데이터센터용 액침 냉각액 시장 예측(-2032년) : 기술(단상, 2상), 데이터센터 유형(하이퍼스케일, AI/ML, 암호화폐 채굴), 유형(광유, 플루오로카본계 유체, 합성 유체), 지역별
Data Center Immersion Cooling Fluids Market by Technology (Single-Phase, Two-Phase), Data Center Type (Hyperscale, AI/ML, Cryptocurrency Mining), Type (Mineral Oil, Fluorocarbon-based Fluids, Synthetic Fluids), and Region - Global Forecast to 2032
상품코드:1819103
리서치사:MarketsandMarkets
발행일:2025년 09월
페이지 정보:영문 229 Pages
라이선스 & 가격 (부가세 별도)
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한글목차
세계의 데이터센터용 액침 냉각액 시장 규모는 2025년 1억 9,000만 달러에서 예측 기간 중 CAGR 23.9%로 추이하며, 2032년에는 8억 4,000만 달러로 성장할 것으로 예측됩니다.
조사 범위
조사 대상연도
2022-2032년
기준연도
2024년
예측 기간
2025-2032년
단위
금액(달러)
부문
기술, 유형, 데이터센터 유형, 지역
대상 지역
아시아태평양, 유럽, 북미, 중동 및 아프리카, 남미
클라우드 컴퓨팅, 고성능 컴퓨팅(HPC), 비즈니스 데이터센터 분야에서 효과적인 열 관리 솔루션의 필요성이 시장 성장을 주도하고 있습니다. 급속한 디지털화와 데이터 집약적 용도의 발전은 확장 가능하고 신뢰할 수 있으며 효율적인 방열 시스템에 대한 수요 증가에 기여하고 있습니다.
"유형별로는 플루오로카본계 유체가 예측 기간 중 두 번째 점유율을 차지할 것으로 예측됩니다."
플루오로카본 유체는 우수한 유전체 특성, 열 안정성, 특히 고밀도 및 고성능 컴퓨팅 시스템에서 효율적인 열 전달 능력으로 인해 예측 기간 중 두 번째로 큰 점유율을 차지할 것으로 예측됩니다. 이 유체는 특히 열 부하 관리가 필요한 하이퍼스케일 및 HPC 데이터센터와 같이 정밀하고 균일한 냉각이 요구되는 경우에 사용됩니다. 그러나 상대적으로 높은 비용과 대체 광유계 유체에 비해 지구온난화 계수가 높다는 환경적 제약으로 인해 대규모 보급에 한계가 있습니다.
"기술별로 보면 예측 기간 중 2상 냉각이 두 번째 점유율을 차지할 것으로 예측됩니다."
2상 시스템은 향상된 열 관리와 전력 효율을 실현하는 반면, 대규모 도입에는 막대한 초기 투자 및 대규모 인프라 개조가 필요합니다. 2상 냉각 시스템은 AI 및 고성능 컴퓨팅과 같은 용도에서 발생하는 높은 열 부하를 처리하면서 최적의 에너지 효율을 달성하기 위해 고밀도의 미션 크리티컬 컴퓨팅 데이터센터에서 탁월한 냉각 성능을 제공합니다.
세계의 데이터센터용 액침 냉각액 시장을 조사했으며, 시장 개요, 시장 성장에 대한 각종 영향요인의 분석, 기술·특허의 동향, 법규제 환경, 사례 연구, 시장 규모 추이·예측, 각종 구분·지역/주요 국가별 상세 분석, 경쟁 구도, 주요 기업의 개요 등을 정리하여 전해드립니다.
