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DeBLASEing the Trail: Shock to the System: The 800VDC Transition, Part 1
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DeBLASEing the Trail: Shock to the System: The 800VDC Transition, Part 1
Deutsche Bank
Research
North America Industry Date
United States 21 June 2026
DeBLASEing the
Industrials Industry Update
Multi - Industry & Electrical Trail
Equipment
Shock to the System: The 800VDC
Transition, Part 1
Nicole DeBlase
Weekly #306: Part I of a two-part series on the 800VDC data center power Research Analyst
transition +1-212-250-5916
In this week’s edition, we begin a two-part series on the emerging shift to 800VDC
in data center power architecture, with Part I focused on the technological and Andrew Krill, CFA
Research Analyst
economic case for this change. As AI workloads drive materially higher rack
+1-212-250-2997
densities, power requirements, and thermal loads, traditional AC-based power
architectures are becoming increasingly strained by conversion losses, copper Naim Kaplan
intensity, and cooling requirements. In our view, the key debate is shifting from Research Associate
whether the power stack must evolve to how quickly the industry will move towards +1-212-250-5332
a more centralized, higher-voltage, and increasingly DC-native design. We view Jackson Glenn
800VDC as one of the most credible paths forward. In Part II, we will examine which Research Associate
parts of the electrical and thermal stack might be impacted - and which suppliers +1-212-250-2500
appear best positioned - as the transition unfolds.
Power demand and rack density are rising
This upcoming change in data center power architecture is a result of a sharp
increase in data center capacity, server electricity consumption, and rack density.
McKinsey estimates global data center capacity demand rising from 82 GW in 2025
to 219 GW by 2030, with AI-related demand increasing 3.5x, while EIA projects US
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