Revolutionizing Cooling Equipment: Innovations, Regional Shifts, and Market Outlook in 2025

10-Jul-2025

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Revolutionizing Cooling Equipment: Innovations, Regional Shifts, and Market Outlook in 2025

The Cooling Equipment market is entering a transformative phase in 2025, driven by accelerated innovations in liquid cooling systems, eco-friendly refrigeration, and AI-optimized thermal management. From data centers to industrial refrigeration, these advancements are redefining energy efficiency, operational performance, and environmental sustainability.

Cooling Equipment Market: New Developments Reshaping the Industry

Recent innovations in the Cooling Equipment sector focus on energy-efficient solutions, targeting industries facing overheating challenges and rising operational costs:

JetCool, a Flex Company, Unveils Advanced Liquid Cooling:

JetCool’s SmartPlate System is an advanced, fully sealed, direct-to-chip liquid cooling solution that provides immediate enhancements in both performance and energy efficiency, all without necessitating any modifications to existing data center infrastructure. Specifically engineered to streamline the transition to liquid cooling, the SmartPlate System operates without the need for facility water. Independent thermal testing has shown that the system delivers an average of 15% total IT power savings—allowing for more stable performance and increased utilization, even in environments with higher ambient temperatures.

LiquidStack Advances Immersion Cooling for AI Infrastructure:

The company announced that its new modular and scalable CDU platform, designed to deliver up to 10 MW of cooling capacity, features a pay-as-you-grow model, making it well-suited for high-density environments driven by AI and cloud workloads.

LiquidStack emphasized that as data centers face increasingly intense thermal challenges—from GPUs such as Nvidia’s B300 and the upcoming GB300 to next-generation processors—cooling systems must rapidly advance. The company noted that rack power densities have already exceeded 120kW and are expected to reach 600kW by 2027, underscoring the urgent demand for high-performance cooling solutions.

Revolutionary Eco-Friendly Refrigeration Technologies:

In theory, reversing this process can generate cooling power; however, earlier studies have shown that its effectiveness is quite limited. By optimizing the chemicals involved, researchers managed to boost the cooling performance of the hydrogalvanic cell by 70%.

Refrigerators not only consume significant amounts of electricity but also contribute to greenhouse gas emissions through refrigerant leaks. According to a study published in the International Journal of Refrigeration, 50% of the UK’s food refrigeration emissions stem from electricity use, with domestic refrigerators accounting for 37% of these electrical emissions.

Dell's AI-Tuned Cooling Designs:

Dell claims its new system introduces an industry-first technology capable of capturing 100% of IT heat through its self-contained airflow design. According to the company, this enables its eRDHx solution to cut cooling energy costs by up to 60% compared to existing technologies.

The system also reduces costs by eliminating the need for expensive chillers, as it can operate efficiently with higher water temperatures ranging from 32 to 36 degrees Celsius—much warmer than traditional systems.

Additionally, the eRDHx allows customers to deploy significantly more high-density compute racks without increasing overall power consumption, maximizing data center capacity.

Equipped with advanced leak detection, real-time thermal monitoring, and integration with the Dell Integrated Rack Controller, the system also simplifies unified management of all rack-level components.

Comparison of Dell eRDHx System and Traditional Data Center Cooling Solutions

Feature

Dell eRDHx System

Traditional Cooling Solutions

Cooling Technology

Self-contained airflow system (industry-first)

Conventional air or liquid cooling

Heat Capture Efficiency

Captures 100% of IT heat

Partial heat capture

Cooling Energy Cost Savings

Up to 60% reduction

Standard costs, higher energy use

Operating Water Temperature

32°C to 36°C

Lower temperatures required, often below 20°C

Need for Chillers

No (eliminates need for expensive chillers)

Yes (typically requires chillers)

Rack Density Support

Supports more high-density compute racks without extra power

Limited by cooling capacity and power constraints

Thermal Monitoring

Real-time monitoring, advanced leak detection

Typically basic or external monitoring

Management Integration

Fully integrated with Dell Integrated Rack Controller

Often lacks unified rack-level management

 

Regional Market Analysis: Dominating and Fastest-Growing Regions

The Climate and Clean Air Coalition, with support from UNEP OzonAction, is organizing this workshop alongside the Joint Network Meeting of Montreal Protocol Officers from Europe, Central Asia, and West Asia.

Japan and the Maldives jointly lead the Cooling Hub. This co-leadership approach promotes strong government involvement and fosters national ownership of the solutions. The co-leads also offer important perspectives on policy processes, helping to ensure that implementation is practical and aligned with national priorities.

LiquidStack’s Strategic Roadmap: Advancing Immersion Cooling for Next-Gen Thermal Demands

LiquidStack has announced its plans to further develop its direct-to-chip CDU (Coolant Distribution Unit) roadmap, aiming to keep pace with the increasing thermal requirements of advanced GPUs and CPUs. The company also emphasized its ongoing commitment to advancing both its single-phase and two-phase liquid cooling technologies, particularly for applications where complete liquid cooling systems provide greater benefits than hybrid solutions.

The company’s single-phase immersion cooling technology utilizes sophisticated flow mechanisms to enhance heat transfer and dissipation. Its compact design makes it well-suited for retrofitting within existing data centers, as well as for use in modular container systems.

In addition, LiquidStack’s two-phase immersion cooling solution is engineered to maximize energy efficiency while delivering exceptional thermal performance. According to the company, this system is especially advantageous for data centers with high-density server deployments, ensuring reliable cooling with minimal energy use.

Conclusion

The Cooling Equipment market is undergoing rapid transformation, fueled by technological innovation, rising environmental standards, and the increasing demand for high-performance thermal management across sectors. From advanced liquid cooling systems that deliver significant energy savings in data centers to groundbreaking eco-friendly refrigeration technologies, companies are reshaping the cooling landscape.

Major industry players such as JetCool, LiquidStack, and Dell are pioneering solutions that not only improve operational efficiency but also reduce carbon footprints. These technologies are enabling data centers, industrial operations, and households to address growing thermal challenges while meeting sustainability goals.

At the same time, strong regional collaboration—led by initiatives like the Cooling Hub and facilitated by global organizations such as the Climate and Clean Air Coalition and UNEP OzonAction—is fostering policy-driven progress to support sustainable cooling adoption worldwide.

Looking ahead, the market is expected to witness continued advancements in AI-integrated cooling, modular systems, and circular technologies, positioning smarter and greener cooling solutions at the forefront of the global energy and climate agenda.

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