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The global high performance computing market was valued at USD 51.19 Billion in 2025. The industry is expected to grow at a CAGR of 7.20% during the forecast period of 2026-2035 to reach a value of USD 102.60 Billion by 2035. The global surge in artificial intelligence (AI) applications has catalyzed substantial investments in high-performance computing (HPC) infrastructure.
AI workloads, including machine learning, generative AI, and large-scale data analytics, require immense computational power, driving both private and public sectors to upgrade and expand their high performance computing (HPC) capabilities. In September 2025, Swedish digital infrastructure provider EcoDataCenter secured EUR 600 million (USD 703.5 million) in debt financing from Deutsche Bank to expand AI-focused data centers in Falun and Borlänge. This funding, part of a broader EUR 1.8 billion raised since 2023, underscores the growing demand for robust HPC solutions to support AI workloads.
Similarly, France and the United Arab Emirates (UAE) have announced plans to develop a 1-gigawatt AI data center, with combined investments ranging between USD 30 billion and USD 50 billion. This initiative aims to strengthen Europe’s AI capabilities, reduce reliance on foreign HPC infrastructure, and align with the EU’s strategy to enhance digital sovereignty.
These investments are pivotal in establishing resilient AI infrastructure in the high performance computing industry, ensuring data sovereignty, and fostering innovation across industries. With AI integration accelerating in healthcare, finance, automotive, and scientific research, the demand for advanced HPC systems continues to rise. Consequently, both governmental initiatives and private sector financing are expected to drive further growth and technological advancements in the global high performance computing market, cementing its role as a critical enabler of AI innovation.
Base Year
Historical Period
Forecast Period
Compound Annual Growth Rate
7.2%
Value in USD Billion
2026-2035
*this image is indicative*
| Global High Performance Computing Market Report Summary | Description | Value |
| Base Year | USD Billion | 2025 |
| Historical Period | USD Billion | 2019-2025 |
| Forecast Period | USD Billion | 2026-2035 |
| Market Size 2025 | USD Billion | 51.19 |
| Market Size 2035 | USD Billion | 102.60 |
| CAGR 2019-2025 | Percentage | XX% |
| CAGR 2026-2035 | Percentage | 7.20% |
| CAGR 2026-2035 - Market by Region | Asia Pacific | 8.1% |
| CAGR 2026-2035 - Market by Country | India | 8.9% |
| CAGR 2026-2035 - Market by Country | China | 7.8% |
| CAGR 2026-2035 - Market by Deployment | Cloud | 7.9% |
| CAGR 2026-2035 - Market by Industry Vertical | Healthcare and Life Sciences | 8.2% |
| Market Share by Country 2025 | UK | 4.4% |
The high performance computing market is accelerating innovation across industries by enabling faster data processing, seamless cloud integration, and efficient workflow management for complex workloads. In February 2025, Equinix partnered with AiHPC to launch Orchestration AI (OrchAI) on Platform Equinix in Hong Kong, providing a robust HPC and AI infrastructure. While supporting sectors like healthcare and life sciences, the platform also empowers organizations worldwide to enhance computational capabilities. It optimizes operations, and drive research, reinforcing the growing global trend of leveraging advanced computing for efficiency and innovation.
The market is witnessing a shift toward flexible service-based models that actively reduce upfront capital expenditure and deliver scalable, outcome-focused solutions. Enterprises are adopting these models to align HPC and AI workloads with business objectives, particularly for simulation, modelling, and generative AI applications. Reflecting this trend, in November 2023, CGG launched its Outcome-as-a-Service offering, which empowers industries to streamline demanding workflows with production-ready, cost-efficient, and sustainable HPC solutions.
Innovations in semiconductor technologies are enhancing the performance and efficiency of HPC systems contributing to the global high performance computing market growth. For instance, Hewlett Packard Enterprise (HPE) integrated Nvidia's latest GPUs into its server portfolio, boosting the performance of AI-optimized servers, in September 2025. This integration supports complex applications and reflects the industry's commitment to advancing hardware capabilities to meet the increasing computational demands of modern workloads, thereby supporting market growth.
