High-Density Colocation for rapid AI deployment
Our High-Density Colocation delivers AI-ready infrastructure for environments that demand higher power density and advanced cooling. Choose sites designed to shorten time-to-deployment without compromising security and interconnectivity.
Move from AI roadmap to AI reality

You generate a massive amount of data. Moving it swiftly, directly, and efficiently into and out of HPC environments is paramount.
Reducing overall costs starts with highly energy-efficient solutions. Lower your Power Usage Effectiveness(PUE) and minimize your total cost of ownership.
AI training and similar latency-intensive tasks like real-time processing require lightning-fast responses to keep costs down (and customers happy).
Now more than ever, time is money. Deploying a robust HPC environment quickly to stay ahead of the curve and meet critical timelines is key.
Density without tradeoffs
Our High-Density Colocation offers liquid cooling options, including Air-Assisted Liquid Cooling (AALC) and Direct Liquid Cooling (DLC), designed for power-dense deployments.
150 kW
The amount of cooling per cabinet our High-Density Colocation solution can bring to support your HPC deployment.
100%
Renewable coverage achieved for our U.S. colocation and European portfolios.
Energy efficient cooling technology with a resilient and fault-tolerant design.
Starting at just 30 kW per cabinet, this solution scales to multi-MW sizes and up to 150 kW per cabinet.
Our market-leading green credentials mean you balance your need for greater power density with your ESG commitments.
Secure, compliant space protects your business-critical data.
We offer close proximity to dense ecosystems via on-site service providers and access to many more through our PlatformDIGITAL® platform.
Pricing options create flexibility to meet most budgets.
See how the IDC Vendor Profile assesses our colocation
The IDC Vendor Profile examines our High-Density Colocation framework, including 170 sites across 33 markets, advanced cooling technologies, and support for power densities from 30 kW to 150 kW per rack and beyond.


