Description
BEGE Flange Encoder MIG Nova+ MN-300-38-2048-12**Key Features and Advantages**
- Robust construction with a Ø300 mm stainless steel flange and 12 mm thickness, ensuring excellent durability and corrosion resistance in aggressive industrial settings.- High shaft diameter of 38 mm, suitable for integration with large and heavy-duty motors compliant with IEC 132B5 standards, meeting demanding engineering requirements.- Incremental encoder with high resolution: delivers 2048 pulses per channel per revolution, facilitating precise speed feedback and improved accuracy for advanced automation tasks.- Enhanced signal integrity with HTL/TTL output options (A90°B / A’90°B’), allowing stable and reliable data transmission for superior system responsiveness.- Extended cable length of 50 meters, allowing flexible installation even in large automated setups or where remote sensor placement is required.- Wide power input range (5-24VDC) for compatibility with a broad variety of industrial controllers and systems.- Dual IP ratings of IP55/IP67, providing reliable protection against dust, water ingress, and enabling operation in harsh, wet, or dusty production areas.**Application Possibilities**
- Ideal for precise speed control and feedback in automated assembly lines, conveyors, and packaging machinery.- Well-suited for use in robotics, material handling, and motion control systems requiring stable and accurate incremental feedback.- Enables integration in food, pharmaceutical, or chemical industries due to stainless steel construction and high ingress protection.- Supports implementation in retrofit projects or newly developed machines, thanks to compatibility with IEC 132B5 motors and extended cable reach.**Difference Between BEGE Encoder Types**
- MIG Basic: Incremental encoder for standard speed feedback in basic automation applications.- MIG Nova+: Incremental encoder with higher resolution and enhanced signal stability for precise regulation in advanced automated systems.- MIG AST: Absolute encoder retaining position after power loss, for exact positioning and complex control systems.

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