Description
Brand Description: BEGE, a renowned Dutch manufacturer, specializes in high-quality drive technology and automation solutions for industry, offering rugged and reliable encoders designed for durability and precision in automated environments.
Incremental Encoder: The MIG Basic is a robust incremental encoder designed for standard speed feedback in basic automation applications, ensuring consistent and accurate measurement of rotary velocity for a wide range of industrial motors.
Key Feature – Superior Build Quality: Manufactured from durable aluminium, providing long life and excellent resistance to industrial wear and tear.
Extended Cable – 15 m: Pre-mounted with a 15-meter cable for easy installation in large or complex machine setups, reducing the need for additional extensions or connectors.
Flange Mounting – Ø160 mm Outer Diameter, 130 mm BCD, Flange Thickness 7 mm: Designed according to IEC 71B5 standards, this encoder fits seamlessly with compatible motors, enabling quick integration in existing systems.
Shaft & Mechanical Fit: 14 mm shaft diameter ensures secure attachment and high torsional strength, suited for medium-duty industrial drives.
Electrical Interface: Accepts 5-24VDC input; delivers A and B channel outputs in HTL (High Threshold Logic) configuration for clear, interference-resistant signal transmission even over long cable distances.
Pulse Rate: 16 pulses per revolution per channel, ideal for basic position and speed feedback tasks in material handling, conveyors, fans, and basic automation machinery.
Environmental Sealing: Rated IP55/IP67, providing reliable operation in dusty and moist conditions, ensuring longevity in demanding industrial settings.
Applications: Well-suited for standard industrial automation, general-purpose feedback control, and retrofitting older machinery with modern encoder technology.
Additional BEGE Encoder Range: For advanced control systems, consider the MIG Nova+ (high resolution & enhanced signal stability) or the MIG AST (absolute position memory for precise post-power-loss positioning and closed-loop control in sophisticated automation setups).

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