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Adtran showcases open optical networking for AI infrastructure at OIF’s ECOC 2026 interop demo

Adtran provides hardware, software and lab support for OIF’s ECOC 2026 multi-vendor demo, highlighting open optical networking for AI-era capacity needs.

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News summary:

  • Open optical ecosystems give operators greater flexibility and vendor choice as they scale networks for the AI era
  • Adtran’s pluggable coherent ZR+ transceivers, FSP 3000 OLS and Mosaic Network Controller key to open transport and hierarchical control in OIF demo
  • Adtran also hosted the OIF test run in its system integration labs in Gdynia, Poland, helping to ensure the demo’s success at the show

MÁLAGA, Spain--(BUSINESS WIRE)-- Adtran today announced its participation in OIF’s live multi-vendor interoperability demo at ECOC 2026, taking place September 21 to 23 in Málaga, Spain. Bringing together 39 member companies, the showcase highlights interoperable optical transport, pluggable coherent transceivers and network control technologies in a multi-vendor environment. Adtran is contributing 100Gbit/s, 400Gbit/s and 800Gbit/s ZR+ pluggables, its FSP 3000 open line system (OLS) operating across C- and L-bands and Mosaic Network Controller software. Ahead of the event, Adtran also hosted the OIF test run in Gdynia, Poland, supporting interoperability testing across participating companies.

Adtran’s technology will help show how interoperable networks can meet AI’s surging capacity demands at OIF’s ECOC 2026 demo.

Adtran’s technology will help show how interoperable networks can meet AI’s surging capacity demands at OIF’s ECOC 2026 demo.

“AI-driven demand is putting huge pressure on networks to scale, but operators shouldn’t have to trade flexibility for capacity,” said Christoph Glingener, CTO of Adtran. “It’s no longer enough to show that individual technologies can interoperate. The focus now is on proving that optical transport, coherent pluggables and software control can work together as an operational ecosystem. The more we validate those interactions, the easier it becomes for operators to introduce innovation, reduce integration risk and keep their options open as requirements change.”

The OIF showcase features Adtran’s pluggable CMIS-managed coherent ZR+ transceivers delivering 100Gbit/s, 400Gbit/s and 800Gbit/s with 0dBm output power. Adtran’s FSP 3000 OLS provides open optical transport across both C- and L-bands, while Mosaic Network Controller acts as the OLS domain controller within the demo’s hierarchical control architecture, integrating with higher-layer multi-vendor orchestrators. By bringing coherent interfaces, OLS technology and software control together, the showcase highlights interoperability across multiple network layers. Ahead of ECOC, Adtran hosted the OIF test run in Gdynia, enabling participating companies to validate interoperability, test integrations and prepare for the live demo.

“Open networking only moves forward when companies are prepared to do the work together,” commented Ryan Schmidt, GM of optical transport at Adtran. “Joint validation, from early testing through to live multi-vendor demonstrations, gives operators the confidence to deploy open optical architectures in real-world networks. That collaboration is becoming increasingly vital as optical architectures grow more open and more distributed. Ultimately, operators need to know they can choose the right technology for each part of their network without giving up simplicity, performance or the freedom to evolve.”

OIF Brings Industry-Wide Interoperability to Life at ECOC 2026, Accelerating Scalable, Efficient Networks for the AI Era

OIF returns to ECOC 2026 with a live, multi-vendor interoperability demo featuring 39 participating companies. Spanning optical, electrical, energy efficient and management interfaces, the demo highlights interoperability across Optical Systems, 448G & 224G Common Electrical I/O (CEI), CMIS, Co-Packaging, Energy Efficient Interfaces and more, advancing scalable, efficient AI-era networks.

Visit OIF at booth #2126 or learn more at www.oiforum.com/meetings-events/oif-ecoc-2026.

About Adtran

ADTRAN Holdings, Inc. (NASDAQ: ADTN and FSE: QH9) is the parent company of Adtran, Inc., a leading global provider of open, disaggregated networking and communications solutions that enable voice, data, video and internet communications across any network infrastructure. From the cloud edge to the subscriber edge, Adtran empowers communications service providers around the world to manage and scale services that connect people, places and things. Adtran solutions are used by service providers, private enterprises, government organizations and millions of individual users worldwide. ADTRAN Holdings, Inc. is also the majority shareholder of Adtran Networks SE, formerly ADVA Optical Networking SE. Find more at Adtran, LinkedIn and X.

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ADTRAN Holdings, Inc.

www.adtran.com

For media
Gareth Spence
+44 1904 699 358
public.relations@adtran.com

For investors
Rob Fink
+1 646 809 4048
investor.relations@adtran.com

Source: ADTRAN Holdings, Inc.

Key Terms

coherent transceivers technical
Coherent transceivers are optical communication modules that both send and receive data by measuring the phase and amplitude of light waves, not just their on/off intensity. That technique lets them carry much more data over longer distances with better signal quality, like upgrading from basic AM radio to a digital system that can pack many clearer channels into the same bandwidth. They matter to investors because they are a key component in telecom networks and data centers and influence equipment demand, pricing and technology competitiveness.
optical line system technical
An optical line system is the collection of hardware and components that send, boost, combine and monitor light-based data signals along fiber-optic cables between network sites — for example transponders, optical amplifiers, multiplexers, filters, and monitoring gear plus the fiber itself. It matters to investors because it is the core infrastructure that determines how much data a network can carry, how far signals can travel without regeneration, and the upgrade or replacement costs and revenue capacity of communications providers; think of it as the highway and traffic-control system for internet and telecom traffic.
c- and l-bands technical
C-band and L-band are two named ranges of radio spectrum used to carry wireless signals: L-band covers lower frequencies around 1–2 GHz and C-band covers higher frequencies around 3–8 GHz (specific allocations vary by country and use). Think of them as different lanes on a highway for radio traffic; which band is used affects signal range, capacity, equipment, regulatory rules and the value of spectrum licenses, so they matter to investors tracking telecom, satellite and infrastructure businesses.

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