Market Size & Opportunities
Global Demand Analysis & Sales Opportunities in Data Center Cooling CDU Pumps Market
- The annual demand for data center cooling CDU pumps was USD 0.9 billion in 2025 and is expected to reach USD 1.2 billion in 2026, up 33.8% than the value in 2025.
- During the forecast period (2026-2032), the market is expected to grow at a CAGR of 32.7%. The annual demand will reach USD 6.6 billion in 2032, which is almost 6 times the demand in 2026.
- North America is expected to maintain a dominant market share, generating the largest demand across regions, while Asia Pacific is expected to be the fastest-growing regional market during the forecast period.
- By pump type, centrifugal pumps are expected to account for the largest market share during the forecast period.
- By cooling type, direct-to-chip cooling is expected to maintain a dominant position in the market throughout the forecast period.
- By data center type, hyperscale data centers are expected to account for the largest market share during the forecast period.
“According to our Senior Analyst at Stratview Research, the global data center cooling CDU pumps market will generate a cumulative sales opportunity worth USD 23.1 billion during 2026-2032. During the forecast years, centrifugal pumps, direct-to-chip cooling, hyperscale data centers, and North America are some of the high-opportunity segments to bank upon.”
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Market Statistics
Have a look at the sales opportunities presented by the data center cooling CDU pumps market in terms of growth and market forecast.
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Market Statistics
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Value (in USD Billion)
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Market Growth (%)
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Market Size in 2025
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USD 0.9 billion
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-
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Market Size in 2026
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USD 1.2 billion
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YoY Growth in 2026: 33.8%
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Market Size in 2032
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USD 6.6 billion
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CAGR 2026-2032: 32.7%
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Cumulative Sales Opportunity during 2026-2032
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USD 23.1 billion
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-
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Top 10 Countries’ Market Share in 2025
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USD 0.7 billion +
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> 80%
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Top 10 Company’s Market Share in 2025
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USD 0.4 billion to USD 0.6 billion
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50% - 70%
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Market Dynamics
The data center cooling CDU pumps market is evolving rapidly as rising rack power densities and the growing deployment of AI and high-performance computing increase thermal-management requirements. The market trend is shifting toward liquid cooling architectures that require efficient and reliable coolant circulation. A detailed market analysis highlights the growing focus on pump efficiency, intelligent controls, and scalable cooling solutions to support the changing requirements of modern data centers.
Market Drivers:
Rising Data Center Rack Power Density
The rapid deployment of AI servers, GPUs, and high-performance computing systems is pushing rack power densities to levels that generate substantially higher heat loads than conventional IT infrastructure. As more computing power is concentrated within individual racks, traditional air-cooling systems face greater thermal limitations, increasing the adoption of liquid-cooling architectures. This shift is supporting market growth for CDU pumps, which provide the continuous coolant circulation required to transfer heat efficiently from high-density IT equipment to the facility cooling system.
- Uptime Institute’s 2026 Global Data Center Survey found that average modal rack densities continued to increase, with a growing number of operators reporting peak rack densities of 30 kW or higher. The rise in high-density computing is increasing thermal loads at the rack level, strengthening the need for liquid-cooling infrastructure and reliable coolant circulation through CDUs.
- Schneider Electric reported in July 2026 that average rack density increased from approximately 16 kW in 2025 to 27 kW in 2026, while the latest AI systems can reach up to 246 kW per rack. This sharp increase in heat generation within a smaller rack footprint is accelerating the shift toward liquid cooling, creating greater requirements for CDU pumps capable of maintaining adequate coolant flow.
Accelerating Adoption of Liquid Cooling Technologies in Data Centers
The growing deployment of liquid cooling technologies is increasing the market demand for data center cooling CDU pumps, as these systems rely on continuous coolant circulation to remove heat from high-density computing equipment. The shift from conventional air cooling toward direct-to-chip and other liquid-cooling architectures is expanding the need for efficient and reliable pumping solutions within CDUs.
- AFCOM’s 2026 State of the Data Center Industry report found that 36% of respondents had liquid cooling deployed, while another 28% planned to adopt it within the next 12–24 months. The expanding installed base and near-term adoption pipeline are supporting greater deployment of liquid-cooling infrastructure, including CDUs and their integrated pumps.
- Uptime Institute’s 2026 Cooling Systems Survey, covering 1,034 respondents, tracks continued adoption of direct liquid cooling across the data center industry. Its findings show that 22% of respondents were already using direct liquid cooling, while 69% identified higher rack densities as a primary driver. Uptime also reported that recent deployments are increasingly using CDUs in the hundreds-of-kilowatts to megawatt range, often in redundant configurations serving multiple IT racks.
