Active Materials & Manufacturing Clean Energy

The platform to unleash the transformative potential of integrated photonics

In plain English

AI plain-English summary

A new computational design platform lets engineers create integrated photonic chips from pre-built, adaptable components instead of designing everything from scratch. Integrated photonics—the technology that routes light through microscopic circuits on chips—is currently too expensive and slow to bring to market. Each new product requires months of custom design and costly fabrication runs. The platform, called Wave Photonics, solves this by combining a new way to model how a fabrication process actually behaves with a computational optimisation method that works across multiple materials and wavelengths. This allows designers to adapt components to new wavelengths or materials without starting over. If successful, the platform could slash the engineering cost and timescale for bringing photonic products to market. That matters because integrated photonics underpins faster data communications, more sensitive medical diagnostics, and more efficient lidar for autonomous vehicles—systems that currently rely on expensive, bespoke optics. By making photonic chip design as modular and automated as electronic chip design, the platform could accelerate deployment across telecommunications, sensing, and computing infrastructure.

View original technical description
Market deployment of integrated photonics is currently very limited due to its high development costs, expertise and time required to create a product and take it to market. Wave Photonics (WP) is a platform based on a core computational design technology that enables designers to take products from ideas to reality using pre-designed, adaptable components and integrations with packagers and other service providers. It is based on in-house developed IP protected by trade secrets and implies a paradigm shift in the Integrated Photonics design process, allowing for the first time: • A new way to characterize and model a fabrication process • A computational optimization method for multiple materials, processes, and wavelengths Wave photonics will enable optimal design and automated testing of components adaptable to new wavelengths or materials sensitive to process variation, reducing the engineering cost and timescale by at least €500k-€2M and two years respectively.

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Original classification

EU-Funded

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