Description
High-Resolution Incremental Encoder: The MIG Nova+ delivers accurate speed and position feedback through enhanced signal stability, enabling precise regulation of automated processes.
Stainless Steel Construction: Built with durable stainless steel, the encoder provides exceptional resistance to corrosion, making it ideal for harsh or washdown industrial environments.
Extended Cable Length: Equipped with a 20-meter cable, the encoder ensures installation versatility on large machinery and remote locations without signal loss.
Flange Dimensions and Shaft Compatibility: Outer flange diameter of 200mm and shaft diameter of 38mm, following IEC 132B14 and BCD 165 standards, ensure seamless integration with standard industrial motors.
IP55/IP67 Protection: Ensures reliable operation in dusty, moist, or challenging conditions, reducing the risk of downtime and maintenance.
Wide Voltage Range (5–24VDC): Compatible with modern drive and control systems, simplifying integration.
Output Interface (A90°B / A'90°B' HTL/TTL): Offers robust and flexible signal compatibility for industry-standard controllers and PLCs.
Pulses Per Revolution: 16 pulses per channel, ideal for applications requiring high reliability with moderate resolution, such as conveyor systems, motors, and packaging equipment.
Mounting Flexibility: The 12mm flange thickness and standardized fasteners guarantee easy, rigid installation, optimizing alignment and minimizing mechanical play.
Primary Applications: Suitable for automated production lines, conveyor controls, drive feedback systems, and motion control tasks where precise speed and position data are essential.
MIG Encoder Series Comparison:
• MIG Basic – Incremental encoder for standard speed feedback in general automation applications.
• MIG Nova+ – High-resolution incremental encoder with improved signal stability for more precise regulation in automated systems.
• MIG AST – Absolute encoder for applications requiring position retention after power loss; essential for advanced motion control and accurate positioning.

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