Aerial view of a narrow boardwalk crossing a dark river between autumn forests.

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.

01

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 owns
02

Power & 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 owns
03

Design & 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 owns
04

Build-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 owns
05

Energize & 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 owns
06

Long-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 term

The logic of scale

Why co-location, and why big.

See the power design

Concentrating 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.

Photo credit: Visit Savonlinna