实时全球研报
Asia Communication Infrastructure: 800VDC Architecture for Next-Generation AI Data Centers
研报英文原文证据摘录
Asia Communication Infrastructure: 800VDC Architecture for Next-Generation AI Data Centers
Asia Communication Infrastructure
17 July 2026 Citi Research
Key Equipment Demand Projection in 800VDC
Transition
We estimate an outline of per-GW data center IT load normalised comparison of
equipment capacity requirements across the two architectures, translating the
qualitative architectural differences into concrete capacity demand metrics.
There are four major categories that define the traditional AC power chain — LV
transformer/MSB, UPS and associate UPS battery, and PDU/RPP — will be
integrated into a STT system in the 800VDC architecture. For every 1GW of new
800VDC data center IT load built, approximately 2,083 MVA of LV transformer
procurement, 1,563 MW of UPS procurement, 1,500 MW of PDU procurement, and
326 MWh of UPS battery procurement are permanently forgone relative to the
traditional architecture, on our estimates.
The 800VDC SST architecture introduces the following new major demand
categories that have no precedents in traditional data center procurement:
n BBU power at 840 MW/GW (housed in the sidecar or in battery rack, providing
high-rate millisecond-to-second buffering), BBU battery at 76 MWh/GW (the
energy storage element of the rack-level buffer).
n BESS power requires 1,500 MW/GW at the facility level with BESS battery at 530
MWh/GW serving as facility-level energy storage, replacing the centralised UPS
battery and adding peak shaving capability.
n A DC distribution system of 1,500MW/GW will replace the traditional PDU.
n Notably, the SST replaces the LV Transformer & MSB on a one-for-one MVA
basis (2,083 MVA/GW in both architectures) — confirming that the total power
conversion capacity requirement is unchanged, but the device performing that
本摘录由系统从所标注的 PDF 证据页直接提取并保留英文原文,不做批量翻译;登录后在阅读器切换中文时才按需翻译。
打开研报阅读器