Description
BEGE Flanged Encoder MIG Nova+ MN-120-09-0002-7**Key Features and Advantages:**
High Resolution Incremental Encoder – The MIG Nova+ delivers superior pulse generation with two pulses per channel, making it ideal for applications requiring precise speed control and accurate positioning in automation systems.
Enhanced Signal Stability – Advanced signal processing ensures consistent and reliable feedback, minimizing errors in high-performance applications such as robotics and conveyor systems.
Durable Aluminium Housing – The encoder's robust aluminium construction ensures excellent mechanical stability, corrosion resistance, and longevity, suitable for harsh industrial environments.
Flexible Signal Output – Compatible with both HTL and TTL output formats (A90°B / A'90°B'), allowing easy integration into a wide range of control systems.
Wide Power Supply Range – Operates reliably across 5-24V DC, meeting the requirements of various automation and drive system designs.
Long Cable Reach – Comes standard with a 20-meter cable, supporting installations where the encoder is positioned far from control cabinets.
Comprehensive Environmental Protection – Rated to IP55/IP67 for resistance to dust and water, ensuring reliable operation in demanding industrial settings.
Standardized Mounting – Features an outer diameter of 120mm, a flange BCD of 100mm, flange thickness of 7mm, and shaft diameter of 9mm as per IEC 56B5, making it suitable for direct mounting on standard motors.**Application Scenarios:**
- Precision control of motor speed and position in industrial automation systems.
- Accurate feedback for robotics, packaging machines, and conveyor drives.
- Reliable speed and motion feedback in process automation and material handling equipment.**Encoder Type Overview:**
MIG Basic: Basic incremental encoder for standard speed feedback in automation tasks.
MIG Nova+: High-resolution incremental encoder with enhanced signal stability for precision regulation in automated systems.
MIG AST: Absolute encoder retaining position after power loss for advanced control and precise positioning applications.

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