Begin with the workload. Not the processor count.

Accelerated servers, fabric, storage and liquid cooling are integrated, imaged and burned in as one system in the GPU hall, then accepted against the workload they were built for.

Cooling, compute and control, co engineered.

Every product is designed around delivered workload throughput, serviceability and the chosen sovereignty boundary.

Cold plates, copper transfer paths and coolant loops are designed with the selected silicon; flow, temperature and pressure are observable at system level; controls and workload data converge into one operational view. Accelerator generation is selected against the workload at design freeze, not before.

From crate to burn in.

High bays, clean light and disciplined flow: the same grid and the same discipline for the smallest device and the largest system.

01

Receiving and quarantine

Every crate is logged, inspected and formally released through controlled quarantine before it touches the line.

02

ESD preparation

Sensitive electronics are handled under static controlled discipline from the very first touch.

03

Liquid cooling and power

Manifolds, couplings and pressure checks: thermal and power engineering are built into every unit, not added later.

04

Firmware and provisioning

Behind glass, every system is imaged, keyed and brought to life under controlled conditions.

05

Burn in and factory acceptance

Systems run hard before they ship: burn in bays and factory acceptance testing are the standard, not the exception.

06

Metrology

Critical parts are measured, not assumed: cold plates and assemblies are verified against specification, piece by piece.

From workload to operations.

One controlled path connects design decisions to acceptance and long term service. Programme schedule is confirmed after design freeze, component allocation and site readiness review.

01

Define

Workload, sovereignty boundary and service level.

02

Configure

Silicon, memory, fabric, redundancy and cooling.

03

Validate

Digital engineering and acceptance plan.

04

Manufacture

Integrated build and quality control.

05

Commission

Site connection, testing and onboarding.

05

Operate

Telemetry, support and phased expansion.

Remote observability across the deployed estate.

Fleet telemetry unifies system health and performance. Thermal and power views give capacity, efficiency and risk visibility. Workload control schedules and coordinates service levels. Lifecycle alerts drive service actions and expansion planning. Operators retain visibility, judgment and service control.

Operations concept. Final software and service scope is project specific.

One campus. Eight families.

Eight halls. One campus.

Everything DXQ builds is made in one planned campus in Dubai. Each hall builds one family.

01

HYPERCUBE

Sovereign compute estate

02

HYPERQ

Personal to transportable

03

CONTAINERS

Enclosure fabrication and integration

04

GPU SYSTEMS

Server integration and acceptance

05

BATTERY

Cells to containers

06

POWER UNIT

Generation, conversion, distribution

07

DRONES

Unarmed autonomous aircraft

08

MOBILITY

Sovereign autonomous vehicles