motor’s rated torque capacity. Dedicated alarm codes are instantly visible on the digital panel upon triggering safety conditions, which include overcurrent, main circuit overheating, overvoltage, undervoltage, sensor errors, and prolonged motor overloads.
