Description
**Incremental Encoder with High Resolution**: The MIG Nova+ is an incremental encoder engineered for high-resolution speed and position feedback, offering superior signal stability for precision control in automated systems.
**Robust Aluminium Construction**: The encoder housing is made from durable aluminium, ensuring excellent mechanical stability, corrosion resistance, and long operational life in demanding industrial conditions.
**Advanced Signal Output**: Provides dual-channel A90°B HTL outputs, supporting reliable and precise signal transmission needed for high-performance control loops.
**Suitable for Standard IEC Flanges**: Designed with a 90mm flange diameter and conforming to IEC 63B14 standards, it is easily integrated into a wide range of electric motors and machines.
**Compact Shaft Design**: Features an 11mm shaft diameter with a flange thickness of 7mm, making it compatible with various drive setups.
**Multiple Environmental Protection Ratings**: Rated IP55/IP67, offering resistance to dust and powerful water jets, suitable for harsh industrial settings and washdown environments.
**Flexible Input Voltage**: Operates with a 5–24VDC power supply, allowing easy adaptation to different automation systems and controllers.
**High Signal Integrity and Stability**: The encoder’s enhanced signal stability ensures accurate performance, minimizing errors in speed regulation and position feedback.
**Long Cable for Flexible Installation**: Equipped with a 5-meter cable and 4-pin connector, enabling flexible installation even in larger automation setups.
**Application Versatility**: Ideal for precise motor speed regulation, conveyor systems, packaging machines, robotics, and general industrial automation requiring accurate incremental feedback.
**MIG Encoder Series Overview**: The Basic series offers fundamental speed feedback for standard automation tasks; the MIG Nova+ (this model) supports more precise control with higher signal fidelity; while the MIG AST series delivers absolute position feedback and retains positional information through power cycles for advanced drive and positioning applications.

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