Description
BEGE Flanged Encoder MIG Nova+ MN-400-55-0512-12 **Key Product Features and Benefits**
High-Resolution Incremental Encoder: Provides 512 pulses per channel per revolution, ensuring precise speed and position feedback for advanced automation requirements.
Enhanced Signal Stability: Designed for superior signal reliability, minimizing errors and supporting uninterrupted operation in complex industrial systems.
Large Flange Diameter: The 400mm outer flange, with a 350mm bolt circle diameter (BCD), enables easy integration with large motors and machinery, suitable for robust mechanical environments.
Robust Aluminium Housing: Engineered with an aluminium body for maximum strength, lightweight design, and resistance to industrial conditions.
Wide Shaft Compatibility: 55mm shaft diameter suits heavy-duty motor shafts and mechanical interfaces.
Extended Cable Length: 50 meters of cable flexibility allows installation over long distances while maintaining signal integrity, simplifying machine layout and wiring.
Multiple Output Formats: Compatible with A90°B / A'90°B' HTL/TTL output, supporting both standard and high-speed signal transmission.
Wide Voltage Input: Supports a 5–24V DC input range, offering flexibility across different control systems.
Industrial Standard Compliance: IEC 200B5 flange ensures compatibility with a broad range of IEC motors and equipment.
High Protection Rating: Rated IP55/IP67 for protection against dust and water, suitable for harsh and demanding environments. **Typical Applications**
Servomotor feedback in automated production lines and robotics.
Material handling systems requiring precise speed and position regulation.
CNC machines, conveyor belts, and packaging machinery demanding consistent performance and durability. **MIG Encoder Variants**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks.
MIG Nova+: Advanced incremental encoder with higher resolution and stability for precise regulation in automated systems.
MIG AST: Absolute encoder retaining position data after power loss, ideal for demanding positioning and advanced control applications.

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