Description
High-Resolution Incremental Encoder: The MIG Nova+ provides 1024 pulses per revolution per channel, ensuring precise speed and position feedback even in demanding automation systems.
Enhanced Signal Stability: Designed for environments requiring accurate and stable signals, the Nova+ minimizes interference and guarantees improved process control.
Sturdy Construction: Manufactured from durable aluminium and equipped with a robust 450mm flange and 55mm shaft, ideal for heavy-duty industrial uses.
Wide Input Voltage Range: Operates at 5-24VDC, providing versatility for integration with various industrial and engineering systems.
Flexible Output: TTL/HTL signal output (A90°B/A’90°B’), compatible with the majority of modern controllers, PLCs, and frequency inverters.
Maximum Protection: Dual-rated with IP55/IP67 for resistance against dust, water, and harsh operating conditions, guaranteeing long life and minimal maintenance.
Long Cable Reach: 15-meter cable length permits easy installation in large machinery or remote mounting situations, aiding flexible system layout and connectivity.
IEC 225B5 Mounting Compatibility: Flange and shaft designed for direct integration with IEC-standard motors (225B5-Ø55), streamlining replacement and upgrades.**Application Possibilities:**
Motion control and speed regulation in automation lines, conveyors, and smart manufacturing systems.
Integration in robotic systems requiring precise feedback and position accuracy for processes like pick-and-place, packaging, and palletizing.
Retrofits and upgrades of industrial motors, where accurate encoder feedback optimizes performance and diagnostics.
Suitable for industries like food processing, logistics, material handling, energy, and more.**MIG Encoder Series Overview:**
MIG Basic: Entry-level incremental encoder for standard automation tasks needing basic speed feedback.
MIG Nova+: High-resolution incremental encoder with stable signal for precise regulation in advanced automated systems.
MIG AST: Absolute encoder retaining position after power cycles, tailored for high-end positioning and sophisticated control systems.

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