Description
**Incremental Encoder for Fundamental Speed Feedback** - The BEGE Flanged Encoder MIG Basic MB-160-14-0004-7 is an incremental encoder tailored for basic speed feedback in standard automation tasks, providing accurate monitoring in conveyor belts, machine tool drives, and simple automated control systems.
**Robust and Industrial-Grade Construction** - Crafted from high-quality aluminium with a 7mm flange thickness and a 160mm flange outside diameter, this encoder is designed for durability, corrosion resistance, and longevity in harsh industrial environments.
**Standardized Adaptability** - Compliant with IEC 71B5 and BCD 130mm, the MIG Basic ensures seamless integration with widely used motor and drive systems, offering a shaft diameter of 14mm for compatibility with various equipment types.
**Optimized Signal Transmission** - Provides output with A90°B HTL signals at 4 pulses per channel, suitable for straightforward feedback applications, supporting precise speed regulation and monitoring with minimal complexity.
**Extended Cable Length** - Equipped with a 15-meter cable, the encoder supports flexible installation in large machinery or setups requiring a significant distance between the sensor and control cabinet.
**High Environmental Protection** - Rated IP55/IP67, the MIG Basic is protected against dust ingress and powerful water jets, making it ideal for operation in wet or dusty industrial sites.
**Flexible Power Supply** - Operates on a 5-24VDC input, compatible with a broad range of industrial power supplies for easy integration.
**Primary Application Areas** - Utilized in basic industrial automation such as packaging, textile, conveyor and general material handling, enabling simple, cost-effective speed feedback and control.
For more advanced or specialized applications, the BEGE MIG Nova+ offers higher resolution and advanced signal stability for precision automation, while the MIG AST absolute encoder ensures failsafe position retention and is ideal for advanced positioning and control systems that demand maximum reliability even after power loss.

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