Description
Manufactured by BEGE Power Transmission, a leading provider of advanced drive technology solutions for industrial automation, the MIG Nova+ encoder ensures optimal performance and reliability in demanding environments. BEGE is renowned throughout the industry for its innovation, quality, and robust engineering, enabling precise control in complex automation processes.
The MIG Nova+ is an incremental encoder with high resolution, delivering improved signal stability and superior accuracy, making it ideal for applications requiring precise speed regulation and feedback.
Encoder housing and shaft are made from premium stainless steel, providing exceptional durability, corrosion resistance, and suitability for use in harsh industrial environments such as food processing, pharmaceuticals, and outdoor settings.
Outer flange diameter of 120mm and 100mm bolt circle diameter (BCD) in accordance with IEC 56B5, ensuring seamless integration with standard motor interfaces for maximum compatibility and straightforward installation.
9mm stainless steel shaft optimizes mechanical strength and operational longevity for continuous industrial use.
Features 2 pulses per channel (A/A’, B/B’) in both HTL and TTL output standards, with A 90° B phased signals supporting precise incremental position and speed measurement.
Supports wide input voltage range (5-24VDC), increasing deployment versatility across a range of automation and process control systems.
20-meter pre-assembled cable allows for flexible installation over long distances, reducing the need for additional cabling or connectors in large automated machinery setups.
Rated to IP55/IP67 for maximum protection against dust, water, and harsh environmental conditions, ensuring reliable operation in both indoor and outdoor industrial environments.
With just 7mm flange thickness, the encoder is especially suitable for space-constrained installations, optimizing integration in compact automated assemblies.
Perfect for precision conveyor systems, automated packaging lines, industrial robotics, and sophisticated assembly machinery where accurate motion control and feedback are critical.

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