Description
**Key Product Features and Benefits:**
• High Resolution Incremental Encoder: The MIG Nova+ offers 128 pulses per revolution per channel for accurate speed measurement and improved process control in industrial automation systems.
• Superior Signal Stability: Enhanced HTL/TTL output with dual A90°B / A'90°B' channels ensures precise detection of speed and direction, minimizing signal noise and improving reliability even in electrically noisy environments.
• Robust Construction: Outer flange diameter of 350 mm and 12 mm flange thickness in aerospace-grade aluminium offer durable protection against mechanical impact and long service life in harsh industrial conditions.
• Optimal for Seamless Integration: Designed to comply with IEC 180B5 motor flange standards and a 48 mm shaft diameter, ensuring easy and stable mounting to a wide range of industrial motors and drive systems.
• Long Cable Reach: Equipped with a 2-meter cable for flexible installation and remote connection to control systems, reducing wiring complexity on the factory floor.
• Flexible Voltage Range: Wide 5-24VDC input enables compatibility with diverse automation controllers and PLCs.
• Dual Protection: IP55/IP67 rating provides both dust protection and high resistance to water, ensuring continued operation in demanding environments.
**Application Possibilities:**
• Ideal for precision speed regulation and closed-loop control in conveyor systems, production lines, and robotics.
• Suitable for feedback in servo- and frequency-controlled motors in automated manufacturing.
• Can be used in high-precision packaging, processing, and material handling machinery where signal stability and accuracy are critical.
**Encoder Type Comparison:**
• MIG Basic: Incremental encoder for simple speed feedback in standard automation tasks.
• MIG Nova+: High-resolution incremental encoder with improved signal stability for precise control in advanced automated systems.
• MIG AST: Absolute encoder retains position after power interruption; ideal for precise positioning and advanced motion control systems.

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