Description
BEGE Flange Encoder MIG Nova+ MN-350-48-0064-12, 64 pulses, 5m cable, aluminium**Key Features & Benefits**
Large flange diameter of Ø350mm provides robust mechanical stability, ideal for heavy-duty applications in industrial automation.BCD norm of 300mm and standard IEC 180B5 motor compatibility enables seamless installation with a wide range of motors and drives.High shaft diameter of 48mm allows secure mounting on large motor or machine shafts, enhancing alignment and longevity.Enhanced incremental encoder technology delivers high resolution (64 pulses per channel) and superior signal stability for precise speed feedback and reliable control in advanced automation systems.Signal output A90°B / A'90°B', compatible with both HTL and TTL logic (5–24VDC input), ensures flexible integration across diverse control architectures and PLCs.Rugged aluminium construction provides excellent durability and resistance to industrial conditions, reducing maintenance and downtime.5-meter cable length offers extended installation flexibility, supporting various layouts and reducing wiring costs.IP55/IP67 protection class withstands dust, moisture, and harsh environments, making it suitable for demanding production settings.12mm flange thickness is optimized for both strength and ease of integration.**Application Possibilities**
Ideal for speed and position feedback in conveyor systems, robotics, packaging machinery, and automated assembly lines.Suitable for precise process control in food & beverage, pharmaceutical, logistics, and material handling industries.Supports applications requiring enhanced accuracy and signal fidelity, such as motion control in printing presses, textile machinery, and automated storage systems.**Encoder Type Overview**
MIG Basic: Incremental encoder for essential speed feedback in standard automation.MIG Nova+: Incremental encoder with higher resolution and improved signal stability for more precise control in automated systems.MIG AST: Absolute encoder for accurate position monitoring retained after power failure, enabling advanced positioning and high-reliability systems.

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