Description
Incremental Encoder with High Resolution: The MIG Nova+ delivers 256 pulses per revolution per channel, enabling accurate speed and position feedback for advanced process regulation in automated systems.
Enhanced Signal Stability: Utilizes HTL/TTL output with A90°B/A'90°B' phase signals for improved noise immunity and reliable data transmission, ideal for environments with high electrical interference.
Wide Voltage Input: Accepts a broad input range of 5-24VDC, ensuring compatibility with diverse industrial control systems and power supplies.
Stainless Steel Housing: Constructed from premium stainless steel, this encoder offers exceptional durability and corrosion resistance, making it suitable for harsh and wash-down environments.
Flexible Installation: Designed with a flange outside diameter of Ø80mm (BCD 65mm), 7mm flange thickness, and a 9mm shaft to match IEC 56B14 motor interfaces, facilitating seamless integration with standard motors and gearboxes.
High IP Classification: Rated at IP55/IP67, the encoder provides superior protection against dust, water jets, and temporary immersion, maximizing reliability in challenging operating conditions.
Extended Cable Length: Comes with a 100-meter cable, allowing installation at significant distances from the controller without signal loss or degradation, supporting large-scale industrial setups. **Application Possibilities:**
Ideal for precise speed and position control in automated production lines, material handling, sorting systems, and robotics.
Suitable for industries requiring robust, high-precision feedback, such as packaging, food processing, pharmaceuticals, and logistics.
Excellent choice for retrofitting standard motors with advanced feedback capabilities for process optimization and improved system responsiveness. **Comparison with Other BEGE Encoders:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
MIG AST: Absolute encoder retaining position data after power loss for critical positioning and advanced motion control applications.

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