Description
The MIG Nova+ is an incremental encoder engineered for highly precise feedback with enhanced signal stability, making it ideal for sophisticated automated systems requiring fine speed and position control.**Key Features and Benefits**
• Outer Flange Diameter: Ø140 mm – Allows for easy integration into larger motor systems, suitable for high-capacity industrial applications.• Flange BCD: 115 mm, Flange Thickness: 7 mm – Ensures compatibility with IEC 63B5 motors, simplifying installation and replacement tasks for engineers.• Shaft Diameter: 11 mm – Standardized sizing for direct retrofit on a variety of drive setups.• Input Voltage: 5-24VDC – Wide voltage range supports versatile use across automation platforms.• Output: A90°B / A'90°B' (HTL/TTL) – Dual output formats guarantee integration flexibility with both legacy and modern control devices.• Pulses per Revolution: 2 per channel – Offers stable incremental feedback for applications requiring simple to moderately fine speed monitoring.• Cable Length: 20 meters – Facilitates remote encoder placement, enabling installation across extensive industrial sites.• Material: Aluminium – Robust, lightweight build ensures resistance to corrosion and mechanical wear in harsh environments.• IP55 / IP67 Protection – Provides resistance to dust, water jets, and immersion, enabling reliable operation in challenging industrial conditions.**Application Possibilities**
• Precision motor speed feedback in conveyor automation, packaging, and material handling systems.• Automated production lines requiring stable and accurate feedback for synchronized movement.• Robotics and advanced electromechanical systems demanding improved signal clarity and increased control precision.• Harsh or outdoor environments where dust and moisture protection are essential for encoder reliability.**Other BEGE Encoder Options**
• MIG Basic: Incremental encoder for fundamental speed feedback in standard automation applications.• MIG AST: Absolute encoder retains position information after power loss, perfect for precision positioning and advanced control systems.

calcPageSize())"
/>



