Description
The BEGE brand stands for high-quality drive technology and innovative automation solutions, renowned across industries for reliability, precision and robust engineering. BEGE encoders are engineered for demanding industrial environments where performance, accuracy and durability are essential.
High-Resolution Incremental Encoder: The MIG Nova+ series is an incremental encoder featuring enhanced resolution and signal stability, providing superior speed and rotational feedback for more precise regulation and control in automated systems.
Improved Signal Stability: Advanced signal processing minimizes noise, ensuring consistent output and reducing the risk of signal loss, which is critical for applications requiring uninterrupted and accurate motion feedback.
Robust and Durable Construction: The encoder's housing is made from high-grade aluminium, ensuring lightweight strength, long service life, and excellent resistance against industrial wear and operating environments.
Versatile Output Compatibility: Support for 5-24VDC input and HTL/TTL A90°B / A’90°B’ outputs guarantees seamless integration into a wide variety of automation and control systems.
Precision Shaft and Flange: Features a 14mm shaft diameter and Ø105mm flange diameter, with a 7mm flange thickness for secure and stable mounting on IEC 71B14 motors.
High Protection Class: IP55/IP67 ingress protection makes the MIG Nova+ suitable for operation in both dust-laden and moisture-prone environments, providing versatility in harsh industrial conditions.
Long Cable Length: Standard 20-meter cable enables flexible installation even at a distance from control cabinets, simplifying system design and integration.
Accurate Pulse Generation: Delivers 32 pulses/revolution per channel for accurate speed and position feedback, enabling precise motion and process regulation.
Applications: The MIG Nova+ is ideal for use in automated production lines, robotics, conveyor systems, printing presses, packaging machinery and other precision-driven industrial automation environments requiring accurate speed and positioning information.

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