Description
The BEGE Power Transmission brand is renowned for delivering high-quality, durable motion control solutions to the automation and drive technology industries. Recognized for their innovation and reliability, BEGE encoders ensure precision feedback in demanding industrial environments.**Key Features & Benefits:**
Incremental Encoder for Basic Speed Feedback – Engineered for standard automation tasks, the MIG Basic provides essential speed measurement, making it ideal for conveyor systems, machinery, and general motion control applications.
Flange Diameter 200mm & BCD 165mm – The large, robust flange delivers secure mounting and stable operation in industrial machinery conforming to IEC 80B5 standards.
Shaft Diameter 19mm – Compatible with a wide range of motor shafts for flexibility in retrofitting or new designs.
High Durability – Constructed from aluminium, ensuring long lifespan, resistance to mechanical stresses, and efficient heat dissipation.
Pulses/Rev: 8 Per Channel – Offers reliable, basic-speed signal feedback suitable for mainstream automation and monitoring duties.
Output: A90°B HTL – Delivers standard two-channel quadrature output, providing directional information, suitable for most modern PLCs and controllers.
Wide Input Voltage (5–24VDC) – Compatible with a variety of industrial control environments for easy integration.
Cable: 4P Plug, 5m Length – Facilitates flexible and straightforward installation, even where distance from controller is required.
IP55/IP67 Protection – Provides reliable protection against dust and water, ensuring dependable operation in harsh industrial settings.
Applications: Ideal for speed monitoring, feedback in automated transport systems, packaging machinery, sorting, and other standard industrial automation processes.**Other BEGE Encoder Options:**
MIG Nova+: High-resolution incremental encoder with enhanced signal stability, suited for applications demanding accurate speed regulation and improved process control.
MIG AST: Absolute encoder version, retaining exact position data even after power loss—optimal for precise positioning, robotics, and systems requiring advanced motion control safety.

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