From DataCenter to Data‑Ecosystem

Sovereign. Sustainable. Scalable.

DataFields builds and operates decentralized edge data centers for AI and high-density compute.

The connecting ecosystem

Compute infrastructure where energy and demand converge.

We develop sovereign, secure, and highly energy-efficient DataCenter Ecosystems built for Europe’s constrained grids, rising compute demand, and strict climate requirements.

Our decentralized edge data centers are designed for the accelerating demand for AI and high-density computing. Unlike centralized hyperscale models, the DataEcosystem connects compute, energy, and heat into one coordinated infrastructure layer – integrated into local energy systems.

Flexible Green Energy
Regional sources
Grid-native
integration
Smart energy
balancing
Green Heat
Decarbonised
heat >60°C
High-density Computing
AI Computing with rack densities >100kW
Flexible Green Energy
Regional sources
Green Heat
Decarbonised
heat >60°C
Grid-native
integration
Smart energy
balancing
High-density Computing
AI Computing with rack densities >100kW

Europe's Infrastructure Shift

Compute demand is accelerating faster than infrastructure can adapt.

AI workloads, industrial digitization, and increasing power densities are pushing centralized infrastructure models to their limits.
Grid bottlenecks, energy constraints, and the sheer scale of projected demand are exposing a fundamental mismatch: infrastructure built for yesterday's loads cannot carry tomorrow's compute.

945 TWh
Projected global data center electricity demand by 2030
Source: IEA
16%
Growth in data center electricity demand in 2025
Source: Gartner
35 GW
Projected European data center power demand by 2030
Source: McKinsey

There is a better way to build.

The answer is not more of the same. Scale alone won't solve a structural problem – the model itself must change. The next generation of infrastructure must work with local energy systems, not against them: distributed, energy-aware, and integrated rather than isolated.

Europe's Sovereign Digital Core

Sovereign

The DataEcosystem operates within European regulatory, operational, and energy frameworks – supporting long-term control over infrastructure, data, and operations.

EU-Owned & Operated

Built and operated by a German entity under German jurisdiction. GDPR compliant, No CLOUD Act exposure, no foreign access.

DataCenters in Germany

All infrastructure hosted exclusively in German datacenters. Your workloads never leave the country, by design and by contract.

Sovereignty at the Infrastructure Layer

We're committed to open standards. Wherever possible, we avoid proprietary lock-in at the hardware layer – working toward infrastructure that is auditable, replaceable, and vendor-neutral.

economically and ecologically efficient

Sustainable

The DataEcosystem integrates compute directly into energy systems – enabling energy coordination, heat recovery, and more efficient infrastructure operations.

Renewable Integration

Connected to local renewable energy through integrated battery storage, stabilizing the energy grid & prices.

Heat Recovery

Recovered high-temperature heat can be reused within local industrial processes and district heating networks.

Reporting & Compliance

Automatically report your compliance status: ESG-RC, EnEfG, Scope 3 emissions, Fit for 55, and other regulatory requirements, clearly documented and verifiable.

Designed for Europe's Growing Compute Demand

Scalable

Our data centers are designed with a modular architecture, built to accommodate the power densities and integration requirements of tomorrow's technologies.

Future-ready architecture. Modular. Adaptable.

Liquid-cooled infrastructure designed for evolving compute architectures, with rack densities exceeding 100kW.
Continuous technology & service adaptation to market needs.

Distributed Growth Model

The DataEcosystem scales modular as well as incrementally by region and demand through coordinated local Edge nodes.

From Principles to System

The DataEcosystem connects sovereign computing capacity, sustainable energy, and heat recovery into one larger system.

It aligns compute execution with local energy availability, infrastructure capacity, and regional demand, creating long-term value.

Understand the System