Market Size (2018)
$3.36B
Vertical: SEMIBase Year: 2018
Market Size (2018)
$3.36B
Projected (2025)
$29.00B
CAGR (2017–2025)
33.8%
Key Players
16+
Accelerator cards improve the overall performance of devices such as servers, workstations, supercomputers, cloud servers, HPC servers, laptops, and tablets. With exponential growth in data generation, data center operators have to establish a balance between the need for performance at scale and operational efficiencies. The use of AI-based services and increased consumer-driven data positively influence the growth of the accelerator card market. The study also indicates that manufacturing industry would expect substantial growth in the accelerator card market due to the increasing need for high-performance devices and the adoption of easy-to-use data compression techniques. There has been a considerable increase in the demand for accelerator cards globally. Increasing cloud computing applications, growth in private and public cloud data, and growing demand for artificial intelligence, financial analysis image and video processing are the driving factors for the accelerator card market. However, high cost and lack of technical expertise and a number of advances in technologies are expected to restrain the growth of the accelerator card market.
The global accelerator card market has been broadly classified on the basis of accelerator type, processor type, and application. By accelerator type, the accelerator card market has been segmented into high-performance computing accelerators and cloud accelerator. Among these, high-performance computing accelerator cards dominated the market in 2018. By processor type, the accelerator card market has been segmented into graphics processing units (GPU), central processing units (CPU), field-programmable gate arrays (FPGAs), and application-specific integrated circuit (ASIC). The FPGA segment is expected to grow with the highest CAGR during the forecast period. By application, the market has been divided into data analytics, machine learning, video and image processing, financial computing, mobile phones, and others. Under this, the data analytics segment dominated the market in 2018.
The global accelerator card market comprises various manufacturers, government research firms, universities, and technical institutes that engage in developing and advancing in the semiconductor industry. The major players considered in the scope of the global accelerator card market are NVIDIA Corporation, Intel Corporation, Advanced Micro Devices Inc., Xilinx Inc., Oracle Corporation, Fujitsu Ltd, Cisco Systems Inc., HP Development Company, L.P, Huawei Technologies Co. Ltd, IBM Corporation, Achronix Semiconductor Corporation, and Kalray Corporation among others.
The Accelerator Card Market market is projected to grow at a CAGR of 33.8% from 2017 to 2025.
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View Subscription PlansAccelerator Card Market
Historical performance and future projections (2020–2030, USD Billion)
Market Size (USD Mn)
An accelerator card is an extension card that is used in high-performance computing, cloud servers, and data centers to accelerate various workloads. These cards can be plugged in via a PCIe slot and are programmable, allowing the user to instruct the card to perform various tasks. These cards are more efficient as compared to general-purpose microprocessors. Some of the widely used accelerator cards in high-performance computing, and data centers are CPUs and GPUs. FPGAs and ASICs are also being used to accelerate machine learning applications in data centers. As the demand for artificial intelligence and machine learning increases, the growth in data collection and analysis increases the need for the deployment of accelerator cards. Xilinx, NVIDIA, Intel, AMD are among the prominent manufacturers offering hardware acceleration solutions to data centers and cloud servers. Moreover, the growing cloud computing market and the use of artificial intelligence in high-performance computing are certain factors boosting the market growth.
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View Subscription PlansWantstats research is conducted by industry experts who offer insights into industry structure, market segmentation, technology assessment, competitive landscape (CL), penetration, as well as on emerging trends. Besides primary interviews (~80%) and secondary research (~20%), their analysis is based on their years of professional expertise in respective industries. Our analysts also predict where the market will be headed in the next five to 10 years by analyzing historical trends and current market positions. Furthermore, the varying trends of segments & categories geographically presented are studied and are estimated based on primary & secondary research.
After estimating the market sizes and estimates, the numbers are verified with industry participants and key opinion leaders. The wide network of industry participants add value to the research and verify the numbers and estimates provided in the study. At the last stage of the research process, a final report is prepared, which is then published on different websites as well as distributed through various channels. The below figure contains the different stages of the research process to produce the report.
Base Year
2018
Historical Period
2017 – 2017
Forecast Period
2019 – 2025
Primary Interviews
150+
Historical data (2017–2018) and forecast period (2018–2025)
Our research process spans primary interviews with industry stakeholders combined with comprehensive secondary data analysis, validated through triangulation across multiple independent sources.
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View Subscription PlansThe global accelerator card market has registered significant competition between the top providers of accelerator cards. The growth of these players majorly depends upon the market conditions, industrial requirements, technological advancements, and industry development. Thus, it becomes necessary for the vendors to integrate state-of-the-art technology and develop cost-effective solutions for users to maintain their market position and gain a competitive advantage. Thus, the players in the market are constantly focusing on research & development and product expansion strategies to maintain their stronghold on the market.
NVIDIA Corporation, Intel Corporation, Advanced Micro Devices Inc., Xilinx Inc., and Achronix Semiconductor Corporation are some of the prominent players in the market. The increasing cloud computing market and growing demand for AI and HPC in data centers are increasing the demand for accelerator cards. Apart from technological innovations and development of the existing product portfolios, these players have entered into various partnerships and strategic alliances with local companies to expand their geographic presence.
NVIDIA is one of the leading players in the accelerator card market that engages in visual computing. It operates through GPU and Tegra Processor segments. The GPU segment consists of components such as GeForce, GeForce Now, Quadro, Tesla, DGX. The Tegra Processor segment consists of components such as Tegra processors, DRIVE, SHIELD, and Jetson TX2. Additionally, the company focuses on expanding into the existing markets by strong customer and channel partner relationships.
Intel Corporation is also one of the prominent players in the global accelerator card market. The company specializes in semiconductor design and manufacturing, artificial intelligence, autonomous driving, and non-volatile memory solutions. It operates through a number of business segments, namely client computing group, data center group, Internet of Things group, non-volatile memory solutions group, and programmable solutions segment. It has a strong presence across the globe. The company strongly focuses on partnerships and new product developments to increase its business and customer base worldwide.
Advanced Micro Devices Inc. operates through two business segments, namely computing and graphics segment and the enterprise, embedded and semi-custom segment. The computing and graphics segment include notebook and desktop processors and chipsets, professional GPUs, and licensing portions of the intellectual property (IP) portfolio. The enterprise embedded and semi-custom segment includes development services, server, embedded processors, and semi-custom system-on-chip (SoC) components and technology for game consoles. The company aims at investing in acquisitions to strengthen its business and gain a competitive advantage.
Xilinx Inc. designs and develops programmable devices and associated technologies, including software design tools, printed circuit boards, adaptive compute acceleration platform (ACAP), and integrated circuits (ICs), in the form of programmable logic devices (PLDs). The company focuses on the innovation and development of its products to provide its customers with cost-effective and energy-efficient products.
Achronix Semiconductor Corporation is a provider of high-performance FPGA and embedded FPGA (eFPGA) solutions. The offerings include programmable FPGA fabrics, discrete high-performance and high-density FPGAs with hardwired system-level blocks, data center, and HPC hardware accelerator boards, and many more products. The company invests in R&D for delivering innovations in the programmable logic segment that set the industry standard for performance, power, and cost leadership.
THREAT OF NEW ENTRANTS
The global accelerator card market is experiencing high growth. The entry barriers to new players in this market are high due to the strong customer base of existing key players and high market share. Developing accelerator cards requires high investments for the supply of raw materials and manufacturing chips. Furthermore, high technical expertise is needed to understand complex accelerator card designing technologies. Due to these factors, the new players in the global accelerator card market possess a low threat to the existing market players.
BARGAINING POWER OF SUPPLIERS
The majority of the consumer electronics devices manufacturing companies are adopting accelerator cards to increase the computing capabilities of the devices. The accelerator card providers are under continuous pressure to design chips with enhanced capabilities at lower costs.
The presence of raw material suppliers for accelerator cards is relatively high. Furthermore, they offer products that are very easy to replicate. Due to this, there is minimal product differentiation. Thus, with the presence of a large number of raw material suppliers and the minimal switching costs due to the adoption of low-cost raw materials by accelerator card manufacturers, the bargaining power of suppliers is expected to be low.
THREAT OF SUBSTITUTES
The threat of substitutes is low in the global accelerator card market. The accelerator cards are complex to design and require high technical expertise due to which the availability of close substitutes is low. However, product differentiation is moderate; therefore, the companies are investing heavily to leverage advanced capabilities such as artificial intelligence and offer differentiated and enhanced products to the consumers.
BARGAINING POWER OF BUYERS
Globally, the buyer concentration of accelerator cards is moderate. The buyers in the global accelerator card market include IT & telecommunication companies, consumer electronics manufacturers, healthcare, transportation, and media and entertainment. Technical expertise among the buyers is moderate due to the lack of technology awareness. However, the buyers are price sensitive and largely opt for outsourcing services instead of in-house manufacturing. The above factors, coupled with moderate brand identity, result in the moderate bargaining power of buyers.