목차
제1장 서론
제2장 조사 방법
제3장 개요
제4장 주요 인사이트
제5장 시장 개요
시장 역학
촉진요인
억제요인
기회
과제
제6장 업계 동향
세계 거시경제 전망
데이터센터용 액침 냉각액의 진화
파트너십
공급망 분석
에코시스템 분석
Porter's Five Forces 분석
주요 이해관계자와 구입 기준
가격 분석
규제 상황
데이터센터 표준을 제공하는 조직
주요 컨퍼런스와 이벤트
특허 분석
기술 분석
사례 연구 분석
무역 분석
고객 사업에 영향을 미치는 동향/혼란
투자와 자금조달 시나리오
생성형 AI가 데이터센터 액침 냉각액 시장에 미치는 영향
2025년 미국 관세가 데이터센터용 액침 냉각액 시장에 미치는 영향
제7장 데이터센터용 액침 냉각액 시장 : 유형별
광유
플루오로카본계 유체
합성 유체
기타
제8장 데이터센터용 액침 냉각액 시장 : 데이터센터 유형별
하이퍼스케일 데이터센터
AI/ML 데이터센터
암호화폐 채굴 데이터센터
기타
제9장 데이터센터용 액침 냉각액 시장 : 기술별
단상 냉각
2상 냉각
제10장 데이터센터용 액침 냉각액 시장 : 지역별
아시아태평양
중국
인도
일본
한국
호주
말레이시아
기타
북미
미국
캐나다
멕시코
유럽
독일
영국
프랑스
네덜란드
스페인
러시아
기타
중동 및 아프리카
GCC 국가
기타
남미
제11장 경쟁 구도
주요 참여 기업의 전략/강점
매출 분석
시장 점유율 분석
브랜드/제품 비교
기업 평가 매트릭스 : 주요 기업
기업 평가 매트릭스 : 스타트업/중소기업
기업 평가와 재무 지표
경쟁 시나리오
제12장 기업 개요
주요 기업
THE CHEMOURS COMPANY
FUCHS SE
SUBMER
THE LUBRIZOL CORPORATION
INVENTEC PERFORMANCE CHEMICALS
CASTROL LIMITED
SHELL PLC
GREEN REVOLUTION COOLING
ENGINEERED FLUIDS
CARGILL, INCORPORATED
VALVOLINE GLOBAL OPERATIONS
ENEOS CORPORATION
TOTALENERGIES
DYNALENE, INC.
DCX LIQUID COOLING SYSTEMS
HONEYWELL INTERNATIONAL INC.
EXXON MOBIL CORPORATION
DOW INC.
PETRONAS LUBRICANTS INTERNATIONAL
OLEON NV
기타 기업
SANMING HEXAFLUO CHEMICALS CO., LTD.
GUANGDONG GIANT FLUORINE ENERGY SAVING TECHNOLOGY CO., LTD.
ZHEJIANG NOAH FLUOROCHEMICAL CO., LTD
FLUOREZ TECHNOLOGY INC.
SHENZHEN HUAYI BROTHER TECHNOLOGY CO., LTD.
AMER TECHNOLOGY CO., LTD.
제13장 인접 시장과 관련 시장
제14장 부록
KSA
영문 목차
영문목차
The global data center immersion cooling fluids market is projected to grow from USD 0.19 billion in 2025 to USD 0.84 billion by 2032, at a CAGR of 23.9% during the forecast period.
Scope of the Report
Years Considered for the Study
2022-2032
Base Year
2024
Forecast Period
2025-2032
Units Considered
Value (USD Million/Billion)
Segments
Technology, Type, Data Center Type, and Region
Regions covered
Asia Pacific, Europe, North America, the Middle East & Africa, and South America
The growing need for effective thermal management solutions in cloud computing, high-performance computing, and business data center sectors is propelling the market's growth. The rapid digitization and development of data-intensive applications contribute to the growing demand for scalable, reliable, and effective heat dissipation systems.
"Fluorocarbon-based fluids are estimated to account for the second-largest share, by type, during the forecast period".
Fluorocarbon fluids are expected to hold the second-largest market share in the data center immersion cooling fluids market during the forecast period, due to their better dielectric characteristics, thermal stability, and efficient heat transfer capabilities, particularly in high-density, high-performance computing systems. Such fluids are specifically used when precise and homogeneous cooling is required, such as in hyperscale and HPC data centers, where thermal load management is involved. However, their relatively higher cost and environmental limitations limit their mass usage, such as a greater global warming potential than alternatives like mineral oil-based fluids.
"Two-phase cooling is estimated to account for the second-largest share, by technology, during the forecast period".
Two-phase cooling is projected to hold the second-largest market share in the data center immersion cooling fluids market in the forecast period, mainly because, while it delivers enhanced thermal management and power efficiency, mass adoption is hampered by significant initial capital investment and extensive infrastructural changes that have to be made for its adoption. Two-phase systems deliver enhanced cooling in high-density, mission-critical computing data centers to allow data centers to manage the high heat loads that applications like artificial intelligence and high-performance computing produce while achieving optimal energy efficiency.
