Description
BEGE Flanged Encoder MIG Nova+ MN-120-19-0032-7 **Key Features and Benefits:**
• Incremental encoder with high resolution and enhanced signal stability for precise speed and position feedback in demanding automated applications.• Delivers 32 pulses per revolution per channel, offering detailed and reliable feedback even in dynamic environments requiring exact regulation.• Output signal: A90°B / A'90°B' HTL/TTL, compatible with a wide range of control systems, facilitating flexible integration into existing industrial architectures.• Rugged aluminium housing and flange with an outer diameter of 120mm and shaft diameter of 19mm, ensuring durability and resistance to mechanical stress in harsh environments.• Protection class IP55/IP67 for reliable operation in dusty and moist environments, extending the application range to both indoor and outdoor settings.• Long cable length of 50 meters allows for installation flexibility, accommodating large machines or remote encoder positioning.• Motor interface according to IEC norm 80B14 guarantees simple, precise fitting to standard motors.• Flange BCD: 100mm and flange thickness: 7mm, suitable for standardized mounting requirements across varied sectors.• Wide input voltage range (5-24VDC) increases compatibility with different industrial power supplies and control units.**Application Possibilities:**
• Perfect for high-precision speed and positioning feedback in conveyor systems, packaging machines, and robotics.• Well-suited for use in factory automation, process control, and material handling systems that demand reliable and accurate encoder data.• The robust design allows deployment in demanding environments such as food industry, logistics hubs, and assembly lines.**Encoder Types from BEGE:**
• MIG Basic: Incremental encoder for fundamental speed feedback in standard automation tasks.• MIG Nova+: Incremental encoder with higher resolution and enhanced signal stability for more accurate regulation in automated systems.• MIG AST: Absolute encoder that retains position data after power loss; ideal for advanced control and precise positioning applications.

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