MC1K-U150VS Sanyo Denki
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The Sanyo Denki MC1K-U150VS, part of the K SANMOTION Motion Controllers Series, operates at a rated voltage of 480 V with forced air cooling. It features rack-mounted installation, IP55 enclosure, and 96% efficiency. Additionally, it supports CANopen and Modbus protocols and weighs approximately 150 kg.
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Product Description:
The MC1K-U150VS motion controller represents an optimal option that suits diverse applications for industrial usage particularly for electromechanical and programmable logic domains. This product is built by the high-standard Sanyo Denki company which delivers innovative solutions and structures that are extensively used in high-grade industrial automation.
The MC1K-U150VS motion controller is a productive and versatile system built to handle complex motion tasks with accuracy and reliability. It operates with a main circuit power source of 200 V to 230 V AC, three-phase with a tolerance range of 10% to -15% and also supports both 50 Hz and 60 Hz frequencies with a ±3% variation. The control power source runs on a single-phase AC input within the same voltage span which helps in ensuring compatibility with industrial power systems. It is engineered to perform within an ambient temperature range of 0 to the highest of 55C and holds a humidity level of up to 90% provided there is no dew condensation. The built-in tray-type power structure ensures a compact and very simple design by reducing installation problems. The motion controller supports a maximum detection range of 1,024 motor rotations per shift for applications that demand extensive movement tracking and repeatable positioning.
The MC1K-U150VS motion controller works by featuring an absolute sturdy encoder with a resolution of 8,192 pulses per rotation. This high-resolution feedback process ensures precise motor control which assists in reducing issues and increasing system stability. To enhance efficiency and energy management, the motion controller is installed with a parameter of dynamic braking as DB resistance and regenerative hindrance functions which mainly improve performance, reduce heat sinks and enhance overall operational safety.