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BEGE Flanged Encoder MIG Nova+ MN-160-28-0002-9, 2 pulses, 2m cable, stainless steel **Key Features and Product Attributes**
- High-resolution incremental encoder ensures superior signal stability for accurate speed feedback and precise motion control in sophisticated automation systems. - Dual output options (HTL/TTL, A90°B / A'90°B') provide flexible integration with different control architectures and PLCs. - Robust stainless steel housing (outer diameter 160 mm, flange BCD 130 mm) offers excellent corrosion resistance, making it ideal for use in harsh and demanding industrial environments. - Compact flange thickness (9 mm) allows for seamless installation on IEC 100/112B14 motors. - 2 pulses per channel enable essential speed monitoring in slow or step-wise automated movement applications. - Wide input voltage range (5-24VDC) supports compatibility with various industrial power supplies. - IP55/IP67 protection class ensures reliable operation against dust, water, and oil ingress—suitable for both indoor and outdoor use. - 2-meter cable length facilitates convenient and flexible connection to control panels, even in installations where space is limited. **Application versatility**
- Perfect for deployment in conveyor belt systems, packaging lines, and processing machines requiring precise speed regulation and monitoring. - Well-suited for integration in robotics, automated machinery, food & beverage production, material handling, and assembly lines demanding consistent speed and position feedback. - Reliable choice for harsh environments, including marine, chemical, or washdown areas, due to its stainless steel design and high IP rating. **Encoder type comparison (BEGE MIG Series):**
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks. - MIG Nova+: Incremental encoder with higher resolution and enhanced signal stability, ideal for precise regulation in advanced automated systems. - MIG AST: Absolute encoder retains position after power loss, supporting precision positioning and sophisticated control systems.

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