Description
BEGE Flanged Encoder MIG Nova+ MN-120-09-0016-7, 16 pulses, 2m cable, aluminiumKey Features & Benefits:
High-Resolution Incremental Encoder: The MIG Nova+ offers higher resolution (16 pulses/channel) compared to basic encoders, providing enhanced accuracy crucial for precise speed feedback and control tasks in industrial automation.
Stable Signal Output: Equipped with advanced signal stabilization and dual output formats (A90°B / A'90°B' HTL/TTL), reducing noise and error, and improving system reliability even in environments with substantial electromagnetic interference.
Robust Aluminium Construction: The durable aluminium housing and IP55/IP67 protection ensure excellent resistance to mechanical stress, dust, and moisture—ideal for harsh and demanding settings.
Versatile Mounting: Flange diameter Ø120mm, BCD 100mm, shaft 9mm, and compliance with IEC 56B5 motor standards allow straightforward integration, simplifying retrofitting or new installations on various gear motors and drives.
Flexible Connectivity: Supplied with a pre-mounted 2-meter cable for fast, error-free connections and placement flexibility in control cabinets or on-site machinery.
Wide Input Voltage Range: Accepts 5–24VDC, supporting direct interfacing with a broad array of modern PLCs and motion controllers.Application Possibilities:
Speed and Position Feedback: Perfect for precise speed regulation and direction detection in conveyor systems, packaging machinery, and assembly lines. The high pulse count supports accurate movement synchronization.
Automated Process Improvement: Ideal for systems requiring dynamic feedback and stable control, such as robotics, textile machines, and printing presses.
Suitable For Upgrades: A robust drop-in replacement for standard encoders in legacy systems, providing improved resolution and system reliability without redesign requirements.Other BEGE Encoder Types:
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
MIG AST: Absolute encoder preserving position data after power loss, for advanced closed-loop positioning and sophisticated control systems.

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