Description
High-precision incremental encoder engineered for advanced automation requirements, combining reliability, versatility, and ease of integration. **Key Features & Benefits:**
High-resolution incremental feedback with 32 pulses per revolution per channel provides improved accuracy for rotational speed and position detection, supporting demanding automation applications.
Enhanced signal stability ensures robust and reliable performance in environments with electrical noise, reducing the need for error correction and maintenance.
Dual output (A90°B / A'90°B') supports both HTL and TTL levels, making integration seamless across various control systems and PLCs.
Wide input voltage range (5 – 24VDC) increases compatibility with diverse drives and controllers, simplifying implementation.
Large shaft diameter (48mm) and outer flange diameter (350mm, BCD 300mm, thickness 12mm) extend application range to high-torque and heavy-duty motors, especially IEC 180B5.
Long cable length (50m) supports remote mounting and installation flexibility, essential for industrial machinery with extended layouts.
Durable aluminium housing ensures long-lasting operation in tough conditions and offers corrosion resistance.
Exceptional ingress protection (IP55 / IP67) means suitability for dusty or damp environments, reducing unplanned downtime. **Application Possibilities:**
Precise speed and direction feedback in conveyor systems, packaging automation, and robotics.
Reliable motor synchronization in printing machinery, textile equipment, and processing lines.
Advanced positioning control in CNC machinery, automated assembly lines, and smart factories.
Retrofit solutions for upgrading standard motion systems to higher accuracy and robustness. **Encoder Types Overview:**
MIG Basic – Incremental encoder for basic speed feedback in standard automation tasks.
MIG Nova+ – Incremental encoder with higher resolution and enhanced signal stability for precise regulation in automated systems.
MIG AST – Absolute encoder that retains position after power loss, employed in precision positioning and advanced control systems.

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