Description
BEGE Flange Encoder MIG Nova+ MN-350-42-0128-12, 128 pulses, 10m cable, aluminiumKEY FEATURES AND ADVANTAGES:
• Incremental encoder with high resolution (128 pulses per channel), ideal for precise speed and position feedback in demanding industrial automation tasks.• Enhanced signal stability ensures reliable detection and minimizes signal noise even under harsh operating conditions, increasing system reliability and performance.• HTL/TTL output compatibility (A90°B / A'90°B') for flexible integration into various control systems and PLC architectures.• Large, robust aluminum housing with 350mm flange diameter and 42mm shaft diameter meets IEC 160B5 standard, providing high mechanical strength for heavy-duty operations.• Suitable for flange-mounting with BCD 300mm and flange thickness 12mm, enabling easy installation and retrofitting in existing systems.• Long 10-meter cable provides installation flexibility for machines and systems with extended wiring requirements.• High ingress protection rating (IP55 / IP67) safeguards against dust and water, ensuring reliable operation in demanding environments.• Operates with wide input voltage range (5-24VDC) supporting various power supply scenarios in industrial automation.• Lightweight aluminum construction enhances corrosion resistance and thermal management for longer service life.APPLICATIONS:
• Precise speed regulation and positioning tasks in automated production lines, robotics, conveyor systems, and material handling equipment.• Feedback control in servo drives, frequency inverters, and PLC applications requiring enhanced resolution and signal quality.• Suitable for environments where mechanical robustness, long cabling, and flexible installation are required.ENCODER TYPE DIFFERENCES:
• MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.• MIG Nova+: Incremental encoder with higher resolution and superior signal stability, suitable for precision regulation in automated systems.• MIG AST: Absolute encoder, retaining position after power loss, for advanced positioning and control applications.

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