"Cryptocurrency mining data centers are estimated to account for the second-largest share, by data center type, during the forecast period".
Cryptocurrency mining data centers are estimated to occupy the second-largest share in the data center market by type during the forecast period. This is primarily due to their niche role in enabling computational and power requirements for large-scale crypto mining operations. The cryptocurrency usage and investment boom has driven demand for more scalable, energy-efficient, and sophisticated mining hardware, propelling purpose-built data centers into the forefront of mining viability and profitability. Purpose-built data centers leverage the latest cooling and power technologies and economies of scale costs to enable high-volume mining economically, a necessity as solo mining becomes impractical amid growing hash rates and hardware costs.
Profile break-up of primary participants for the report:
By Company Type: Tier 1 - 40%, Tier 2 - 35%, and Tier 3 - 25%
By Designation: C-level- 30%, Director Level- 40%, and Others - 30%
By Region: North America - 25%, Europe - 30%, Asia Pacific - 35%, South America - 5%, and Middle East & Africa - 5%
Chemours Company (US), FUCHS SE (Germany), The Lubrizol Corporation (US), Submer (Spain), and Inventec Performance Chemicals (France) are some of the major players operating in the data center immersion cooling fluids market. These players have adopted strategies such as acquisitions, expansions, partnerships, and agreements to increase their market share and business revenue.
Research Coverage:
The report defines, segments, and projects the data center immersion cooling fluids market based on technology, type, data center type, and region. It provides detailed information regarding the major factors influencing the market's growth, such as drivers, restraints, opportunities, and challenges. It strategically profiles data center immersion cooling fluids manufacturers and comprehensively analyzes their market shares and core competencies. It also tracks and analyzes competitive developments, such as expansions, partnerships, and new product launches, undertaken by them in the market.
Reasons to Buy the Report:
The report is expected to help the market leaders/new entrants by providing them with the closest approximations of revenue numbers of the data center immersion cooling fluids market and its segments. This report is also expected to help stakeholders understand the market's competitive landscape, gain insights to improve the position of their businesses, and develop suitable go-to-market strategies. It also enables stakeholders to understand the market's pulse and provide them with information on key market drivers, restraints, challenges, and opportunities.
The report provides insights into the following points:
Analysis of key drivers (Expanding Data Center Market, Increasing penetration of liquid cooling technology in the data center market, further driving demand for both DTC as well as immersion cooling fluids and Increasing server rack density), restraints (Technology under development for two-phase PFAS free fluids for immersion cooling and Slower adoption in the data center applications), opportunities (Growing installation of AI based Mega Data Center, Growing demand for energy efficient cooling solutions, Sustainability Trend - Increasing pressure on data center owners/ operators to reduce carbon footprint and Increasing demand for environment friendly fluid technology, such as PFAS free and bio-based fluids), and challenges (Competition from DTC liquid cooling technology and Maintenance Challenges and Cost Burden in Immersion Cooling for Data Centers) influencing the growth of the data center immersion cooling fluids market.
Product Development/Innovation: Detailed insights into upcoming technologies, research & development activities in the data center immersion cooling fluids market.
Market Development: Comprehensive information about lucrative markets - the report analyzes the data center immersion cooling fluids market across varied regions.
Market Diversification: Exhaustive information about new products, various types, untapped geographies, recent developments, and investments in the industrial market.
Competitive Assessment: In-depth assessment of market shares, growth strategies and product offerings of leading players such as The Chemours Company (US), FUCHS SE (Germany), Submer (Spain), The Lubrizol Corporation (US), Inventec Performance Chemicals (France), Castrol Limited (UK), Shell plc (UK), Green Revolution Cooling (US), Engineered Fluids (US), Cargill, Incorporated (US), Valvoline Global Operations (US), ENEOS Corporation (Japan), TotalEnergies (France), Dynalene, Inc. (US), DCX Liquid Cooling Systems (Poland), Honeywell International Inc. (US), Exxon Mobil Corporation (US), Dow Inc. (US), PETRONAS Lubricants International (Malaysia), Oleon NV (Belgium), Chevron Corporation (US) and others in the data center immersion cooling fluids market.
