Description
**Product Type:** MIG Nova+ is an incremental encoder with higher resolution and enhanced signal stability, ideal for precise control in automated systems.
**Key Features and Advantages:**
- **High Resolution (128 pulses/rev per channel):** Enables precise speed and position feedback, supporting applications requiring accurate motion control.- **Improved Signal Stability:** Delivers consistent and reliable signal output, reducing noise and interference for uninterrupted operation in demanding environments.- **Wide Voltage Input (5–24 VDC):** Flexible compatibility with a range of industrial power supplies simplifies system integration.- **Dual Output (HTL/TTL):** Offers A90°B / A'90°B' channels for comprehensive feedback and compatibility with modern control systems.- **Robust Stainless Steel Housing:** Ensures corrosion resistance and durability in harsh industrial environments, such as food processing or chemical plants.- **Large Flange (Ø300 mm, 132B5 IEC standard) and BCD 265 mm:** Supports direct mounting to large motors and machinery, enabling retrofit or OEM solutions.- **Long Cable (20 meters):** Facilitates flexible installation, even at a distance from control cabinets.- **Shaft Diameter (38 mm) and Flange Thickness (12 mm):** Tailored for integration with heavy-duty motor shafts.- **IP55/IP67 Protection:** Ensures resistance against dust, water, and moisture, suitable for both indoor and outdoor applications.**Application Possibilities:**
- Precise speed feedback and regulation in conveyors, packaging machines, and smart automation lines.- Position detection in robotics, material handling, and crane systems requiring high signal integrity.- Integration into custom machinery for real-time process monitoring and advanced automation.**BEGE Encoder Portfolio Overview:**
- **MIG Basic:** Incremental encoder for basic speed feedback in standard automation tasks.- **MIG Nova+:** High-resolution incremental encoder with superior signal stability for precise regulation.- **MIG AST:** Absolute encoder, retains position after power loss, ideal for advanced control and positioning systems.

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