Description
BEGE Flanged Encoder MIG Nova+ MN-120-09-0002-7, 2 pulses, 15m cable, aluminiumKey Features and Advantages:
- Incremental encoder with enhanced resolution and superior signal stability, ideal for precision control in modern automated systems.- Robust aluminium housing ensures high durability, corrosion resistance, and longevity even in harsh industrial conditions.- Large flange diameter (Ø120mm) and standard mounting dimensions (BCD 100mm, Flange thickness 7mm, IEC 56B5) allow easy integration with a wide range of industrial motors and gear units.- Compact 9mm shaft diameter supports compatibility with a variety of drive shafts while maintaining low inertia for rapid acceleration feedback.- Wide voltage input range (5-24VDC) and flexible A90°B / A'90°B' HTL/TTL output signals support integration with both legacy and advanced automation controllers.- Delivers precise incremental feedback with 2 pulses per channel per revolution, optimising speed and direction detection.- Exceptionally long 15-meter cable length simplifies installation in large machines and complex production lines.- High ingress protection (IP55 / IP67) safeguards electronic components against dust and water, extending device lifespan in demanding environments.Application Possibilities:
- Suitable for drive control and speed regulation in conveyor systems, packaging machinery, and textile automation.- Ensures accurate speed measurement and monitoring in automated production lines and robotic systems.- Enhances system stability and precision feedback for controlling motors in high-duty cycle or repetitive motion applications.- Ideal for integration in both standard and high-end industrial automation where improved resolution and reliability are critical.Differentiation Between Encoder Types:
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.- MIG Nova+: Incremental encoder with higher resolution and enhanced signal stability for precise control in automated systems.- MIG AST: Absolute encoder that retains position after power loss, enabling exact positioning and use in advanced motion control systems.

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