Description
**High-Resolution Incremental Feedback:** The MIG Nova+ is an incremental encoder with 512 pulses per revolution per channel, providing superior speed and position feedback for automated systems requiring fine regulation and accuracy.
**Signal Stability:** Upgraded internal electronics deliver enhanced signal stability for consistent output, even in environments with electrical noise—ideal for precision engineering setups.
**Robust Stainless Steel Construction:** Outer housing and flange are constructed in stainless steel, offering maximum resistance to corrosion and mechanical impact for superior service life in harsh industrial environments.
**Wide Voltage Compatibility:** Accepts input voltage from 5–24VDC, ensuring seamless integration with a variety of control systems and PLCs.
**Flexible Output Types:** Dual-channel output (A90°B / A'90°B') compatible with both HTL and TTL logic standards, guaranteeing high compatibility with modern automation hardware.
**Protection Class:** IP55/IP67 ratings combine dust protection with high resistance to water ingress, making it suitable for deployment in demanding production lines, food industry, or outdoor machinery.
**Optimized Mounting:** 160mm flange diameter, 130mm bolt circle, and 7mm flange thickness enable straightforward installation on IEC 71B5 motors or custom industrial assemblies.
**Long Cable Length:** The pre-attached 5-meter cable allows for flexible installation even at a distance from motor control panels or enclosures.
**Typical Applications:** Used for advanced speed feedback and control in robotics, conveyor systems, packaging machinery, CNC machines, and process automation requiring high accuracy and reliability. **Encoder Comparison:**
MIG Basic – Incremental encoder for basic speed feedback in standard automation tasks.
MIG Nova+ – Incremental encoder offering higher resolution and enhanced signal stability for more precise control in automated systems.
MIG AST – Absolute encoder maintains position after power loss, ideal for precise positioning and advanced control systems.

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