Description
BEGE Flanged Encoder MIG Nova+ MN-350-48-2048-12 **Key Features, Advantages & Application Possibilities:**
High-Resolution Incremental Encoder: Delivers 2048 pulses per revolution per channel, ideal for precise speed and position feedback in automated systems.
Enhanced Signal Stability: Guarantees accurate and noise-resistant measurement, minimizing errors in industrial automation and control systems.
Wide Voltage Input Range (5-24VDC): Maximizes compatibility with existing PLCs, controllers, and field devices across industrial environments.
Dual Output (HTL/TTL, A90°B / A'90°B'): Enables flexible integration with different drive controls and processing equipment.
Robust Construction: Cast in high-grade aluminium for optimal durability and resistance to mechanical stress and vibration, ensuring long operational life.
Large Flange Outer Diameter (350 mm) and Shaft (48 mm): Designed for easy mounting on heavy-duty machinery, including large motors (IEC 180B5 standard).
Extended Cable Length (15 meters): Facilitates flexible wiring and remote placement, ideal for installations where electrical cabinets are distant from the encoder.
High Protection Rating (IP55/IP67): Suitable for both dusty and wet environments, providing reliable operation in harsh industrial conditions.
Application Areas: Suited for demanding industrial sectors such as packaging, material handling, robotics, conveyors, and precision manufacturing, where accuracy and reliability are critical. **BEGE Incremental Encoder Family Overview:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasks, offering cost-effective and dependable performance for general applications.
MIG Nova+: High-resolution incremental encoder with enhanced signal stability, perfect for more precise control in automated systems requiring improved accuracy and noise immunity.
MIG AST: Absolute encoder maintaining position after power interruption, crucial for advanced control systems and precise positioning tasks demanding non-volatile position reference.

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