Description
Encoder Type: MIG Nova+ is an incremental encoder with higher resolution and improved signal stability, making it ideal for accurate regulation and advanced motion control in automated systems.
High Resolution: Provides 128 pulses per revolution on each channel, ensuring precise speed and position feedback necessary for demanding automation tasks.
Superior Signal Stability: Delivers enhanced signal integrity, reducing susceptibility to electrical noise and ensuring reliable data transmission in industrial environments.
Dual Output: Offers both HTL and TTL signal output (A90°B / A'90°B'), providing compatibility with a wide range of control systems and PLCs.
Robust Construction: Manufactured from high-strength aluminium, providing excellent protection against mechanical impacts and corrosion, suitable for heavy-duty use.
Resilient Cable: 2-meter cable length allows flexible installation options, supporting various machine layouts and connection needs.
Environmental Protection: Available with protection classes IP55 and IP67, ensuring safe operation in dusty, humid, or wet conditions.
IEC Standard Compliant: Designed for IEC 56B5 motors with a 120mm flange and 100mm BCD, supporting easy mounting and seamless integration.
Compact Design: Slim 7mm flange and 9mm shaft support versatile integration, even in confined installation spaces.
Voltage Input Range: Supports 5-24VDC input, providing versatility across multiple control platforms and power supplies.**Application Possibilities:**
Ideal for precise speed and position feedback in conveyor systems, packaging machines, robotics, and automated production lines.
Perfect for industries requiring reliable and accurate motion control, including manufacturing, material handling, and food processing.
Suitable for modernization and retrofit projects where signal integrity and system compatibility are essential.**Other BEGE Encoder Options:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
MIG AST: Absolute encoder that maintains position data after power loss for advanced positioning control and sophisticated system integration.

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