Description
The BEGE MIG Basic MB-140-24-0001-9 is an incremental encoder designed for fundamental speed feedback in standard automation tasks. With robust stainless steel construction, precise engineering, and reliable signal output, it is ideal for general-purpose applications in industrial environments.**Key Features & Benefits:**
- Constructed from corrosion-resistant stainless steel for outstanding durability in harsh or wet industrial surroundings.- Large Ø140mm flange and 24mm shaft diameter ensure compatibility with IEC 90B14 motors commonly used in industrial automation.- High IP55/IP67 protection class provides excellent resistance to dust and water, ensuring long operational life even under challenging conditions.- Delivers 1 pulse per revolution per channel, ideal for basic speed and direction feedback in conveyors, pumps, mixers, or packaging lines.- 20-meter cable length facilitates flexible installation, even where longer distances to control units are required.- Accepts an input voltage range of 5-24VDC, supporting integration with diverse control systems and PLCs.- Outputs A90°B HTL signals for reliable interfacing with standard industrial controllers and drives.- The 9mm flange thickness adds mechanical strength and stability during installation.**Application Possibilities:**
- Suitable for speed detection and monitoring in general factory automation, materials handling, and processing equipment.- Can be used for feedback in simple motor control loops, improving process repeatability and efficiency.- Perfect match for OEM machinery builders and system integrators needing a cost-effective, robust, and easy-to-implement speed encoder.**Overview of MIG Series (Product Family):**
- MIG Basic: Incremental encoder for standard speed feedback in automation systems. Cost-effective and robust for everyday industrial use.- MIG Nova+: Incremental encoder with increased resolution and enhanced signal stability, well-suited for precise motion control and advanced automated processes.- MIG AST: Absolute encoder preserving position after power loss, ideal for high-precision positioning and sophisticated control system architectures.

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