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Data Center Thermal Management Market worth $32.38 billion by 2032 – Exclusive Report by MarketsandMarkets™

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DELRAY BEACH, Fla., Aug. 6, 2026 /PRNewswire/ — According to MarketsandMarkets™, the Data Center Thermal Management Market is projected to grow from USD 13.24 billion in 2026 to USD 32.38 billion by 2032, at a CAGR of 16.1% during the forecast period. Key drivers of the data center thermal management market are rising rack power densities, growing adoption of liquid cooling technologies in data centers, expansion of hyperscale and AI data centers, and growing demand for energy-efficient cooling solutions. 

Browse 250 market data Tables and 70 Figures spread through 300 Pages and in-depth TOC on “Data Center Thermal Management Market – Global Forecast to 2032”

Data Center Thermal Management Market Size & Forecast:

Market Size Available for Years: 2021-20322026 Market Size: USD 13.24 billion2032 Projected Market Size: USD 32.38 billionCAGR (2026-2032): 16.1%

Data Center Thermal Management Market Trends & Insights:

Data center thermal management encompasses a variety of technologies, equipment, and services designed to maintain a stable temperature and effectively expel heat from data center environments. There are numerous air-based cooling solutions, such as Computer Room Air Conditioners (CRACs), Computer Room Air Handlers (CRAHs), precision cooling systems, chillers, cooling towers, and various airflow management systems. Additionally, there are more advanced liquid cooling methods, including direct-to-chip cooling, immersion cooling, rear-door heat exchangers, coolant distribution units, and heat exchangers, along with pumps and manifolds that form a network for liquid distribution. Recently, as AI-enabled data centers have led to higher rack densities, there has been a notable shift from traditional air-cooling systems toward liquid cooling solutions. This change is primarily because liquid cooling provides superior heat transfer efficiency and better accommodates high-density computing setups, reducing the challenges associated with conventional air cooling.North America is the fastest-growing region, in terms of value, with a CAGR of 18.6% during the forecast period.Liquid cooling systems accounted for the largest share of 30.4% in terms of value in 2025.Room-based cooling is expected to lead the data center thermal management market during the forecast period.Hyperscale data centers are the largest segment of the data center thermal management market, accounting for 44.2% of the market by value in 2025.BFSI is the largest segment, in terms of value; it is estimated to have accounted for 20.4% in 2025.Vertiv Group Corp., Johnson Controls, and Schneider Electric were identified as key players in the data center thermal management market, given their strong market share and product footprint.CoolCentric and Iceotope Precision Liquid Cooling are among the startups and SMEs securing a strong foothold in specialized niche areas, underscoring their potential as emerging market leaders.

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By component, the liquid cooling systems are expected to dominate the global market throughout the forecast period.

The liquid cooling systems segment is projected to lead the global data center thermal management industry during the forecast period. This growth is largely driven by the rapid increase in workloads related to artificial intelligence (AI), high-performance computing (HPC), and cloud computing, which require significantly higher cooling capacities than traditional air-based solutions can provide. Modern processors and AI accelerators generate more heat than earlier technologies, making liquid cooling technologies such as direct-to-chip, immersion cooling, and liquid-to-liquid cooling systems essential for maintaining optimal operating temperatures, enhancing server performance, and ensuring long-term equipment reliability. These systems offer superior heat transfer capabilities, enabling efficient cooling for high-density racks and aligning with next-generation computing infrastructure.

Additionally, the widespread growth of hyperscale and colocation data centers is further strengthening the market for liquid cooling. Major cloud providers like Amazon Web Services (AWS), Microsoft, Google, Meta, and Oracle are increasingly developing AI-ready facilities where rack power densities often exceed 50–100 kW. In these scenarios, traditional air cooling proves to be ineffective. Liquid cooling solutions not only facilitate the proper operation of these high-density setups but also reduce cooling energy consumption, improve Power Usage Effectiveness (PUE), and allow operators to increase server utilization. Consequently, many operators are incorporating liquid cooling into new data center builds and upgrading existing sites to meet the rising demands of computational workloads.

By data center type, hyperscale data centers are expected to lead the global data center thermal management market during the forecast period.

