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India Data Center Liquid Cooling Market By Cooling Type (Direct-to-Chip Cooling, Immersion Cooling, Hybrid Cooling Systems); By Data Center Type (Hyperscale Data Centers, Colocation Data Centers, Enterprise Data Centers); By End User (IT & Cloud Service Providers, Financial Services, Healthcare & Pharmaceuticals, Manufacturing & Industrial); By Component (Cooling Equipment, Chillers & Pumps, Heat Exchangers, Accessories) – Growth, Share, Opportunities & Competitive Analysis, 2024 – 2032

Report ID: 82320 | Report Format : Excel, PDF

Market Overview:

The India Data Center Liquid Cooling Market size was valued at USD 80.00 million in 2018, reached USD 166.69 million in 2024, and is anticipated to reach USD 958.74 million by 2032, growing at a CAGR of 24.58% during the forecast period.

REPORT ATTRIBUTE DETAILS
Historical Period  2020-2023
Base Year  2024
Forecast Period  2025-2032
India Data Center Liquid Cooling Market Size 2024  USD 166.69 Million
India Data Center Liquid Cooling Market, CAGR 24.58%
India Data Center Liquid Cooling Market Size 2032  USD 958.74 Million

 

Growth in this market is driven by rising rack power densities, especially in AI and HPC environments where traditional air cooling systems fail to maintain operational efficiency. The shift to energy-efficient solutions is accelerated by high power costs and pressure to reduce PUE in hyperscale data centers. Government initiatives supporting digital infrastructure, coupled with strong adoption in IT, cloud, and financial sectors, strengthen demand. As more colocation and edge facilities expand, operators are prioritizing liquid cooling to ensure scalability and performance.

Southern India leads the market due to the concentration of hyperscale and cloud data centers in Bengaluru, Chennai, and Hyderabad. Western India is also a major contributor, with strong adoption in Mumbai and emerging activity in Pune and Gujarat. Northern India sees rising demand from the Delhi NCR region, driven by enterprise and government deployments. Eastern and Tier II cities are beginning to gain traction, supported by edge computing rollouts and regional cloud expansions. Each region reflects different adoption stages but shares a common push toward high-efficiency infrastructure.

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Market Insights

  • The market was valued at USD 80.00 million in 2018, reached USD 166.69 million in 2024, and is expected to grow to USD 958.74 million by 2032, registering a CAGR of 24.58% over the forecast period.
  • Southern India leads with a 38% share, driven by data center hubs in Chennai, Hyderabad, and Bengaluru. Western India follows with 32%, backed by strong demand in Mumbai and Pune, while Northern India accounts for 18% due to growing hyperscale and enterprise deployments in the NCR.
  • Eastern and Tier II cities represent the fastest-growing region with 12% share, fueled by edge deployments, regional cloud expansion, and digital infrastructure rollouts.
  • In 2024, Direct-to-Chip Cooling held the highest share among cooling types, followed by Immersion Cooling and Hybrid Cooling Systems, as shown in the visual growth pattern.
  • Among data center types, Enterprise Data Centers are projected to grow fastest at 8% CAGR, followed by Colocation Data Centers at 5.2% and Hyperscale Data Centers at 4.5%, indicating broader adoption beyond hyperscale players.

India Data Center Liquid Cooling Market Size

Market Drivers

Growing Rack Power Density Requires Shift from Air Cooling to Liquid-Based Solutions

The India Data Center Liquid Cooling Market is driven by rising rack power density across hyperscale and enterprise facilities. Traditional air-based cooling struggles to manage increasing thermal loads above 20 kW per rack. New AI and HPC workloads generate more heat per square foot, making liquid-based cooling a practical necessity. Liquid cooling methods, such as direct-to-chip and immersion systems, absorb and transfer heat more efficiently. Operators adopt these systems to manage density without increasing facility footprint. Higher power efficiency and precision cooling make them suitable for advanced deployments. The market gains from lower latency, reduced fan usage, and more reliable thermal performance. Key operators prefer liquid cooling for mission-critical and energy-sensitive workloads.

