TechRadar Pro · Jun 2026
Industry coverage highlighting Ferveret’s bubble-based cooling approach as a potential answer to AI data-center energy and water constraints.
Liquid cooling solutions inspired by nuclear reactor cooling
Public company, workplace, funding, and market signals
Ferveret is a San Jose-based, YC-backed startup building Adaptive Phase Cooling: a rack-compatible, waterless liquid-cooling platform for data centers and ASIC compute that aims to improve compute per watt, cut cooling costs, and reduce water use. Public sources vary on headcount and funding totals, but the company is consistently described as an advanced cooling hardware/software company.
Primary product
Adaptive Phase Cooling (APC) liquid-cooling platform for data centers and ASIC compute
Founded
2021
Headquarters
735 East Brokaw Road, San Jose, California, United States
Team size
11-50
Industry
Computer Hardware Manufacturing
Sub-industry
Data center liquid cooling / thermal management
Offices
0 jobs at Ferveret
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Business model
Stage
Seed
Total raised
$9.8M
Latest round
Seed · Jun 2025
Latest amount
$9.7M
Investors
Public job posts emphasize a scientific, hands-on hardware culture with collaboration, independence, an entrepreneurial mindset, sustainability, integrity, and in-house design, testing, and assembly.
Differentiators
Technology
Customers
Competitors
Estimated revenue
$1M-$5M ARR (public estimate)
Estimated monthly visits
3.2K
TechRadar Pro · Jun 2026
Industry coverage highlighting Ferveret’s bubble-based cooling approach as a potential answer to AI data-center energy and water constraints.
TechXplore · Jun 2026
TechXplore summarizes Ferveret’s nuclear-inspired subcooled-boiling cooling, water-free design, modular boxes, full-stack monitoring/software, and named testing partners.
Interesting Engineering · Jun 2026
Coverage of Ferveret’s modular APC system and the company’s claim that its power-control software plus cooling design can yield 35% more tokens from the same power.
MIT News · Jun 2026
MIT profiles Ferveret’s waterless, nuclear-inspired cooling approach, its 15% efficiency gain in UCLA testing, 35% more tokens per watt claim, modular rack-mounted delivery, and testing with CleanSpark, FuriosaAI, and Switch.
Business Wire · Mar 2026
Official press release announcing UCLA benchmark results: 15% TFLOPs/kW improvement versus direct-to-chip liquid cooling, PUE of 1.03, zero water consumption, and investor backing from multiple firms.