Description
**Product: BEGE Flanged Encoder MIG Nova+ MN-105-14-0512-7, 512 pulses, 15m cable, aluminium**
High-Resolution Incremental Output – Delivers 512 pulses per rotation per channel, ideal for applications that require accurate speed monitoring and fine control in industrial automation systems.
HTL/TTL Compatible Outputs – Offers flexible output options (A90°B / A'90°B' signals) compatible with a wide range of controllers and PLCs, enhancing integration in existing and new systems.
Extended Cable Range – Equipped with a robust 15-meter cable for maximum installation flexibility across large machinery setups or distant panel installations.
Durable Aluminium Construction – The aluminium housing ensures excellent corrosion resistance, lightweight design, and effective heat dissipation suitable for rigorous industrial use.
IEC 71B14 and EN 105mm Flange Norms – Designed for seamless mechanical integration in motors and drives confirming to widely adopted IEC standards, minimizing installation challenges.
Compact yet Rugged – Flange outside diameter 105mm, shaft diameter 14mm, and only 7mm flange thickness, making it suitable for both space-constrained and harsh environments.
Dual IP55 / IP67 Protection – Withstands dust, splashing, and temporary immersion, ensuring longevity and consistent performance in challenging industrial settings.
Enhanced Signal Stability – The MIG Nova+ series offers improved signal consistency, reducing downtime and measurement errors in dynamic automated processes.
Wide Voltage Input (5–24VDC) – Facilitates compatibility with diverse control systems used across multiple industries.
**Use Cases:** - Advanced speed and position feedback in conveyor systems, robotics, packaging equipment, and machine tools. - Precise regulatory feedback in automated production lines where reliability and accuracy are critical to quality and efficiency.
**Other BEGE Encoder Solutions:** - MIG Basic: Incremental encoder for standard speed feedback in general automation. - MIG AST: Absolute encoder, preserves position after power failure; essential for precise positioning and high-end control systems.

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