The market growth is accelerating as organizations deploy high-performance computing to drive real-time weather and climate predictions. HPC enables faster simulations, AI-powered forecasting, and detailed analysis of extreme events such as cyclones, heat waves, and heavy rainfall. In India, Prime Minister Modi inaugurated the Arka and Arunika HPC systems, boosting computational capacity from 6.8 to 22 PetaFLOPS, empowering meteorologists to deliver more accurate, timely forecasts and improve disaster preparedness nationwide.
Government and institutional support play a key role in advancing high performance computing (HPC) initiatives worldwide. In the United States, agencies such as the Department of Energy (DOE), NASA, and the Department of Defense (DoD) are making significant investments to enhance HPC capabilities. These efforts aim to accelerate progress in critical fields including climate modeling, genomics, and advanced defense technologies, underscoring the strategic role of HPC in strengthening national scientific, technological, and security objectives.

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The EMR’s report titled “Global High Performance Computing Market Report and Forecast 2026-2035” offers a detailed analysis of the market based on the following segments:
Market Breakup by Component
Key Insight: The demand for solutions is driven by organizations seeking advanced computing platforms for AI, simulations, and data analytics. Services, however, are growing faster as enterprises increasingly rely on managed HPC offerings, cloud-based support, and consulting for deployment and maintenance. The combination of evolving hardware technologies and the complexity of AI workloads is boosting adoption of both solutions and services across industries.
Market Breakup by Deployment
Key Insight: The cloud deployment models dominate the high performance computing market, driven by scalability, cost efficiency, and flexible resource allocation. Organizations are rapidly shifting workloads to cloud-based HPC to support AI, machine learning, and real-time data analytics without heavy upfront investments. On-premises deployment continues to grow, especially for sensitive or proprietary workloads requiring high security. Hybrid adoption strategies are also emerging, allowing companies to balance flexibility with control over critical HPC infrastructure.
Market Breakup by Organisation Size
Key Insight: Large enterprises are generating substantial revenue in the market by leveraging extensive computing resources to manage complex AI models, simulations, and analytics workloads. Small and medium enterprises (SMEs) are witnessing faster growth due to affordable cloud HPC solutions and managed services, enabling them to access high-performance computing capabilities without significant capital expenditure. This trend allows SMEs to compete in AI and research-driven sectors alongside established large enterprises.
Market Breakup by Industry Vertical
Key Insight: Healthcare and life sciences represent the largest vertical in the global high performance computing market, fueled by genomics, drug discovery, and AI-assisted diagnostics. BFSI, manufacturing, and government sectors are also driving adoption, while education, research, media, and entertainment rely on HPC for simulations and big data analytics. Growing regulatory compliance, digital transformation, and data-intensive applications across industries continue to accelerate HPC deployment, with healthcare remaining the fastest-growing and most technology-intensive sector.
Market Breakup by Region
Key Insight: Asia Pacific is the hotspot for high performance computing, driven by government initiatives, industrial expansion, and rapid adoption of AI, machine learning, and cloud technologies. North America and Europe remain significant due to established HPC infrastructure and continuous R&D investments. Emerging economies in Latin America, the Middle East, and Africa are witnessing steady growth, supported by technology partnerships and increasing investment in high-performance computing to meet expanding industrial and research demands.
By component, solutions to demonstrate high demand
HPC solutions are witnessing high demand in the high performance computing market, fueled by the rising need for advanced computing platforms to handle AI, machine learning, simulations, and data analytics. Organizations are investing in high-performance servers, storage systems, and integrated platforms to efficiently manage complex workloads. In April 2025, Compu Dynamics launched its full lifecycle AI and HPC Services unit, providing end-to-end solutions, including design, construction, and liquid cooling, highlighting the growing focus on optimized HPC infrastructure.
On the other hand, HPC services are recording steady growth fueled by rising demand for managed solutions, AI-ready infrastructure, and specialized support for high-density workloads. Enterprises increasingly rely on services for deployment, maintenance, and optimization of HPC environments to ensure performance, efficiency, and scalability. In August 2025, DartPoints announced a multi-market expansion with AI- and HPC-ready colocation services across the Southeast and Midwest U.S., highlighting the role of flexible service offerings in supporting complex workloads.
