Description
BEGE Flanged Encoder MIG Basic MB-160-28-0016-9, 16 pulses, 2m cable, stainless steel **Key Features, Benefits & Application Areas:**
Incremental encoder designed for basic speed feedback in standard automation tasks, providing reliable pulse signal output for position and velocity monitoring
Constructed from high-grade stainless steel, offering enhanced resistance to corrosion, chemicals, and harsh industrial environments, ideal for food, beverage, marine, and processing industries
Compatible with international IEC 100/112B14 motor standards and a 160mm flange outer diameter, ensuring easy integration with various drive systems and motors
Features BCD (Bolt Circle Diameter) of 130mm and 28mm shaft diameter for precise fitment with standardized equipment
Delivers 16 pulses per revolution per channel, enabling fundamental speed measurement for conveyors, basic machinery, and general automation applications
Equipped with A90°B HTL output, suitable for most PLCs and controllers, ensuring signal compatibility and operational stability
Input voltage range from 5-24VDC provides application flexibility across different control architectures
IP55 and IP67 rated for superior protection against dust, water jets, and short-term submersion, making it suitable for demanding industrial conditions
Flange thickness of 9mm for streamlined installation and mechanical robustness
2-meter shielded cable ensures reliable signal transmission, simplifying installation and wiring in control panels or field environments
Optimal for OEMs and system integrators needing basic, low-maintenance speed or position feedback for standard drives, conveyors, and pump systems **Encoder Type Comparison:**
- MIG Basic: Incremental encoder for essential speed feedback in standard automation applications. - MIG Nova+: Incremental encoder with higher resolution and improved signal stability, for more accurate control in automated systems. - MIG AST: Absolute encoder retaining position data after power loss, recommended for advanced control systems requiring precise, fail-safe positioning.

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