Description
Product name: BEGE Flanged Encoder MIG Nova+ MN-090-11-0001-7
Incremental encoder with enhanced resolution and superior signal stability, optimized for precise control tasks in advanced automated systems.
Key Features:
- Robust aluminium housing (Outer diameter: 90 mm), ensuring mechanical durability in demanding industrial environments.
- Flange dimensions according to IEC 63B14 norm (Flange outside: Ø90 mm; Flange BCD: 75 mm; Flange thickness: 7 mm) for seamless integration with standardized motor designs.
- 11 mm shaft diameter for compatibility with a wide range of drives and motors.
- Offers high signal quality: Output in A90°B / A'90°B' HTL/TTL, supporting both modern PLCs and legacy automation systems.
- Supply voltage range of 5-24 VDC, providing versatile adaptation to various industrial power configurations.
- IP55/IP67 ingress protection ratings deliver excellent resistance to dust and water, making the encoder suitable for harsh production environments.
- Supplied with a 2 meter durable cable for ease of installation and flexible routing options.
- Provides 1 pulse per channel, ideal for precise speed monitoring in highly automated production processes where stability and control accuracy are critical.
Key Advantages:
- Highly stable output signals enhance the reliability and accuracy of closed-loop speed or position feedback in sensitive applications.
- Improved resolution and signal integrity compared to basic encoders, enabling finer regulation and reduced process deviation.
- Compact, standardized design reduces integration time in new machines or retrofit scenarios.
Application Possibilities:
- Optimized for industrial automation systems requiring accurate and reliable speed control, such as conveyor drives, machine tools, and packaging machines.
- Well-suited for applications demanding robust feedback under harsh and variable operational conditions.
- Ideal for engineers and technical specialists looking to enhance the precision and robustness of their automated solutions with minimal integration effort.

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