Vertically integrated I4DC™ immersion-cooled data centers iDTM™ technology engineered are design for EDGE to hyperscale datacenters
energy scarcity, overuse of natural resources made conventional datacenter structurally unviable and unfit for today’s data production
Consumed globally by air cooling. Grid infrastructure cannot keep pace with AI compute demand.
Drawn by hyperscale evaporative cooling by 2027. A single site can consume millions of gallons per day.
Next-generation AI chips exceed the physical limit of air cooling. GPU clusters throttle and fail without liquid.
Buildout timeline for conventional liquid cooling: civil works, raised floors, zoning. Enterprises cannot wait.
iDTM™ is the world's only fully-integrated, full-immersion liquid cooling platform — engineered to deploy and operate like a familiar air-cooled rack. 100% of digital heat is captured through liquid-to-liquid exchange to be reused as heating energy.
Powering the compute, not the building — with a true mechanical PUE below 1.02.
Identical provisioning, data & power cables pathways. No dedicated U, no thermal limitation (up to 2kW/U).
No GHG, CO₂ or microparticle emissions. No evaporative cooling, no water towers — ever.
iDTM™ system, proprietary 100% biodegradable liquid, AI-embedded thermo management software Suite.
No AIR scheme — “Liquid to liquid” thermal exchange.
From Edge to Hyperscale: new builds, offices, warehouses, underground sites. A floor loading of 1.2 t/m² and 2.7 m of ceiling height are enough. No chillers, no raised floors, no water towers — and full efficiency from just 1% occupancy.
A 5 MW I4DC™ data center allows:
apartments heated by a single I4DC™ at full occupancy
of office space heated — the data center becomes an energy asset for the neighborhood
return on investment — revenue from the first month, pay as you grow
| Conventional air-cooled | I4DC™ immersive | |
|---|---|---|
| Build cost per MW | €10–12M | €3.6–5.4M 3–4× lower |
| Time to market | 15 months | 8 months up to 60% faster |
| Usable IT capacity | 2.4 MW | 5 MW 2× the compute |
| Power reaching compute | 64% · PUE 1.57 | 93% · PUE 1.07 |
| Water consumption | 1.8 L per kW | None |
| Heat reuse | ~30% | 100% |
| Investment model | Full upfront CAPEX | Pay as you grow |
Investors, real-estate owners, energy providers and compute operators — let’s talk.