Description
BEGE is an internationally recognized manufacturer with decades of expertise in development of advanced drive technology. The company is known for its robust, reliable, and innovative automation components, ensuring maximum system uptime and performance for industrial applications.
**Product Description:**
The BEGE Flanged Encoder MIG Nova+ MN-200-38-0128-12 is a high-resolution incremental encoder engineered for demanding industrial automation tasks requiring enhanced precision and signal stability.
**Key Features and Benefits:**
• High-resolution incremental output – 128 pulses per channel, delivering precise speed and position feedback for accurate control in automation systems.• Improved signal stability – HTL/TTL outputs (A90°B / A'90°B') ensure reliable data transmission for PLCs and motion controllers, crucial in high-precision applications.• Wide input voltage range – Operates at 5–24VDC, supporting compatibility with a wide array of industrial control systems.• Robust construction – Manufactured from high-quality aluminium, offering excellent mechanical durability and resistance to harsh operating environments.• Flange mount design – Outer flange diameter Ø200mm with IEC 132B14 fitting simplifies integration into standard electric motors and gearboxes.• 38mm stainless steel shaft – Suitable for high-torque and industrial duty cycles, supporting accurate transmission even under mechanical stress.• Long cable length (5 meters) – Facilitates flexible installation across large machinery and production lines.• Dual IP55/IP67 protection – Reliable operation in dusty or wet environments, ensuring long service life and minimal maintenance.
**Application Possibilities:**
• Ideal for precise drive monitoring in conveyor systems, automated production lines, and robotics where accurate movement and feedback are essential.• Suitable for integration into packaging machines, material handling systems, and industrial drives requiring superior signal integrity at higher resolutions than standard encoders.• Enhances system reliability and reduces downtime risk in demanding plant environments with electrical and mechanical disturbances.

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