The hyperscale data center segment is expected to lead the global data center thermal management market during the forecast period. This growth is primarily driven by the rapid expansion of hyperscale cloud infrastructure, alongside increasing demands from artificial intelligence workloads, high-performance computing, and extensive colocation facilities. In these large data centers, thousands of servers, storage systems, networking equipment, and various AI accelerators operate continuously, which leads to significant heat buildup. Therefore, there is a critical need for highly efficient thermal management systems to maintain consistent performance and reliability.

As enterprises and cloud providers continue to shift more workloads to larger facilities, spending on advanced cooling infrastructure is markedly increasing. To manage high-density computing environments, operators are implementing comprehensive thermal management solutions such as direct-to-chip liquid cooling, immersion cooling, computer room air conditioners (CRACs), computer room air handlers (CRAHs), coolant distribution units (CDUs), precision cooling systems, chillers, heat exchangers, cooling towers, smarter airflow management systems, and AI-powered thermal monitoring platforms. These technologies effectively remove heat, enhance cooling efficiency, reduce energy consumption, and support rack power densities exceeding 100 kW. Consequently, such solutions are becoming essential for next-generation AI-ready data centers.             

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By technology, liquid cooling is expected to lead the global data center thermal management market during the forecast period.

Liquid cooling segment is expected to dominate the global data center thermal management market during the forecast period, mainly because more people are using AI, high performance computing, cloud computing, and edge computing, all of which need a lot more cooling capability than air cooling can reasonably deliver. With the fast rollout of power-hungry processors, GPUs, and AI accelerators, rack power densities are climbing quite a bit, so liquid cooling becomes the go-to approach for getting rid of heat effectively while keeping server performance stable and reliability in check. Compared with air cooling, liquid solutions can move heat better, which helps computing density upward with less energy waste.

Also, the continual expansion of hyperscale and colocation data centers is quietly but steadily reinforcing this lead. Big cloud players like Amazon Web Services (AWS), Microsoft, Google, Meta, and Oracle are putting serious money into AI-ready campuses that use high density server racks, and in many cases those racks go beyond 50–100 kW per rack. To handle these advanced setups, liquid cooling methods such as direct-to-chip cooling, immersion cooling, and rear-door heat exchangers deliver the cooling performance needed, while also cutting the power spent on cooling tasks and helping improve Power Usage Effectiveness (PUE). So, liquid cooling is both in new greenfield builds and in retrofit projects, where older facilities are upgraded to keep pace with newer workloads.

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The North America region is poised to lead the global data center thermal management market throughout the forecast period.

North America is expected to lead the global data center thermal management market during the forecast period due to several factors. The region has a well-established digital infrastructure, a high concentration of hyperscale data centers, and rapidly increasing investments in artificial intelligence (AI), cloud computing, and high-performance computing (HPC). Major cloud service providers, along with tech giants such as Amazon Web Services (AWS), Microsoft, Google, Meta, Oracle, and CoreWeave, are based here. These companies are continually expanding their AI-ready data center capacity to meet the growing demand for computational workloads.

As GPU-heavy AI clusters and high-density server racks become more common, the need for effective cooling solutions has significantly increased. Consequently, there is a steady demand for advanced thermal management solutions. North America is also an early adopter of next-generation cooling technologies, such as direct-to-chip liquid cooling, immersion cooling, precision cooling systems, computer room air conditioners (CRACs), computer room air handlers (CRAHs), coolant distribution units (CDUs), heat exchangers, smarter airflow management systems, and AI-enabled thermal monitoring platforms.

These innovative approaches help operators manage high heat loads more effectively, enhance overall reliability, reduce energy consumption, and improve Power Usage Effectiveness (PUE). Overall, these thermal management solutions are essential for today’s AI and cloud data centers, especially where efficiency and control are crucial.

Key Players                   

Some of the leading players in data center thermal management companies include Vertiv Group Corp (US), Johnson Controls, Inc. (US), Schneider Electric (France), Carrier (US), and Daikin Industries Ltd. (Japan), among others.

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Creality Launches SPARKX i7 Nano: Bringing Compact Multi-Color Printing to $299

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HOUSTON, Aug. 15, 2026 /PRNewswire/ — Creality, a global leader in the 3D printing industry, today announced the availability of the SPARKX i7 Nano, the latest addition to its i7 series. This desktop 3D printer saves space while delivering premium print quality across up to four colors. With a minimalist design that fits easily on a desk, the i7 Nano makes multi-color 3D printing more compact, affordable, and accessible.

Following the January debut of the i7 Color Combo, the i7 Nano is also built for smarter, more effortless 3D printing. It integrates AI-powered capabilities that simplify both creation and printing, including CubeMe for automatically turning 2D portraits into multi-color 3D models. A built-in 720p AI camera monitors prints for common failures such as spaghetti and air printing, while vibration compensation and dynamic pressure adjustment help maintain consistent print quality.

Beyond these shared features, the i7 Nano comes with an integrated spool holder and optimized filament layout, taking up less desktop space and making it easier to fit into compact workspaces. The spool holder mounts directly onto the printer body with a convenient snap-on design, eliminating the need for an external CFS Lite. This compact solution keeps the printer’s footprint small while maintaining a clean appearance without compromising printing performance.

Paired with the new CFS nano Kit, a small unit mounted on top of the printer, the i7 Nano enables vibrant multi-color printing with automatic filament switching for up to four colors. The CFS nano features a dual-motor system, with one motor controlling filament channel switching and the other handling filament feeding and retraction. This ensures smooth and efficient color changes while keeping the overall setup streamlined. The CFS nano also allows quick installation without complex disassembly or modifications and is compatible with existing i7 units.

The i7 Nano features a build volume of 260 × 260 × 255 mm and a maximum printing speed of up to 500 mm/s. It supports a hardened steel nozzle with a maximum temperature of 300°C and multiple nozzle diameters, including 0.2, 0.4, 0.6, and 0.8 mm. It is also equipped with automatic bed leveling, RFID filament reading and automatic filament refill to deliver an easy-to-use and reliable printing experience for beginners.

The SPARKX i7 Nano with CFS nano Kit will be available starting from August 15 for $299 in the U.S. at the Creality US Store.

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SOURCE Creality

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CATL and Quinbrook Build on Supernode Partnership Following Stage 2 and Stage 3 Major Milestones

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BRISBANE, Australia, Aug. 15, 2026 /PRNewswire/ — Quinbrook’s Supernode battery energy storage project has completed Stage 2 commercial operation and reached financial close on A$469 million financing for Stage 3, marking a further milestone in the phased development of Australia’s largest operational BESS campus.

With planned capacity expected to exceed 3 GWh, Supernode is supported by CATL as its core energy storage system supplier for all three stages, providing advanced storage solutions and lifecycle support to enable reliable long-term operation.

Located at Brendale, north of Brisbane, Supernode is adjacent to the South Pine substation, a key hub in the Queensland power system and the regional reference node for marginal loss factors (MLFs). This location provides a favourable MLF position and approximately 4,000MW of available connection capacity for phased expansion. The project’s development coincides with Queensland’s accelerating energy transition and the infrastructure investment cycle.

Stage 3 has reached financial close on A$469 million in debt financing, bringing total project financing across Supernode Stages 1, 2 and 3 to approximately A$1.2 billion. Across its first three stages, Supernode is set to reach 780MW / 3,074MWh. Capacity across the three stages has been contracted under long-term offtake arrangements. 

The long-term value of such assets depends on the continued availability, operational efficiency, safety and reliability of their energy storage systems. CATL has provided EnerC Plus systems for Stages 1 and 2 and will supply TENER S systems for Stage 3, establishing a consistent technology platform across the campus.

In close collaboration with Quinbrook, CATL has supported project-specific design optimisation to enable high-density deployment within the constraints of available industrial land. EnerC Plus supports back-to-back installation, reducing the required site footprint by approximately 20% compared with EnerC. Its integrated liquid-cooling system maintains an internal container temperature differential within 5°C and is designed to deliver reliable operation over a 20-year lifecycle.

