platoseed
Liquid cooling solutions inspired by nuclear reactor cooling
Ferveret develops liquid cooling solutions inspired by nuclear power plant cooling. We save data centers 96% in cooling costs, 68% on capital costs, and reduce their carbon footprint by 40% while increasing chip performance by 2X. Today, about 40% of the electricity used in these facilities is wasted on cooling. Our technology eliminates this wasted energy.
Ferveret offers adaptive phase cooling solutions for data centers, using liquid immersion cooling to boost compute density while reducing energy waste and resource use. Their technology aims to enable data centers to run closer to full compute power with lower emissions and water usage.
Ferveret provides liquid immersion cooling designed for high-density data centers and ASIC compute. The system enables adaptive phase cooling that scales with demand, allowing data centers to use up to 98% of total power for compute. Products include a cooling technology tailored for high-density compute, with a focus on liquid immersion reimagined for data center cooling needs.
Who it’s for: Data center operators and owners, especially those running high-density compute workloads and ASIC/AI accelerators.
funding mentions and traction implied by product emphasis and corporate messaging
Reza is the co-founder and CEO of Ferveret. He is an MIT alumnus and has more than 10 years of experience in the electronic cooling industry. This includes designing a thermal solution for Microsoft HoloLens, as well as working as a senior packaging thermal engineer at NVIDIA and senior design thermal engineer at Cruise.
Matteo is the co-founder and CTO of Ferveret as well as a faculty member in Nuclear Science and Engineering at MIT. Prior to Ferveret, he spent nearly a decade as a Research Scientist at CEA Paris. Fields of expertise include heat transfer, fluid dynamics, and nuclear reactor design. Outside of his core work, Matteo is also a nuclear energy consultant and editor of Applied Thermal Engineering.

We build and operate underwater data centers.

Maximizing compute via hyper-efficient cooling