Description
**Brand Description:** BEGE Power Transmission is renowned for producing high-precision, robust, and innovative motion control and transmission solutions. Their encoders are widely used in industrial automation, offering excellent reliability and durability under demanding conditions.
**High-Resolution Incremental Feedback:** The MIG Nova+ delivers high-resolution incremental feedback, ensuring precise speed and position detection in automation systems.
**Improved Signal Stability:** Enhanced signal integrity guarantees reliable and stable feedback for equipment requiring accurate control and synchronization.
**2 Pulses per Channel:** Delivers 2 pulses per channel for detailed speed monitoring and process control, helping maximize operational efficiency.
**Robust Stainless Steel Construction:** The encoder housing and shaft are made from durable stainless steel, ensuring resistance to corrosion, chemicals, and harsh industrial environments.
**Flexible Configuration:** Output options support both HTL and TTL signals (A90°B / A'90°B'), accommodating a wide range of control systems and PLCs.
**Wide Input Voltage Range:** Accepts input from 5 to 24 VDC, providing compatibility with various industrial power supplies.
**Versatile Flange Size:** Designed with a Ø90mm flange (IEC 63B14, BCD 75mm, flange thickness 7mm), making it ideal for direct integration with standardized motors and gear units.
**High IP Classification:** Available in IP55/IP67, offering superior protection against dust and water ingress for dependable operation in demanding environments.
**Generous Cable Length:** Features a standard 2 meter cable for easy installation and connection flexibility, reducing wiring constraints in complex setups.
**Typical Applications:** - Advanced industrial automation lines demanding precise speed control- Robotics and conveyor systems requiring stable incremental position feedback- Packaging, food-processing, and washdown areas thanks to its stainless steel and IP67 construction- Motor and gear unit feedback in high-vibration or chemically aggressive environments

calcPageSize())"
/>



