Description
· High-Resolution Incremental Encoder – Delivers 16 pulses per revolution per channel for improved accuracy and signal fidelity, ideal for precise speed and position feedback in automated processes.· Superior Signal Stability – Enhanced signal design ensures reliable data transmission, reducing noise and signal interference, which is crucial for consistent operation in complex automation systems.· Robust Construction – Manufactured with a durable aluminium housing (outer diameter: 120mm, flange thickness: 7mm, Ø19mm shaft) providing high resistance to vibration and mechanical stress, suitable for industrial environments.· Multiple Output Formats – Offers A90°B / A'90°B' HTL and TTL output options for compatibility with a broad range of control and drive systems.· Wide Power Supply Range – Operates from 5 to 24VDC, allowing integration with diverse industrial controllers and drive units.· Generous Cable Length – Equipped with a 10-meter cable for flexible installation and remote encoder mounting in large automation assemblies.· High Protection Class – Rated IP55/IP67 for resistance to dust and water, supporting use in challenging factory and outdoor conditions.· Compatibility – Designed for IEC 80B14 flange motors (BCD 100mm), ensuring straightforward installation and retrofitting on standard drive setups.Application Possibilities:
· Precision speed and torque regulation in conveyor systems, packaging equipment, and robotics.· Ideal for use in machine tools, printing presses, and automated material handling systems requiring reliable incremental feedback.· Suitable for harsh industrial environments where robust construction and signal reliability are critical.Encoder Type Overview:
· MIG Basic – Incremental encoder for basic speed feedback in standard automation tasks.· MIG Nova+ – Incremental encoder with higher resolution and enhanced signal stability, suitable for more precise regulation in automated systems.· MIG AST – Absolute encoder, retains position information after power loss, and is used for accurate positioning in advanced control systems.

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