Description
**Product Highlights & Features:**
• Incremental Encoder: The MIG Basic is an incremental encoder designed for fundamental speed feedback in standard automation tasks, ensuring reliable and accurate speed monitoring in drive systems.
• Versatile Industrial Application: Ideal for general automation, conveyor systems, basic motor drive feedback, and monitoring machine speeds in production facilities.
• Aluminium Housing: Constructed with a high-grade aluminium body for exceptional durability, resistance to corrosion, and lightweight installation.
• Flange Size and Fit: Features a 200 mm external flange diameter (IEC 90B5 norm), making it suitable for integration with various IEC-standard motors and machinery.
• Shaft & Mounting: The device includes a 24 mm diameter shaft and 9 mm flange thickness, matching a wide range of industrial applications and motors.
• Signal Output: Provides A90°B HTL incremental signals with 16 pulses per revolution, ensuring consistent and real-time speed data feedback for standard automation units.
• Electrical Compatibility: Operates on a 5–24VDC supply, giving flexibility for integration with modern drive electronics and programmable logic controllers (PLCs).
• Cable & Connection: Delivered with a 4-pole plug and a 5-meter shielded cable for straightforward, plug-and-play field installations, reducing wiring complexity and electrical noise.
• Sealing & Protection: Certified to IP55/IP67, guaranteeing protection against dust, water jets, and temporary immersion, thus suitable for harsh industrial conditions.
• Reliable Brand Support: As a BEGE product, users benefit from solid technical support, long availability, and a trusted supply chain within Europe. **Application Possibilities:**
• Speed feedback for electric motors in conveyor systems, production lines, and basic automated machinery.
• Suitable for use in packaging, manufacturing, and food processing equipment where fundamental speed monitoring is required.
• Reliable for pump, fan, and compressor drive systems to ensure operational efficiency and safety.

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