High Speed Optical Transport

Built to Scale. Ready for Tomorrow

Optical Networks - The Backbone of Modern Connectivity

High-speed optical transport forms the foundation of modern digital communications, carrying rapidly growing volumes of traffic between data centers, mobile networks, enterprises, and broadband access networks. Built on technologies such as DWDM, coherent optics, and advanced modulation techniques, optical transport enables data to be transmitted efficiently over metropolitan, regional, and long-haul networks.

As cloud computing, artificial intelligence workloads, 5G networks, and video-rich applications continue to accelerate traffic growth, optical transport systems are evolving to deliver greater capacity, efficiency, and operational flexibility. Advances in coherent optics, higher-order modulation, software-defined control, and open optical architectures are enabling operators to increase network scale while optimizing spectrum utilization, energy efficiency, and cost per transported bit.

Tejas Networks contributes to this evolution through innovation in optical transport technologies that support high-capacity, scalable, and future-ready network infrastructures.

Multi-Gigabit Access to Homes and Enterprises

Growing demand for video, cloud applications, remote work, and connected devices is driving multi-gigabit broadband access. XGS-PON delivers symmetrical 10 Gbps, and 50G HSPON extends this to the next capacity tier — both on the same passive fiber infrastructure already deployed, protecting outside plant investment while enabling new service tiers.

All Photonics Networks (APN)

An emerging architectural direction that extends the optical layer deeper into the network, reducing optical-to-electrical conversion points and enabling more energy-efficient, higher-capacity transport across metro and backbone domains. By keeping signals in the optical domain for longer, APN architectures reduce both power consumption and hardware complexity.

Scalable Data Center Interconnect (DCI)

The growth of hyperscale cloud infrastructure and AI workloads requires high-capacity, low-latency connectivity between data center facilities. AI training involves frequent, large-scale exchange of data between GPU clusters distributed across multiple locations — creating DCI bandwidth demands growing faster than general internet traffic.

Pluggable Optical Line Systems (POLS)

A modular approach that separates optical amplification and switching functions from routing and switching platforms into pluggable components, enabling operators to expand capacity more granularly and flexibly without requiring full line system replacement.

By combining scalable architecture, intelligent software control, and energy- efficient design, Tejas Networks is enabling operators to build networks that are future-ready, resilient, and cost-effective-meeting the demands of an increasingly connected world.

High-Speed PON Platforms

OLT and ONT platforms supporting 50G HSPON alongside XGS-PON and GPON on a unified platform, enabling operators to deploy next-generation broadband access while maintaining compatibility with existing deployments.

Terabit-scale DWDM

Metro and backbone DWDM platforms supporting wavelengths from 100G to 1.2T, with C+L band operation enabling up to 64 terabits of capacity on a single fiber pair — maximising utilisation of fiber assets across metro and backbone networks.

DCI Platforms

Purpose-built data center interconnect platforms supporting scalable data exchange, combining high reliability, compact form factors, and power efficiency for hyperscale and enterprise data center interconnection requirements.

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