Description
The BEGE Flange Encoder MIG Nova+ MN-140-24-0064-9 is a robust incremental encoder designed for demanding industrial environments requiring precise and stable feedback for speed and position control.**Key Features and Advantages**
• High Resolution Feedback: 64 pulses per channel ensure accurate speed and position feedback, enabling improved control in automated machinery and robotics applications.• Enhanced Signal Stability: The upgraded signal processing guarantees reliable output, reducing the risk of errors and machine downtime in complex automation settings.• Broad Voltage Compatibility: Suitable for 5-24VDC, ensuring compatibility with a wide range of controllers and industrial environments.• Dual Output Type: Supports both HTL and TTL signal levels (A90°B / A'90°B'), providing maximum flexibility for integration with various control systems.• Durable Aluminium Construction: The robust housing with a flange diameter of Ø140mm and IP55/IP67 rating provides resistance to dust, water, and mechanical stress, assuring longevity in harsh environments.• Optimized Mounting: 24mm shaft, 9mm flange thickness, BCD of 115mm, and IEC 90B14 motor interface ensures easy integration with standard industrial motors and gearboxes.• Extended Cable: 5 meter cable simplifies installation even in remote or hard-to-access locations within equipment or production lines.**Application Possibilities**
• Ideal for precise speed regulation in automated assembly lines, conveyors, and packaging machinery.• Suitable for machine tools and robotics that require high-resolution feedback for positioning tasks.• Integration in motion control systems for increased reliability and performance in textiles, food processing, or material handling industries.**Encoder Types within BEGE’s Range**
• MIG Basic: Incremental encoder for standard speed feedback tasks in general-purpose automation.• MIG Nova+: High-resolution incremental encoder for advanced and precise regulation in demanding automation systems.• MIG AST: Absolute encoder which retains position data after power loss, ideal for precision positioning and sophisticated control systems.

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