Description
**Incremental Encoder with High Resolution**: The MIG Nova+ delivers improved signal stability and precise pulse generation, making it ideal for demanding automated systems requiring accurate speed and position feedback.
**Key Application Areas**: Suitable for use in robotics, conveyor technology, CNC machinery, and automated assembly lines where fine motor regulation and feedback are critical for process optimization.
**Robust Aluminium Construction**: Engineered with a durable aluminium housing, the encoder ensures longevity and resistance to industrial environments, reducing downtime and maintenance costs.
**Wide Voltage Compatibility**: Accepts input voltages between 5-24VDC, offering seamless integration across various control systems and guaranteeing operational flexibility.
**Output Signal**: The A90°B HTL output delivers reliable, high-transmission level signals for fault-free, real-time control and monitoring.
**Optimal Cabling & Connectivity**: Features a 4-pin connector and a 5-meter cable, supporting extended installations and convenient integration into complex systems.
**Mechanical Specifications**: – Flange outer diameter: Ø160 mm – Flange BCD: 130 mm – Flange thickness: 7 mm – Shaft diameter: 14 mm – Conforms to IEC 71B5 standard – 8 pulses per channel per revolution
**Protection Class**: Rated IP55/IP67 for resistance to dust and water, allowing reliable operation in harsh and demanding industrial settings.
**Versatile Mounting**: The standardized flange design and shaft diameter offer straightforward retrofitting and compatibility with industry-standard motors and drive systems.
**Comparison Overview**:
– **MIG Basic**: Entry-level incremental encoder for standard speed feedback in basic automation tasks.
– **MIG Nova+**: High-resolution incremental encoder for advanced automation with enhanced signal consistency.
– **MIG AST**: Absolute encoder maintaining position after power failure, ideal for sophisticated control and positioning applications. With BEGE MIG Nova+, technical specialists benefit from dependable measurement, advanced feedback, and system flexibility, supporting error-free automation and optimized productivity.

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