Description
BEGE Flange Encoder MIG Nova+ MN-090-11-0002-7 **Key Features and Advantages:**
- Incremental encoder with increased resolution and enhanced signal stability for precise control in automated systems. - High IP55/IP67 protection class, ensuring reliable operation in harsh industrial conditions with exposure to dust and water. - Sturdy and corrosion-resistant stainless steel housing, delivering superior durability for long-term operation in aggressive environments. - Large flange diameter (Ø90mm) and 75mm BCD with 7mm flange thickness, facilitating secure and flexible mounting in compliance with IEC 63B14 motors. - 11mm solid shaft optimized for stable coupling with compatible drive shafts, reducing mechanical wear and the risk of misalignment. - Wide voltage input (5-24V DC) and configurable output signals (A90°B / A'90°B' HTL/TTL), allowing seamless integration with various control systems and PLCs. - 2 pulses per channel for clear, high-fidelity motion feedback suitable for slow-speed and start/stop monitoring applications. - Exceptional 50-meter cable length supports remote installations without compromising signal integrity. **Application Possibilities:**
- Optimized for more precise speed and position feedback in conveyor technology, packaging machines, and automated production lines. - Perfect choice for precision motion control in robotic systems and material handling equipment. - Facilitates dependable position and velocity feedback in applications requiring frequent start-stop cycles or harsh environment resistance. - Suitable for integration into both new automation projects and retrofit upgrades where improved resolution and reliability are essential. **Encoder comparison:**
- **MIG Basic:** Incremental encoder for fundamental speed feedback in standard automation tasks. - **MIG Nova+:** Incremental encoder with higher resolution and enhanced signal stability, suited for more precise automated control. - **MIG AST:** Absolute encoder that retains position after power loss, enabling precise positioning and advanced control systems.

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