Description
Manufactured by BEGE Power Transmission, a reputable specialist in high-performance industrial automation components, this encoder is engineered for reliability and precision in demanding applications.
High-Resolution Incremental Encoder: MIG Nova+ is an incremental encoder providing 512 pulses per revolution per channel, offering superior speed and position feedback for precise control in complex automation systems.
Enhanced Signal Stability: Advanced electronics ensure improved signal quality, reducing noise and interference for stable and reliable real-time measurements crucial in dynamic industrial environments.
Wide Output Signal Compatibility: Featuring A90°B / A'90°B' HTL/TTL outputs, this encoder seamlessly integrates with various PLCs and motor drives for flexible implementation in different systems.
Robust Construction: The body is crafted from high-grade aluminium, delivering long-term durability, lightweight properties, and resistance to industrial environmental stressors.
Generous Cable Length: Equipped with a 100-meter cable, this encoder supports remote installation and facilitates system integration across large machines and production lines without sacrificing signal quality.
IP55/IP67 Protection: Offers strong protection against dust and water ingress, making the MIG Nova+ suitable for both indoor and harsh outdoor industrial conditions.
Versatile Mounting: With an outer diameter of 120 mm, BCD of 100 mm, flange thickness of 7 mm, and matching IEC 80B14 standard motor interfaces, the encoder is compatible with a broad range of industrial motors and setups.
19 mm Shaft Diameter: Provides a solid fit for standard applications, ensuring simple, secure installation and excellent torsional rigidity.
Wide Voltage Input: Accepts input voltages from 5-24VDC, guaranteeing flexible and reliable integration into diverse control systems.
Typical Applications: Ideal for use in robotics, conveyor systems, packaging lines, automated production machinery, and process control where high-resolution speed and position feedback are essential for accuracy and repeatability.

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