  • For instance, Yotta Data Services’ NM1 facility in Navi Mumbai supports 210 MW capacity and had deployed 16,000 NVIDIA H100 and GH200 GPUs by July 2025, using advanced liquid cooling for high-density AI racks.

Sustainability Targets and Pressure to Lower PUE Values Accelerate Adoption of Efficient Cooling

Power Usage Effectiveness (PUE) remains a top metric for data center efficiency across India. Operators seek cooling solutions that reduce electricity consumption and support ESG goals. Liquid cooling achieves lower PUE by cutting power drawn by fans and compressors. Energy savings also help operators meet green data center certifications. With rising electricity costs and limited grid power in some states, efficient systems gain traction. Governments and industry bodies encourage sustainable infrastructure through policies and incentives. Large operators also align their strategies with global emission reduction targets. The India Data Center Liquid Cooling Market benefits from this regulatory and economic alignment. Lower carbon impact and long-term cost savings further support adoption.

  • For instance, Sify’s hyperscale data centers in Chennai and Noida achieved NVIDIA DGX-Ready certification in 2025, enabling up to 130 kW per rack capacity with integrated air and liquid cooling redundancy for AI workloads.

Rapid Digitalization Across BFSI, Telecom, and IT Services Fuels High-Density Server Deployment

India’s rapid digital transformation drives a surge in data generation, requiring dense compute infrastructure. BFSI and IT firms deploy AI, big data, and analytics solutions that demand liquid-cooled GPUs and CPUs. Telecom providers expand 5G infrastructure and edge computing, increasing localized data loads. These use cases require high-performance compute environments with precise thermal control. Liquid cooling meets these needs by offering localized, efficient heat removal. The growth of hybrid cloud platforms further drives liquid cooling in colocation and enterprise setups. India’s IT hubs like Bengaluru, Hyderabad, and Pune lead such deployments. Public and private sector digitalization enhances this trend. The market gains consistent demand from ongoing data center expansion in Tier I and II cities.

Investments by Global Cloud and Hyperscale Firms Drive Large-Scale Adoption of Liquid Cooling

Major hyperscale firms such as Amazon, Microsoft, and Google continue expanding their data center footprint in India. These firms integrate liquid cooling to manage dense AI workloads and sustainable performance metrics. New campuses in regions like Telangana and Maharashtra are planned with liquid cooling from design stages. Global standards and best practices influence local facility upgrades. Investments exceed billions of dollars, driving local vendor partnerships and technology transfers. Indian colocation firms such as Yotta and CtrlS also upgrade cooling systems to attract hyperscale clients. This push accelerates demand for modular and scalable liquid cooling infrastructure. The India Data Center Liquid Cooling Market gains from both greenfield and brownfield deployments. Supply chains mature as domestic firms collaborate with international system providers.

Market Trends

Rising Adoption of Direct-To-Chip Cooling Systems for GPU-Intensive Workloads in AI and ML

Direct-to-chip cooling emerges as a preferred method in advanced AI compute environments. It offers better heat transfer at the chip level compared to immersion or rear-door solutions. AI, ML, and HPC applications demand GPUs with higher thermal design power (TDP), often exceeding 700W. These chips require consistent, low-latency cooling. Cloud service providers in India adopt direct-to-chip solutions in AI training clusters. System integrators partner with OEMs to offer integrated cooling with minimal downtime. Deployment is easier to scale across server rows. The India Data Center Liquid Cooling Market reflects a shift in design preference towards flexible, node-level cooling. Adoption is seen more in high-density GPU racks within research and analytics domains.

  • For instance, CtrlS’s Chennai facility supports up to 70 kW per rack using direct-to-chip liquid cooling for NVIDIA H100 GPU deployments, enabling dense AI compute without thermal constraints.

