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市場調查報告書
商品編碼
2046064
資料中心機櫃市場 - 全球產業規模、佔有率、趨勢、機會、預測:按組件、機架類型、資料中心規模、機架高度、產業垂直領域、地區和競爭格局分類,2021-2031年Data Center Rack Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Component, By Rack Type, By Data Center Size, By Rack Height, By Industry Vertical, By Region & Competition, 2021-2031F |
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全球資料中心機櫃市場預計將從 2025 年的 49.9 億美元大幅成長至 2031 年的 84.7 億美元,複合年成長率達 9.22%,呈現強勁成長動能。
資料中心機櫃是一種標準化的結構框架或機殼,專門用於安全地存放、整理和保護資料中心內的IT設備,例如伺服器、儲存模組和網路交換器。推動這一市場成長的主要動力是全球數據生成量的快速成長,這迫切需要可擴展的儲存基礎設備。此外,超大規模資料中心的快速普及以及高效能運算在支援人工智慧(AI)工作負載方面的日益普及,也從根本上提升了對容錯性和適應性強的機架解決方案的需求。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 49.9億美元 |
| 市場規模:2031年 | 84.7億美元 |
| 複合年成長率:2026-2031年 | 9.22% |
| 成長最快的細分市場 | 開放式機櫃 |
| 最大的市場 | 北美洲 |
超大規模和雲端運算基礎設施的快速擴張是資料中心機櫃市場銷售成長的主要驅動力。隨著領先的科技公司積極開發用於雲端運營的大規模設施,用於容納伺服器的實體機殼需求也隨著設施容量的增加而相應成長,從而推動了建設熱潮,而這又需要標準化、可快速部署的框架單位。例如,2024年上半年,北美主要資料中心市場在建工程的裝置容量達到了約3.9吉瓦的歷史新高,年增69%。受雲端運算和人工智慧的驅動,微軟在2024會計年度第一季的資本支出也飆升至200億美元,直接轉化為伺服器機櫃的大量訂單。同時,支援人工智慧和高效能運算(HPC)工作負載的高密度機架需求也在激增,這顯著改變了產品規格並提高了單價。使用更重、發熱量更高的GPU的AI應用需要加固的結構和整合式液冷歧管,這就要求機架具備極高的承載能力和先進的溫度控管。目前,營運商預計每個機架的功率密度將達到50kW至100kW。這種轉變正推動市場朝向專業化、高利潤的機架解決方案發展,這些解決方案旨在滿足下一代運算嚴苛的散熱和實體要求。
有效管理日益成長的散熱能力是全球資料中心機櫃市場面臨的主要瓶頸。隨著機架功率密度不斷提高以適應繁重的運算工作負載,現有的傳統基礎設施在散熱方面往往達到物理極限。這種散熱限制了設施營運商大規模部署高密度機架的能力,迫使他們人為地限制每個機櫃中安裝的IT設備數量。因此,設施無法維持機櫃內設備的安全動作溫度這一物理限制阻礙了對先進機架架構的需求,並減緩了市場規模的成長。這種基礎設施缺口迫使企業暫停或推遲採購,同時努力應對這些挑戰。到2025年,34%的資料中心營運商將表示,他們目前的冷卻解決方案無法滿足其設施需求,這凸顯了一個普遍存在的營運困境:部署現代高密度機架依賴複雜且耗時的設施維修。冷卻和電力系統升級所需的前置作業時間阻礙了新框架單位的即時安裝,這直接阻礙了市場的發展勢頭。
市場的一個關鍵趨勢是,隨著下一代硬體的需求超出標準機櫃的尺寸,機架式機櫃正加速朝向更高、更深、高密度的方向發展。這種結構性變化主要受新興機架式運算平台物理面積的驅動,這些平台將電源架和歧管直接整合到機架中。製造商正在設計更深的機櫃,以容納傳統機櫃無法容納的垂直電源系統。產業藍圖預測,到2026年,機架密度將超過300kW,將迫使人們拋棄傳統的外形規格,並實現機架內部局部配電的整合。同時,用於邊緣運算的堅固緊湊型機架的開發正在將市場擴展到非常規環境。隨著資料處理擴大轉向工業和通訊領域,營運商需要能夠承受振動和灰塵等惡劣環境的機櫃。這些專用設備在確保設備安全的同時,也能減少面積,以便在空間受限的場所安裝。預計到2029年,60%的邊緣運算部署將涉及人工智慧(AI),這將推動對分散式環境中彈性基礎設施的需求。這種趨勢優先考慮外形尺寸的柔軟性和物理耐用性,而不是核心設施中常見的大規模擴充性。
The Global Data Center Rack Market is projected to expand significantly, from USD 4.99 Billion in 2025 to USD 8.47 Billion by 2031, demonstrating a robust 9.22% CAGR. A data center rack serves as a standardized structural frame or enclosure specifically designed to securely house, organize, and protect IT equipment such as servers, storage modules, and networking switches within a data center. The primary impetus for this market growth stems from the exponential increase in global data generation, which in turn drives a critical need for scalable storage infrastructure. Additionally, the rapid proliferation of hyperscale facilities and the growing adoption of high-performance computing to support artificial intelligence workloads are fundamentally propelling the demand for resilient and adaptable rack solutions.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 4.99 Billion |
| Market Size 2031 | USD 8.47 Billion |
| CAGR 2026-2031 | 9.22% |
| Fastest Growing Segment | Open Frame Rack |
| Largest Market | North America |
Market Driver
The rapid expansion of hyperscale and cloud computing infrastructures stands as a key driver for volume growth in the data center rack market. As major technology corporations extensively develop larger facilities for cloud operations, the demand for physical enclosures to house servers scales in direct proportion to facility capacity, fueling a construction boom that requires standardized, quickly deployable rack units. For instance, under-construction activity in primary North American data center markets reached a record high of nearly 3.9 gigawatts in H1 2024, a 69% increase year-over-year, and Microsoft's capital expenditures driven by cloud and AI surged to $20 billion in the first fiscal quarter of 2024, directly