End-to-end scope

From site to switch-on.

Neoverse integrates the physical, electrical, thermal and operating layers of high-density compute infrastructure—reducing interface risk across the critical path.

Three integrated pillars

The full data center scope, under one delivery structure.

The mandate can extend from site and power diligence through engineering, delivery, compute staging and ongoing critical-environment operations.

01

Design & Build

Turnkey development from feasibility and basis of design through construction, integrated testing and handover.

  • High-density pod and campus architecture
  • Tier-aligned electrical and mechanical options
  • Direct-to-chip, hydro and hybrid cooling
  • Substations, switchgear and standby generation

02

Host & Operate

Clients own the compute. Neoverse manages the critical environment, physical controls and operating procedures around it.

  • Colocation and deployment coordination
  • 24/7 monitoring and incident escalation
  • Access control and surveillance
  • Planned and condition-based maintenance

03

Procurement

Sites, supply, long-lead equipment and hardware logistics coordinated through one commercial workstream.

  • Land and utility pathway diligence
  • Grid interconnection and power agreements
  • Equipment bid leveling and expediting
  • Import, delivery and UAE staging

AI infrastructure design envelope

Density changes every design decision.

AI and HPC deployments require power and cooling to be engineered as one interdependent system, with an upgrade path that anticipates changing rack architectures.

Rack power

Busway, protection and distribution are coordinated with the nominated rack and cluster topology.

Thermal chain

CDUs, facility water loops, heat rejection and leak detection are designed as a complete system.

Resilience

N+1 or 2N options are selected against workload tolerance, maintenance strategy and investment case.

Connectivity

Carrier entry, diverse Fiber paths, meet-me rooms and low-latency fabric requirements enter the basis of design.

Physical control

Layered perimeter, access zoning, surveillance and visitor controls are mapped to the operating model.

Compute compatibility

Designs can support the electrical and thermal envelopes of H100-, H200- and B200-class systems; final compatibility is project-specific.

Architecture, redundancy and performance targets are agreed per project. Product references describe design compatibility, not vendor certification or endorsement.

Delivery sequence

Six decision gates from feasibility to operation.

Each phase produces a defined information set for the next investment decision.

01

Feasibility

Load profile, site constraints, utility pathway, program budget and delivery model.

02

Basis of design

Redundancy topology, rack envelope, thermal architecture, controls and network demarcation.

03

Detailed engineering

Coordinated electrical, mechanical, civil, structural and fire-life-safety packages.

04

Procurement

Approved vendors, technical submittals, factory tests, logistics planning and schedule expediting.

05

Construction

Site controls, inspection plans, installation verification, progress reporting and change control.

06

Commissioning

Component checks through integrated systems testing, performance validation and operator training.

Delivery assurance

Controls institutional owners expect.

The exact governance package is configured to the contract, asset structure and client reporting requirements.

Stage-gate assurance

Requirements are translated into documented design decisions, hold points and acceptance criteria before capital is committed.

Supply-chain control

Critical equipment is tracked from technical approval and factory testing through shipment, installation and warranty closeout.

Operational readiness

Procedures, spares, training, alarms, maintenance plans and escalation paths are prepared before service commencement.

Owner visibility

Program reporting can cover safety, quality, schedule, cost, procurement status, decisions and material project risks.

Commissioning methodology

Prove the system before the workload arrives.

L1

Factory quality

L2

Equipment delivery

L3

Pre-functional checks

L4

Functional performance

L5

Integrated systems test

A project commissioning plan can include factory witness testing, installation verification, controls validation, failure-mode demonstrations, load-bank testing and integrated scenario testing. Final scope and acceptance criteria are contract-specific.

Bring your load plan. We’ll build the path to power.

Share your infrastructure requirements with our Abu Dhabi development team.

Request Turnkey RFP