GPU Capacity Access

Data Center Capacity Is the New Bottleneck. We Solve for It.

Demand for GPU-ready infrastructure is outpacing supply. KloudX gives you a direct line to tier III/IV colocation, modular deployments, powered shells, and powered land - matched to your power density, timeline, and geography - then handles the physical deployment end to end.

The Gap We Fill.

Compute demand outpaces available capacity

Qualified workloads are competing for a shrinking pool of deployable, liquid-cooling-ready space.

Power, not floor space, is the real constraint

Utility interconnection queues in saturated markets now run 18-36+ months. Sites with confirmed substation capacity are worth more than raw square footage.

Most existing colocation stock isn't GPU-ready

Legacy air-cooled facilities top out around 15-20 kW/rack. Modern GPU racks run well above 100 kW/rack and need direct-to-chip liquid cooling or immersion.

Facility Types We Source.

From fully operational colocation to powered land, matched to your runway.

Tier III / IV Colocation

Concurrently maintainable to fault-tolerant, retail or wholesale.

Powered Shell

Structure and utility power delivered, no white space buildout yet.

Dark Shell

Structure only, power not yet secured. Earlier-stage, longer runway to occupancy.

Modular / Prefabricated

Factory-built, containerized or skid-based, 1-4 MW per module.

Build-to-Suit

Custom-built to one tenant's spec on controlled land.

Brownfield Conversion

Retrofit of existing industrial or commercial buildings, skipping years of entitlement.

Land - Powered

Confirmed or reserved utility capacity, no structure.

Land - Unpowered / Greenfield

Interconnection not yet secured.

Wholesale Campus

Large multi-building, typically hyperscale-oriented.

What We Evaluate.

Every site is screened against the criteria that actually decide whether GPUs can run.

  • Power availability and utility interconnection queue position
  • Redundancy topology (N / N+1 / 2N / 2N+1) matched to workload risk tolerance
  • Cooling readiness - air, rear-door heat exchanger, direct-to-chip liquid, immersion
  • Structural floor loading for liquid-cooled, GPU-dense racks
  • Network fabric access - InfiniBand (NDR/XDR) or RoCEv2, carrier diversity, dark fiber
  • PUE and water usage where evaporative cooling applies
  • Permitting and zoning / entitlement status

Compute We Deploy Around.

NVIDIA logo

H100, H200, GB200 NVL72, GB300 NVL72

AMD logo

MI300X, MI325X, MI350X

How It Works.

Four steps from requirement to production.

01

Requirements Intake

Power, density, cooling, timeline, and location captured up front.

02

Site Screening

Interconnection, substation, and structural / cooling fit verified.

03

Capacity Match & Introduction

NDA, direct introduction, technical fit pre-vetted before you talk.

04

Deployment

KloudX's nine-step process takes it from dock to production.

Have a Capacity Requirement?

Start a Requirement