Increased Integration of Liquid Cooling in Edge and Modular Data Center Deployments

Edge data centers are expanding rapidly across Tier II and Tier III cities. These facilities support low-latency applications such as video streaming, telemedicine, and IoT analytics. Modular formats allow faster deployment and easier cooling retrofits. Liquid cooling helps reduce space usage and noise levels in compact environments. Operators use hybrid liquid-air systems to support variable heat loads. Pre-integrated systems improve commissioning speed and cut initial CAPEX. Indian telecom operators and CDNs push edge nodes to underserved markets. The India Data Center Liquid Cooling Market sees steady growth in prefabricated systems with liquid circuits. This trend strengthens with rising demand for regional compute distribution.

Growing Adoption of Immersion Cooling Among Cryptocurrency Miners and Blockchain Data Farms

Immersion cooling gains interest in niche data center applications, particularly crypto mining and blockchain validation. These operations run 24/7 and generate substantial heat in concentrated server arrays. Immersion technology enables direct heat exchange, reducing equipment degradation. Startups and investors in India adopt containerized immersion pods for mining operations. Power savings and longer hardware life make it economically viable. Some renewable energy-backed farms deploy immersion cooling to balance sustainability with profitability. Vendors offer single-phase and dual-phase immersion setups tailored for high-throughput environments. The India Data Center Liquid Cooling Market gains diversity from such specialized use cases. Growth may accelerate if crypto regulations become more favorable.

Standardization and Interoperability Efforts to Support Broader Liquid Cooling System Deployment

The industry moves toward standardized cooling system components and protocols. Interoperability between cooling systems, racks, and IT hardware improves deployment speed. ASHRAE and OCP recommendations guide design frameworks for liquid-cooled facilities. Indian data center developers align with global practices to attract international tenants. Modular liquid cooling blocks, manifolds, and quick-connect solutions support plug-and-play formats. These efforts reduce vendor lock-in and encourage ecosystem growth. System compatibility also allows easier retrofitting in legacy facilities. The India Data Center Liquid Cooling Market benefits from clearer deployment guidelines and rising integrator expertise. This trend supports long-term scalability and infrastructure investment confidence.

  • For instance, Digital Connexion’s MAA10 facility in Chennai achieved NVIDIA DGX-Ready certification in 2025 under ASHRAE W2 guidelines, supporting 130 kW racks with interoperable liquid cooling manifolds for scalable AI compute environments.

India Data Center Liquid Cooling Market Share

Market Challenges Analysis

High Initial Capital Investment and Complex Infrastructure Integration Slow Down Adoption

One of the key challenges in the India Data Center Liquid Cooling Market is the high upfront investment cost. Deploying liquid cooling systems requires specialized infrastructure, including pipes, coolant handling systems, and control interfaces. Retrofitting older facilities further adds to integration expenses. Smaller operators and mid-size enterprises struggle to justify these costs against conventional air cooling. High-density workloads are still concentrated among a few hyperscale players. For many colocation providers, the return on investment remains unclear in low utilization environments. Procurement complexity, design limitations, and long deployment cycles act as additional barriers. Lack of economies of scale in India’s Tier II cities also hinders faster adoption. The market must overcome cost concerns through local manufacturing and modular solutions.

Limited Technical Expertise and Vendor Ecosystem Slows Down Rapid Market Expansion

The adoption of liquid cooling requires skilled design, implementation, and maintenance capabilities. In India, there is a shortage of trained professionals with experience in managing liquid-cooled data center environments. This leads to over-reliance on foreign OEMs and service providers. Local contractors often lack certifications or hands-on deployment experience. Project delays and installation errors increase operating risks for new adopters. The vendor ecosystem remains concentrated, limiting competitive pricing and service coverage. Training programs and workforce development lag behind market needs. Without stronger ecosystem support, smaller firms hesitate to migrate from legacy systems. The India Data Center Liquid Cooling Market must invest in skill-building, standardization, and local partnerships to scale efficiently.

