Description
BEGE Flange Encoder MIG Nova+ MN-250-42-0016-12, 16 pulses, 50m cable, stainless steel**Key Attributes**
• Flange outer diameter: 250 mm• Flange BCD (pitch circle): 215 mm• Shaft diameter: 42 mm• Motor IEC: 160B14 compatible• Input voltage: 5–24 VDC• Output signals: A90°B / A'90°B', HTL/TTL• Resolution: 16 pulses per channel per revolution• Maximum cable length: 50 meters• Material: Robust stainless steel construction• Flange thickness: 12 mm• Protection class: IP55 / IP67 for dust and water resistance**Core Features & Benefits**
• High signal stability ensures precise speed feedback, reducing the risk of miscounts and enhancing system reliability in advanced automation applications• Incremental encoder with higher resolution than the basic version, ideal for demanding motion control where accuracy and repeatability are critical• Durable, corrosion-resistant stainless steel design suitable for harsh industrial environments such as food, chemical or marine sectors• Extended cable length of up to 50 meters provides installation flexibility in large machinery or remote system configurations• Compatible with standard industrial interfaces (HTL/TTL) for seamless integration into existing control systems and PLCs• IP67 rating (with appropriate mounting) ensures reliable operation even in environments exposed to dust or water jets**Application Possibilities**
• Precision speed regulation in automated conveyor systems• Feedback control in robotics and packaging machines• Use in heavy-duty environments thanks to robust, stainless steel housing• Reliable performance for industrial automation, motion control, and process engineering projects where precision and durability are essential**Differentiation from Other BEGE Encoders**
• MIG Basic: An incremental encoder for standard speed feedback in basic automation tasks• MIG Nova+: Offers higher resolution and enhanced signal stability, tailored for more precise control in advanced automated systems• MIG AST: An absolute encoder that retains position information after power loss, suited for exact positioning and sophisticated control systems

calcPageSize())"
/>



