Description
BEGE is a renowned manufacturer of high-quality industrial automation components, known for precision engineering, robust construction, and reliable performance. The MIG series encoders from BEGE are designed to deliver exceptional accuracy and durability in demanding applications across various industries.**Product Name:**
BEGE Flanged Encoder MIG Nova+ MN-090-11-1024-7, 1024 pulses, 5m cable, stainless steel**Key Features and Advantages:**
High-resolution incremental encoder with 1024 pulses per revolution for advanced speed and position feedback, ideal for precise control in automated processes.
Superior signal stability ensures reliable performance even in challenging industrial environments, reducing the risk of signal interference or loss.
Robust stainless steel housing (outer diameter: 90 mm, flange BCD: 75 mm, flange thickness: 7 mm) for enhanced corrosion resistance and long-term durability in harsh conditions.
Shaft diameter of 11 mm and IEC 63B14 motor flange compatibility, suitable for a wide range of motor and drive systems.
Supports both HTL and TTL output signals (A90°B / A'90°B'), making integration into various control architectures straightforward and flexible.
Wide input voltage range of 5-24VDC for convenient adaptation to different power supplies.
IP55/IP67 protection class – provides excellent resistance to dust, water, and industrial contaminants, ensuring consistent operation in demanding environments.
Supplied with a 5-meter industrial-grade cable, facilitating easy installation in larger systems or equipment.**Application Possibilities:**
Perfect for use in servo drives, conveyor belts, packaging machinery, robotics, and automatic assembly systems requiring precise speed and position monitoring.
Designed for technical specialists and engineers seeking enhanced feedback accuracy and operational reliability in complex automation projects.
Also available: MIG Basic for standard incremental speed feedback in general automation tasks, and MIG AST for absolute position encoding with memory retention after power loss—ideal for advanced positioning and safety-critical applications.

calcPageSize())"
/>