Market Opportunities

Rising AI Workload Demand Opens Growth Avenues Across Enterprise and Colocation Segments

The growing deployment of AI and analytics platforms creates strong demand for high-density server cooling. Enterprises across BFSI, retail, and manufacturing verticals increasingly adopt AI for automation and decision-making. These workloads require liquid-cooled hardware for consistent performance. Colocation providers can attract AI-driven tenants by offering advanced cooling-ready infrastructure. The India Data Center Liquid Cooling Market can scale by tapping these workload-specific deployments and diversifying use cases beyond hyperscale.

Government Policies and Green Data Center Initiatives Support Future-Ready Infrastructure

Government-backed initiatives such as Digital India and Make in India promote domestic infrastructure growth. Policy incentives for green data centers create fertile ground for liquid cooling adoption. States such as Tamil Nadu, Maharashtra, and Uttar Pradesh offer energy rebates and infrastructure support. These programs reduce operational risks and encourage long-term investment in sustainable cooling solutions. The India Data Center Liquid Cooling Market is well-positioned to benefit from these national and state-level policy drivers.

Market Segmentation Analysis

By Cooling Type Segment

Direct-to-chip cooling holds the largest share due to its precise and efficient heat removal directly from processors. It supports AI, HPC, and GPU-based applications requiring low-latency thermal control. Enterprises and hyperscalers prefer this method for its compatibility with high-density racks and performance-driven workloads. Immersion cooling is gaining attention for its superior heat dissipation and lower operational noise, especially in crypto mining and blockchain operations. It also reduces mechanical component wear, extending hardware lifespan. Hybrid cooling systems serve operators seeking phased upgrades or mixed-density environments. They combine air and liquid techniques to optimize cost and cooling efficiency, especially in brownfield setups. The segment sees increased use in colocation environments.

  • For instance, Motivair by Schneider Electric offers CDUs that scale from 105 kW to 2.3 MW cooling capacity, purpose-built for high-density AI and HPC workloads requiring liquid cooling infrastructure.

By Data Center Type Segment

Hyperscale data centers dominate demand with pre-integrated liquid cooling in large-scale campuses. Global tech giants use these systems to manage extreme compute loads and sustainability targets. Colocation data centers adopt liquid cooling to attract AI-heavy workloads from clients needing customizable infrastructure. They offer modular setups with hybrid or direct-to-chip options. Enterprise data centers implement liquid cooling selectively, focusing on secure, critical workloads like private clouds and R&D computing. Their smaller footprint often limits full-facility adoption, but targeted use cases are growing.

By End User Segment

IT and cloud service providers are the primary end users driving volume adoption. Their growing reliance on AI, analytics, and scalable platforms demands dense, efficient cooling systems. Financial services invest in liquid cooling to support algorithmic trading and risk modeling. Healthcare and pharmaceuticals use it for genome analysis, medical imaging, and bioinformatics workloads. Manufacturing and industrial sectors deploy it for digital twins, factory automation, and real-time control systems.

  • For instance, Schneider Electric’s CDUs are optimized for high-density financial computing environments, offering precise coolant flow control and supporting IT loads up to 2.3 MW.

By Component Segment

Cooling equipment leads the component segment with chillers, cold plates, and distribution units in high demand. Chillers and pumps ensure coolant circulation and heat extraction. Heat exchangers provide key interfaces for fluid-to-air or fluid-to-fluid thermal transfer. Accessories like manifolds, hoses, sensors, and control units enhance system monitoring and integration. Each component supports modular expansion and fault-tolerant system design.

