Modern hillside home with an infinity pool, heated by recovered AI-server heat at sunset
AM ThermaLink

Turn AI Heat Into Zero-Cost Heating for Buildings and Pools

A decentralized AI infrastructure system that generates compute revenue while reusing server heat for buildings, pools, and hot water.

~85%Heat-recovery efficiency
The Problem

The current data center model wastes value by paying to generate heat — then paying again to cool it down.

AI demand is exploding

Global AI computing power is growing roughly 3.4× per year — doubling about every 7 months (Epoch AI) — and demand keeps climbing.

Nearly 100% energy becomes heat

Nearly all power a server draws is converted straight into heat.

Buildings still pay to heat

Nearby buildings and pools buy gas or electric heat they already need.

New capacity is hard to build

Traditional data centers stall on permits, scarce grid power, and growing local opposition — capacity can't keep up with demand.

The Solution

AI servers that warm your building instead of wasting heat

AM ThermaLink places liquid-cooled AI compute close to real heat demand. Instead of wasting server heat, the system captures it and transfers it into usable heating.

STEP 01

AI compute runs

High-performance liquid-cooled servers generate heat while running AI workloads.

STEP 02

Heat is produced and captured

The thermal energy is transferred through a separated heat-exchanger system.

STEP 03

Heat is reused

The recovered heat supports pools, domestic hot water, and building heating systems.

Best Use Cases

Where dual-use heat creates the most value

The ideal host has steady, year-round heat demand sitting next to a need for compute.

Best early market

Swimming pools

Pools need steady heat year-round, making them the strongest, most consistent thermal off-taker.

High volume

Apartment buildings

Reliable demand for domestic hot water and hydronic heating across many units.

Dual demand

Universities & hospitals

Strong fit — they need both high-performance computing and continuous heating.

Heating-led

Cold cities

Higher heating loads make recovered building heat especially valuable through long winters.

Expansion market

Hotels & resorts

Pools, spas, and constant hot-water demand make hospitality a natural expansion market.

Residential

Homes & villas

Private homes with pools and year-round hot-water needs are an ideal small-scale host.

Why Now

The market is moving our way

AI demand is surging

Companies, universities, and labs all need dedicated GPU compute — and demand keeps climbing.

Big data centers are stalling

Power, permits, and local pushback block new builds — opening the door for smaller, distributed sites.

Energy cost is a pain point

Compute burns power and cooling burns more. Reusing the heat cuts the waste on both.

Sustainability pressure is rising

Lower-carbon is now a requirement. Heat recovery turns AI infrastructure into part of the solution.

Pilot Status

Preparing the first pilot deployment

AM ThermaLink is preparing its first pilot system to validate AI compute operation, heat recovery, and real-world heating performance.

The pilot is designed to demonstrate how liquid-cooled compute can provide useful thermal energy while supporting revenue-generating AI workloads.

AI compute operation Heat recovery Real-world heating performance
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Environmental Impact

Where AI infrastructure meets energy efficiency

Instead of treating server heat as a problem, AM ThermaLink treats it as a resource — reducing wasted thermal energy and making the electricity behind AI go further.

Less wasted heat

Thermal energy that would normally be rejected is captured and put to use on-site.

Lower heating demand

Recovered heat reduces reliance on fossil-fuel heating for pools, hot water, and buildings.

More useful electricity

The same energy powers compute and heat, improving how much value each watt delivers.

Founder

Founded by Alexandre Marque

Alexandre Marque, founder of AM ThermaLink

Alexandre Marque

Founder

AM ThermaLink was founded by Alexandre Marque, a Pepperdine University graduate in Computer Science and Applied Mathematics, working at the intersection of AI infrastructure, thermal systems and energy efficiency.

Investor Access

Request the investor deck

AM ThermaLink is currently speaking with selected investors, strategic partners, and potential pilot hosts. The full investor deck includes the technical architecture, pilot plan, financial model, market opportunity, and deployment roadmap.

Access is granted on request. Detailed financials and private materials are shared directly with reviewed investors and partners.