Technology

The infrastructure behind
large-scale AI

Every deployment we manage is built around liquid cooling, high-density power, and GPU configurations purpose-designed for AI factory and sovereign cloud workloads. Here is how it works.

GB300 NVL72
Latest config
250 kW/rack
Max density
< 24h
First response

Cooling

Liquid cooling, matched to your site

We specify the right cooling approach for each deployment based on facility readiness, power density, and budget. Not every site needs full immersion — we match the solution to the workload.

Direct Liquid Cooling (DLC)

250 kW / rack

GPU clusters · AI factory

Coolant routed directly to cold plates on GPUs and CPUs. Highest thermal efficiency, compatible with GB300 and H100/H200 configurations.

Rear-Door Heat Exchangers

60 kW / rack

Mixed workloads · retrofit

Liquid heat exchanger replaces the standard rear door, capturing heat before it enters the room. Works alongside existing air-cooled infrastructure.

Full Immersion Cooling

250 kW / tank

Ultra-high density · max PUE

Servers submerged in dielectric fluid. Best PUE of any cooling method. Requires custom facility infrastructure and specific hardware compatibility.

Air-Assisted Hybrid

30 kW / rack

Entry deployments · standard colo

Precision air cooling supplemented with in-row coolers. Suitable for facilities not yet liquid-ready, or for staging before full DLC conversion.

Compute

GPU configurations we deploy

We support the full NVIDIA Blackwell stack from GB200 through GB300, plus H100 and H200 where price or site constraints apply.

GB300 NVL72

72× Blackwell UltraLatest

Highest compute density available. Full NVLink all-to-all communication across 72 GPUs in a single rack.

Power

~130 kW

Cooling

DLC required

Fabric

NVLink 5th gen

GB200 NVL72

72× Blackwell

Production-proven configuration. Strong availability across our APAC and Middle East partner sites.

Power

~120 kW

Cooling

DLC required

Fabric

NVLink 4th gen

GB200 NVL36

36× Blackwell

Half-rack format. Suitable for sites with existing rear-door heat exchangers or partial DLC infrastructure.

Power

~60 kW

Cooling

DLC or RDHx

Fabric

NVLink 4th gen

H100 / H200 SXM

8× per server

Previous generation, widely available. Strong option for price-sensitive deployments or air-cooled colocation sites.

Power

10–14 kW

Cooling

Air or DLC

Fabric

InfiniBand NDR

Process

From RFS to RFT

RFT achieved in under one week for pre-staged hardware. Full cluster validation typically takes 30–90 days from site selection to Ready for Testing.

01

Site qualification

We assess power capacity, grid connection SLAs, structural loading, and cooling infrastructure against your workload requirements.

02

Infrastructure design

Our engineers specify cooling topology, power architecture (PDU, busbar, UPS, generator), and network fabric design for your GPU configuration.

03

Procurement and staging

Hardware is sourced, staged, and tested off-site before shipment. GPU cluster firmware and baseline configuration is validated at this stage.

04

Installation and commissioning

On-site installation of cooling infrastructure, power systems, and GPU racks. Commissioning includes thermal validation, burn-in, and fabric verification.

05

Handover and operations

We hand over a running cluster with monitoring, remote hands, and optional ongoing operations support through our local partner teams.

Get started

Tell us
what you need to build.

From a single GPU node to a multi-megawatt colocation deployment — share your requirement and our team will respond within one business day with a structured, priced proposal.

Priced proposal within one business day
No cost and no obligation until you sign
One point of contact from brief through ready-for-service