Description
– High-resolution incremental encoder provides refined speed and position feedback for demanding automation tasks, ensuring optimal accuracy in control systems.
– Superior signal stability enables precise regulation in dynamic and vibration-prone environments, making it suitable for packaging, robotics, and conveyor systems.
– Durable aluminium housing offers excellent resistance to mechanical stress and corrosion, ideal for continuous operation in harsh industrial environments.
– Flange design (IEC 63B14, 90mm diameter, 75mm BCD, 7mm thickness) allows for seamless integration with standard motor and gearbox interfaces.
– 11mm shaft diameter ensures compatibility with a wide range of motors and actuators for straightforward retrofits or OEM implementations.
– 8 pulses per revolution per channel delivers accurate feedback at lower resolutions, suitable for applications that prioritize reliability over ultra-high count.
– Supports 5–24VDC input, providing flexibility for integration into various control architectures.
– Multiple output signals (A90°B / A’90°B’, HTL/TTL) enable easy interfacing with PLCs or motion controllers.
– Long 10-meter cable facilitates installation in large industrial settings without costly cable extensions.
– IP55 / IP67 ingress protection ensures operation even in dusty or wet environments, supporting outdoor and heavy industry applications.
– Broad application range includes conveyor systems, automated production lines, packaging machinery, and industrial robotics requiring precise yet stable speed feedback. **MIG Basic:**
Incremental encoder designed for fundamental speed feedback in standard automation tasks. Cost-effective, robust, and easy to integrate into general-purpose machinery.**MIG Nova+:**
Incremental encoder with higher resolution and superior signal stability — ideal for applications demanding precise speed and position control in advanced automated systems.**MIG AST:**
Absolute encoder maintains position data after power loss. Perfect for sophisticated positioning and high-end automation requiring advanced feedback and fail-safe operation.

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