Description
**High-Resolution Incremental Encoder:** The MIG Nova+ is designed as an incremental encoder with enhanced resolution and improved signal stability for accurate regulation within automated systems.
**Robust Stainless Steel Construction:** The encoder’s housing and shaft are manufactured from stainless steel, providing exceptional corrosion resistance and long-lasting durability in harsh industrial environments.
**Versatile Flange Design:** Featuring a Ø350mm flange with a 300mm bolt circle and a 12mm flange thickness, it is fully compatible with IEC 160B5 standard motors and machine assemblies.
**Precision Optical Sensing:** Delivers 64 pulses per channel and supports A90°B / A'90°B' output in both HTL and TTL, ensuring precise feedback for speed and position control in automated processes.
**Long-Distance Signal Transmission:** Equipped with a 50-meter cable, the encoder guarantees reliable signal transmission, making it ideal for large-scale installations and remote position feedback.
**Sealed for Demanding Environments:** Rated IP55 and IP67, it offers superior ingress protection against water, dust, and contamination—enabling deployment in both indoor and outdoor settings.
**Wide Voltage Input Range:** Operates at 5-24VDC, ensuring versatile integration with diverse control and monitoring systems.
**Multiple Application Scenarios:** - Ideal for high-precision motion control in manufacturing automation, robotics, conveyor systems, and CNC machinery. - Suitable for use in food, beverage, and pharmaceutical industries due to robust stainless steel construction. - Perfect for applications requiring stable signal feedback and long cable runs, such as large production lines and logistics systems. **Comparison with Other BEGE Encoder Types:**
MIG Basic: Incremental encoder intended for basic speed feedback in standard automation tasks.
MIG Nova+: Offers higher resolution and improved signal stability, making it suitable for more precise regulation in complex automated systems.
MIG AST: Absolute encoder that retains position after power loss—essential for high-precision positioning and advanced control systems.

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