Technical Specifications Multi‑core power conductor structure, matched dedicated plug‑in connectors. Operating temperature ‑20 ℃ to +80 ℃, storage temperature ‑40 ℃ to +85 ℃. High‑flexibility anti‑wear outer sheath for cyclic bending operation.
Functional Features Transmits three‑phase servo driving power to robot joint servo motor. High‑flexible structure adapts to continuous bending motion of robot joint. Dedicated connectors ensure stable power connection under mechanical vibration environment. Oil‑resistant and wear‑resistant outer jacket extends service life under industrial site condition.
Application Scenarios Power cable spare‑part for ABB industrial robot mechanical unit. Applied in production‑line robot maintenance for worn‑out and damaged power cable replacement.
Performance Parameters Good cyclic bending fatigue resistance. Low conductor resistance for power transmission. Reliable connector contact performance under vibration.
Material Composition High‑flex stranded copper power conductors. Insulation layer for each core. Tensile reinforcement layer. Wear‑resistant flexible outer sheath. Dedicated assembled plug‑in connectors at both ends.
Structural Characteristics Finished power cable assembly with fixed length. Both ends equipped with robot‑specific connectors. Weight approximately 0.85 kilogram.
Working Principle Three‑phase variable‑frequency driving power output by cabinet servo drive is transmitted through cable conductors to robot joint servo motor. Cable follows robot joint swing and rotation to complete continuous power supply.
Installation Requirements Completely cut off robot main power supply before replacement. Route 3HAC17317‑3 according to original cable path of robot mechanical body. Lock both‑end connectors fully. Keep proper slack for robot full‑range movement. Power on robot and verify joint motor driving performance.
Usage Notes Prevent cable from being twisted, scratched and extruded by robot mechanical components. Do not over‑tighten cable fixing band. Inspect cable outer sheath abrasion condition during periodic robot maintenance.













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