Description
**High-Resolution Incremental Encoder:** The MIG Nova+ is an incremental encoder engineered with higher resolution and improved signal stability, making it ideal for precise speed regulation in a wide range of automated industrial systems.
**Flange and Shaft Specifications:** Featuring a durable Ø120mm flange with a 100mm bolt circle diameter and 9mm shaft, it is perfectly compatible with IEC 56B5 motor interfaces for standardized installation in motor assemblies.
**Aluminium Construction:** The robust aluminium housing delivers excellent resistance to industrial wear, mechanical shocks, and environmental influences, extending service life in harsh working conditions.
**Dual-Pulse Output:** With 2 pulses per revolution per channel and A90°B HTL output, the encoder ensures accurate, interference-resistant speed and rotational direction feedback necessary for dynamic automation tasks.
**Wide Input Voltage Range:** Supporting 5–24VDC input, the encoder is easily integrated into diverse automation platforms and control architectures.
**Optimized for Long Installations:** The pre-fitted 5-meter, 4-pin cable simplifies setup and offers flexibility for both close-coupled and remotely located installations, saving time and minimizing signal loss.
**Superior Protection:** Rated IP55/IP67, the encoder withstands dust ingress, water jets, and temporary immersion, ensuring continuous operation even in wet or demanding industrial environments.
**Application Possibilities:** Well-suited for use in factory automation, conveyor systems, CNC machines, packaging equipment, robotics, and process control applications where accurate and stable speed feedback is essential for high-performance regulation and safety circuits.
**BEGE Encoder Range:** - MIG Basic: An incremental encoder designed for basic speed feedback in standard automation tasks.- MIG Nova+: An incremental encoder with higher resolution and signal stability, optimized for more precise regulation in advanced automated systems.- MIG AST: An absolute encoder that retains position after power loss, suitable for exact positioning and advanced control systems requiring fail-safe operation.

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