Product Description
As an essential motion-specific accessory, the AX2090-MD50-0012 motor choke from Beckhoff's proven AX Digital Servo Drive Series optimizes performance for applications with extended motor cable runs. Designed specifically for use with the AX5000 series, it supports currents up to 12 amps continuously to handle intensive torque demands across distances.
In situations where motor distances exceed 25 meters, propagation delay and electromagnetic interference can distort control signals if not addressed properly. The AX2090-MD50-0012 addresses this by suppressing emitted electrical noise and high-frequency reflections along uncovered conductors between amplifier and motor. As a result, control precision and dynamic response remain optimal even at cable lengths up to 100 meters. Integration is simplified through the accessory's standardized 150mm integrated supply cable, pre-fitted to streamline connections directly to the servo amplifier's output terminals. No special terminations or additional cabling are required, saving assembly time during retrofits or new installations alike. Compatible servo motors maintain stable velocity and position accuracy under all load conditions thanks to robust interference filtering.
Worldwide availability means factories, ports, and other distributed process plants can readily obtain the choke through local distributors with multi-language product documentation. Standardized mounting dimensions also allow for direct replacement if existing units ever fail unexpectedly. From cutting and forming to plastics extrusion or assembly lines, any process relying upon coordinated motion over long distances benefits from the AX2090-MD50-0012's interference suppression abilities. Its compact ferrite enclosure disappears inside adjacent electrical enclosures while eliminating distortion concerns comprehensively. Equipping long-cable motion installations with the AX2090-MD50-0012 motor choke guarantees consistent, deterministic control authority essential for cost-effective automated production everywhere connectivity demands exist. Reliable, affordable protection from electromagnetic disturbances streamlines end users' system validation and commissioning.