translating into substantial orders for server cabinets. Simultaneously, the surging demand for high-density racks to support AI and high-performance computing (HPC) workloads is significantly reshaping product specifications and increasing unit value. AI applications, utilizing heavier and hotter GPUs, necessitate reinforced structures and integrated liquid cooling manifolds, requiring racks engineered for extreme weight bearing and advanced thermal management, with operators now planning for power densities ranging from 50 kW to 100 kW per rack. This shift moves the market towards specialized, higher-margin rack solutions designed to handle the intense thermal and physical demands of next-generation computing.
Market Challenge
The inability to effectively manage escalating thermal output presents a formidable bottleneck for the Global Data Center Rack Market. As rack power densities rise to accommodate heavy computational workloads, existing legacy infrastructure often reaches its physical limit in dissipating the resulting heat. This thermal ceiling restricts the ability of facility operators to deploy high-density racks at scale, compelling them to artificially limit the amount of IT equipment installed per enclosure. Consequently, the market experiences a deceleration in volume growth, as the demand for advanced rack architecture is physically constrained by the facility's incapacity to maintain safe operating temperatures for the housed equipment. This infrastructure gap forces organizations to pause or delay procurement while attempting to address these deficiencies. In 2025, 34% of data center operators reported that their current cooling solutions were inadequate to meet their facility's needs, underscoring a widespread operational stalling point where the deployment of modern, high-density racks hinges on complex and time-consuming facility retrofits. These delays directly impede market momentum, as the lead time required to upgrade cooling and power systems prevents the immediate installation of new rack units.
Market Trends
A significant market trend is the accelerating transition toward taller and deeper high-density rack enclosures, as next-generation hardware requirements outgrow standard cabinet dimensions. This structural shift is primarily driven by the physical footprint of emerging rack-scale computing platforms that integrate power shelves and manifolds directly into the frame. Manufacturers are designing enclosures with extended depth to accommodate vertical power delivery systems that traditional cabinets cannot house, with industry roadmaps projecting rack densities to exceed 300 kW by 2026, forcing a departure from legacy form factors and allowing for the consolidation of localized power distribution within the rack boundary. Concurrently, the development of ruggedized and compact racks for edge computing is expanding the market into non-traditional environments. As data processing increasingly shifts towards industrial and telecommunication sources, operators require enclosures capable of withstanding harsh conditions such as vibration and dust. These specialized units feature smaller footprints to fit space-constrained locations while ensuring equipment protection; by 2029, 60% of edge computing deployments are expected to involve artificial intelligence, driving the demand for resilient infrastructure in decentralized settings, a trend that prioritizes form-factor flexibility and physical durability over the massive scale typically found in core facilities.
Report Scope
In this report, the Global Data Center Rack Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Data Center Rack Market.
Global Data Center Rack Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: