Data Center Liquid Cooling Valves Market Analysis | 2026-2032

Data Center Liquid Cooling Valves Market Analysis | 2026-2032

Data Center Liquid Cooling Valves Market Analysis | 2026-2032
Report code - SR3778
Published by: Stratview Research Delivery: 2-3 Weeks
Data Center Liquid Cooling Valves Market Size, Share, Trend, Forecast, Competitive Landscape & Growth Opportunities: 2026-2032
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Market Size & Opportunities

Global Demand Analysis & Sales Opportunities in Data Center Liquid Cooling Valves Market 

  • The annual demand for data center liquid cooling valves was USD 1.3 billion in 2025 and is expected to reach USD 1.7 billion in 2026, up 31.2% than the value in 2025. 
  • During the forecast period (2026-2032), the market is expected to grow at a CAGR of 30.3%. The annual demand will reach USD 8.3 billion in 2032, which is almost 6.4 times the demand in 2025.
  • North America is expected to maintain a dominant market share, generating the largest demand across regions during the forecast period.
  • By valve type, butterfly valves are expected to account for the largest market share during the forecast period.
  • By cooling type, direct-to-chip liquid cooling is expected to account for the largest market share during 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 the Senior Analyst at Stratview Research, the global data center liquid cooling valves market will generate a cumulative sales opportunity worth USD 30.1 billion during 2026-2032. During the market forecast years, butterfly valves, direct-to-chip liquid 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 liquid cooling valves market in terms of growth and market forecast. 

Market Statistics 

Value (in USD Billion) 

Market Growth (%) 

Market Size in 2025 

USD 1.3 billion 

- 

Market Size in 2026 

USD 1.7 billion 

YoY Growth in 2025: 31.2% 

Market Size in 2032 

USD 8.3 billion 

CAGR 2026-2032: 30.3% 

Cumulative Sales Opportunity during 2026-2032 

USD 30.1billion 

-            

Top 10 Countries’ Market Share in 2025 

USD 1.04 billion + 

> 80% 

Top 10 Company’s Market Share in 2025

USD 0.65 billion to USD 0.9 billion 

 50% - 70% 

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Market Dynamics

The data center liquid cooling valves market is being shaped by the rapid deployment of AI and high-performance computing infrastructure, rising rack power densities, and the increasing adoption of liquid-based thermal management systems. The market analysis highlights how the need for precise coolant flow regulation, pressure control, and reliable thermal management is driving demand for advanced valve solutions across new and retrofit data center facilities.

Market Drivers

Accelerating AI and HPC Infrastructure Deployment

The rapid expansion of AI and high-performance computing (HPC) infrastructure is increasing rack power densities and thermal loads, accelerating the shift toward liquid-based cooling systems. This transition is supporting market growth for liquid cooling valves, as data centers require precise flow regulation, isolation, and pressure control across increasingly complex coolant distribution networks.

  • The International Energy Agency’s 2026 analysis reports that the power density of AI servers increased 11-fold between 2020 and 2025 and is expected to increase another fourfold by 2027. The sharp rise in thermal loads is pushing data centers toward liquid cooling, increasing the need for valves to regulate coolant flow, isolate circuits, and maintain stable thermal conditions across high-density racks.

  • Vertiv launched its MegaMod HDX liquid-cooling infrastructure in January 2026 for AI and HPC deployments, supporting rack densities from 50 kW to more than 100 kW per rack and system capacities of up to 10 MW. The deployment of such high-density liquid-cooled infrastructure expands the number and complexity of coolant circuits, supporting market demand for reliable flow-control and isolation valves.

Increasing Server Deployment and Rack Power Density

The continued deployment of servers with higher computing capabilities is increasing power consumption and heat generation within individual racks. This rising market demand for data center liquid cooling valves is driven by the need to precisely control coolant flow, pressure, and temperature as rack densities increase and cooling systems become more complex.

  • NVIDIA’s DGX GB rack-scale system has a power consumption of approximately 120 kW per rack, illustrating how accelerated computing is concentrating substantially higher thermal loads into individual server racks. As rack densities rise, liquid-cooling systems require more precise flow regulation and isolation across coolant circuits, supporting market demand for specialized valves in data centers.

