Description
BEGE Flanged Encoder MIG Nova+ MN-400-55-0032-12**Product Features and Application Possibilities:**
- Incremental encoder featuring high resolution and superior signal stability, designed for precise speed and position feedback in advanced automation systems.- Provides 32 pulses per channel, ensuring accurate monitoring for applications that require fine control of rotational movements.- Large flange diameter of 400 mm and BCD of 350 mm, making it suitable for direct mounting on heavy-duty industrial motors and machinery.- Robust aluminium housing guarantees reliable operation in harsh environments, combining low weight and high durability for long-term performance.- Equipped with 55 mm shaft diameter and 12 mm flange thickness for compatibility with IEC 200B5 motors and seamless integration into industrial setups.- Flexible electronic interface with input voltage range from 5-24VDC and HTL/TTL output signals (A90°B / A'90°B'), enabling compatibility with a wide array of control systems and PLCs.- Supplied with a 5-meter cable for extended reach, simplifying installation even in large machines or when the encoder is positioned at a distance from the control unit.- High degree of environmental protection (IP55/IP67) allows reliable use in dusty, humid, or wet settings, including production, process automation, conveyors, and material handling applications.- Particularly advantageous for applications demanding high repeatability, precise speed regulation, machine positioning, and synchronization in sectors such as packaging, robotics, and automated assembly lines.- Backed by BEGE's industry expertise and support, ensuring reliability, service, and a rapid path from integration to high-performance automation.**Comparison of Encoder Types:**
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.- MIG Nova+: Incremental encoder with higher resolution and improved signal stability, ideal for more precise control in advanced automated systems.- MIG AST: Absolute encoder, retains position information after power loss for precise positioning and advanced motion control solutions.

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