Description
High-Resolution Incremental Feedback: The MIG Nova+ is an incremental encoder offering higher resolution and improved signal stability compared to standard encoders, ensuring precise speed and position feedback for automated systems.
Advanced Signal Stability: Enhanced electronic design minimizes signal noise and ensures stable operation, resulting in reliable performance even in demanding industrial environments.
Rugged Aluminium Construction: The device is encased in a robust aluminium housing for outstanding resistance to mechanical stresses, vibration, and corrosion, significantly increasing operational lifetime in harsh conditions.
Large Flange and Shaft Compatibility: Features an outer flange diameter of Ø450mm, mounting BCD of 400mm, and a shaft diameter of 60mm, in accordance with IEC 225B5-Ø60 standards, allowing seamless integration with large motors and equipment.
Versatile Output Options: Supports HTL/TTL output signals (A90°B / A'90°B'), facilitating integration with a broad range of control systems and PLCs.
Wide Voltage Input: Operates on 5-24VDC, increasing installation flexibility across different automation setups.
Industrial-Grade Protection: Rated up to IP67 (with options for IP55), providing protection against dust, dirt, and water ingress, making it suitable for use in both clean and challenging industrial environments.
Easy and Flexible Installation: Supplied with a 2-meter cable for convenient wiring in complex assemblies.
Application Scenarios: Ideal for precise speed and position control in packaging, material handling, conveyor systems, and other automated industrial machinery where reliable feedback and stability are crucial.
Encoder Range Overview:- MIG Basic: Incremental encoder for standard speed feedback in basic automation tasks.- MIG Nova+: High-resolution incremental encoder for precise regulation and enhanced signal stability in advanced automated systems.- MIG AST: Absolute encoder retaining position information after power interruptions, used for accurate positioning and sophisticated control systems.

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