Description
Designed and manufactured by BEGE Power Transmission, a trusted brand known for precision engineering and robust automation solutions for industrial applications. BEGE specializes in high-quality encoders that deliver reliable motion feedback and optimal process control for a broad range of industries.
The MIG Nova+ is an incremental flange encoder, purpose-built for precise speed feedback and enhanced signal stability, making it suitable for complex automated systems where accuracy and reliability are essential.
Resolution and Signal Quality: Offers high-precision feedback with 4 pulses per revolution per channel, ensuring improved control and fine-tuned automation performance in applications such as packaging, conveyor systems, robotics, and process automation.
Robust Output Configuration: Provides A90°B / A’90°B’ HTL/TTL output, delivering stable signals and wide compatibility with modern PLCs and controllers in both HTL and TTL formats for versatile integration.
Wide Input Voltage Range: Operates at 5-24VDC input, allowing easy adaptation within diverse control cabinet designs and across international industrial standards.
Durable Construction: Manufactured with a solid aluminium housing that offers outstanding resistance to mechanical stress, vibration, and harsh operating environments, which guarantees long service life.
IP55 / IP67 Protection: Can be deployed in environments exposed to dust, moisture, and demanding conditions, ensuring reliable performance in industrial automation setups.
Generous Cable Length: Equipped with a 15-meter cable for flexible installation options and easier connection to remote control systems and machinery.
Standardized Flange Dimensions: Features a Ø160 mm outer diameter and 9 mm flange thickness, compliant with IEC 100/112B14 and BCD 130 mm standards, for quick retrofitting and seamless compatibility with a variety of motors and gearboxes.
Typical Applications: The MIG Nova+ encoder is ideal for use in precision drives, automated production lines, material handling systems, and advanced robotic platforms where exact speed monitoring is essential to maximize efficiency and ensure process safety.

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