FBC Laser Wire Stripper Adopted for Processing Twinax Cable Terminals That Support High-Speed, High-Capacity Communications in AI Data Centers.
In recent years, with the rapid proliferation of generative AI, AI data centers have seen increasing GPU performance and higher density, leading to a surge in data traffic between servers, within racks, and between racks. Consequently, demand is growing for Twinax cables capable of supporting high-speed, high-capacity data transmission.
While next-generation high-speed communications require data transfer rates of 1.6T/224Gbps, cable wires are also becoming thinner to accommodate high-density installations in limited spaces. Consequently, high-quality, high-precision processing during terminal termination has become a critical challenge to maintain the designed impedance characteristics and signal quality.
FBC laser processing machines utilize non-contact laser processing to achieve high-precision termination processing tailored to the structure of Twinax cables. Furthermore, by positioning multiple cables within the processing area for simultaneous processing, they reduce processing time and achieve high productivity.
Moving forward, FBC will continue to address the growing demand for thinner, higher-quality, and higher-precision high-speed communication cables—driven by the increasing speed and density of AI data centers—and contribute to the development of next-generation communication infrastructure through laser processing technology.