Description
**Product:** BEGE Flanged Encoder MIG Nova+ MN-250-28-0008-12, 8 pulses, 10m cable, stainless steel
**Key Features and Application Possibilities**
- High-Resolution Incremental Encoder: The MIG Nova+ is an incremental encoder with enhanced resolution and improved signal stability, enabling precise speed and position feedback for advanced automation systems.
- Increased Precision: Delivers 8 pulses per revolution per channel, ensuring accurate and reliable regulation of motor speed and direction in sophisticated motion control setups.
- Stable HTL/TTL Signal Output: Offers differential HTL/TTL signal output (A90°B / A'90°B') and supports a wide power input range (5–24 VDC), facilitating seamless integration with modern controllers and PLCs.
- Robust Construction: Constructed from corrosion-resistant stainless steel and equipped with a protection rating of IP55/IP67, the encoder is ideal for harsh industrial environments, including food processing, chemical plants, and outdoor use.
- Versatile Mounting and Compatibility: Features a large Ø250mm flange (BCD 215mm, flange thickness 12mm) and 28mm shaft, compliant with IEC 100/112B5 motor standards, supporting direct integration with a variety of motor setups.
- Extended Cabling: Comes with a 10-meter cable, accommodating installations across larger machinery and providing logistical flexibility.
**Application Examples**
- Ideal for precise speed and position control in conveyor systems, automated production lines, robotics, and packaging machines.
- Suitable for demanding industries such as automotive, food & beverage, material handling, and process automation where accurate feedback and high durability are essential.
**Summary of Encoder Types:**
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
- MIG Nova+: Incremental encoder with higher resolution and enhanced signal quality for precise control in more demanding automated systems.
- MIG AST: Absolute encoder for accurate position retention after power loss, designed for advanced positioning and control tasks.

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