Description
BEGE Flanged Encoder MIG Nova+ MN-160-28-0512-9, 512 pulses, 2m cable, Stainless Steel**Key Features and Benefits:**
High-Resolution Incremental Encoder: The MIG Nova+ provides 512 pulses per revolution per channel, enabling highly accurate feedback for motion control and positioning applications.Superior Signal Stability: Enhanced signal stability ensures reliable performance and precise regulation in automated systems, even under challenging industrial conditions.Robust Stainless Steel Housing: Constructed from stainless steel for maximum durability and corrosion resistance, ideal for harsh or washdown environments.Versatile Connectivity: Equipped with both HTL/TTL A90°B / A'90°B' output, ensuring seamless integration into diverse control systems.Wide Input Voltage Range: Supports input voltages from 5-24VDC, increasing compatibility with various industrial controllers and PLCs.IEC and EN Standard Compliance: Designed according to IEC 100/112B14 and EN BCD 130 standards for flange mounting, making it easy to retrofit into existing setups.Sealing and Protection: Available with IP55 or IP67-rated protection, offering reliable operation in dusty, humid, and wet environments.Long Cable Length: 2-meter cable facilitates flexible mounting and installation, even at a distance from the control cabinet.Precise Mechanical Fit: Features a 160mm flange diameter, 28mm shaft diameter, and 9mm flange thickness to ensure compatibility with a wide range of motors and drives.**Application Possibilities:**
Ideal for demanding motion control tasks in automation, robotics, and machinery manufacturing where precise speed and position feedback are critical.Perfect for use in conveyor systems, packaging equipment, and materials handling processes requiring accurate and reliable encoder signals.Suitable for industries including food & beverage, pharmaceutical, and general manufacturing, where hygiene and durability are essential.Supports seamless integration into more advanced or networked control architectures needing stable high-resolution feedback for dynamic motor regulation.

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