Description
**Incremental Encoder for Foundational Speed Feedback**: The MIG Basic provides reliable incremental feedback for basic speed monitoring in standard automation applications, ensuring accurate process control in diverse industries.
**Precision Sensing**: Offers 32 pulses per revolution per channel, supporting precise and smooth shaft speed detection required for conveyors, packaging, and basic positioning tasks.
**High Compatibility with IEC Flange Motors**: Engineered to fit IEC 56B14 motor flanges (flange diameter 80mm, BCD 65mm) and 9mm shaft, making it easy to integrate with common motor types in the industry.
**Robust Aluminium Construction**: Machined from high-quality aluminium, ensuring excellent durability and resistance to mechanical stresses and vibration in harsh industrial environments.
**Protected for Demanding Conditions**: With IP55/IP67 rating, the encoder is suitable for dusty or moist environments, extending uptime and reducing maintenance in washdown or exposed applications.
**Flexible Connection**: Supplied with a 5-meter cable and a 4-pole connector, allowing easy and versatile installation across various industrial settings.
**Reliable Signal Output**: Output signal A 90° B (HTL) with 5–24VDC input, ensuring compatibility with a wide range of controllers and PLCs in automation systems. **Application Areas:**
Perfect for speed feedback in motor-driven conveyors, automated material handling, basic machine tools, and packaging lines where dependable, repeatable speed signals are required for controlling motors and drives.
Well-suited for standard automation, industrial drive units, HVAC, and process technology requiring essential, robust speed feedback. **Comparison with Other BEGE Encoder Types:**
MIG Basic: Incremental encoder for fundamental speed feedback in standard automation tasks.
MIG Nova+: Higher resolution incremental encoder with improved signal stability for advanced, precise motor control in industrial automation.
MIG AST: Absolute encoder maintaining position data after power loss, ideal for high-precision positioning and sophisticated control systems.

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