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Exploring PG25, dielectric fluids, and ASHRAE recommendations
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Exploring PG25, dielectric fluids, and ASHRAE recommendations
Water has become one of the newest variables in data center planning – and one of the most regulated
As rising temperatures and high-density AI workloads place increasing pressure on critical infrastructure, modernizing cooling systems are becoming essential for maintaining uptime, efficiency, and resilience
Identifying which liquid cooling architecture to design for
Australia’s data center market is entering a new phase of growth
Increasing densities, equipment varieties, and services have led to complexity challenges. What the market needs is integrated solutions from a provider that can support the AI wave at every step
As data center power density climbs, successful infrastructure planning depends on understanding how power availability, cooling strategy, and deployment timelines influence one another
The benefits of RDHxs for today's AI environments
The AI factory era has arrived
Liquid cooling offers the performance and efficiency needed to manage the intense heat of GPU-driven workloads, reducing energy use while improving reliability
As the demand for AI and HPC infrastructure continues to grow, the move from air cooling to liquid cooling will become increasingly important for cooling AI workloads
The CDU is not merely a piece of equipment; it is a gateway to enhanced performance, sustainability, and reliability in the digital age
With AI operations, efficiency isn’t just about how much energy you consume. Rather, it’s about how much compute you produce from it, making output a more meaningful measure of performance
The smartest strategy isn’t choosing one approach over the other indefinitely, but aligning cooling decisions with current workload demands while maintaining flexibility
Built with scalability and flexibility at the core, AI pods enable operators to expand capacity as technology evolves – without rearchitecting their facilities
Making a choice comes down to the specific requirements of the liquid cooling architecture in each implementation
Adding liquid cooling to your existing data center can be complicated, but when done successfully, it effectively meets the power and GPU-intensive demands of high-density data centers
The transition to 800VDC represents a significant step forward in how data centers power high-density workloads – but it doesn’t require a complete reinvention of cooling
AI factories are pushing data center power and cooling requirements beyond traditional limits, making integrated AI data center infrastructure essential
By focusing on design, deployment, and proactive maintenance, operators can harness the full potential of liquid cooling systems and specialized components
Organizations that modernize their brownfield spaces fastest will capture AI growth sooner and more efficiently
Adding liquid cooling to your existing data center can be complicated, but when done successfully, it effectively cools hotter workloads and keeps critical infrastructure running at peak uptime and efficiency
As AI data centers evolve, densities rise, and workloads intensify, the cooling strategy must evolve
As AI continues to place greater demands on data center infrastructure, thermal management cannot continue to be treated as a SKU
GPU evolutions are coming at a staggeringly fast pace and putting tremendous stress on the ability of cooling vendors to achieve desired performance
With Motivair liquid cooling solutions for AI factories managing pressure drop, ΔT, and flow rate, silicon like Nvidia or AMD isn’t just functional – it’s unleashed
The rise of AI and consequent demand for power-hungry processors to run AI applications is fueling interest in liquid cooling. Schneider's Robert Bunger answers the big questions everyone is asking
Breaching the silos between information and infrastructure pays dividends in the modern data center