INTENSITY OF RIVALRY
The market is expected to experience high competition among the existing players in the global accelerator card market. The global market has witnessed increased demand for high computing capability chips consuming low power. For maintaining a competitive advantage, companies are spending a significant share of their revenue on research and development to offer additional capabilities in their product offerings. Also, the global market poses moderate barriers to entry. Due to the above factors, the rivalry among the competitors is expected to be high.
Market estimates by geography (2025)
InsightNorth America leads with $9.74B by 2025, while Asia Pacific is projected to grow fastest at a 37.3% CAGR.
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View Subscription Plans| REGION | 2017 | 2018 | 2025 | CAGR | SHARE |
|---|---|---|---|---|---|
| North America | $1.06B | $2.49B | $9.74B | 31.9% | 34% |
| Asia Pacific | $664.31M | $1.82B | $8.40B | 37.3% | 29% |
| Europe | $844.97M | $2.07B | $8.52B | 33.5% | 29% |
| Rest of the World | $254.41M | $595.14M | $2.35B | 32.0% | 8% |
| Total | $2.83B | $6.97B | $29.00B | 33.8% | 100% |
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View Subscription PlansTotal Market Size
$29.00B
| APPLICATION | REVENUE ($B) | GROWTH RATE | MARKET PENETRATION |
|---|---|---|---|
| Graphics Processing Unit | $10.60B | 32.8% | 37% |
| Central Processing Unit | $9.07B | 33.4% | 31% |
| Field Programmable Gate Array (FPGA)) | $6.64B | 35.8% | 23% |
| Application-Specific Integrated Circuits | $2.69B | 34.4% | 9% |
* Revenue projections based on 2025 estimates. Growth rates represent CAGR 2024–2030. Market penetration indicates current adoption rate within addressable market segments.
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Analytical insights on Accelerator Card Market covering market dynamics, competitive landscape, and strategic outlook.
The Accelerator Card Market market is projected to reach $29.00B by 2025, growing at 33.8% CAGR. The Graphics Processing Unit segment holds the largest share.
Various companies across the globe are currently dealing with rapid developments in ICT technologies. To address the need for increased agility, automation of processes for improving customer experience, and continued financial growth, the companies are using the accelerator cards. Organizations across the world are transforming their businesses and adopting digitization in order to keep up with the rising demands for agility and scalability form customers. Cloud adoption has increased at an overwhelming rate over the last decade. Cloud services have enabled organizations to dynamically control the capacity with which they are using public and private hosting environments to increase agility, scalability, and efficiency. The rise in digitalization across the globe has led to high volumes of data generated on a daily basis which has led to the adoption of cloud computing solutions. Various end users such as BFSI, IT & telecom, media & entertainment, and other industries are increasingly adopting cloud computing services. Therefore, the adoption of accelerator cards to expand cloud functionality, enhance the overall network performance, and improve the processing speed is expected to positively impact the market growth. Moreover, various companies such as Intel Corporation, Xilinx, Inc, NVIDIA Corporation and others are developing accelerator cards for cloud- and AI-based applications such as recommendation engines, ad placement, language translation and others to provide support for deep learning models and enhance the overall functionality of the system.
FPGA-based accelerator card is programmable logic devices or semiconductor integrated circuits (ICs), which can be reprogrammed after manufacturing according to the desired applications or functionality. These cards are usually deployed in conjunction with general-purpose CPUs to speed up the output for targeted functions in compute- and data-intensive workloads and allows the developers to reprogram their functionality to boost the overall performance of the application. Moreover, the demand for FPGA-based cards is increasing due to their ability to offer flexibility to AI system architects for deep learning accelerators which are also used to support customization. Similarly, the FPGA accelerator cards also provide advantages in the mission-critical applications manufacturing operations and autonomous vehicles that require low-latency. The capability of the FPGAs to perform functions in fewer cycles as compared to CPUs which execute thousands of instructions simultaneously to perform a similar function. This is expected to be one of the major growth opportunities for the companies active in the accelerator cards market.
