Global Immersion Cooling For EV Batteries Market 2024-2030
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Global Immersion Cooling For EV Batteries Market 2024-2030

Last Updated:  Apr 25, 2025 | Study Period: 2024-2030

IMMERSION COOLING FOR EV BATTERIES MARKET

 

KEY FINDINGS

  • XING Mobility, a Taiwan based global pioneer in immersion cooling battery technology has developed The world’s only patented IMMERSIO immersed cooling battery system.
  • Arkema pioneers gaseous thermal barriers, merging immersion cooling's heat dissipation with Foranext GTB's exceptional insulation for superior performance. Supporting sustainability goals, Arkema aims for a 48.5% reduction in GHG emissions by 2030, propelled by innovations like Foranext GTB..
  • Fluctuating crude oil prices make using mineral oil in transformer immersion cooling solutions challenging due to its direct impact on production costs.
  • The market for immersion cooling fluids is expanding due in large part to the growing need for effective thermal management solutions in data centers. With the increasing volume of digital data, data centers are becoming more complicated and large-scale, making traditional air cooling technologies less efficient and economical.
  • The demand for improved performance in high-power applications like processing artificial intelligence (AI), mining cryptocurrencies, and high-performance computing (HPC) is what is driving the development of immersion cooling fluids. These applications produce large amounts of heat, which, if not properly handled, can deteriorate performance and dependability.
  • Volvo XC90 is the world's first car replacing the battery cooling system plug-in hybrid with an immersion alternative. TotalEnergies decided to apply it for the first time in a road-going car, 
  • Carrar has announced that it has successfully closed a $5.3 million Series A funding round. This investment will fund the commercial production of advanced battery modules equipped with a patented two-phase immersion cooling and heating system. Designed to triple the lifespan of EV batteries,
  • Intel, in collaboration with Foxconn, Microloops, and Inventec, has introduced a brand new Liquid Cooling solution. This technology, capable of managing Thermal Design Power (TDP) exceeding 1500W, utilizes the principles of physical pressurization to facilitate rapid liquid flow for efficient heat dissipation.
  • Wiwynn, is keenly interested in liquid cooling technology, has secured substantial orders from Middle Eastern clients by prioritizing two-phase immersion cooling technology, with rumors suggesting the order’s value is approximately USD 4 billion.
  • Many electric vehicle manufacturers are constantly seeking ways to improve the performance and longevity of their batteries. Liquid cooling has become a hot topic as processors and other datacenter kits consume ever more power and generate more heat that needs to be dissipated. Yet perhaps the clearest sign that the tech is set to become a growth area is when investors start throwing their money around.

 

IMMERSION COOLING FOR EV BATTERIES MARKET OVERVIEW

 The  Japan  and Asia-Pacific region stands at the forefront of the global electric vehicle (EV) revolution, driven by a convergence of factors such as escalating fuel prices and an imperative to curb carbon emissions for a greener future. This vast region encompasses economic powerhouses like Japan, India, South Korea and Australia, where the demand for EVs has been steadily rising.

 

XING Mobility's immersion cooling battery technology is poised to disrupt the EV terrain in the Asia-Pacific region, which serves as a global hub for electric vehicle production and consumption. With countries like China, South Korea, Japan, and Taiwan leading the charge in EV adoption and innovation, there exists a ripe market for advanced battery solutions that can address the evolving needs of consumers and manufacturers alike.

 

In the competitive EV market terrain, where range anxiety and battery degradation are significant concerns for consumers, Carrar's technology promises to deliver tangible benefits. The extended lifespan of EV batteries not only improves the overall ownership experience but also reduces the total cost of ownership, making electric vehicles more accessible and appealing to a broader audience.

 

In Europe, renowned for its commitment to sustainability and stringent emissions standards, immersion cooling technology presents a compelling solution to enhance the performance and longevity of EV batteries. With countries like France, Germany, and the nations leading the charge in renewable energy integration and EV adoption, there exists a robust market for advanced battery solutions capable of withstanding diverse climate conditions and delivering optimal performance.

 

IMMERSION COOLING FOR EV BATTERIES MARKET INTRODUCTION

Electric vehicles (EVs) have emerged as frontrunners, promising reduced emissions and enhanced efficiency. In the global quest for sustainable transportation solutions, At the heart of every electric vehicle lies its battery, a critical component that dictates performance, range, and overall reliability.

 

As EV technology advances, so do the challenges surrounding battery management, particularly in maintaining optimal operating temperatures. Enter immersion cooling – a groundbreaking technology revolutionizing the EV battery market worldwide. This sets the stage for an exploration of the global immersion cooling market for EV batteries, highlighting its key drivers,  transformative potential, and the implications for the future of electric mobility on a global scale. 

 

IMMERSION COOLING FOR EV BATTERIES MARKET SIZE AND FORECAST

 

Immersion Cooling For Ev Batteries Market

 

The global immersion cooling for EV batteries market was valued at $XX billion in 2023 and is poised to reach $XX billion by 2030, exhibiting a robust CAGR of XX% from 2024 to 2030. 

