Description
Produced by BEGE Power Transmission, a renowned European manufacturer specializing in high-quality motion control and automation components. BEGE encoders are known for their superior reliability and innovative engineering.
The MIG Nova+ is an incremental encoder designed for precise speed and position feedback in advanced automation systems, offering higher resolution and improved signal stability compared to standard models.
High-resolution output with 128 pulses per channel enables accurate speed and direction detection, ideal for automated machinery requiring precise control.
Enhanced signal stability ensures reliable feedback even in challenging industrial environments, reducing the risk of interference and signal loss.
Robust stainless steel housing (stainless steel material) provides excellent durability and corrosion resistance, ensuring long-term performance in demanding applications.
Flexible input voltage range (5-24VDC) supports seamless integration into modern control systems and PLCs.
Comprehensive output options (A90°B / A'90°B' HTL/TTL) offer compatibility with a wide variety of motion controllers and drives.
Extended cable length (20 meters) allows for easy installation in large-scale automation setups, minimizing the need for additional wiring or junctions.
IP55 / IP67 protection class assures reliability in dusty or wet environments, supporting both indoor and outdoor use.
Standardized flange (Ø160mm, BCD 130mm) and shaft diameter (28mm) ensures simple mechanical integration with IEC 100/112 B14 motors and compatible gearboxes.
Typical applications include conveyor systems, robotics, packing machinery, and process automation where accurate speed monitoring and feedback are essential.
Alternative encoder types from BEGE: - MIG Basic: incremental encoder for basic speed feedback in standard automation tasks. - MIG Nova+: (this model) incremental encoder with higher resolution and improved signal stability for precise control. - MIG AST: absolute encoder retaining position after power loss, suitable for advanced positioning and safety-critical systems.

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