DNA Compute Infrastructure04

Compute capacity.
Infrastructure discipline.

Data center planning from first principles: power, cooling, network, land, water, schedule and the long-term relationship with the host community.

High availability Power-integrated Water-aware Workload-ready

Capacity is only valuable when every dependency is ready.

The data center is a physical system serving a digital promise. A disciplined development model aligns utilities, equipment, construction and operating requirements before schedule commitments.

PowerFirm, scalable, transition-ready
CoolingClimate-matched, workload-aware
NetworkDiverse, low-latency, resilient
CommunityTransparent, additive, accountable

Designed as layers of resilience.

Critical compute environmentConfigured to tenant + workload
Security + life safety
Thermal systems
Network diversity
Electrical topology
Water stewardship

Different workloads.
Different infrastructure.

A

AI-ready campuses

Phased, high-density environments with power and cooling paths engineered for accelerated computing.

Planning focus
Density · liquid cooling · power ramp
Delivery model
Build-to-suit or powered shell
B

Regional cloud facilities

Reliable multi-tenant or dedicated capacity close to demand, network and enterprise ecosystems.

Planning focus
Connectivity · availability · flexibility
Delivery model
Wholesale or dedicated
C

Distributed edge

Compact infrastructure supporting latency-sensitive services, industrial operations and underserved markets.

Planning focus
Repeatability · remote operations · resilience
Delivery model
Modular portfolio

Resource envelope

Efficiency begins before equipment selection.

01

Site in the right climate and grid context

02

Match cooling architecture to workload

03

Reserve potable water for essential uses

04

Coordinate flexible load with clean supply

Explore energy systems