  • Vertiv reported in July 2026 that AI and HPC rack densities have reached more than 100 kW per rack, compared with around 3–10 kW per rack in earlier air-cooled environments, with the industry already discussing future 1 MW-per-rack deployments. This sharp increase in heat load is accelerating the use of liquid cooling and increasing the need for valves capable of managing dynamic coolant flow and pressure.

Need for Continuous Modulating Duty and Precision

High-density liquid-cooling systems require valves to continuously adjust coolant flow in response to changing thermal loads rather than simply operating in an open-or-closed state. This requirement supports market growth for data center liquid cooling valves as operators seek precise flow control, stable temperatures, and efficient coolant distribution across AI and HPC infrastructure.

  • Schneider Electric’s 2026 liquid-cooling portfolio incorporates dynamic flow control and real-time modulation to stabilize temperatures and improve cooling efficiency in AI data centers. The integration of continuous control into CDUs demonstrates the need for responsive valve technologies that can adjust coolant flow as thermal loads change, supporting the market demand for precision liquid cooling valves

“As per the analyst, the global data center liquid cooling valves market is evolving rapidly. While conducting the market analysis and speaking with leading industry players, it is evident that the next decade will be shaped by trends such as the rising adoption of AI and high-density computing, increasing deployment of direct-to-chip liquid cooling, and the integration of intelligent flow-control technologies.”

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Market Challenges

Complexity of Valve Selection and Coolant Compatibility

The growing diversity of liquid-cooling architectures means valves must accommodate different coolant types, flow rates, pressure conditions, and temperature ranges while maintaining leak-free operation. This complexity can increase component specification and validation requirements, creating a market challenge for valve suppliers serving data centers with varied cooling configurations.

High Reliability Requirements in Critical Cooling Systems

Liquid-cooling valves operate within thermal-management systems that directly support high-value computing equipment, leaving little tolerance for leakage, flow interruption, or control failure. The need for continuous operation and stringent reliability can increase testing, monitoring, and maintenance requirements, potentially raising the overall cost of deploying advanced valve solutions.

Market Opportunities

Retrofitting Legacy Data Centers for Liquid Cooling

The growing need to accommodate higher-density computing within existing data-center facilities is encouraging operators to upgrade legacy air-cooled infrastructure with liquid-cooling systems. This creates an opportunity for data center liquid cooling valves, as retrofits require additional coolant distribution, isolation, balancing, and flow-control components across existing racks and cooling loops.

  • Google introduced its Brazos system in June 2026 to bring liquid cooling to existing air-cooled data centers, supporting one-rack-at-a-time installation for next-generation AI and HPC systems with chips exceeding 1,000 W TDP. The ability to deploy liquid cooling incrementally expands the retrofit addressable market and creates opportunities for valves required for rack-level coolant circulation and isolation.

Smart Actuation and Predictive Cooling Diagnostics

The integration of connected actuators, sensors, and predictive diagnostics is enabling data centers to monitor and adjust liquid-cooling systems in real time. This market trend is creating opportunities for advanced liquid cooling valves equipped with intelligent actuation and diagnostic capabilities, allowing operators to detect abnormal flow or pressure conditions, respond to leaks, and optimize valve operation before failures disrupt cooling performance.

  • NIST’s September 2025 IoT infrastructure study describes IoT devices as combining sensors and actuators to monitor and control physical environments and estimates that federal investment in IoT infrastructure could generate a 10–20× return on investment. For data-center cooling, the same architecture can enable valves to receive operating data, adjust coolant flow, and communicate system conditions, creating opportunities for connected valve solutions.

Segments’ Analysis

By Valve Type

“Butterfly valves are expected to remain the dominant valve type in the data center liquid cooling valves market over the forecast period.”

  • The market is segmented into ball valves, butterfly valves, and globe valves.

  • Butterfly valves are expected to account for the largest share, supported by their suitability for regulating and isolating coolant flow across large-diameter piping and distribution networks. Their compact construction, relatively low pressure drop, and ability to provide reliable flow control make them well suited to liquid-cooling infrastructure deployed across high-density data centers, supporting the market forecast for valve adoption.

By Cooling Type

“Direct-to-chip liquid cooling is expected to remain the dominant cooling type in the data center liquid cooling valves market over the forecast period.”

  • The market is segmented into air cooling, direct-to-chip liquid cooling, and immersion cooling.

  • Direct-to-chip liquid cooling is expected to account for the largest share, as it transfers heat directly from high-power processors to a circulating coolant and can support substantially higher rack densities than conventional air cooling. Its growing deployment in AI and HPC environments is increasing the requirement for coolant distribution, isolation, and flow-control components, strengthening the market demand for liquid cooling valves.

By Data Center Type

“Hyperscale data centers are expected to remain the dominant data center type in the data center liquid cooling valves market over the forecast period.”

  • The market is segmented into hyperscale, colocation, enterprise, and edge data centers.

  • Hyperscale data centers are expected to account for the largest share, supported by their large-scale deployment of AI, cloud, and accelerated computing infrastructure. The high concentration of power-dense servers across these facilities requires extensive liquid-cooling networks with multiple points for coolant regulation and isolation, creating sustained demand for liquid cooling valves.

By Region

“North America is expected to remain the dominant regional market for data center liquid cooling valves over the forecast period.”

  • The market is segmented into North America, Europe, Asia Pacific, and Rest of the World.

  • North America is expected to account for the largest share, supported by its concentration of hyperscale operators, AI infrastructure investments, and early deployment of advanced liquid-cooling technologies. The region's expansion of high-density data centers and upgrades to existing facilities is increasing the need for specialized coolant flow-control infrastructure, supporting the market forecas

“Analysis suggests that the Top 10 countries generate >80% of the annual sales for the data center liquid cooling. 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 the presence of less than 100 global and regional players. Some of the major players also manufacture data center liquid cooling valves and its other infrastructure equipment. Leading players hold excellent market positions with a vast product portfolio, a wide distribution network, and years of track record.  

The following are the key players in the data center liquid cooling valves market. 

  • Schneider Electric

  • Siemens

  • Danfoss

  • Georg Fischer Ltd.

  • Valex

  • Bray International

  • Emerson Electric

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 liquid cooling valves market reflect evolving market trends and impact the market. Below given are a few recent developments in the market – 

  • In September 2026, Vertiv announced an agreement to acquire King Environmental Services Ltd. (KES), a Europe-based provider of fluid management, commissioning, and load-testing services for high-density, liquid-cooled data centers. The acquisition is expected to expand Vertiv’s fluid-management capabilities across Europe, the Middle East, and Africa.

  • In September 2026, Blackstone announced an agreement to acquire Flow Control Holdings (FCH) from Audax Private Equity. FCH provides engineered flow-control components used in coolant distribution units (CDUs), in-row manifolds, and secondary fluid networks serving data center liquid-cooling applications; Audax will retain a minority stake.

  • In August 2026, CPC introduced the Everis DC Series of full-flow connectors for AI and high-performance computing liquid-cooling applications. The connectors are designed to reduce pressure drop compared with valved connectors and support higher thermal loads in next-generation data center cooling systems.

  • In July 2026, Georg Fischer expanded its direct-to-chip liquid-cooling portfolio with an energy-balancing valve for precise temperature control and its LiquidCore system integrating polymer piping, valves, and instrumentation. GF also partnered with Parker Hannifin to offer a pre-assembled quick-connect solution combining hose connection technology with polymer valve technology for direct liquid cooling.

  • In June 2026, Vertiv completed the acquisition of ThermoKey S.p.A., a provider of heat-rejection and heat-exchange technologies. The acquisition expands Vertiv’s thermal-management portfolio and manufacturing capabilities for AI factories and high-density data centers, strengthening its broader liquid-cooling infrastructure offering.

  • In June 2026, Nidec developed an in-rack coolant distribution unit (CDU) with cooling capacity of up to 300 kW for high-density AI data centers. The system includes monitoring of temperature, pressure, flow rate, and liquid levels and is designed for both liquid-cooling retrofits and new AI data centers.

