Description
BEGE is an established Dutch manufacturer specializing in advanced drive technology and high-quality automation components for industrial environments. Their encoder solutions are recognized for durability, reliable performance, and seamless integration in industrial automation systems. **Key Features, Benefits, and Application Possibilities:**
Incremental Encoder for Basic Speed Feedback – The MIG Basic is engineered for straightforward speed monitoring and automation tasks, supporting increased productivity in general machinery and processing applications.
Rugged Stainless Steel Housing – Optimized for harsh environments, the corrosion-resistant enclosure ensures a long service life in demanding industrial conditions.
High Protection Class (IP55/IP67) – Outstanding resistance to dust and water provides reliability in both indoor and wet outdoor industrial settings, minimizing unplanned downtime.
Standard 90B14 Flange and Shaft Dimensions – Universal compatibility (Ø140mm flange outside, 115mm BCD, 24mm shaft) allows seamless integration into IEC-compliant motors and drive systems.
Versatile Electrical Interface – Operates with 5–24VDC input and delivers robust A90° B HTL output, ensuring interference-resistant signal transmission over long distances.
32 Pulses Per Revolution Per Channel – Delivers accurate incremental position and speed data for control systems that require precise yet uncomplicated feedback.
5 Meter Cable as Standard – Extended cable length simplifies installation, allowing flexible encoder placement within automated installations and control cabinets.
Typical Applications – Ideal for conveyors, packaging lines, pumps, and light-duty automation where basic speed regulation and reliable pulse feedback are essential. **For higher-precision tasks:**
Choose MIG Nova+ for finer resolution and enhanced signal stability in precision automation. (High-resolution incremental encoder with excellent signal integrity.) **For advanced positioning control:**
Choose MIG AST for true absolute position feedback, retaining accurate position data after power loss – optimal for sophisticated control systems and robotics.

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