TABLE OF CONTENTS
1 INTRODUCTION
1.1 STUDY OBJECTIVES
1.2 MARKET DEFINITION
1.3 STUDY SCOPE
1.3.1 MARKETS COVERED AND REGIONAL SCOPE
1.3.2 INCLUSIONS & EXCLUSIONS OF STUDY
1.3.3 YEARS CONSIDERED
1.3.4 CURRENCY CONSIDERED
1.3.5 UNITS CONSIDERED
1.4 LIMITATIONS
1.5 STAKEHOLDERS
1.6 SUMMARY OF CHANGES
2 RESEARCH METHODOLOGY
2.1 RESEARCH DATA
2.1.1 SECONDARY DATA
2.1.1.1 Key data from secondary sources
2.1.2 PRIMARY DATA
2.1.2.1 Key data from primary sources
2.1.2.2 Breakdown of interviews with experts
2.2 MATRIX CONSIDERED FOR DEMAND-SIDE ANALYSIS
2.3 MARKET SIZE ESTIMATION
2.3.1 BOTTOM-UP APPROACH
2.3.2 TOP-DOWN APPROACH
2.4 CALCULATION FOR SUPPLY-SIDE ANALYSIS
2.5 GROWTH FORECAST
2.6 DATA TRIANGULATION
2.7 RESEARCH ASSUMPTIONS
2.8 RESEARCH LIMITATIONS
2.9 RISK ASSESSMENT
3 EXECUTIVE SUMMARY
4 PREMIUM INSIGHTS
4.1 ATTRACTIVE OPPORTUNITIES IN DATA CENTER IMMERSION COOLING FLUIDS MARKET
4.2 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY DATA CENTER TYPE
4.3 NORTH AMERICA: DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY TECHNOLOGY AND COUNTRY
4.4 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY KEY COUNTRY
5 MARKET OVERVIEW
5.1 INTRODUCTION
5.2 MARKET DYNAMICS
5.2.1 DRIVERS
5.2.1.1 Expanding data center market
5.2.1.2 Rising use of liquid cooling technology in data centers boosts demand for DTC and immersion cooling fluids
5.2.1.3 Increasing server rack density
5.2.2 RESTRAINTS
5.2.2.1 Technology under development for two-phase PFAS-free fluids for immersion cooling
5.2.2.2 Slower adoption in data center applications
5.2.3 OPPORTUNITIES
5.2.3.1 Growing installation of AI-based mega data centers
5.2.3.2 Growing demand for energy-efficient cooling solutions
5.2.3.3 Data center owners and operators face growing pressure to lower carbon footprint
5.2.3.4 Increasing demand for environment-friendly fluid technology, such as PFAS-free and bio-based fluids
5.2.4 CHALLENGES
5.2.4.1 Competition from DTC liquid cooling technology
5.2.4.2 Maintenance challenges and cost burden in immersion cooling for data centers
6 INDUSTRY TRENDS
6.1 GLOBAL MACROECONOMIC OUTLOOK
6.1.1 GDP
6.1.2 RESEARCH AND DEVELOPMENT (R&D) EXPENDITURE
6.2 EVOLUTION OF IMMERSION COOLING FOR DATA CENTERS
6.3 PARTNERSHIPS
6.4 SUPPLY CHAIN ANALYSIS
6.5 ECOSYSTEM ANALYSIS
6.6 PORTER'S FIVE FORCES ANALYSIS
6.6.1 BARGAINING POWER OF SUPPLIERS
6.6.2 BARGAINING POWER OF BUYERS
6.6.3 THREAT OF NEW ENTRANTS
6.6.4 THREAT OF SUBSTITUTES
6.6.5 INTENSITY OF COMPETITIVE RIVALRY
6.7 KEY STAKEHOLDERS AND BUYING CRITERIA
6.7.1 KEY STAKEHOLDERS IN BUYING PROCESS
6.7.2 BUYING CRITERIA
6.8 PRICING ANALYSIS
6.8.1 AVERAGE SELLING PRICE TREND OF DATA CENTER IMMERSION COOLING FLUIDS, BY REGION, 2024
6.8.2 AVERAGE SELLING PRICE TREND OF DATA CENTER IMMERSION COOLING FLUIDS, BY KEY PLAYER, 2024