By deployment type, cloud is picking up robust pace
The cloud deployment segment dominates the global high performance computing market, driven by the need for scalable, flexible, and cost-efficient infrastructure to support AI, machine learning, and compute-heavy workloads. Organizations are increasingly adopting cloud HPC to optimize operations and avoid heavy upfront investments. In July 2025, FNTS launched a cloud for HPC at its US-based data center in Omaha, Nebraska, using IBM Power9 and Power10 servers. The platform enables industries like healthcare, manufacturing, financial services, and government to run AI, simulation, and advanced analytics workloads securely and efficiently.
The on-premises segment is driven by the demand for enhanced security, control, and compliance. Enterprises with sensitive or proprietary workloads prefer local HPC infrastructure to maintain data confidentiality, regulatory compliance, and operational oversight. On-premises deployments allow companies to optimize performance for critical applications while leveraging hybrid models selectively. This approach ensures control over high-density computing environments while integrating with cloud services when flexibility and scalability are needed.
By organization size, large enterprises to represent the biggest market portion
The large enterprise drives substantial revenue in the high performance computing market, leveraging extensive computing infrastructure to manage complex AI models, simulations, and analytics workloads. These organizations invest heavily in high-performance servers, storage, and HPC platforms to optimize operations and support innovation across industries. Their scale allows deployment of advanced solutions for research, finance, healthcare, and manufacturing, reinforcing their position as the dominant segment in the HPC market.
Meanwhile, SMEs are demonstrating the fastest-growth, fueled by affordable cloud HPC solutions and managed services. SMEs can now access high-performance computing capabilities without heavy capital expenditure, enabling participation in AI, analytics, and research-driven initiatives. Flexible and scalable solutions allow these businesses to compete with larger enterprises, accelerate innovation, and deploy complex workloads efficiently, contributing to rapid growth in this previously underrepresented segment.
By industry vertical, healthcare and life sciences to account for the largest share
The healthcare and life sciences leads the global high performance computing market as organizations harness HPC to accelerate AI-assisted diagnostics, genomics, drug discovery, and bioinformatics. Handling massive healthcare datasets requires high-speed computation and advanced analytics. In a major step, the Indian Council of Medical Research (ICMR) inaugurated its first HPC facility, ‘Nakshatra,’ at the National Institute of Virology, Pune, in June 2025. The initiatives was held under the Pradhan Mantri Ayushman Bharat Health Infrastructure Mission, empowering researchers to process genomic data rapidly and advance public health programs.
On the other hand, the BFSI sector demonstrates steady uptake of HPCs in the global market, fueled by the increasing need for real-time analytics, risk modeling, fraud detection, and AI-driven financial services. Banks, insurance companies, and investment firms are adopting HPC platforms to process massive datasets efficiently, optimize decision-making, and ensure regulatory compliance. Scalable, high-performance computing enables BFSI organizations to enhance operational efficiency while remaining competitive in rapidly evolving financial markets.
By region, Asia Pacific to dominate the market growth
Asia Pacific holds the largest global high performance computing market share mainly attributed to the rising investments in high-performance computing infrastructure, driven by the need for advanced research & development, AI workloads, and engineering simulations across industries. Governments and enterprises are increasingly adopting HPC to accelerate innovation, improve computational efficiency, and support complex modeling. For example, in October 2024, Ansys Software Pvt Ltd inaugurated its DC-3 HPC data center in Pune, India, enhancing GPU and core capacity to support aerospace, automotive, and healthcare innovation.
The North American market is rapidly growing, primarily driven by increasing adoption of artificial intelligence (AI) across enterprises and research institutions. Organizations are investing in high-performance computing infrastructure to handle AI workloads, machine learning models, and large-scale data analytics efficiently. This surge in AI-driven applications is accelerating HPC deployment, enhancing computational power, and enabling faster innovation, making North America a key growth region in the global HPC market.
| CAGR 2026-2035 - Market by | Country |
| India | 8.9% |
| China | 7.8% |
| USA | 7.6% |
| Germany | 7.1% |
| France | 6.8% |
| Canada | XX% |
| UK | XX% |
| Italy | XX% |
| Japan | XX% |
| Australia | XX% |
| Saudi Arabia | XX% |
| Brazil | XX% |
| Mexico | 6.6% |
Major high performance computing companies are focusing on expanding cloud-based offerings and high-performance solutions to meet growing AI, machine learning, and data analytics demands. Top HPC market players like Hewlett Packard Enterprise and Dell are enhancing their server and storage portfolios, investing in cutting-edge GPU and accelerator technologies, and forming strategic partnerships to deliver scalable, enterprise-grade HPC infrastructure tailored to large organizations and research institutions.