Diverse workloads and increasing number of high-bandwidth applications are some of the major factors which are driving the accelerator card market. However, the cost of manufacturing accelerator cards is very high as the data centers use these for high-performance computing and large-scale data extraction and transmission. On average, the cost of accelerator cards ranges from USD 6,000 to USD 8,000. With advances in technology and high-performance computing, the demand for accelerator cards has increased significantly. Accelerator cards are also being developed based on end-use applications; the larger the application, the more powerful and advanced microchip has to be which increases their overall cost. Various types of accelerator cards such as AI, graphics, programmable, servers, and others are used for fast computing applications for accelerating the workflow. With the changing market landscape and advanced technology, the demand for technical expertise for different technologies such as AI, data science, big data, and others to enhance the workflow and functionality of the system has increased. However, the designing and manufacturing processes of AI-based accelerator cards require highly skilled personnel due to the high level of complexity associated with its operations.
There is a significant lack of technical experts for the development of both software and hardware. According to Tencent, there are only around 300,000 AI practitioners and researchers globally, while the demand for skilled human resources is in millions. Therefore, it is expected to be one of the major factors hindering the market growth.
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Profiles of 110 companies operating in the Accelerator Card Market market, including revenue, employee count, and market positioning where available.
Showing 110 of 110 companies
HMD Global
Company Headquarters: Finland Founded: 2016 Workforce: ~500 Company Working: HMD Global is a mobile phone company. These mobile phones are sold under the Nokia brand. The Nokia-branded smartphones, feature phones, and tablets are designed and sold by HMD Global, Nokia’s exclusive brand licensee for mobile phones and tablets. In the first year of inception, the company launched its first 11 phones, which included 5 feature phones and 6 Android smartphones. In 2018, HMD Global launched 12 new Android smartphones and five new feature phones. The company operates through 50 offices established across the globe.
Kalray Corporation
Company Headquarters: France Founded: 2008 Workforce: ~100 Company Working: Kalray Corporation is a fabless semiconductor company that pioneered in processors for new intelligent systems. The offerings include processors, solutions, software development kits, boards, and development platforms. Its servers are deployed extensively in fast-growing sectors such as new-generation networks (intelligent data centers) and autonomous vehicles, as well as healthcare equipment, drones, and robots. The company serves in various markets, including autonomous vehicles, aerospace/avionics, artificial intelligence, data storage, data networking, computer vision. It has partnered with various companies, which are Carri Systems, CEA, ESOL, 6WIND, Intron Technology Holding, Ltd, and many more. The company has its presence in the UK and the US.
Fujitsu Ltd
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Apple Inc.
**Employees (full-time equivalent, per Form 10-K, Item 1):** Source: Apple Form 10-K FY2022–FY2025. The FY2025 10-K states approximately 166,000 FTEs as of 27 September 2025. **Market capitalisation and share data (as of close 13 August 2026):** **Positioning statement (150 words).** Apple is the world's largest consumer technology franchise by revenue and profitability, and — as of mid-August 2026 — the second most valuable listed company globally. Its economic engine is a vertically integrated hardware–silicon–software–services stack anchored on an installed base that surpassed 2.5 billion active devices in the December 2025 quarter. iPhone contributed 50.4% of FY2025 revenue; Services, the highest-margin and fastest-compounding line, contributed 26.2% at a gross margin near 75%. Apple designs its own silicon, controls its operating systems, owns the primary distribution channel for third-party software on its platforms, and outsources substantially all manufacturing. The company is presently navigating three simultaneous inflections: a CEO succession (John Ternus replaces Tim Cook on 1 September 2026), a strategic pivot in artificial intelligence executed through a licensing partnership with Google's Gemini, and an acute global memory-component shortage that management has characterised as a once-in-a-century pricing event. --- **The company's own characterisation.** Apple's FY2025 Form 10-K describes the business as designing, manufacturing and marketing smartphones, personal computers, tablets, wearables and accessories, and selling a range of related services. It identifies six software platforms — iOS, iPadOS, macOS, watchOS, visionOS and tvOS — as providing consistent experiences across devices, and lists services spanning advertising, AppleCare, cloud, digital content and payments. The 10-K states that the company's customers are primarily in the consumer, small and mid-sized business, education, enterprise and government markets, and that it sells through both direct channels (its own retail and online stores and direct sales force) and indirect channels (third-party cellular carriers, wholesalers, retailers and resellers). During FY2025 the direct/indirect split of net sales was 40%/60%. **Independent characterisation.** Apple operates a closed-loop platform business disguised as a hardware manufacturer. The correct way to model it is as a two-stage machine. *Stage one — installed-base acquisition.