In December 2019, the European Commission presented the European Green Deal with the ambition of making Europe the first climate-neutral continent by 2050, boosting the economy, improving people's health and quality of life, caring for nature, and leaving no one behind.

Digitalisation will be at the core of this ambitious program and fibre is key to align the digital and sustainability agendas. As the most sustainable telecommunication infrastructure technology, full-fibre is a prerequisite to achieving the European Green Deal and making the European Union’s economy more sustainable.

The need to work collectively towards a more sustainable society has become a strategic objective of policy makers and the vast majority of private organisations alike. With this context in mind, the sustainability Working Group of the FTTH Council Europe has been created with two key objectives:

  • Promote full fibre as the most sustainable access network technology and enabler of multiple applications which can contribute to reducing the carbon footprint of our activities. Remote working and learning being the most obvious examples.
  • Support all stakeholders of the Fibre to the Home value chain in their efforts to make their respective activities more carbon neutral.

Insights from the Committee

 

 

Leveraging fibre network benefits with Optical LAN technology

This white paper explores the transformative potential of Optical LAN, an enterprise and campus network built on Passive Optical Network (PON) technology. By replacing traditional copper infrastructure with thin, resilient fiber, passive splitters, and a centralized architecture, Optical LAN simplifies network design, enhances performance, and strengthens security across sectors including offices, healthcare, education, hospitality, government, transportation, and industry. Key benefits include significant capital and operational savings (40–56% upfront cost reductions and up to ~50% lower total cost of ownership), multi-gigabit scalability (1–25 Gb/s today with a roadmap to 50–100 Gb/s), long reach up to 20 km, and up to 70% lower energy consumption compared to legacy switching.

The paper also examines solution components, powering strategies, hybrid fiber-copper extensions, deployment practices, and service-provider integration, supported by real-world case studies demonstrating 29–41% total cost savings and reduced cabling requirements. Optical LAN provides a high-speed, reliable, energy-efficient, and future-proof network architecture that addresses modern connectivity, operational, and sustainability challenges.

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