Description
**High-Resolution Incremental Feedback:** The MIG Nova+ is an incremental encoder engineered for accurate speed and position feedback. With its 512 pulses per revolution per channel, it offers much finer resolution than standard incremental encoders, delivering precise control in automated systems.
**Enhanced Signal Stability:** This encoder boasts improved signal stability, reducing electrical noise and jitter for more reliable feedback in high-speed or highly dynamic applications.
**Rugged Aluminum Housing:** Constructed from high-quality aluminum, the encoder is lightweight, robust, and corrosion-resistant. It is suitable for harsh industrial settings where durability is essential.
**Flexible Output Options:** Outputs include A90°B / A'90°B' in both HTL and TTL standards, making integration easy into various automation platforms and controllers.
**Wide Voltage Range:** It operates from 5 to 24VDC, allowing versatility in power supply choices within complex machinery and automation projects.
**Extended Cable Length:** The 20-meter shielded cable enables remote sensor placement, ideal for machinery with greater spatial requirements or where the encoder must be mounted far from the control cabinet.
**Industrial-Grade Sealing:** With IP55/IP67 protection, MIG Nova+ resists dust ingress and withstands temporary immersion, enhancing reliability in challenging industrial environments.
**Precise Fit for IEC 56B5 Motors:** Featuring a 120mm outside flange diameter, 100mm BCD, and 9mm shaft, the encoder is perfectly matched to IEC 56B5 motors, supporting seamless retrofit or OEM installations. **Application Possibilities:**
Perfect for applications requiring high-precision speed regulation and control, such as conveyor systems, automated handling, packaging machines, and robotics.
Enables sophisticated motion control and feedback tasks in various sectors, including manufacturing, material handling, and process automation.
Supports both upgrades of legacy systems and integration into state-of-the-art machines, significantly improving operational accuracy and reliability.

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