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Field Programmable Gate Array Market Share

ID: MRFR//0513-CR | 153 Pages | Author: Aarti Dhapte| February 2020

Companies use a variety of market share positioning strategies to establish a strong foothold and gain a competitive edge in the FPGA market, which is extremely competitive. One pervasive technique is separation through mechanical development. To introduce cutting-edge capabilities and features, FPGA manufacturers regularly invest in R&D. By offering FPGAs with cutting edge handling power, further developed energy effectiveness, and improved programmability, organizations plan to draw in clients looking for cutting edge arrangements that give a presentation advantage over contenders.

Strategic partnerships and collaborations are another important strategy for positioning in the market. FPGA makers frequently fashion partnerships with other innovation organizations, semiconductor merchants, or programming designers to make extensive arrangements that take care of explicit businesses or applications. These associations can prompt the improvement of coordinated frameworks, utilizing the qualities of both equipment and programming parts. Such cooperative endeavors upgrade the incentive of FPGAs as well as extend market reach by tending to different client needs through a more extensive environment.

Cost authority is a critical piece of the pie situating procedure in the FPGA market. A few organizations center around streamlining creation processes, economies of scale, and store network proficiency to convey FPGAs at a cutthroat sticker cost. This approach requires a more extensive client base, particularly in enterprises where cost contemplations are foremost. By making their products accessible to a wider range of applications and customers, companies that use a cost leadership strategy aim to gain market share by offering FPGAs that are dependable and adaptable at a price that is compelling.

Another strategic strategy utilized by FPGA manufacturers is market penetration. This means expanding into new geographical areas or gaining market share in existing segments. Organizations might offer designated advancements, limits, or redid answers for draw in clients in unambiguous enterprises or locales. The objective is to expand the reception of FPGAs among different client base and gain a bigger portion of the general market. Market entrance techniques frequently include grasping nearby prerequisites, fitting items as needs be, and laying out areas of strength for an and circulation organization.

Furthermore, client driven procedures assume a urgent part in piece of the pie situating. Understanding client needs and offering magnificent help administrations can upgrade client unwaveringness and fulfillment. Some FPGA producers put resources into exhaustive client preparing projects, documentation, and responsive specialized help to guarantee that clients can boost the advantages of their FPGAs. By building solid connections and tending to client concerns quickly, organizations can get a devoted client base, prompting rehash business and positive informal exchange references.

Key acquisitions likewise assume a part in piece of the pie situating inside the FPGA business. Organizations might gain or converge with other semiconductor firms to grow their item portfolios, access new innovations, or combine market presence. A company's position in the market can be strengthened by gaining synergies from acquisitions, providing a wider range of solutions and capabilities to meet customer demands.

Finally, versatility and adaptability are basic parts of piece of the pie situating procedures in the FPGA market. Given the powerful idea of innovation and client prerequisites, organizations that can rapidly adjust their item contributions and plans of action in light of market patterns are bound to keep an upper hand. This might include quick advancement cycles, responsiveness to arising applications, and the capacity to turn systems in view of industry shifts.

Covered Aspects:

Report Attribute/Metric Details
Base Year For Estimation 2023
Forecast Period 2024-2032
Growth Rate 9.13% (2024-2032)

Global Field Programmable Gate Array (FPGA) Market Overview:


Field Programmable Gate Array (FPGA) Market Size was valued at USD 12.34 Billion in 2023. The Field Programmable Gate Array (FPGA) industry is projected to grow from USD 14.34 Billion in 2024 to USD 28.85 Billion by 2032, exhibiting a compound annual growth rate (CAGR) of 9.13% during the forecast period (2024 - 2032). Increased IoT penetration will raise demand, and the global infrastructure as a service sector will gain traction are the key market drivers enhancing the market growth.


Field Programmable Gate Array (FPGA) Market Overview


Source: Secondary Research, Primary Research, MRFR Database and Analyst Review


Field Programmable Gate Array (FPGA) Market Trends




  • Growing use in smartphone is driving the market growth




Market CAGR for field programmable gate array (FPGA) is being driven by the rising use in smartphone. Due to the physical size constraints of FPGAs, FPGAs in smartphones and mobile devices have remained a distant dream for many years. The faster speed of satisfying new application needs, such as adding larger screens and more sensors to smartphones, has resulted in smartphones and mobile device CPUs with extremely short development cycles. Due to the need to fulfill deadlines, there is a greater dependence on fully loaded application processors such as the Qualcomm Snapdragon or the TI OMAP. However, large chips, such as application processors, require two to three years to create, which implies that the processors accessible today were specified two years ago. New requirements are added as soon as the processors are made available. As a result, application developers must postpone their ideas until a processor compatible with their concepts is available. FPGAs can fill this void in the CPU development cycle. Because of the flexibility they provide for application developers, FPGAs are rapidly being included in smartphones and mobile devices. The introduction of new, smaller-sized FPGAs, such as Lattice Semiconductor's ICEs FPGA product line, has significantly impacted the usage of FPGAs in smartphones. Another important application of FPGAs in smartphones is sensor input handling. Today's application processors have limited input ports to handle sensor input signals, such as the Qualcomm baseband processor MSM8X55, which can only accept up to three I2C inputs.


