Description
The BEGE Flanged Encoder MIG Nova+ MN-160-28-0032-9 is a high-precision incremental encoder designed for advanced automation tasks, providing reliable speed and position feedback for industrial systems.
Key Features and Advantages:
- High-precision incremental encoding with 32 pulses per channel ensures accurate speed monitoring and positioning in complex machinery- Enhanced signal stability with HTL/TTL outputs (A90°B / A'90°B') supports reliable system integration in industrial environments- Wide input voltage range (5–24VDC) offers flexible compatibility with diverse automation and control systems- Robust construction in stainless steel provides excellent durability and resistance to corrosion, ideal for demanding or harsh operating conditions- Large flange diameter (160mm) and 28mm shaft fit IEC 100/112B14 motors, supporting robust integration in heavy-duty applications- IP55 / IP67 ingress protection ratings ensure safety from dust, water spray, and temporary immersion, supporting both indoor and outdoor use- Standard 2-meter cable length allows for straightforward installation and flexible mounting in assembly lines, conveyors, and industrial drives- 9mm flange thickness and 130mm bolt circle diameter meet BCD/IEC norms, ensuring seamless mechanical and electrical integrationApplication Possibilities:
- Automated production lines and packaging machinery requiring precise speed control and synchronization- Conveyor systems with advanced feedback and diagnostic requirements- Position feedback in robotics, CNC machines, and high-precision manufacturing processes- Industrial motor regulation where robust feedback and environmental resistance are criticalBEGE’s MIG Encoder Range:
- MIG Basic: Incremental encoder for standard speed feedback in basic automation tasks- MIG Nova+: Incremental encoder with higher resolution and improved signal stability for precise control in advanced automated systems- MIG AST: Absolute encoder retaining position after power loss, ideal for accurate positioning and sophisticated control systems

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