“As per the analyst, the global data center cooling CDU pumps market is evolving rapidly. While conducting the market analysis and speaking with leading industry participants, the next decade will be shaped by trends such as rising rack power density, accelerating adoption of liquid cooling, and the development of energy-efficient and intelligent CDU pumping systems.”
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Market Challenges
Balancing Pump Performance with Long-Term Reliability
CDU pumps must deliver consistent coolant flow and pressure under demanding operating conditions while maintaining reliable performance over extended service periods. As data centers adopt higher-capacity liquid cooling systems, pumps face continuous operation, varying thermal loads, and tighter performance requirements, making it challenging to balance high pumping performance with long-term reliability without increasing maintenance needs or system costs.
Integration Challenges with Legacy Data Center Infrastructure
Integrating CDU-based liquid cooling into existing data centers can be challenging because legacy facilities are often designed around air-cooling architectures, with limited provision for liquid distribution, piping, and pumping systems. Retrofitting these facilities may require infrastructure modifications, additional space, and compatibility adjustments, increasing the complexity and cost of deploying CDU pumps.
Market Opportunities
Integration of CDU Pumps with Digital Monitoring and Predictive Maintenance Systems
The shift toward higher-density liquid-cooled data centers is shaping a market trend toward more efficient and intelligent CDU pumping solutions. Pumps with variable-speed operation, advanced controls, and real-time monitoring can adjust coolant flow according to changing thermal loads. This can reduce unnecessary energy consumption and support more efficient and reliable CDU pump operation.
- Vertiv’s CoolChip CDU 600 features variable-speed pump controls and redundant pumps, with the unit supporting up to 600 kW of liquid-to-liquid cooling capacity. The CDU has a nominal power consumption of 4.5 kW with a single pump and 9 kW with dual pumps, demonstrating how pump-control and redundancy features are being incorporated into high-capacity liquid-cooling systems.
Development of Energy-Efficient and Intelligent CDU Pumps
The shift toward higher-density liquid-cooled data centers is shaping the market forecast for data center cooling CDU pumps toward more efficient and intelligent pumping solutions. Variable-speed pumps, advanced controls, and real-time monitoring can adjust coolant flow based on changing thermal loads. These technologies can reduce unnecessary energy consumption while improving pump reliability and operating efficiency.
- The U.S. Department of Energy’s COOLERCHIPS 1.5 program is supporting the development and validation of advanced cooling systems for AI data centers. The program is targeting cooling technologies capable of managing 1 MW of heat load per rack while measuring energy use, cooling capacity, and overall efficiency. This is encouraging the development of more energy-efficient cooling infrastructure for high-density liquid-cooled systems.
Segments’ Analysis
By Pump Type
“Centrifugal pumps are expected to remain the dominant pump type in the data center cooling CDU pumps market over the forecast period.”
- The market is segmented into centrifugal pumps, magnetic pumps, and canned motor pumps.
- Centrifugal pumps are expected to account for the largest share, supported by their ability to deliver high flow rates and maintain reliable coolant circulation across liquid cooling systems. Their suitability for handling varying cooling loads makes them well suited to high-density data centers, where increasing rack power and thermal loads require consistent coolant flow. The expansion of AI and high-performance computing infrastructure is further increasing demand for reliable pumping solutions within CDU systems.
By Cooling Type
“Direct-to-chip cooling is expected to remain the dominant cooling type in the data center cooling CDU pumps market over the
forecast period.”
- The market is segmented into direct-to-chip cooling, immersion cooling, and hybrid cooling.
- Direct-to-chip cooling is expected to account for the largest share, supported by its ability to remove heat directly from high-power components such as CPUs, GPUs, and AI accelerators. The rapid increase in computing power and rack densities is creating greater thermal-management requirements, making targeted liquid cooling increasingly important. In addition, direct-to-chip architectures can be integrated into high-density computing environments while maintaining controlled coolant flow through CDU systems.
By Data Center Type
“Hyperscale data centers are expected to remain the dominant data center type in the data center cooling CDU pumps market over the forecast period.”
- The market is segmented into hyperscale, colocation, and enterprise data centers.
- Hyperscale data centers are expected to account for the largest share, supported by the rapid expansion of cloud computing, AI, machine learning, and high-performance computing infrastructure. These facilities operate large-scale computing environments with increasingly dense server and accelerator deployments, creating substantial cooling requirements. The growing adoption of liquid cooling in hyperscale facilities is consequently increasing demand for CDU pumps capable of maintaining continuous and reliable coolant circulation.