In contrast, the number of sensors in mobile devices is constantly expanding. FPGA has been provided to fill the void between the number of input ports and sensors. FPGAs can handle several sensors depending on the device's requirements. A recent example of FPGA in mobile camera equipment is the HAWK MV-4000 high-performance smart camera. The camera employs FPGA to achieve real-time trigger reactions based on sensor input data.The vehicle industry's emphasis is turning toward increased safety and improved fuel economy. This transition has resulted in integrating modern electronics in vehicles, such as driving assistance, car-surrounding cameras, entertainment systems, and battery management systems. Today's automotive manufacturers are focusing on designing systems with high dependability, data security and connection, power efficiency, and low cost of ownership. Advanced driver assistance systems are a new generation of electronic technologies that are becoming more common in vehicles. Several FPGA providers, including Microsemi, a wholly owned subsidiary of Microchip Technologies Inc., have begun assisting automotive OEMs in developing innovative safety applications such as adaptive cruise control, collision avoidance, and blind spot warning by leveraging FPGAs and SoC FPGAs' high security, reliability, and low-power capabilities. FPGAs are important in enhancing vehicle communication as part of connected car technologies. FPGAs are now being used in engine control units to improve fuel economy. The automotive industry's shift towards autonomous vehicle technology will likely create various business opportunities for the worldwide FPGA market.Thus, driving the Field Programmable Gate Array (FPGA) market revenue.


Field Programmable Gate Array (FPGA) Market Segment Insights:


Field Programmable Gate Array (FPGA) Technology Insights


The Field Programmable Gate Array (FPGA) Market segmentation, based on technology includes SRAM-based FPGA, Anti-fuse based FPGA, and flash-based FPGA. The SRAM-based FPGA segment dominated the market, accounting for 35% of market revenue. The SRAM programmed FPGA's fundamental cells are static memory cells. Because of its reprogrammability, commercial vendors usually utilise SRAM (static memory)-based programming technology in their products. SRAM cells in SRAM-programmed FPGAs are primarily used to programme the FPGA's routing interconnect, which is controlled by tiny multiplexors, and to implement logic operations by programming the configurable logic blocks (CLBs).


Field Programmable Gate Array (FPGA) Configuration Insights


The Field Programmable Gate Array (FPGA) Market segmentation, based on configuration includes Low-End FPGA, Mid-Range FPGA, and High-End FPGA. The low-end FPGA segment dominated the market. Low-range FPGAs (Field Programmable Gate Arrays) are the most basic and affordable type of FPGA available in the market. These devices offer a limited number of logic elements, memory resources, and I/O interfaces, making them suitable for simple control systems and basic digital signal processing applications. Despite their limited capabilities, low-range FPGAs are an important part of the FPGA market, and are widely used in a variety of applications.


Figure 1: Field Programmable Gate Array (FPGA) Market, by Configuration, 2022 & 2032 (USD Billion)


Field Programmable Gate Array (FPGA) Market, by Configuration, 2022 & 2032


Source: Secondary Research, Primary Research, MRFR Database and Analyst Review


Field Programmable Gate Array (FPGA) Application Insights


The Field Programmable Gate Array (FPGA) Market segmentation, based on Application, includes data processing, consumer electronics, industrial, military & aerospace, automotive, telecom, and others. The consumer electronics category generated the most income (70.4%). FPGA is found in a wide range of consumer electronic gadgets, including digital televisions, DVD players, video players, portable entertainment devices, touch displays, and others. FPGA enhances consumer electrical gadgets without requiring new hardware. The devices are updated by simply rewriting the FPGA.


Field Programmable Gate Array (FPGA) Regional Insights


By region, the study provides the market insights into North America, Europe, Asia-Pacific and Rest of the World. The North American Field Programmable Gate Array (FPGA) market area will dominate this market, IoT, AI, machine learning, and big data analytics are expanding. IoT technologies are being widely embraced in the United States and Canada across all industry verticals, including smart cities, manufacturing, retail, and commercial. This will drive the North American FPGA industry ahead by increasing demand for high-performance computing in data centres.


Further, the major countries studied in the market report are The US, Canada, Japan, India, German, France, the UK, Italy, Spain, China, Australia, South Korea, and Brazil.


