Description
Incremental Encoder with High Resolution: The MIG Nova+ provides 512 pulses per revolution per channel, enabling higher precision and improved control accuracy in automated systems compared to basic incremental models.
Enhanced Signal Stability: Featuring advanced signal technology (A90°B / A’90°B’ HTL/TTL output), the encoder ensures reliable and noise-resistant feedback, critical for demanding industrial automation and high-speed applications.
Wide Input Voltage Range: Capable of operating with input voltages from 5–24VDC, the MIG Nova+ seamlessly integrates into a broad variety of control systems, increasing its adaptability and scalability.
Rugged Aluminium Construction: The housing is made from high-quality aluminium, ensuring durability and corrosion resistance—even in harsh industrial environments.
Flexible Installation: With a flange outer diameter of 140mm, shaft diameter of 24mm, BCD of 115mm, and a flange thickness of 9mm (compliant with IEC 90B14), the encoder is designed for easy retrofit and new installations across a wide range of industrial motors and drives.
Long Cable Reach: Comes equipped with a 15-meter cable, offering flexibility for remote placement in large-scale automation setups or distributed control architectures.
Environmental Protection: Boasts IP55/IP67 classifications, providing high levels of dust and water protection to ensure stable operation in demanding settings.
Versatile Application Scope: Ideal for precision speed and position feedback in packaging machines, conveyor systems, robotics, and automated production lines—suited for industries requiring reliable and accurate motion control. **MIG Basic:** Incremental encoder focused on standard speed feedback applications in general automation; perfect for basic control tasks.
**MIG Nova+:** As described above, designed for applications needing higher accuracy and improved signal quality in more sophisticated automated systems.**MIG AST:** Absolute encoder for advanced control where position retention after power loss and exact positioning are needed, ideal for complex machines and process automation.

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