6.8.3 AVERAGE SELLING PRICE TREND OF DATA CENTER IMMERSION COOLING FLUIDS, BY TECHNOLOGY, 2024
6.9 REGULATORY LANDSCAPE
6.9.1 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
6.10 ORGANIZATIONS PROVIDING STANDARDS FOR DATA CENTERS
6.10.1 INTRODUCTION
6.10.2 AMERICAN NATIONAL STANDARDS INSTITUTE
6.10.3 AMERICAN SOCIETY OF HEATING, REFRIGERATING AND AIR-CONDITIONING ENGINEERS
6.10.4 INSTITUTE FOR ENERGY AND TRANSPORT
6.10.5 DISTRIBUTED MANAGEMENT TASK FORCE
6.10.6 TELECOMMUNICATION INDUSTRY ASSOCIATION
6.10.7 NATIONAL ELECTRICAL MANUFACTURERS ASSOCIATION
6.10.8 CANADIAN STANDARDS ASSOCIATION GROUP
6.10.9 UNDERWRITERS LABORATORY
6.10.10 UNITED STATES DEPARTMENT OF ENERGY
6.10.11 UNITED STATES ENVIRONMENTAL PROTECTION AGENCY
6.10.12 STATEMENT ON STANDARDS FOR ATTESTATION ENGAGEMENTS NO. 16
6.10.13 INTERNATIONAL STANDARDS COMPLIANCE
6.11 KEY CONFERENCES AND EVENTS
6.12 PATENT ANALYSIS
6.12.1 METHODOLOGY
6.13 TECHNOLOGY ANALYSIS
6.13.1 KEY TECHNOLOGIES
6.13.1.1 Immersion cooling tank and enclosure design
6.13.1.2 Thermal interface optimization and hardware configuration
6.13.2 ADJACENT TECHNOLOGIES
6.13.2.1 Data center infrastructure management
6.13.2.2 Immersion-compatible hardware design
6.14 CASE STUDY ANALYSIS
6.14.1 DOWNUNDER GEOSOLUTIONS ADOPTS IMMERSION COOLING TECHNOLOGY BY GREEN REVOLUTION COOLING
6.14.2 GREEN REVOLUTION COOLING AND TEXAS ADVANCED COMPUTING CENTER COLLABORATE TO ENHANCE SUPERCOMPUTER PERFORMANCE
6.15 TRADE ANALYSIS
6.15.1 IMPORT SCENARIO (HS CODE 2710)
6.15.2 EXPORT SCENARIO (HS CODE 2710)
6.16 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS
6.17 INVESTMENT AND FUNDING SCENARIO
6.18 IMPACT OF GENERATIVE AI ON DATA CENTER IMMERSION COOLING FLUIDS MARKET
6.19 IMPACT OF 2025 US TARIFF ON DATA CENTER IMMERSION COOLING FLUIDS MARKET
6.19.1 KEY TARIFF RATES
6.19.2 PRICE IMPACT ANALYSIS
6.19.3 IMPACT ON COUNTRY/REGION
6.19.3.1 US
6.19.3.2 Europe
6.19.3.3 Asia Pacific
6.19.4 IMPACT ON APPLICATIONS (DATA CENTER TYPES)
6.19.4.1 Hyperscale data centers
6.19.4.2 AI/ML data centers
6.19.4.3 Cryptocurrency mining data centers
6.19.4.4 Others (Edge data centers and colocation data centers)
7 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY TYPE
7.1 INTRODUCTION
7.2 MINERAL OIL
7.2.1 EASY AVAILABILITY AND LOW PRICE TO FUEL DEMAND
7.3 FLUOROCARBON-BASED FLUIDS
7.3.1 ASIA PACIFIC TO BE LARGEST MARKET FOR FLUOROCARBON-BASED FLUIDS
7.4 SYNTHETIC FLUIDS
7.4.1 LOW CORROSION PROPERTY TO FUEL DEMAND
7.5 OTHER TYPES
8 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY DATA CENTER TYPE
8.1 INTRODUCTION
8.2 HYPERSCALE DATA CENTERS
8.2.1 HIGH POWER DENSITY AND HEAT GENERATION TO DRIVE MARKET
8.3 AI/ML DATA CENTERS
8.3.1 SURGING AI/ML & HPC WORKLOADS TO DRIVE DEMAND FOR IMMERSION COOLING FLUIDS
8.4 CRYPTOCURRENCY MINING DATA CENTERS
8.4.1 ENERGY EFFICIENCY, EQUIPMENT LONGEVITY, AND SPATIAL OPTIMIZATION TO PROPEL MARKET
