Revolutionizing Materials Through Computational Design

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Innovative Approaches to Metamaterials Engineering

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Computational Metamaterials designs advanced architectures to tackle physical limitations in cooling and energy transfer.

We use proprietary algorithms and first-principles design to create metamaterial architectures across thermal systems, compute, energy transfer, and structural applications. Our first commercial wedge is cooling and thermal-burden reduction, with broader platform applications beyond thermal systems.

Who We Are and What We Do

Our engineered solutions have led to significant efficiency gains and cost reductions for our clients in industries facing thermal and energy transfer challenges.

A Brief Overview of Our Journey


We were founded at the intersection of computer science, rigidity theory, and physics to create a new paradigm for designing physical systems. Rather than approaching metamaterials as a conventional materials-science search problem, we use theorem-driven and algorithmic methods to generate architectures across cooling, transport, compute, energy, and structural domains.

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From Foundation to Future: Our Evolution

Since our establishment, we’ve continuously evolved our technology and approach, resulting in groundbreaking patents and a diverse portfolio focused on major industries struggling with thermal and energy challenges.

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