Figure 2: Field Programmable Gate Array (FPGA) Market SHARE BY REGION 2022 (USD Billion)


Field Programmable Gate Array (FPGA) Market SHARE BY REGION 2022


Source: Secondary Research, Primary Research, MRFR Database and Analyst Review


Europe has the second-largest Field Programmable Gate Array (FPGA) market share. Growing demand for FPGAs in the automotive sector as a result of government safety rules is one of the key drivers driving market development in Germany. Furthermore, the German Field Programmable Gate Array (FPGA) market dominated, while the UK Field Programmable Gate Array (FPGA) market grew fastest in Europe.


From 2023 to 2032, the Asia-Pacific Field Programmable Gate Array (FPGA) Market will develop at the quickest CAGR. FPGAs are increasingly being used in broadcast and professional AV systems, data centres, and automotive silicon and IP solutions for driver assistance systems and in-vehicle entertainment, which helps the country's industrial growth. Furthermore, China's Field Programmable Gate Array (FPGA) market had the highest market share, while India's Field Programmable Gate Array (FPGA) market was the fastest expanding in the Asia-Pacific region.


Field Programmable Gate Array (FPGA) Key Market Players & Competitive Insights


Leading market companies are extensively spending R&D on increasing their product lines, which will help the Field Programmable Gate Array (FPGA) market grow even more. Important market developments include new product releases, contractual agreements, acquisitions and mergers, greater investments, and collaboration with other organizations. The Field Programmable Gate Array (FPGA) industry must produce cost-effective merchandise to flourish and thrive in a more competitive and increasing market climate.


Manufacturing locally to reduce operating costs is an effective business strategy manufacturers use in the worldwide Field Programmable Gate Array (FPGA) industry to serve clients and expand the market sector. The Field Programmable Gate Array (FPGA) industry has recently provided some of the most important benefits. Lattice Avant,S2C, and other major competitors in the Field Programmable Gate Array (FPGA) market seek to improve market demand by investing in R&D efforts.


Gowin Semiconductor Corp., headquartered in China, strives to drive customer innovation globally. The company uses programmable logic chips to improve its products and reduce client hurdles. Customers that employ FPGA on their production boards may reduce their total cost of ownership as a result of the company's commitment to technology and quality. In January 2021, GOWIN Semiconductor Inc., is pleased to announce the availability of its new Automotive Grade FPGAs, which are intended for usage in telematics, infotainment, and powertrain applications. AEC-Q100 has defined the reliability qualification requirements for automotive integrated circuits for over 20 years.


S2C Inc (S2C) is a global prototyping company specializing in FPGA prototyping solutions for cutting-edge SoC and ASIC designs. By developing SoCs and ASICs, S2C hopes to reduce the SoC design cycle. It has over 500 clients and over 4000 systems deployed. Their customer-focused sales and highly skilled technical teams know their customers' SoC development needs. In September 2022, S2C, releases Neuro, software that provides sophisticated management features for enterprise-wide prototyping setups. Neuro provides comprehensive administration and control tools through a customized browser-based interface.


Key Companies in the Field Programmable Gate Array (FPGA) market include




  • Achronix Semiconductor Corporation




  • Altera Corporation




  • Arm Ltd.




  • Atmel Corporation




  • Cypress Semiconductors Corporation




  • Teledyne E2V Ltd.




  • Lattice Semiconductor




  • Microsemi Corporation




  • Quicklogic Corporation




  • Intel Corporation




  • GOWIN Semiconductor Corporation




  • Microchip Technology Incorporated




Field Programmable Gate Array (FPGA) Industry Developments


March 2023: Efinix has announced that the Lauterbach TRACE32 set of debug and trace tools now supports its quad-core Sapphire RISC-V processor, which can run Linux.


March 2023: Intel introduced Intel Agilex 7 FPGAs with F-Tile, which feature the fastest field-programmable gate array (FPGA) transceivers on the market1 and are designed to assist customers in addressing challenges in the most bandwidth-intensive areas of the data-centric world, such as data centers and high-speed networks.


Field Programmable Gate Array (FPGA) Market Segmentation:


Field Programmable Gate Array (FPGA) Technology Outlook




  • SRAM-Based FPGA




  • Anti-Fuse Based FPGA




  • Flash-Based FPGA




  • Others




Field Programmable Gate Array (FPGA) Configuration Outlook




  • High-End FPGA




  • Mid-Range FPGA




  • Low-End FPGA




Field Programmable Gate Array (FPGA) Application Outlook




  • Data Processing




  • Consumer Electronics




  • Industrial




  • Military & Aerospace




  • Automotive




  • Telecom




  • Others




Field Programmable Gate Array (FPGA) Regional Outlook




  • North America



    • US

    • Canada






  • Europe



    • Germany

    • France

    • UK

    • Italy

    • Spain

    • Rest of Europe






  • Asia-Pacific




    • China




    • Japan




    • India




    • Australia




    • South Korea




    • Australia




    • Rest of Asia-Pacific






  • Rest of the World




    • Middle East




    • Africa




    • Latin America





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