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DeBLASEing the Trail: Shock to the System: The 800VDC Transition, Part II
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DeBLASEing the Trail: Shock to the System: The 800VDC Transition, Part II
Deutsche Bank
Research
North America Industry Date
United States 28 June 2026
DeBLASEing the
Industrials Industry Update
Multi - Industry & Electrical Trail
Equipment
Shock to the System: The 800VDC
Transition, Part II
Nicole DeBlase
Weekly #308: Part II of a two-part series on the 800VDC data center power Research Analyst
transition +1-212-250-5916
In Part I, we outlined why 800VDC is emerging as a credible next step in data center
power architecture as AI drives higher rack densities, rising power intensity, and Andrew Krill, CFA
Research Analyst
tighter thermal constraints. In Part II, we shift to the practical adoption path —
+1-212-250-2997
timing, technical hurdles, and company implications. We view 800VDC as a multi-
year evolution of the power and cooling stack, with initial deployments tied to Naim Kaplan
NVIDIA Kyber in 2027 and broader adoption more likely in 2028–29. Early adoption Research Associate
will likely be led by hyperscalers and AI cloud providers, while colocation likely +1-212-250-5332
transitions more gradually given mixed workloads, customer optionality, and Jackson Glenn
standardization needs. Research Associate
+1-212-250-2500
UPS/SST debate: timing mismatch, not binary disruption
Investors have expressed concern that 800VDC could eliminate portions of
centralized low-voltage UPS architecture, but SSTs do not need to be broadly
commercialized for that transition to begin. SSTs remain nascent in data center
applications, while early 800VDC deployments are more likely to rely on sidecars,
conventional rectification, MV UPS, BESS, and DC-coupled storage. We would
expect UPS to face gradual disintermediation over a long timeline rather than
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