Description
BEGE Flanged Encoder MIG Nova+ MN-080-09-0512-7, 512 pulses, 4P connector, 5m cable, aluminium**Key Features & Advantages:**
High-resolution incremental encoder (512 pulses per revolution per channel) for precise speed and position feedback in automated systemsImproved signal stability ensures accurate performance in environments with electrical noise, enhancing reliability of control loops and system safetyRobust aluminium housing (IP55/IP67) for reliable operation in demanding industrial environments, providing excellent protection against dust, moisture, and mechanical shocksFlange BCD of 65mm and outer diameter of 80mm, compatible with IEC 56B14 motors and a wide range of applicationsIntegrated 4-pin connector and 5-meter cable enables easy installation and flexible positioning in machine setups9mm shaft diameter with 7mm thick flange ensures secure, vibration-resistant mounting and long service lifeWide input voltage range (5–24VDC) for compatibility with various industrial control systems and PLCsA90°B HTL output suitable for high-speed pulse transmission to controllers and frequency invertersLightweight yet durable design reduces load on motor shafts and boosts system efficiency**Application Possibilities:**
Suitable for precise speed and position regulation in automated production lines, conveyors, and packaging machinesIdeal for use in motion control systems requiring high-resolution feedback, such as robotics, CNC machinery, and material handling equipmentPerfect for industries demanding reliable encoder feedback under harsh conditions, including food processing, logistics, and material warehousesRecommended for applications where enhanced signal quality and long cable runs are necessary**Encoder Types Overview:**
MIG Basic: Incremental encoder for basic speed feedback in standard automation tasksMIG Nova+: Incremental encoder with higher resolution and improved signal stability, suitable for more precise regulation in automated systemsMIG AST: Absolute encoder retaining position after power loss, deployed for precision positioning and advanced control systems

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