Description
Engineered as a high-resolution incremental encoder, the MIG Nova+ provides superior signal stability, making it ideal for precise control and feedback in automated systems.
Output signals in both HTL and TTL formats (A90°B / A'90°B'), ensuring compatibility with a broad range of motion controllers and PLCs in industrial automation.
Stainless steel housing guarantees chemical resistance and long-term durability, even in harsh environments with high demands on hygiene or corrosion protection, such as food processing, pharmaceuticals, and marine applications.
IP55/IP67 classification ensures excellent protection against dust and water ingress, making the encoder reliable in both indoor and outdoor settings.
5-meter pre-assembled cable allows flexible installations and secure signal transmission over longer distances, reducing electromagnetic interference risks.
High pulse rate of 64 pulses per channel delivers accurate feedback and sharp response in dynamic positioning and speed regulation tasks.
Precisely matched for IEC motor size 71B14 with a flange BCD of 85mm and a flange diameter of 105mm, ensuring easy retrofit or integration into existing machine designs.
Shaft diameter of 14mm offers rigidity and compatibility with a wide range of standard shaft couplings and drive shafts.
Wide input voltage range (5–24VDC) allows seamless integration into various control architectures. **Application possibilities include:**
- Detailed speed monitoring and feedback in conveyor systems, process lines, and general automation.
- Precise position sensing in packaging, machining, textile, and material handling machines.
- Robust feedback device in harsh and hygienic environments due to its stainless steel design and high IP-rating.
- Ideal for upgrading automated systems requiring higher signal stability and accuracy over basic encoders. **Other BEGE encoder types:**
- MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
- MIG AST: Absolute encoder where the position value is retained even after power-off; suitable for advanced positioning and control systems.

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