To strengthen market presence, players such as Atos SE and Microsoft are emphasizing managed services, AI-focused HPC solutions, and global data center expansions. They are investing in R&D to improve computing efficiency, reliability, and sustainability. Strategic collaborations with governments and private enterprises, along with adoption of flexible deployment models including cloud and hybrid systems, allow these companies to address diverse industry verticals while driving innovation and competitive differentiation in the global high performance computing market.
Established in 2015 and headquartered in Houston, the United States, HPE provides enterprise IT solutions, including HPC, cloud, and data storage. It supports AI, machine learning, and large-scale data analytics for businesses and research organizations.
Founded in 1984 and based in Round Rock, Texas, the United States, Dell Inc. offers servers, storage, and cloud solutions. Its HPC portfolio helps organizations accelerate computational workloads across various industries.
Headquartered in Bezons, France, and founded in 1997, Atos SE delivers HPC, cloud, and managed IT services. The company enables scientific research, AI, and industrial simulations globally.
Established in 1975 and based in Redmond, the United States, Microsoft provides software, cloud, and AI-driven enterprise solutions. Its Azure HPC services support large-scale simulations, machine learning, and advanced analytics.
*Please note that this is only a partial list; the complete list of key players is available in the full report. Additionally, the list of key players can be customized to better suit your needs.*
Other players in the high performance computing market include NVIDIA Corporation, IBM Corporation, Intel Corporation, Fujitsu Limited, Cisco Systems Inc., Lenovo Group, Advanced Micro Devices Inc., and NEC Corporation, among others.
Explore the latest trends shaping the Global High Performance Computing Market 2026-2035 with our in-depth report. Gain strategic insights, future forecasts, and key market developments that can help you stay competitive. Get your free sample report or contact our team for customized consultation on global high performance computing market trends 2026.
*While we strive to always give you current and accurate information, the numbers depicted on the website are indicative and may differ from the actual numbers in the main report. At Expert Market Research, we aim to bring you the latest insights and trends in the market. Using our analyses and forecasts, stakeholders can understand the market dynamics, navigate challenges, and capitalize on opportunities to make data-driven strategic decisions.*
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In 2025, the market reached an approximate value of USD 51.19 Billion.
The market is projected to grow at a CAGR of 7.20% between 2026 and 2035.
The market is estimated to witness healthy growth in the forecast period of 2026-2035 to reach USD 102.60 Billion by 2035.
Key strategies driving the market include investment in AI-optimized HPC infrastructure, expansion of cloud-based HPC services, adoption of energy-efficient computing solutions, strategic partnerships for technology development, and deployment of advanced semiconductor and accelerator technologies.
The growing preference for hybrid high-performance computing solutions, increasing inclination of enterprises toward cloud service providers, and advancements in virtualisation are the key trends propelling the growth of the market.
The major regions in the market are North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa.
The major industry verticals in the market are BFSI, government and defence, education and research, manufacturing, media and entertainment, healthcare and life sciences, and energy and utility, among others.
The key players in the market include Hewlett Packard Enterprise Development LP, Dell Inc., Atos SE, Microsoft Corporation, NVIDIA Corporation, IBM Corporation, Intel Corporation, Fujitsu Limited, Cisco Systems Inc., Lenovo Group, Advanced Micro Devices Inc., NEC Corporation, and other notable players.
The various types of solutions for high performance cloud computing are servers, storage, networking devices, and software.
The different types of services in the market are design and construction, integration and deployment, and training and outsourcing.
Asia Pacific leads the market growth, driven by government initiatives, industrial expansion, and rapid adoption of AI, cloud, and high-performance computing technologies.
Explore our key highlights of the report and gain a concise overview of key findings, trends, and actionable insights that will empower your strategic decisions.
| REPORT FEATURES | DETAILS |
| Base Year | 2025 |
| Historical Period | 2019-2025 |
| Forecast Period | 2026-2035 |
| Scope of the Report |
Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment:
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| Breakup by Component |
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| Breakup by Deployment |
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| Breakup by Organisation Size |
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| Breakup by Industry Vertical |
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| Breakup by Region |
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| Market Dynamics |
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| Competitive Landscape |
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| Companies Covered |
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