Description
**High-precision Incremental Encoder:** The MIG Nova+ is an incremental encoder designed for precise speed control and improved feedback in automated systems, providing higher resolution and superior signal stability compared to basic models.
**Enhanced Signal Quality:** Features improved signal noise immunity, ideal for environments requiring precise regulation and repeatable control, such as packaging, material handling, and process automation.
**Robust Aluminium Housing:** The lightweight yet durable aluminium construction ensures excellent vibration resistance and long service life, making it suitable for harsh industrial environments.
**Large Flange & Shaft Diameter:** With an outer flange diameter of 200mm, BCD norm of 165mm, and a shaft diameter of 24mm, the encoder easily integrates with IEC 90B5 motor interfaces, supporting a wide range of mechanical setups.
**Wide Voltage Input (5-24VDC):** Flexible voltage compatibility enables use with diverse control systems.
**Output A90°B / A'90°B' in HTL/TTL:** Supports modern control architectures with differential or single-ended signals, maximizing compatibility with PLCs and inverters.
**16 Pulses per Channel:** Delivers precise, incremental shaft position feedback, allowing accurate motor speed regulation for both medium and high-performance applications.
**Long Cable Length (15m):** Extended cable facilitates remote placement in large installations without signal loss, ensuring reliability in demanding setups.
**Dual IP Classification (IP55/IP67):** Engineered for reliable operation in dusty or wet environments, the encoder is protected against dust ingress and temporary immersion.
**Application Flexibility:** Perfect for diff. industrial uses: conveyor systems, machine tool monitoring, robotics, flexible production lines, and automated warehousing.
**Differentiation:** Unlike the MIG Basic model (for standard speed feedback) and MIG AST (absolute position holding after power loss), MIG Nova+ excels in higher resolution incremental tasks requiring improved stability and precision.

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