The full platform
We own the whole crossing — not just the map to build-ready.
Many developers stop at a permitted, powered plot and sell it on. Colchian runs the complete value chain and retains the asset.
Photo credit: Visit Savonlinna
The model
Build-ready is a milestone on the route — not the exit.
We originate the site, secure the power, engineer the campus, take it through construction, energize it, and hold it as a long-term owner. At each stage the value — and the asset — stays with Colchian. Compute and hardware risk sits with the neocloud or hyperscale operator; the infrastructure is ours.
Origination & site control
Land, zoning, community engagement and environmental groundwork across the Nordics — Sweden, Finland and Denmark — chosen for grid headroom, cold climate and heat-offtake potential.
Colchian ownsPower & grid
Grid connection secured in parallel with a behind-the-meter supply of clean hydropower and grid-interactive battery storage — de-risking the single longest item on any large-load timeline.
Colchian ownsDesign & engineering
High-density, liquid-cooled campuses engineered for ~130 kW/rack and ~1.10 PUE, with waste-heat recovery and flex-ready electrical design built in from day one.
Colchian ownsBuild-ready & construction
We develop each site to a rigorous build-ready standard and carry it through construction — a powered shell a neocloud or hyperscale operator can energize in 12–18 months.
Colchian ownsEnergize & co-locate
We bring the campus online and host large-scale AI and HPC tenants in a shared, high-density, liquid-cooled environment. Compute risk sits with the operator; the infrastructure is ours.
Colchian ownsLong-term ownership
Colchian retains the campus as a landlord and infrastructure owner, capturing durable, contracted income from power, space and services across the asset's life.
Held for the long termConcentrating demand into large, shared campuses is what makes clean Nordic power pay. One high-density, liquid-cooled shell — 50 to 200 MW and beyond — lets multiple AI and HPC tenants co-locate on shared power, cooling, storage, security and heat-recovery infrastructure.
Scale spreads fixed cost across far more compute, so cost per MW and per kW-IT falls. Liquid cooling pushes rack density an order of magnitude past legacy air-cooled colocation, so each megawatt does more work. Secured powered plots collapses the timeline: a pre-powered shell can be energized in 12–18 months, against three-to-five years for a grid-dependent greenfield build. And at scale, waste heat becomes large enough to attract and anchor a real district-heating offtake.