* Hardware is sold at gross margins that, while high for consumer electronics, are the lower-margin half of the business. Products gross margin ran at approximately 38.7% in Q2 FY2026 versus 76.7% for Services (management commentary, Q2 FY2026 earnings call). Hardware's strategic function is to install and renew an addressable base. That base exceeded 2.5 billion active devices as of the December 2025 quarter, up from 2.35 billion a year earlier. *Stage two — monetisation of the base.* Services extract recurring, capital-light, near-software-margin revenue from that base through seven identified streams: advertising, AppleCare, cloud services, digital content (App Store and Apple's own subscription properties), payment services, and licensing. Cumulative paid subscriptions across Apple's platforms and third-party App Store subscriptions surpassed 1.5 billion as of Q3 FY2026 — roughly three years after crossing 1 billion. **Revenue model mix (FY2025).** Product sales 73.8% ($307,003M); Services 26.2% ($109,158M). Within Services, a material but undisclosed component is licensing revenue from Google for default search placement in Safari — estimated at approximately $20 billion in 2022 per unsealed exhibits in *United States v. Google LLC*, which would have represented roughly one-fifth of FY2024 Services revenue. Apple does not disclose this figure. It is the single largest identified concentration risk inside the Services line. **Value chain position.** Apple occupies the design, silicon architecture, operating system, brand, and retail distribution layers, and has increasingly extended into the component layer through in-house silicon (A-series, M-series, C-series modems, N-series networking). It does not own volume assembly; substantially all manufacturing is performed by outsourcing partners, principally in China, India and Vietnam. It is a price-setter in premium smartphones and a price-taker in memory — a structural asymmetry that became the dominant financial story of 2026. **Customer types and end-markets.** Consumer (dominant), small and mid-sized business, education, enterprise, government and healthcare. Apple maintains dedicated go-to-market programmes for business, education, healthcare and government, but does not disclose revenue by customer type. ---
NVIDIA Corporation
Company Headquarters: US Founded: 1993 Workforce: ~13,277 Company Working: NVIDIA Corporation (NVIDIA) is one of the leading visual computing companies. The company focuses on PC graphics. It has invented graphics processing units (GPU) that solve the most complex problems in computer science. It operates in two business segments, namely the GPU and Tegra Processor. The GPU segment consists of products such as GeForce for mainstream PCs and PC gaming; GeForce Now for cloud-based game-streaming services; Quadro for professional designing such as video editing and computer-aided designs (CAD); Tesla for deep learning and accelerated computing; GRID for cloud and data centers; and DGX for AI scientists, developers, and researchers. The Tegra Processor segment consists of products such as Tegra processors, DRIVE, SHIELD, and Jetson TX2. The company serves its products to the gaming, professional visualization, data center, and automotive markets. The company operates across North America, Asia-Pacific, Europe, and the rest of the world.
IBM Corporation
Company Headquarters: US Founded: 1911 Workforce: ~2,82,100 Company Working: IBM Corporation is a global provider of integrated business solutions and services. Its Cloud & Cognitive Software division provides software for vertical and domain-specific solutions in a variety of application areas, as well as customer information control system and storage, analytics, and integration software solutions to support client mission on-premises workloads in the banking, airline, and retail industries. It also provides middleware and data platform software, such as Red Hat, which allows clients to run hybrid multi-cloud environments; cloud paks, WebSphere distributed, and analytics platform software, such as DB2 distributed, information integration, and enterprise content management; and IoT, blockchain, and AI/Watson platforms. Business consulting services, packaged software system integration, application management, maintenance, and support services, and finance, procurement, talent and engagement, and industry-specific business process outsourcing services are all available through the company's global business services segment. IT infrastructure and platform services are provided by the company's global technology services business, as well as project, managed, outsourcing, and cloud-delivered services for enterprise IT infrastructure environments and IT infrastructure support services. The cognitive solutions segment offers a cognitive computing platform called Watson, which interacts in natural language, processes big data, and learns from interactions with people and computers. This segment also provides data and analytics solutions, data management platforms, cloud data services, enterprise social software, and transaction processing software that run mission-critical systems in the banking, airline, and retail industries. IBM provides speech recognition products using computer hardware and software-based techniques to identify and process the human voice and convert the spoken words into computer text. Furthermore, the company is also investing heavily in designing and developing automatic speech recognition technology-based products, which are capable of authenticating users via their voice and performing an action based on the instructions defined by the human.
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