Description
Stainless steel housing ensures superior durability and corrosion resistance, ideal for harsh industrial applications.
Incremental encoder with high resolution and enhanced signal stability, perfect for precise control in automated systems.
Flange outside diameter of 250mm and BCD of 215mm allows fitting on IEC 160B14 motors for compatibility across industrial installations.
42mm solid shaft provides secure mechanical coupling and sustains high radial loads, supporting stable feedback even under heavy-duty conditions.
Wide supply voltage range (5–24VDC) ensures flexible integration into varied control system architectures.
HTL/TTL A90°B / A’90°B’ outputs support both high-speed and noise-sensitive environments, enhancing signal stability even over long cable runs.
Pulse-per-revolution: 1 per channel, enabling exact speed feedback where single-pulse monitoring or simple position referencing is required.
5-meter cable length simplifies installation, allowing for greater distance between encoder and control cabinet.
Robust ingress protection: IP55/IP67 seals the encoder against dust and water jets or temporary immersion, fostering trouble-free operation in tough conditions.
Flange thickness of 12mm delivers reliable mechanical strength and straightforward installation in heavy industrial machinery. **Application Possibilities:**
Optimal for precise speed regulation in conveyor systems, packaging lines and automated processing machinery.
Suitable for usage in food, pharmaceutical, and chemical industries due to stainless steel construction and high ingress protection.
Designed for motion feedback in robotics, assembly automation, and motor speed monitoring in harsh environments. **Encoder Types Overview:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
MIG Nova+: High-resolution incremental encoder with enhanced signal stability, ideal for more precise regulation in automated systems.
MIG AST: Absolute encoder preserves position after a power outage, for accurate positioning and advanced control systems.

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