Description
**BEGE** is a renowned European manufacturer specializing in high-quality automation components for industrial drives and control systems. Their extensive expertise ensures that every product meets demanding market standards for reliability, performance, and innovation.Product Name:
**BEGE Flanged Encoder MIG Nova+ MN-160-28-0032-9, 32 pulses, 4P plug, 5m cable, aluminium**Key Features & Advantages:
Advanced incremental encoder with high resolution (32 pulses per revolution per channel) for enhanced speed and position feedback in machine automation.
Superior signal stability enables precise motion control and accurate regulation, critical for advanced automated systems and demanding industrial environments.
Robust aluminium housing and IP55/IP67 ingress protection ensure exceptional durability in harsh conditions, protecting against dust, moisture, and mechanical impacts.
160mm outer flange diameter with a 130mm BCD and 9mm flange thickness guarantees easy integration in standardized industrial motors (IEC 100/112B14 interface).
28mm shaft diameter provides compatibility with a wide range of motor types and applications.
5-meter pre-assembled cable with a 4P plug offers flexible installation options, reducing downtime and increasing system reliability.
Wide 5-24VDC input voltage range and A90°B HTL output signal support integration with most PLCs, servo drives, and automation controllers.Application Possibilities:
Optimized for use in automated production lines, packaging machinery, robotics, conveyors, and other applications requiring precise speed feedback and control.
Ideal for engineers designing high-performance drive systems in sectors such as food processing, textiles, and logistics.BEGE Encoder Types:
**MIG Basic:** Incremental encoder designed for basic speed feedback tasks in standard automation systems.
**MIG Nova+:** High-resolution incremental encoder with improved signal stability, perfect for precise regulation in automated systems. (This product)
**MIG AST:** Absolute encoder retains position after power loss, enabling accurate positioning in advanced control systems and ensuring reliable, fault-tolerant operation.

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