Pro Chinese firm’s fiber trial hits staggering 51.3 Tb/s over 128 miles without signal regeneration — could this be an end to bandwidth bottlenecks? News By Efosa Udinmwen Published 4 July 2026 New air-filled fiber pushes 51.3 Tb/s across 128 miles When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works . (Image credit: NBN Co) Copy link Facebook X Whatsapp Reddit Pinterest Flipboard Threads Email Share this article 0 Join the conversation Follow us Add us as a preferred source on Google Newsletter Subscribe to our newsletter Air-filled fiber carried 51.3 Tb/s across 206.5 km unaided Researchers push 1.2 Tb/s through each wavelength across record distances AI infrastructure increasingly depends on networks moving data faster everywhere Chinese fiber manufacturer YOFC says it has completed a hollow-core fiber transmission trial that reached 51.3 Tb/s over 206.5 km without regeneration. The demonstration involved collaboration with China Telecom and optical equipment manufacturer Dekoli using a live network rather than laboratory conditions alone. Researchers achieved a transmission rate of 1.2 Tb/s per wavelength while avoiding intermediate signal regeneration equipment along the entire route. Latest Videos From Watch full video here: A different kind of fiber built around air instead of glass Unlike conventional optical cables that guide light through solid silica cores, hollow-core fiber transmits signals through air-filled channels instead. That architectural difference allows light to travel faster while reducing several optical distortions that traditionally limit transmission efficiency over distance. You may like Why fiber is the real secret to scaling intelligence in artificial intelligence factories Researchers build foundation for quantum internet using current fiber infrastructure Why building two data centers a week won’t fix AI’s bottleneck YOFC previously stated that its hollow core technology could deliver 31% lower latency and transmission speeds improving by 47%. The company now claims the latest trial establishes the highest unrepeatered wavelength division multiplexing capacity ever demonstrated under field conditions. Are you a pro? Subscribe to our newsletter Sign up to the TechRadar Pro newsletter to get all the top news, opinion, features and guidance your business needs to succeed! Contact me with news and offers from other Future brands Receive email from us on behalf of our trusted partners or sponsors By submitting your information you agree to the Terms & Conditions and Privacy Policy and are aged 16 or over. Researchers described the achievement as the world’s first field deployment combining 1.2 Tb/s wavelengths with a 206.5 km span. Previous demonstrations managed comparable transmission rates over roughly 20 km, while longer experiments generally sacrificed substantial amounts of overall capacity. The trial relied exclusively on erbium-doped fiber amplifiers instead of remote-pumped amplification systems often required for comparable distances. What to read next Europe races Meta and Japan to launch first Petabit-class submarine cable Amazon signs multibillion-dollar Corning deal to build the next generation of fiber optic cables for data centers Researchers turned an earthquake detection method into an accidental spy tool Commercial hollow core deployments have historically struggled with signal attenuation, making long unrepeatered transmission distances difficult to sustain economically. Network cables become the next computing bottleneck The research team tackled those limitations by using adaptive allocation techniques that independently adjusted channel rates and optical power across wavelengths. That approach allowed hybrid transmission settings while reducing losses associated with gas absorption effects unique to air-guided optical signals. Engineers also developed a high-power amplifier capable of producing 33.5 dBm output while maintaining
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