8.5 OTHER DATA CENTERS
9 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY TECHNOLOGY
9.1 INTRODUCTION
9.2 SINGLE-PHASE COOLING
9.2.1 LOW MAINTENANCE AND COST-EFFECTIVENESS TO DRIVE MARKET
9.3 TWO-PHASE COOLING
9.3.1 RISING NEED FOR EFFICIENT, HIGH-PERFORMANCE COOLING IN HIGH-DENSITY SERVER ENVIRONMENTS TO DRIVE MARKET
10 DATA CENTER IMMERSION COOLING FLUIDS MARKET, BY REGION
10.1 INTRODUCTION
10.2 ASIA PACIFIC
10.2.1 CHINA
10.2.1.1 Supportive policy frameworks promoting green and energy-efficient infrastructure to drive market
10.2.2 INDIA
10.2.2.1 Significant deployment of data centers to increase demand for cooling fluids
10.2.3 JAPAN
10.2.3.1 Growing government initiatives and rising sustainability demands to drive market
10.2.4 SOUTH KOREA
10.2.4.1 Government investments and technological advancements to fuel demand
10.2.5 AUSTRALIA
10.2.5.1 Extreme climate and cooling challenges to boost demand
10.2.6 MALAYSIA
10.2.6.1 Government incentives and digital initiatives to boost demand
10.2.7 REST OF ASIA PACIFIC
10.3 NORTH AMERICA
10.3.1 US
10.3.1.1 Technological innovations to drive market
10.3.2 CANADA
10.3.2.1 Increasing power density and high-performance computing to drive market
10.3.3 MEXICO
10.3.3.1 Expansion of e-commerce to support market growth
10.4 EUROPE
10.4.1 GERMANY
10.4.1.1 Strong industrial and automotive sector to drive market
10.4.2 UK
10.4.2.1 Increasing demand for data storage and processing capabilities to drive market
10.4.3 FRANCE
10.4.3.1 Technological advancements and industry initiatives to propel market
10.4.4 NETHERLANDS
10.4.4.1 Regulatory and technological dynamics to boost demand
10.4.5 SPAIN
10.4.5.1 Sustainability incentives to fuel adoption
10.4.6 RUSSIA
10.4.6.1 Cryptocurrency mining and data sovereignty demands to accelerate immersion cooling adoption
10.4.7 REST OF EUROPE
10.5 MIDDLE EAST & AFRICA
10.5.1 GCC COUNTRIES
10.5.1.1 Saudi Arabia
10.5.1.1.1 Transformation in digital infrastructure to support market growth
10.5.1.2 UAE
10.5.1.2.1 Hyperscale expansion and energy efficiency targets to support market growth
10.5.1.3 Rest of GCC Countries
10.5.2 REST OF MIDDLE EAST & AFRICA
10.6 SOUTH AMERICA
11 COMPETITIVE LANDSCAPE
11.1 INTRODUCTION
11.2 KEY PLAYER STRATEGIES/RIGHT TO WIN
11.3 REVENUE ANALYSIS
11.3.1 REVENUE ANALYSIS OF TOP 5 PLAYERS
11.4 MARKET SHARE ANALYSIS
11.5 BRAND/PRODUCT COMPARISON
11.6 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2024
11.6.1 STARS
11.6.2 EMERGING LEADERS
11.6.3 PERVASIVE PLAYERS
11.6.4 PARTICIPANTS
11.6.5 COMPANY FOOTPRINT: KEY PLAYERS, 2024
11.6.5.1 Company footprint
11.6.5.2 Region footprint
11.6.5.3 Technology footprint
11.6.5.4 Type footprint
11.6.5.5 Data center type footprint
11.7 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2024