Description
BEGE Flanged Encoder MIG Nova+ MN-200-24-0064-9**Key Features and Benefits:**
- Robust incremental encoder with high resolution and enhanced signal stability, optimized for precise speed regulation in automated systems- Stainless steel housing and flange (Ø200mm, BCD 165mm, thickness 9mm) ensures outstanding durability and corrosion resistance in harsh industrial environments- Output shaft diameter of 24mm fits IEC 90B5 motors, ensuring seamless integration with standard automation and drive solutions- Generates 64 pulses per revolution per channel, delivering high accuracy for process control and feedback tasks- Dual output (A90°B / A'90°B') in HTL/TTL format caters to both modern and legacy controller interfaces, supporting flexible installation- Wide input voltage range (5-24VDC) enhances system compatibility and simplifies power supply requirements- Supplied with a 10-meter robust encoder cable, enabling easy and versatile mounting even at extended distances from the controller- High ingress protection rating (IP55/IP67) safeguards against dust, water jets, and temporary immersion, vastly increasing operational reliability**Application Possibilities:**
- Ideal for conveyor systems, packaging lines, and general industrial automation requiring reliable speed and position feedback- Suitable for precise motion control in robotics, textile machinery, printing machines, and food processing equipment demanding elevated signal quality- Versatile solution for upgrades or replacements in both existing and new drive systems due to its standard dimensions and superior build quality- Perfect for environments needing robust, long-lasting encoders that maintain performance under mechanical stress or exposure to contaminants**BEGE Encoder Family Overview:**
- MIG Basic: Incremental encoder for fundamental speed feedback in standard automation tasks- MIG Nova+: Incremental encoder with higher resolution and improved signal stability for demanding, precise automated regulation- MIG AST: Absolute encoder retaining position value after power loss, enabling ultra-precise positioning in advanced control systems

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