Segmentation

By Cooling Type Segment

  • Direct-to-Chip Cooling
  • Immersion Cooling
  • Hybrid Cooling Systems

By Data Center Type Segment

  • Hyperscale Data Centers
  • Colocation Data Centers
  • Enterprise Data Centers

By End User Segment

  • IT & Cloud Service Providers
  • Financial Services
  • Healthcare & Pharmaceuticals
  • Manufacturing & Industrial

By Component Segment

  • Cooling Equipment
  • Chillers & Pumps
  • Heat Exchangers
  • Accessories

India Data Center Liquid Cooling Market Growth

Regional Analysis

Southern India holds the largest share of about 38% of the India Data Center Liquid Cooling Market. This dominance comes from strong data center clusters in Chennai, Hyderabad, and Bengaluru. The region benefits from stable power availability, submarine cable access, and mature IT ecosystems. Hyperscale and colocation operators deploy liquid cooling to support AI and cloud workloads. State policies support digital infrastructure expansion. Enterprise adoption also rises in technology and SaaS hubs. It maintains leadership through early adoption of advanced cooling architectures.

Western India accounts for nearly 32% market share and ranks as the second-largest subregion. Mumbai and Pune remain core hubs due to financial services demand and dense colocation presence. Land availability constraints push operators toward high-density designs that favor liquid cooling. Renewable energy integration also supports efficient cooling strategies. Gujarat is emerging as a strong alternative due to policy incentives and lower operational costs. The region attracts hyperscale investments focused on scalable and sustainable facilities.

Northern India contributes around 18% of the market share, led by the Delhi NCR region. Strong demand from government, telecom, and enterprise cloud deployments supports steady growth. Data sovereignty needs and digital public platforms increase local capacity requirements. Eastern and other regions together hold about 12% share. Cities such as Kolkata and Bhubaneswar see gradual traction from edge and regional data centers. These areas gain relevance through improved connectivity and regional cloud expansion.

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Key Player Analysis

Competitive Analysis

The India Data Center Liquid Cooling Market features a moderately concentrated competitive landscape with global and domestic players. Multinational firms leverage advanced portfolios, strong R&D capabilities, and global deployment experience. These players focus on direct-to-chip and hybrid systems tailored for high-density workloads. Domestic companies compete through localized manufacturing, service reach, and cost optimization. Strategic partnerships with data center developers strengthen market positioning. Competition centers on system efficiency, scalability, and integration capability. Vendors differentiate through modular designs, quick deployment timelines, and energy-efficient performance. Product innovation targets AI-ready infrastructure and sustainability compliance. Firms invest in technical support and lifecycle services to retain long-term contracts. Brownfield retrofits create opportunities for solution customization. Pricing pressure remains moderate due to high entry barriers and technical complexity. Established players benefit from long-term relationships with hyperscale and colocation operators. New entrants face challenges related to capital intensity and skill requirements. Expansion strategies focus on regional presence, channel partnerships, and workforce training. The competitive environment supports steady innovation and gradual market consolidation.

Recent Developments

  • In November 2025, Johnson Controls launched the Silent-Aire Coolant Distribution platform, a scalable liquid cooling solution for high-density data centers in India. This platform offers capacities from 500kW to over 10MW, supporting flexible in-row or perimeter installations for AI and edge computing needs.
  • In October 2025, Delta Electronics India showcased advanced liquid cooling solutions, including in-rack liquid-to-liquid CDUs with up to 200kW capacity per rack for AI workloads. This was highlighted at events like Data Centre World Asia. The innovations align with India’s push for sustainable high-density data center cooling.
  • In July 2025, Schneider Electric took full ownership of its India unit in a $6.4 billion deal, strengthening its position in the data center market including liquid cooling infrastructure. This acquisition occurred. The move supports expanded capabilities for energy-efficient cooling solutions amid India’s growing data center demands.
  • In November 2024, Vertiv Co. expanded its global liquid cooling portfolio with two new high-capacity CoolChip CDU systems tailored for AI-driven data centers. The announcement was made enabling modular deployments up to 350kW for high-density racks.

Report Coverage

The research report offers an in-depth analysis based on Cooling Type Segment, Data Center Type Segment, End User Segment and Component Segment. It details leading market players, providing an overview of their business, product offerings, investments, revenue streams, and key applications. Additionally, the report includes insights into the competitive environment, SWOT analysis, current market trends, as well as the primary drivers and constraints. Furthermore, it discusses various factors that have driven market expansion in recent years. The report also explores market dynamics, regulatory scenarios, and technological advancements that are shaping the industry. It assesses the impact of external factors and global economic changes on market growth. Lastly, it provides strategic recommendations for new entrants and established companies to navigate the complexities of the market.

