Description
High-resolution Incremental Encoder for Advanced Automation: The MIG Nova+ is designed as a high-precision incremental encoder, featuring enhanced signal stability and increased resolution, making it ideal for accurate feedback and regulation in sophisticated industrial automation systems.
Versatile Industrial Compatibility: Supports flange mounting with an outer diameter of 140 mm (BCD 115 mm), 7 mm flange thickness, and a robust 11 mm shaft diameter, conforming to IEC 63B5 standards for seamless integration with a broad range of motors and machinery.
Extended Cable Connectivity: Equipped with a 100 meter cable to facilitate flexible installation and reliable signal transmission in large industrial environments.
Durable Stainless Steel Construction: Manufactured from high-grade stainless steel, the encoder is exceptionally resistant to corrosion, mechanical wear, and harsh operating conditions—ideal for food, chemical, and outdoor applications.
Comprehensive IP Classification: Offers IP55/IP67 protection, ensuring dependable operation in environments subject to dust, water jets, or temporary immersion.
Flexible Signal and Power Options: Accepts a wide input voltage range (5-24VDC), with HTL/TTL compatible outputs (A90°B / A'90°B') for integration with diverse automation control systems.
Precision Feedback: Provides accurate speed and rotational feedback with 2 pulses per channel for enhanced process monitoring and regulation precision.
Application Scenarios: Suited for motor feedback, conveyor speed regulation, packaging automation, processing lines, and applications requiring stable, high-accuracy incremental feedback.
Brand Advantage: BEGE's reputation ensures long-term performance, technical support, and compatibility with industry standards.**Key Encoder Types by BEGE:**
MIG Basic: Incremental encoder for standard speed feedback in basic automation tasks.MIG Nova+: High-resolution incremental encoder with enhanced signal stability for precise regulation in advanced systems.MIG AST: Absolute encoder that retains position after power loss, enabling precise positioning in advanced control systems.

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