By Region
“North America is expected to remain the dominant regional market for data center cooling CDU pumps over the forecast period.”
- The market is segmented into North America, Europe, Asia Pacific, Middle East & Africa, and South America.
- North America is expected to account for the largest share in the data center cooling CDU pumps market forecast, supported by its concentration of hyperscale data centers, cloud service providers, and AI infrastructure developers. The region is witnessing substantial investment in high-density computing facilities, increasing the need for liquid cooling and CDU-based thermal management systems. The presence of major technology companies and continued expansion of AI and cloud infrastructure are further supporting demand for advanced cooling pumps across the region.
“Analysis suggests that the Top 10 countries generate >80% of the annual sales for the data center cooling CDU pump. A few countries are the demand powerhouses and will drive the regional markets in big ways offering attractive business opportunities.”
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Competitive Landscape
The market is fragmented, with fewer than 100 global and regional players operating across the industry. Several major companies also manufacture data center cooling CDU pumps as part of their broader thermal management portfolios. Leading players maintain strong market positions through extensive product portfolios, well-established distribution networks, and a long-standing presence in the industry.
The following are the key players in the data center cooling CDU pumps market.
- Grundfos Holding A/S
- Xylem
- Johnson Electric Holdings Ltd.
- Gorman-Rupp Industries
- Panasonic Holdings Corporation
- Tark Thermal Solutions
- EBARA corporation
- WILO SE
Note: The above list is not an exhaustive list of the key players in the market. If your company is active in this market and would like to be considered for inclusion in future editions of this study, please contact us at [email protected].
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Recent Developments/Mergers & Acquisitions:
Recent mergers & acquisitions and other developments in the data center cooling CDU pumps market reflect evolving market trends, and impact the market. Below given are a few recent developments in the market –
- In September 2026, LITEON Technology agreed to acquire approximately 25% of DCX Liquid Cooling Systems for a total transaction value of approximately USD 176 million, strengthening its position in AI infrastructure through DCX’s liquid cooling portfolio, which includes coolant distribution units (CDUs), facility coolant distribution units (FDUs), cold plates, and immersion cooling systems.
- In August 2026, SLB agreed to acquire Kelvion for approximately USD 4.1 billion, including debt, expanding its data center solutions portfolio with Kelvion’s cooling equipment and heat-transfer technologies. The transaction comprises approximately USD 3.4 billion in cash and USD 700 million of assumed debt and is expected to close in the first half of 2027.
- In July 2026, Ecolab completed its acquisition of CoolIT Systems for approximately USD 4.75 billion, adding CoolIT’s direct liquid cooling technologies, including CDUs, cold plates, liquid loops, and rack manifolds, to Ecolab’s portfolio for high-density AI data centers.
- In March 2026, Eaton completed its acquisition of Boyd Thermal, adding liquid cooling technologies and thermal management systems for data centers to its portfolio and strengthening its integrated cooling capabilities for high-density computing environments.
- In March 2026, Ecolab agreed to acquire CoolIT Systems for approximately USD 4.75 billion, adding CoolIT’s portfolio of coolant distribution units, cold plates, direct-to-chip cooling technologies, liquid loops, and rack manifolds for data centers.
- In March 2026, Trane Technologies completed its acquisition of LiquidStack, adding direct-to-chip, immersion, and high-density liquid cooling technologies to its data center thermal management portfolio. LiquidStack’s portfolio includes universal direct-to-chip CDUs and other liquid cooling systems for hyperscale, colocation, enterprise, and edge data centers.
- In February 2026, Johnson Controls agreed to acquire Alloy Enterprises, adding advanced direct liquid cooling components for high-performance data centers to its thermal management portfolio. Johnson Controls stated that its existing portfolio also includes Silent-Aire CDU systems with capacities ranging from 500 kW to more than 10 MW.
- In February 2026, Trane Technologies agreed to acquire LiquidStack, expanding its data center cooling portfolio with high-density liquid, direct-to-chip, and immersion cooling technologies. The acquisition was positioned to extend Trane’s capabilities across chillers, heat rejection, controls, liquid distribution, and on-chip cooling.
- In December 2025, Trane Technologies agreed to acquire Stellar Energy Digital, adding modular cooling plants, central utility plants, and coolant distribution units for liquid-cooled data centers to its thermal management portfolio. Financial terms were not disclosed.
- In November 2025, Daikin Applied acquired Chilldyne, adding negative-pressure liquid cooling technology and CDU systems for high-performance and AI data centers to its cooling portfolio. Chilldyne’s technology provides chip-level cooling through a liquid cooling distribution unit designed to reduce leak-related risks.