  • In April 2026, Vertiv acquired Strategic Thermal Labs (STL), a specialist in advanced liquid-cooling technologies. The acquisition added expertise in cold-plate design, server-side liquid cooling, and high-density thermal validation, strengthening Vertiv’s ability to optimize flow, balance, controls, and system-level performance.

  • In March 2026, Ecolab announced an agreement to acquire CoolIT Systems for approximately USD 4.75 billion. CoolIT develops liquid-cooling systems for hyperscale and colocation data centers, and the acquisition is intended to combine its cooling hardware and thermal-engineering capabilities with Ecolab’s water, chemistry, and digital-monitoring technologies.

  • In March 2026, Eaton completed the acquisition of Boyd Thermal from Goldman Sachs Asset Management. Boyd Thermal provides liquid-cooling systems and thermal components for data centers, expanding Eaton’s capabilities across integrated power and cooling infrastructure for high-density computing.

  • In February 2026, Legrand announced a strategic investment in Accelsius, a developer of two-phase direct-to-chip liquid-cooling technology. The investment was announced alongside Legrand’s acquisition of Kratos Industries and was aimed at strengthening its power and thermal-management portfolio for AI-ready data center

  • In January 2026, Trane launched the DCDA Series, a coolant distribution unit designed specifically for liquid-cooled data centers in the Asia-Pacific region. The CDU was developed to address the higher heat loads associated with high-density computing and provides an integrated liquid-cooling solution for regional data center deployments.

Report Scope

Market Definition 

The data center liquid cooling valves market refers to the market for valves used to regulate, control, isolate, and direct the flow of liquid coolant within data center thermal management systems. These valves are deployed across cooling distribution units (CDUs), coolant distribution loops, manifolds, piping networks, and server-level cooling systems to maintain controlled coolant flow, pressure, and temperature. The market covers valve solutions used in direct-to-chip, immersion, and other liquid-cooling configurations serving high-density computing environments, including AI and high-performance computing (HPC) 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. 

Market Study Period 

2019-2032 

Base Year 

2025 

Forecast Period 

2026-2032 

Trend Period 

2019-2025

Number of Tables & Figures 

>100 

Number of Segments Analysed 

4 (Valve Type, Cooling Type, Data Center Type, and Region) 

Number of Regions Analysed 

4 (North America, Europe, Asia-Pacific, Rest of the World) 

Countries Analysed 

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) 

Free Customization Offered 

10% 

After Sales Support 

Unlimited 

Report Presentation 

Complimentary 

Market Dataset 

Complimentary 

Further Deep Dive & Consulting Services 

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 liquid cooling valve market is segmented into the following categories: 

Data Center Liquid Cooling Valves Market, By Valve Type 

  • Ball Valves

  • Butterfly Valves

  • Globe Valves

Data Center Liquid Cooling Valves Market, By Cooling Type 

  • Air Cooling

  • Direct-to-Chip Liquid Cooling

  • Immersion Cooling

Data Center Liquid Cooling Valves Market, By Data-Center Type 

  • Hyperscale Data Centers

  • Colocation Data Centers

  • Enterprise

  • Edge Data Centers

Data Center Liquid Cooling Valves 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 liquid cooling valves 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.

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With this detailed report, Stratview Research offers one of the following free customization options to our respected clients: 

Company Profiling 

  • Detailed profiling of additional market players (up to three players) 

  • SWOT analysis of key players (up to three players) 

Competitive Benchmarking 

  • Benchmarking of key players on the following parameters: Service portfolio, geographical reach, regional presence, and strategic alliances 

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The data center liquid cooling valves market size was USD 1.3 billion in 2025. The market is expected to grow from USD 1.7 billion in 2026 to USD 8.3 billion in 2032, witnessing impressive market growth (CAGR) of 30.3% during the forecast period (2026-2032).

The forecasted value for the market is US$ 8.3 billion in 2032.

The top players in the data center liquid cooling valves market include Schneider Electric, Siemens, Danfoss, Georg Fischer Ltd., Valex, Bray International, and Emerson Electric.

North America is expected to be the dominant region in the data center liquid cooling valves market over the forecast period, supported by the concentration of hyperscale data centers, rapid AI infrastructure deployment, increasing rack power densities, and growing adoption of liquid-cooling technologies.