CATL’s contribution extends beyond equipment supply. Under a Long-Term Service Agreement (LTSA), CATL will further support the full lifecycle of the energy storage asset through condition monitoring, performance tracking, fault response and preventive maintenance to help ensure reliable long-term operation. CATL’s proven product performance, scalable delivery capabilities and lifecycle service model provide greater confidence in the long-term reliability and performance of the energy storage asset.

Tim Hornemand, Managing Director and Regional Lead, Australia, at Quinbrook, said:
“Achieving commercial operations for Stage 2 means we’ve successfully delivered both Origin-contracted stages on schedule, an outcome we’re incredibly proud of given the complexity of commissioning utility-scale battery storage projects in Australia. With Stage 3 now fully financed, we’ve reached another important milestone in Supernode’s continuing development. The ongoing support of our banking partners also reflects confidence in the Supernode project, our delivery track record and the long-term outlook for battery storage in Australia.”

Tan Libin, CCO and Co-President of Sales & Marketing at CATL, said:
“Energy storage is evolving from a standalone technology deployment into a strategic energy asset. The next stage of industry development will depend not only on technological advancement, but also on the ability to create long-term value through collaboration, innovation and scalable deployment. At CATL, we are committed to working with partners to unlock the full potential of energy storage assets and support the transition toward a more flexible and resilient energy system.”

CATL and Quinbrook are also working together on EnerQB, an eight-hour battery storage solution being considered for future stages of the Supernode development. The initiative builds on CATL’s role as energy storage system supplier across Supernode’s first three stages. CATL will continue to work with partners worldwide to deliver reliable technologies, scalable solutions and lifecycle support.

SOURCE CATL

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Nocpix Nature Launches Rovex, a Large-Screen Thermal Solution for Faster Bird Discovery

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LONDON, Aug. 15, 2026 /PRNewswire/ — Nocpix Nature today introduced Rovex, a lightweight large-screen handheld thermal imaging camera designed to help birdwatchers, wildlife observers, and outdoor nature enthusiasts find birds more easily in challenging viewing conditions.

Rovex brings a new approach to bird search by combining a 5-inch large display, wide-field thermal imaging, and AI-assisted tracking in a lightweight handheld design. Rather than replacing binoculars or other birdwatching optics, Rovex is designed to help users locate birds faster when low light, dense vegetation, or complex surroundings make visual searching more difficult.

A Wider View for Faster Bird Discovery

Finding a bird is often the first challenge. Rovex’s 5-inch screen and 17.5° × 13.1° field of view allow users to scan a broader area with each sweep while viewing thermal information on a larger display. The open viewing experience makes it easier to search for potential wildlife activity without being confined to a narrow viewing window.

AI-Assisted Search for Faster Discovery

Rovex’s AI Smart Tracking helps highlight potential bird heat sources and guide attention toward areas of interest. By supporting the search process rather than simply displaying thermal imagery, Rovex helps birdwatchers identify where to look and spend less time scanning areas where nothing is happening.

Thermal Imaging When Nature Gets Harder to See

When birds blend into dense cover or become difficult to spot as light fades, thermal imaging can provide another way to search. Rovex combines a 384 × 288 @ 12μm thermal sensor with advanced image processing, including R+ Super-Resolution, smart denoising, and target highlighting, to help thermal signatures stand out against complex backgrounds.

With a lightweight design of less than 290g, Rovex is built for comfortable outdoor use and extended searching. It gives birdwatchers a practical tool for finding wildlife that might otherwise go unnoticed.

Rovex marks Nocpix Nature’s first step toward making wildlife observation smarter, easier, and more rewarding — Smart Ways to Discover.

About Nocpix Nature

Nocpix Nature is designed for birdwatchers and nature enthusiasts seeking more from their outdoor experiences. Powered by proprietary sensor technology and advanced AI image algorithms, Nocpix Nature develops intelligent, user-friendly observation tools that make it easier to discover, identify, record, and share wildlife moments. We believe observation goes beyond simply seeing—it is about building a more meaningful relationship with the natural world.

For further information:
Nocpix Nature Marketing Team
Email: info@nocpixnature.com
Website: www.nocpixnature.com

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