Description
High-Resolution Incremental Encoder: The MIG Nova+ offers enhanced resolution and improved signal stability, making it ideal for precision speed and direction feedback in automated systems.Output Compatibility: Supports A90°B / A'90°B' HTL/TTL output, maximizing compatibility with a wide range of industrial controllers and PLCs.Voltage Flexibility: Operates within a broad 5-24VDC input range for flexible integration into various machine architectures.Compact Flange Design: Features an Ø80mm aluminium flange with 65mm BCD (Bolt Circle Diameter) and standard IEC 56B14 mounting, ensuring easy integration into motors, gearboxes, and machinery.Durable Construction: Constructed from high-grade aluminium for optimum durability and reduced weight, with IP55 and IP67 protection against dust and water for reliable operation in harsh environments.Precision Shaft: Equipped with a 9mm diameter shaft for secure and reliable coupling to drive system components.Standardized Cabling: Supplied with a 2-meter shielded cable to ensure reliable signal transmission and versatile machine integration.16 Pulses Per Revolution: Provides 16 pulses per channel per revolution, suitable for medium-precision feedback requirements in automation.**Applications:**
Automated Conveyors: Accurate speed and directional feedback improves throughput and error reduction.Packaging Machines: Enhances process control and product consistency with precise motion feedback.Robotics: Delivers reliable position and movement monitoring for robotic arms and automated guided vehicles (AGV).Textile and Paper Processing: Ensures exact control of web tension and material handling.General Industrial Automation: Seamless integration with standard and advanced PLCs for machinery control.**BEGE Encoder Range:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.MIG Nova+: Incremental encoder with higher resolution and improved signal stability, suitable for more precise control in automated systems.MIG AST: Absolute encoder that retains position after power loss, used for precise positioning and advanced control systems.

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