Description
BEGE is a renowned manufacturer in the field of drive technology, recognized for its reliable and innovative encoders designed for industrial automation and motion control applications. BEGE encoders are engineered for robust performance, high precision, and long operational lifespan, making them a preferred choice among engineers and technical specialists worldwide.Product: BEGE Flange Encoder MIG Nova+ MN-450-55-1024-15
Incremental encoder with high resolution (1024 pulses per revolution per channel), delivering precise speed and position feedback for advanced automated systems.
Enhanced signal stability ensures accurate measurements, essential for demanding industrial environments where precise regulation and repeatable performance are critical.
Large flange diameter (Ø450mm) with a bolt circle diameter (BCD) of 400mm facilitates easy mounting on large motors and machinery, adhering to industrial IEC 225B5-Ø55 standards.
Robust construction with a 15mm flange thickness and 55mm shaft diameter, made from high-quality aluminium for low weight and corrosion resistance in harsh environments.
Versatile electrical specifications: Accepts 5-24VDC input and provides A90°B / A'90°B' HTL/TTL outputs, supporting integration with various automation controllers and PLCs.
Long 5-meter cable length makes installation straightforward, even in large equipment setups, enhancing operational flexibility.
Dual IP classifications (IP55/IP67) ensure protection against dust and water, ideal for deployment in rugged or wet industrial settings. Application Possibilities:
Recommended for precise speed feedback and control in production lines, conveyor systems, robotics, and process automation requiring accurate incremental data.
Well-suited for advanced drive systems where precise motor regulation optimizes performance and reduces maintenance costs.
Unlike the basic MIG Basic model (for general-speed feedback in standard automation) and the MIG AST absolute encoder (for exact positioning post-power-loss), the MIG Nova+ excels in systems prioritizing high-resolution, reliable increment signals.

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