Future Outlook

  • Demand for liquid cooling will grow rapidly as AI, ML, and HPC workloads increase across industries.
  • Hyperscale operators will drive large-scale adoption by designing liquid-ready facilities from day one.
  • Colocation providers will invest in hybrid cooling systems to attract dense compute clients and edge deployments.
  • Direct-to-chip cooling will remain the dominant technology due to its scalability and rack-level efficiency.
  • Immersion cooling will find niche adoption in blockchain, crypto, and ultra-high-density edge setups.
  • The southern region will continue leading growth due to data center hubs in Chennai, Bengaluru, and Hyderabad.
  • Government incentives for green data centers will push more operators to adopt liquid-based cooling solutions.
  • Cooling equipment and chillers will remain high-demand components as system complexity increases.
  • Domestic manufacturers will expand their presence, supported by localization and skilled workforce training.
  • Competition will intensify around modular, low-PUE cooling solutions aligned with sustainability goals.

CHAPTER NO. 1 :      GENESIS OF THE MARKET            

1.1 Market Prelude – Introduction & Scope

1.2 The Big Picture – Objectives & Vision

1.3 Strategic Edge – Unique Value Proposition

1.4 Stakeholder Compass – Key Beneficiaries

CHAPTER NO. 2 :      EXECUTIVE LENS

2.1 Pulse of the Industry – Market Snapshot

2.2 Growth Arc – Revenue Projections (USD Million)

2.3. Premium Insights – Based on Primary Interviews  

CHAPTER NO. 3 :      INDIA DATA CENTER LIQUID COOLING MARKET FORCES & INDUSTRY PULSE

3.1 Foundations of Change – Market Overview
3.2 Catalysts of Expansion – Key Market Drivers
3.2.1 Momentum Boosters – Growth Triggers
3.2.2 Innovation Fuel – Disruptive Technologies
3.3 Headwinds & Crosswinds – Market Restraints
3.3.1 Regulatory Tides – Compliance Challenges
3.3.2 Economic Frictions – Inflationary Pressures
3.4 Untapped Horizons – Growth Potential & Opportunities
3.5 Strategic Navigation – Industry Frameworks
3.5.1 Market Equilibrium – Porter’s Five Forces
3.5.2 Ecosystem Dynamics – Value Chain Analysis
3.5.3 Macro Forces – PESTEL Breakdown