- In November 2025, Eaton agreed to acquire Boyd Thermal for USD 9.5 billion, adding liquid cooling technologies and thermal management systems for data centers to its portfolio. Boyd Thermal’s solutions were positioned to support rising cooling requirements associated with high-density and AI computing environments.
Report Scope
Market Definition
The data center cooling CDU pumps market refers to the market for pumps used within coolant distribution units (CDUs) to circulate and regulate liquid coolant between the data center cooling infrastructure and IT equipment. These pumps enable the continuous transfer of coolant through liquid cooling systems, supporting efficient heat removal from high-density servers, CPUs, GPUs, and other computing components. The market includes centrifugal, magnetic, and canned motor pumps used across direct-to-chip, immersion, and hybrid cooling systems in hyperscale, colocation, and enterprise data centers.
Report Structure
This report provides market intelligence most comprehensively. The report structure has been kept so that it offers maximum business value. It provides critical insights into market dynamics and will enable strategic decision-making for existing market players as well as those willing to enter the market.
The following are the key features of the report:
- Market structure: Overview, industry life cycle analysis, supply chain analysis.
- Market environment analysis: Growth drivers and constraints, Porter’s five forces analysis, SWOT analysis.
- Market trend and forecast analysis.
- Market segment trend and forecast.
- Competitive landscape and dynamics: Market share, Service portfolio, New Product Launches, etc.
- Attractive market segments and associated growth opportunities.
- Emerging trends.
- Strategic growth opportunities for the existing and new players.
- Key success factors.
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Market Study Period
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2019-2032
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Base Year
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2025
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Forecast Period
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2026-2032
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Trend Period
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2019-2025
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Number of Tables & Figures
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>100
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Number of Segments Analysed
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4 (Pump Type, Cooling Type, Data Center Type, and Region)
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Number of Regions Analysed
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4 (North America, Europe, Asia-Pacific, Rest of the World)
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Countries Analysed
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15 (The USA, Canada, Mexico, Germany, France, Italy, The UK, China, Japan, India, Brazil, Saudi Arabia, Rest of Europe, Rest of APAC, and Rest of the World)
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Free Customization Offered
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10%
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After Sales Support
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Unlimited
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Report Presentation
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Complimentary
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Market Dataset
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Complimentary
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Further Deep Dive & Consulting Services
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10% Discount
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Segmentation
The report provides detailed insights into the market dynamics to enable informed business decision-making and growth strategy formulation based on the opportunities present in the market.
The data center cooling CDU pumps market is segmented into the following categories:
Data Center Cooling CDU Pumps Market, By Pumps Type
- Centrifugal Pumps
- Magnetic Pumps
- Canned Motor Pumps
Data Center Cooling CDU Pumps Market, By Cooling Type
- Direct-to-Chip Cooling
- Immersion Cooling
- Hybrid Cooling
Data Center Cooling CDU Pumps Market, By Data Center Type
- Hyperscale Data Centers
- Colocation Data Centers
- Enterprise Data Centers
Data Center Cooling CDU Pumps Market, By Region
- North America (Country Analysis: The USA, Canada, and Mexico)
- Europe (Country Analysis: Germany, France, The UK, Russia, and the Rest of Europe)
- Asia-Pacific (Country Analysis: Japan, China, India, and Rest of Asia-Pacific)
- Rest of the World (Country Analysis: Brazil and Others)
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Research Methodology
This strategic assessment report from Stratview Research provides a comprehensive analysis that reflects today’s data center cooling CDU pumps market realities and future market possibilities for the forecast period.
The report segments and analyzes the market in the most detailed manner to provide a panoramic view of the market.
The vital data/information provided in the report can play a crucial role for market participants and investors in identifying the low-hanging fruits available in the market and formulating growth strategies to expedite their growth process.
This report offers high-quality insights and is the outcome of a detailed research methodology comprising extensive secondary research, rigorous primary interviews with industry stakeholders, and validation and triangulation with Stratview Research’s internal database and statistical tools.
More than 1,000 authenticated secondary sources, such as company annual reports, fact books, press releases, journals, investor presentations, white papers, patents, and articles, have been leveraged to gather the data.
We conducted more than 10 detailed primary interviews with market players across the value chain in all four regions and industry experts to obtain both qualitative and quantitative insights.
Customization Options
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Company Profiling
- Detailed profiling of additional market players (up to three players)
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Competitive Benchmarking
- Benchmarking of key players on the following parameters: Service portfolio, geographical reach, regional presence, and strategic alliances
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