Description
Incremental Encoder Type: MIG Basic is designed as an incremental encoder, providing fundamental speed feedback for standard automation tasks, widely suited for reliable, cost-effective control.
Ideal for speed feedback in conveyors, packing machines, and other basic automation systems where precise positioning is not required but reliable speed monitoring is essential.
Sturdy aluminium housing ensures durability and superior resistance to mechanical stress and harsh industrial conditions.
Large flange diameter of Ø160mm and robust shaft design (14mm) for secure and stable installation in a wide range of motor and drive applications, conforming to IEC 71B5 norm.
BCD norm of 130mm and flange thickness of 7mm allow for easy integration into standardized industrial systems and reduce installation time.
Optimized for long-distance installations with a 20-meter cable, ensuring reliable signal transmission even in large-scale industrial setups.
High ingress protection (IP55 / IP67) provides excellent resistance against dust and water, ideal for demanding production environments.
Input voltage range (5–24VDC) ensures compatibility with a broad variety of control systems and PLCs.
HTL output with A A90°B channels delivers robust incremental signals for consistent speed feedback, suitable for basic to intermediate automation processes.
4 pulses per revolution per channel allow for the monitoring of low-speed applications, supporting consistent and accurate speed regulation.
Engineered for standard automation projects where reliable, cost-effective speed feedback is required without unnecessary complexity.
Compatible with BEGE's range of drives and gear motors, providing a tailored solution for OEMs and system integrators seeking reliable incremental encoders. **Other BEGE Encoder Types:**
MIG Nova+: High-resolution incremental encoder with enhanced signal stability for precise control in advanced automated systems.
MIG AST: Absolute encoder preserving position data after power loss, essential in systems requiring accurate positioning and advanced control.

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