3.6 Component Trend Analysis

    3.6.1 Regional Component Trend
3.6.2 Component Trend by product

CHAPTER NO. 4 :      KEY INVESTMENT EPICENTER    

4.1 Regional Goldmines – High-Growth Geographies

4.2 Product Frontiers – Lucrative Product Categories

4.3 Data Center Type Sweet Spots – Emerging Demand Segments

CHAPTER NO. 5: REVENUE TRAJECTORY & WEALTH MAPPING

5.1 Momentum Metrics – Forecast & Growth Curves

5.2 Regional Revenue Footprint – Market Share Insights

5.3 Segmental Wealth Flow – Cooling Type & Data Center Type Revenue

CHAPTER NO. 6 :      TRADE & COMMERCE ANALYSIS

6.1.      Import Analysis by Region

6.1.1.    India Data Center Liquid Cooling Market Import Revenue By Region

6.2.      Export Analysis by Region

6.2.1.    India Data Center Liquid Cooling Market Export Revenue By Region

CHAPTER NO. 7 :      COMPETITION ANALYSIS 

7.1.      Company Market Share Analysis

7.1.1.    India Data Center Liquid Cooling Market: Company Market Share

7.2.      India Data Center Liquid Cooling Market Company Revenue Market Share

7.3.      Strategic Developments

7.3.1.    Acquisitions & Mergers

7.3.2.    New Product Launch

7.3.3.    Regional Expansion

7.4.      Competitive Dashboard

7.5.    Company Assessment Metrics, 2024

CHAPTER NO. 8 :      INDIA DATA CENTER LIQUID COOLING MARKET – BY COOLING TYPE SEGMENT ANALYSIS

8.1.      India Data Center Liquid Cooling Market Overview by Cooling Type Segment

8.1.1.    India Data Center Liquid Cooling Market Revenue Share By Cooling Type

8.2.      Direct-to-Chip Cooling

8.3.      Immersion Cooling

8.4.      Hybrid Cooling Systems

CHAPTER NO. 9 :      INDIA DATA CENTER LIQUID COOLING MARKET – BY DATA CENTER TYPE SEGMENT ANALYSIS        

9.1.      India Data Center Liquid Cooling Market Overview by Data Center Type Segment

9.1.1.    India Data Center Liquid Cooling Market Revenue Share By Data Center Type

9.2.      Hyperscale Data Centers

9.3.      Colocation Data Centers

9.4.      Enterprise Data Centers

CHAPTER NO. 10 :    INDIA DATA CENTER LIQUID COOLING MARKET – BY END USER SEGMENT ANALYSIS

10.1.     India Data Center Liquid Cooling Market Overview by End User Segment

10.1.1.  India Data Center Liquid Cooling Market Revenue Share By End User

10.2.     IT & Cloud Service Providers

10.3.     Financial Services

10.4.     Healthcare & +Pharmaceuticals

10.5.     Manufacturing & Industrial

CHAPTER NO. 11 :    INDIA DATA CENTER LIQUID COOLING MARKET – BY COMPONENT SEGMENT ANALYSIS

11.1.     India Data Center Liquid Cooling Market Overview by Component Segment

11.1.1.  India Data Center Liquid Cooling Market Revenue Share By Component

11.2.     Cooling Equipment

11.3.     Chillers & Pumps

11.4.     Heat Exchangers

11.5.     Accessories

CHAPTER NO. 12 :    COMPANY PROFILES         

12.1.     Schneider Electric

12.1.1.  Company Overview

12.1.2.  Product Portfolio

12.1.3.  Financial Overview

12.1.4.  Recent Developments

12.1.5.  Growth Strategy

12.1.6.  SWOT Analysis

12.2.     Vertiv Co.

12.3.     STULZ India Pvt. Ltd.

12.4.     Rittal India

12.5.     Delta Electronics India

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Frequently Asked Questions:

What is the current market size for India Data Center Liquid Cooling Market, and what is its projected size in 2032?

The India Data Center Liquid Cooling Market was valued at USD 166.69 million in 2024 and is projected to reach USD 958.74 million by 2032.

At what Compound Annual Growth Rate is the India Data Center Liquid Cooling Market projected to grow between 2024 and 2032?

The India Data Center Liquid Cooling Market is expected to grow at a CAGR of 24.58% from 2024 to 2032.

Which India Data Center Liquid Cooling Market segment held the largest share in 2024?

Direct-to-chip cooling held the largest share in the India Data Center Liquid Cooling Market in 2024, driven by AI and high-density deployments.

What are the primary factors fueling the growth of the India Data Center Liquid Cooling Market

The India Data Center Liquid Cooling Market is driven by increasing rack densities, AI workloads, energy efficiency needs, and sustainability goals.

Who are the leading companies in the India Data Center Liquid Cooling Market?

Leading players in the India Data Center Liquid Cooling Market include Schneider Electric, Vertiv Co., STULZ India Pvt. Ltd., Rittal India, and Delta Electronics India.

Which region commanded the largest share of the India Data Center Liquid Cooling Market in 2024?

Southern India commanded the largest share of the India Data Center Liquid Cooling Market in 2024, led by Chennai, Bengaluru, and Hyderabad.

About Author

Sushant Phapale

Sushant Phapale

ICT & Automation Expert

Sushant is an expert in ICT, automation, and electronics with a passion for innovation and market trends.

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