Description
**Incremental Encoder MIG Nova+** is engineered for applications demanding elevated resolution and stable signals, enabling precise control in advanced automated systems.
**Key Features:**
High-resolution incremental encoder with 16 pulses per channel, ensuring accurate and fine-grained speed and position feedback for precise motion control.
Advanced signal stability minimizes interference and improves reliability, particularly in electrically noisy industrial settings.
Stainless steel housing provides superior resistance to corrosion and mechanical wear, ideal for use in harsh and demanding environments.
Large flange design (Outer diameter: 90mm, BCD: 75mm, Flange thickness: 7mm) and 11mm solid shaft for easy integration on IEC 63B14 standard motors.
Compatible with input voltages of 5-24VDC and supports both HTL and TTL output signals (A 90° B / A' 90° B'), allowing seamless adaptation to various control systems.
Robust cable length of 50 meters supports versatile installation even across large machinery or factory layouts.
IP55/IP67 ingress protection for dust-tight and water-resistant operation in challenging industrial or outdoor environments.
**Benefits and Application Areas:**
Highly suitable for applications requiring accurate velocity and position regulation, such as robotics, conveyors, and automated assembly lines.
Enhanced resolution and signal integrity enable smoother drive performance and feedback precision in packaging machinery and industrial automation.
Durable stainless steel construction extends operational life and reduces downtime in food & beverage, chemical, and marine industries.
Flexible output protocol ensures compatibility with existing PLCs, frequency drives, and custom control systems.
**MIG Encoder Variants:**
MIG Basic: Entry-level incremental encoder for general-speed feedback in standard automation tasks.
MIG Nova+: High-resolution incremental encoder with improved signal stability, designed for greater control precision in automated systems.
MIG AST: Absolute encoder, retains position after power interruptions, suitable for precision positioning and advanced control systems.

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