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Offsite Data Center Power Infrastructure Market Size, Share Outlook, Growth Analysis Report and Forecast Trends 2026-2030

The global Offsite Data Center Power Infrastructure Market encompasses the electrical systems, distribution units, backup power, cooling-integrated power management, and grid-interconnection hardware deployed outside the computing facility to support data center operations. Valued at roughly $416.206 billion in 2026, up from the prior year, the market is expanding at approximately 9.08% annually, propelled by surging demand for compute capacity from cloud providers, hyperscale operators, and AI workloads. This growth trajectory is further reinforced by rising power density requirements at individual rack levels and the accelerating electrification of IT infrastructure across enterprise and colocation segments worldwide.

Market size · 2026
$416 billion
CAGR · 2026–2031
9.08%
Forecast · 2031
$643 billion
Basis
Claight Analysis
Market size (USD)
Base year 2026
Official data · Claight AnalysisForecast
Market size and forecast are Claight Analysis, informed by public research.
Forecast
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2026 base: $416bn2031 est: $643bn
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Market Overview

Offsite data center power infrastructure refers to the full spectrum of electrical equipment and systems located external to the computing hall, ranging from high-voltage substations and medium-voltage switchgear to uninterruptible power supplies, power distribution units, busways, and backup generators, that collectively deliver conditioned, resilient power to IT loads. The market is experiencing a high-growth phase as data center build-out accelerates globally to accommodate escalating compute demand, particularly from artificial intelligence and cloud services.

  • The broader power infrastructure segment for data centers is valued in the tens of billions of dollars base-year (2025) and is forecast to grow on a high single-digit to mid-teens compound annual basis through 2030.
  • Data center grid-power demand is projected to rise approximately 22% in 2025 alone and nearly triple by 2030, placing sustained pressure on upstream power delivery and conversion infrastructure.
  • Power density at the rack level has been climbing steadily, with AI-optimized GPU clusters routinely demanding 40-100 kW per rack compared with 5-10 kW for traditional enterprise workloads, requiring fundamentally upgraded offsite power designs.

Growth Drivers

Artificial intelligence is the single most powerful demand catalyst, with one major financial institution projecting that AI workloads will drive a 165% increase in global data center power demand by 2030. The electrification of the global economy, combined with the proliferation of hyperscale and colocation data centers across North America, Asia-Pacific, and Europe, ensures a structural supply-demand imbalance in power infrastructure that sustains above-trend market growth.

  • AI training and inference workloads are the primary source of demand acceleration, driving both facility count growth and power density escalation simultaneously.
  • Grid interconnection lead times of two to five years in many regions have created a supply bottleneck, prompting data center operators to invest heavily in on-site and offsite power generation and storage assets.
  • Corporate sustainability targets and the growing emphasis on renewable energy sourcing are pushing operators toward advanced power conversion, DC distribution, and green-energy integration at the infrastructure layer.
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Segmentation and Regional Analysis

The market is commonly segmented by component (hardware solutions versus professional services), by solution type (UPS, power distribution units, busways, switchgear, generators), and by end-use industry (IT and telecommunications, BFSI, healthcare, government, and energy). Regionally, North America leads in installed base and pipeline value, driven by U.S. hyperscale expansion; Asia-Pacific is the fastest-growing region due to massive data center construction in India, Southeast Asia, Japan, and China; Europe follows with strong demand from Western European cloud and colocation providers.

  • North America accounts for the largest regional share, supported by major cloud and AI infrastructure investment cycles from leading technology firms headquartered in the United States.
  • Asia-Pacific is projected to post the highest growth rates over the forecast horizon, with emerging markets in India and Southeast Asia adding significant new power infrastructure capacity.
  • Services, encompassing design and consulting, integration and deployment, and post-installation maintenance, represent a growing share of market value as power system complexity increases.

Competitive Landscape

Who are the notable companies in the industry?

The research text provided does not contain any information about the eight companies you've named (ABB, Schneider Electric, Eaton, Vertiv, Huawei Technologies Co., Ltd., Comfort Systems USA, Johnson Controls, or Yondr). The text covers market size, growth projections, key drivers (cloud computing, IoT, AI/ML, edge computing, 5G), challenges, and regional dynamics, but does not mention or describe any of these specific players. Since the instruction is to draw descriptors **only** from the research text, I cannot fabricate details about these companies. Adding unsourced claims, even if generally accurate, would violate that constraint and the research integrity of the section. **How I can help:** 1. **If you provide additional source text** that mentions any of these companies and their roles in this market, I can incorporate factual descriptors drawn directly from that material. 2. **If you'd prefer**, I can rewrite the Competitive Landscape section using only the information already in the research text, retaining the existing analysis of market consolidation, the mix of full-line electrical infrastructure conglomerates and specialty firms, and the dynamics around UPS systems, busway conductors, and switchgear, without naming specific companies. Would either of those approaches work for you?

  • The technology and process routes span transformer-based AC distribution, DC power distribution systems, modular UPS architectures, and increasingly, lithium-ion-based energy storage integrated into the power chain.
  • Regional capacity concentration is highest in North America and Western Europe for high-end power conversion and switchgear, with Asia-Pacific manufacturing capacity expanding rapidly to serve regional data center construction demand.
  • Integrated producers that design and manufacture end-to-end electrical infrastructure compete alongside specialty component suppliers and engineering, procurement, and construction firms that assemble customized offsite power solutions for hyperscale operators.

Trends and Outlook

What are the recent trends and outlook?

Looking forward, the market is expected to maintain a high-single-digit to low-double-digit growth rate through 2030, underpinned by the compounding effects of AI compute expansion, the build-out of edge data center networks requiring distributed power infrastructure, and tightening efficiency standards. Emerging trends include the adoption of direct-current distribution architectures, increased integration of battery energy storage systems, and the co-location of data center power loads with on-site and off-site renewable generation assets.

  • AI-specific data center campuses are driving a new generation of 100+ MW power infrastructure projects with 10-15 MW per building footprints, resetting scale expectations for offsite power design.
  • Power availability has become the primary site-selection criterion for hyperscale operators, elevating the strategic importance of offsite power infrastructure in data center development timelines.
  • Regulatory and utility interconnection delays in key markets are expected to persist through the near term, sustaining elevated demand for behind-the-meter generation and power infrastructure investment.
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Market size and forecast are Claight Analysis, informed by public research and industry data. Historical years before 2026 and all forecast years are Claight estimates at the stated CAGR. Retrieved 2026.