Description
**High-Resolution Incremental Encoder:** The MIG Nova+ is an incremental encoder with 512 pulses per revolution per channel, delivering superior signal resolution for precise speed and position feedback.
**Outstanding Signal Stability:** Enhanced electronic design ensures reliable and interference-resilient signal output, guaranteeing stable readings even in electrically noisy industrial environments.
**Versatile Output:** Supports both HTL and TTL A/B (quadrature) signals with complementary A’/B’ outputs, providing flexible compatibility for a wide variety of controllers, PLCs, and drive systems.
**Durable Construction:** Manufactured from high-grade aluminium to ensure mechanical stability and corrosion resistance, making it ideal for harsh industrial settings.
**IP55/IP67 Protection:** Available with up to IP67 ingress protection, the encoder withstands dust, water jets, and even temporary immersion – perfect for aggressive environments.
**Long Cable Reach:** Standard with a robust 10-meter cable for extensive installation flexibility across larger machinery and production lines.
**Standardized Flange and Shaft:** Outer flange diameter of 250 mm and BCD of 215 mm, shaft diameter of 28 mm, designed to fit IEC 100/112B5 motors, facilitating integration into standardized motor and automation systems.
**Wide Input Voltage Range:** Operates from 5 to 24 VDC for compatibility with a broad range of industrial power supplies.
**Application Versatility:** Ideal for demanding automated processes requiring accurate speed regulation, such as conveyor systems, robotic arms, packaging machinery, and industrial drives.
**Series Options:** - **MIG Basic:** Incremental encoder for essential speed feedback in standard automation tasks. - **MIG Nova+:** This model – an incremental encoder with increased resolution and enhanced signal stability, ideal for precise regulation in automated systems. - **MIG AST:** Absolute encoder; retains positional information after power loss, suited for exact positioning and sophisticated control architectures.

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