Home News Center Company News Deeply Cultivating Core Track of Power Signal Transmission, Far East Electric Consolidates Fundamental Links for Robot Industrialization
Deeply Cultivating Core Track of Power Signal Transmission, Far East Electric Consolidates Fundamental Links for Robot Industrialization
Release time:2026.07.15 Read volume:54

Whether it is robotic arms performing precision welding and flexible sorting in industrial scenarios, or humanoid robots deployed in commercial and service scenarios, the stable operation of equipment fundamentally relies on reliable power supply and accurate signal transmission systems. Far East Electric has deepened its layout in the power and signal transmission track for robots. Drawing on mature cables, wire harnesses and integrated supporting solutions, it effectively addresses industrial pain points such as unstable power supply, signal interference, transmission delay and joint motion loss under high-dynamic operation of robots. It delivers solid hardware support for the large-scale deployment of industrial and humanoid robots across diverse scenarios, and consolidates the underlying foundation for high-quality development of the robotics industry.

The rapid iteration of the robotics industry keeps raising performance requirements for underlying connection systems beyond the limits of traditional technologies, and a host of common pain points are restricting large-scale industrial rollout. For industrial robots, frequent multi-joint torsion and wide-angle reciprocating bending are part of daily operation. Meanwhile, factory production lines generally feature harsh working conditions including oil contamination, extreme temperatures and strong electromagnetic interference. Ordinary cables have limited resistance to such environments, which easily triggers signal attenuation and power fluctuation, raising equipment failure risks and operation & maintenance costs. In the humanoid robot segment, the industry trend toward lightweight integrated equipment demands ultra-thin, flexible cables that can nevertheless carry sufficient power and transmit multi-modal signals simultaneously. The conflict between slim wire diameter and high current-carrying capacity has become a prevalent technical challenge. Furthermore, precision components such as dexterous hands and joint drives of humanoid robots impose extreme standards on signal transmission delay and fidelity. When subjected to frequent dynamic bending, conventional cables fail to stably transmit micro-Newton-level tactile force signals and micro-current signals from fingertips, directly limiting the capability of robots to perform delicate manipulation. In addition, the traditional layout of multiple parallel cables occupies excessive space and delivers low integration efficiency, acting as a major barrier to the miniaturization and high integration upgrade of robots.

Targeting core industrial pain points, Far East Electric focuses its technical research on three key directions: ultra-high speed, ultra-fine gauge and ultra-stable performance. It achieves full-link innovative breakthroughs covering material R&D, structural design and production processes, and builds an integrated comprehensive solution for robot scenarios featuring "cables + wire harnesses + perception integration". The precision connection systems act as flexible nerve fibers and tough blood vessels for robots, delivering all-round guarantees for stable power delivery, precise signal conduction and efficient data interaction.

For industrial robot applications, the self-developed complete machine system cables and wire harnesses from Far East Electric are customized for complete equipment and core modules. As special high-power transmission carriers, they maintain steady power delivery under frequent motion and complex electromagnetic interference, ensuring precise control over every grasping, welding and handling movement of robotic arms. Among them, the cables and harnesses for drag chain systems have passed stringent bend tests of tens of millions of cycles, adapting to high-speed drag chain operation up to 2m/s with a cycle service life exceeding 20 million times. Their durability far outperforms industrial benchmarks, and they are widely adopted in automated industrial scenarios including welding robots, logistics warehousing robots and CNC machining robots, serving as a reliable guarantee for stable operation of high-end manufacturing production lines. Meanwhile, the matched servo system cables and harnesses adapt to complex operating conditions of industrial robots such as frequent wide-angle dynamic movement of multi-joints, strong electromagnetic interference and long-duration heavy-load operation, providing stable power supply and signal feedback for servo systems.

For the humanoid robot track, Far East Electric has developed the dedicated ROBOT ultra-flexible cable series covering full-link scenarios including perception systems, joint drives, steering gear systems and dexterous hands. Catering to frequent joint bending requirements, the cables and harnesses for joint drive systems adapt to special operating conditions of humanoid robots such as dynamic multi-joint movement, compact spatial layout, volatile load and complex electromagnetic environment, easily meeting the demand for continuous dynamic operation of robots. To satisfy perception and interaction requirements, optimized process and material structures are adopted for perception system cables and harnesses to extend the dynamic service life of integrated harness units, effectively resist electromagnetic interference during dynamic movement, and realize lossless signal transmission at gigabits per second with millisecond-level real-time response to instructions. The most representative ultra-fine transmission wires for dexterous hands can accurately capture and transmit faint tactile force signals as low as 0.1 Newton from fingertips, delivering a stable and reliable signal link to support humanoid robots in realizing eye-hand-brain coordination and completing sophisticated tasks such as screw tightening and precision assembly.

With the continuous advancement of embodied intelligence technology, the robotics industry is evolving from isolated technological breakthroughs toward systematic ecological integration, and a trillion-level market integrating computing power, robotics and new energy is taking shape at an accelerated pace. In the future, intelligent decision-making of robots will rely increasingly on cloud computing power, and high-speed, stable interconnection between terminal devices and intelligent computing centers will become an essential industrial demand. Far East Electric has laid out a coordinated computing-power-and-power supply system well in advance. Leveraging its technical expertise in full-stack AIDC solutions, the company connects the entire transmission link from robot terminals to intelligent computing centers, providing underlying support for cutting-edge applications such as swarm intelligence and cloud training.