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Ferveret

Ferveret provides liquid immersion cooling systems for data centers, using a specialized fluid adapted from nuclear technology to efficiently absorb heat from AI chips. By submerging servers, the solution reduces both energy consumption and water usage required for traditional cooling, enabling more sustainable operation of high‑performance computing workloads.

San Jose, CaliforniaFounded 2021151K+ followers
Updated 1 month ago

Funding

$2.1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Data centers running high‑performance AI workloads rely on traditional air‑cooled systems that consume large amounts of electricity and water to remove heat from densely packed processors. This results in high operational costs and a significant environmental footprint.

Solution

Ferveret offers a liquid immersion cooling platform that submerges servers in a specially formulated coolant derived from nuclear‑industry technology. The coolant directly absorbs heat from the processors, enabling higher compute density while drastically reducing the energy required for cooling. By eliminating the need for extensive airflow and water‑chiller infrastructure, the system lowers both power consumption and water usage. The approach also improves thermal uniformity, which can extend component lifespans and increase overall data‑center efficiency. Ferveret integrates the cooling loop with standard rack designs, allowing enterprises to retrofit existing facilities with minimal disruption.

Target Audience

Primary customers are large‑scale enterprises and cloud providers that operate AI‑intensive workloads and seek sustainable, high‑density cooling solutions for their data centers.

Features

  • Closed‑loop immersion tank that fully submerges server blades for direct heat transfer
  • High‑thermal‑conductivity coolant engineered for stability and low electrical conductivity
  • Modular rack‑compatible design enabling incremental deployment in existing data‑center layouts
  • Real‑time temperature monitoring and automated flow control to maintain optimal operating conditions
  • Reduced reliance on traditional chillers and fans, cutting electricity and water consumption by up to 70%
This profile is AI-generated and may contain inaccuracies.