 

IMMERSION COOLING FOR EV BATTERIES MARKET TECHNOLOGICAL TRENDS

 

  • Shift Towards Non-Mineral Cooling Fluids: The challenges associated with using mineral oil-based cooling fluids, there's a growing trend towards the adoption of non-mineral alternatives. 
    • Companies like XING Mobility are pioneering the development of patented immersion cooling systems that utilize innovative non-mineral cooling fluids, ensuring optimal thermal management without the drawbacks of traditional mineral oils.
  • Advancements in Immersion Cooling for Automotive Applications: The Industry is witnessing a significant shift towards immersion cooling solutions for battery thermal management.
    • Volvo's implementation of immersion cooling in the XC90 plug-in hybrid demonstrates the potential of this technology to enhance battery performance and longevity in electric vehicles. As EV manufacturers prioritize efficient thermal management to maximize battery life and driving range, immersion cooling emerges as a key technological trend shaping the future of electric mobility.
  • Expansion of Two-Phase Immersion Cooling Technology: Two-phase immersion cooling technology is gaining traction across various industries, data centers, including electric vehicles. 
    • Carrar are investing in the commercial production of advanced battery modules equipped with patented two-phase immersion cooling systems, aiming to triple the lifespan of EV batteries. This trend underscores the increasing adoption of two-phase immersion cooling as a versatile and efficient solution for addressing thermal management challenges in diverse applications, from automotive to data center infrastructure

 

IMMERSION COOLING FOR EV BATTERIES MARKET NEW PRODUCT LAUNCH

 

  • XING Mobility's IMMERSIO Immersed Cooling Battery System:
    • Patented immersion cooling technology for EV batteries, ensuring superior heat dissipation.
    • Exceptional insulation provided by Foranext GTB for enhanced thermal performance and longevity.
  • Carrar's Advanced Battery Modules with Two-Phase Immersion Cooling:
    • Incorporates patented two-phase immersion cooling and heating system for EV batteries.
    • Designed to triple battery lifespan, ensuring durability and reliability in high-power applications.
  • Intel's Liquid Cooling Solution for High-Power Applications:
    • Collaborative effort with Foxconn, Microloops, and Inventec, offering liquid cooling technology.
    • Capable of managing Thermal Design Power (TDP) exceeding 1500W for efficient heat dissipation in demanding environments.
  • Wiwynn's Two-Phase Immersion Cooling Technology for Data Centers:
    • Secured substantial orders from Middle Eastern clients, highlighting the technology's effectiveness.
    • Addresses the growing need for efficient thermal management in large-scale data centers, ensuring reliability and performance.

 

Immersion Cooling For Ev Batteries Market Size

 

IMMERSION COOLING FOR EV BATTERIES MARKET SEGMENTATION

 

Immersion Cooling For EV Batteries Market By Geography

  • U.S.
  • Europe
  • China
  • Asia (Ex-China)
  • Rest of World (ROW)

 

Immersion Cooling For EV Batteries Market By Product Variation

  • High-Performance Immersion Cooling Systems
  • Modular Immersion Cooling Units
  • Sustainable Cooling Fluids
  • others

 

Immersion Cooling For EV Batteries Market By End Users (Industries)

  • Automotive Industry
  • Data Center Industry
  • Renewable Energy Sector
  • others

 

Immersion Cooling For EV Batteries Market By Manufacturing Methods

  • Precision Engineering
  • Additive Manufacturing (3D Printing)
  • Automated Assembly
  • others

 

IMMERSION COOLING FOR EV BATTERIES MARKET COMPANIES PROFILED

  • XING Mobility
  • ArcticTech
  • CoolTech
  • EcoCool
  • HydroTech
  • ThermoGuard

 

IMMERSION COOLING FOR EV BATTERIES MARKET REPORT WILL ANSWER THE FOLLOWING QUESTIONS

  1. What are the average setup costs for establishing a Immersion Cooling For EV Batteries Market infrastructure in key markets such as the US, Europe, and China?
  2. How do the costs break down for deploying an Immersion Cooling For EV Batteries Market, and what are the primary criteria for selecting key vendors in the EV charging market?
  3. What is the market share of leading Immersion Cooling For EV Batteries Market manufacturers, and what upcoming products are they planning to introduce to the market?
  4. Which regions are anticipated to dominate the Immersion Cooling For EV Batteries Market in terms of market share and revenue, and what factors contribute to their dominance?
  5. What are the key drivers influencing the growth of the Immersion Cooling For EV Batteries Market, and how are they shaping the market landscape?
  6. How is the demand for Immersion Cooling For EV Batteries Market evolving within various sectors such as residential, commercial, and public transportation, and what are the primary applications driving this demand?
  7. What role do technological advancements, such as ultra-fast charging and wireless charging, play in shaping the development of Immersion Cooling For EV Batteries Market globally?
  8. Who are the key players in the Immersion Cooling For EV Batteries Market, and what strategies are they employing to expand their market presence?
  9. How is the increasing adoption of electric vehicles impacting the demand for EV charging infrastructure, and what challenges and barriers does the market face in meeting this demand?
  10. What types of EV charging solutions are experiencing high demand, and how is the market segmented based on charging speed, connectivity, and compatibility with different EV models?
Sl noTopic
1Market Segmentation
2Research Methodology
3Executive Summary
4Introduction
5Key Prediction for Industry
6Technological Trends in Immersion cooling Technique
7Technological Advancements in Ev Battery cooling
8List of Recently Developed Immersion Cooling Techniques
9Average B2B cost in Immersion Cooling 
10Key Factors Driving Market Growth and Expansion
11Market Share of Leading EV Charging Infrastructure Manufacturers
12Ev Charging Solutions For Better Output
13Future developments in Immersion Cooling Technology
14New product development in the past 12 months
15Market Size and Forecast by Geography, 2024-2030
16Market Size and Forecast by Product Variation, 2024-2030
17Market Size and Forecast by End-User, 2024-2030
18Market Size and Forecast by Manufacturing Methods, 2024-2030
19Competitive Landscape
20M&A in past 3 years
21Growth strategy of leading players
22Market share of vendors - 2023
23Company Profiles
24Conclusion