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Power-ready AI infrastructure, built to scale.

Factory-built AI data centers at 2.4 and 4.8MW blocks — power, compute, and cooling integrated, sited, and ready to run.

Modular · AI Data Center Blocks 2.4 - 4.8 MW Containers

What we build

A data center you deploy, not construct.

A conventional site of this size takes years of custom construction. A CGiX site arrives factory-built and tested — power, compute, and cooling integrated into standardized blocks that come online in months, at the power you already have.

Two sizes. One architecture.

A CGiX standard site container

CGiX · Block

2.4 MW

Two independent 1.2 MW blocks

The standard deployment. Two self-contained 1.2 MW compute blocks, each with dedicated power, cooling, and standby generation — sized for customer-furnished GB300-class racks.

Configuration2 x 1.2 MW blocks
Redundancy2N CDU · N+1 UPS
ComputeGB300-class
Footprint~2,200 m²
A CGiX module site

CGiX · Block

4.8 MW

Two 2.4 MW pods

The flagship module. Two 2.4 MW pods combine into a single 4.8 MW ComputeBlock with pooled redundancy across the whole package — built for scale deployments that grow in multiples.

Configuration2 x 2.4 MW pods
Redundancy4-to-make-3 pooled
ComputeGB300-class
FootprintScales from 2.4 MW

Designed for scale

Factory-integrated modules. One system.

Module · 01

Ready-Rack IT

Contained white-space for GB300-class racks — busway, liquid-cooling manifolds, containment, and environmental monitoring, prepared for customer-furnished racks.

Module · 02

Power

MV switchgear, transformers, IT and mechanical UPS, and LV distribution — factory-assembled and FAT-tested as one prefabricated module.

Module · 03

Cooling

Liquid-first heat rejection with residual air. CDU / fan-wall skids and adiabatic dry coolers, factory-matched and sequenced to the load.

Module · 04

Standby Generation

Factory-packaged standby gensets with controls and fuel systems — backup power for the site, deployable outdoor or indoor.

Every module is factory-integrated and FAT-tested before shipment.

See the subsystem

Built for redundance

Redundancy, sized to the deployment.

Both sizes are engineered for high availability with redundant power and cooling — but they get there two different ways. The right architecture depends on the site.

2.4 MW standard site

Block-dedicated

2N CDU • N+1 UPS • N+1 pumps/fans

Each 1.2 MW block carries its own dedicated power, cooling, and standby generation — redundancy is contained within the block rather than shared across the site. A fault in one block never reaches the other.

4.8 MW module

Pooled across the module

4-to-make-3 pooled

The larger module shares redundancy across the whole package — a “4-to-make-3” topology where any one of four units can drop without losing capacity. More efficient at scale, with resilience spread across the module.

Runs compute

High-density AI capacity.

Purpose-built for customer-furnished GB300-class racks, with liquid-first cooling designed for continuous, near-full-load operation — ready for training and inference the moment the site is energized.

Ready for the grid

Sited where the power is.

Grid-tied by design, with standby generation for resilience. The modular architecture goes to where power and land are already available — collapsing the path from megawatts to usable AI capacity.

Returns energy

A grid asset, not just a load.

Integrated battery storage lets every unit participate in the energy market — peak shaving, arbitrage, and demand response built in.

Bring capacity to your site.

Tell us your power, your workload, and your site. We’ll scope the right configuration.

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