Field Programmable Gate Array (FPGA) Market
Field Programmable Gate Array (FPGA) Market Trends, Opportunity, and Forecast Analysis, 2024-2033
Field Programmable Gate Array (FPGA) Market revenue to generate USD 29.7 billion by 2033, according to KDMI analyst’s growth analysis. The market is segmented by Type, Technology, Application and by region.
Field Programmable Gate Array (FPGA) Market Size Survey Report – In a Glance
As per the survey report on global Field Programmable Gate Array (FPGA) Market, the market is projected to foresee a CAGR of 10.7% between 2024-2033, and further generate a market size of USD 29.7 billion revenue by the end of 2033. In the year 2024, the market size was valued at USD 12.2 billion revenue.
- The global Field Programmable Gate Array (FPGA) Market is projected to grow on account of growth of telecommunication industry.
- In Japan, the growth of data centers, can be attributed to the growth in the Field Programmable Gate Array (FPGA) Market.
- KDMI analyst’s growth analysis foresees high power consumption to challenge the market growth.
- Asia Pacific, having the highest market share in the Field Programmable Gate Array (FPGA) Market, is projected to dominate the global market.
Field Programmable Gate Array (FPGA) Market Analysis
Field programmable gate array, a type of semiconductor, which is programmed and reprogrammed as per one’s device and design needs, contains a variety of programmable logic blocks. FPGAs are widely used in industries such as telecommunication for network handling because of their parallel processing capabilities, flexibility and reconfigurability. The growth of the telecommunication industry is a growth driver of the field programmable gate array. FPGAs are fundamental to the functions of 5G base stations because they allow real-time signal processing, MIMO technologies and beamforming, which are important for attaining the low latency and high speed needed by 5G networks. As of 2023, 5G subscriptions accounted for 10.7% of all worldwide mobile subscriptions, which was anticipated to expand to 16% by the end of 2023, having 1.77 billion subscribers. By 2025, 5G channels can probably cover around 1/3rd of the world’s population. Intel Corporation, AMD, and Lattice Semiconductor Corporation are significant players in the global Field Programmable Gate Array (FPGA) market.
Analyst’s Observation on Japan Field Programmable Gate Array (FPGA) Market Survey
FPGA enables the construction of application-specialised communication channels with capacities to maximize the data movement views and application computing. FPGAs accelerate the calculations at the foundation of several types of machine intelligence. The acronym of the “Field Programmable Gate Array” is an excellent contender for the acceleration crown, and with about 30 years of history in the electronics industry, its use in the form of server accelerators in data centres is quite influential. Japan is one of the fastest-growing data centre markets worldwide for the predictable future, which will have consequences for real estate, capital and power. Data centres for the purpose of cloud computing services, such as Platform as a Service and Software as a Service, were intensively advanced within 30 km to 50 km of the centres of Osaka and Tokyo. The growth in a number of data centres in Japan predicts the growth of the Japanese field programmable gate array market. HuMANDATA is a significant player in the Japanese digital out-of-home advertising market.
Field Programmable Gate Array (FPGA) Market: Report Scope |
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Base Year |
2023 |
Estimated Market Size |
USD 12.2 billion in 2024 |
Forecast Year |
2024-2033 |
Projected Market Size |
USD 29.7 billion in 2033 |
CAGR Value |
10.7% |
Field Programmable Gate Array (FPGA) Market Key Trends/Major Growth Drivers |
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Restraint Factors |
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Field Programmable Gate Array (FPGA) Market Segmentation |
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Fastest Growing Region |
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Field Programmable Gate Array (FPGA) Market Key Players |
Intel Corporation, AMD, Lattice Semiconductor Corporation, Microchip Technology, Inc., Quicklogic Corporation, Achronix Semiconductor Corporation, Efinix, Inc., Flex Logix Technologies, Gowin Semiconductor Corporation, Microsemi Corporation Inc., and Others |
Field Programmable Gate Array (FPGA) Market Growth Driver & Market Restraint
Growth Driver
Growth of healthcare sector:
FPGAs are critical in medical vision and video applications for processing video data and high-resolution images in reduced time. They improve the image property, derive features and compress information in equipment such as ultrasound machines and endoscopes, helping precise surgical & diagnostics accuracy. The worldwide healthcare industry went through unprecedented growth as the total healthcare investment as of 2022 reached USD 12 trillion, an increase of USD 8.5 trillion since 2018. Healthcare spending reached a record high in the situation of the entire funding as of 2021, with an increase in fundraising and venture investment. Wireless networking has transformed healthcare distribution, allowing remote monitoring solutions and telemedicine. FPGAs allow accelerated data analysis, safe data encryption and connectivity at reduced cost & power. The growth of the healthcare sector with the growing application of telemedicine, bodes well for the growth of the field programmable gate array (FPGA)market.
Increasing demand for IoT:
The merging of IoT and AI technology has encouraged the advancement of innovative business models, boosting considerable technological developments in the FPGA fields. It has a critical role in pushing innovations in connected vehicles, intelligent buildings, urban infrastructure and smart power grids. The FPGA design is crucial for generating modern, customized and effective embedded mechanisms. Its chief advantages are re-programmability and flexibility with extremely fast data processing, which can be used in instruments which require functioning on real-time data. The growing demand for IoT pushes the market growth of FPGA. As of 2023, IoT markets showed stable growth, because the number of IoT connected devices increased approximately to 16.7 billion with about USD 235 billion in IoT enterprise investment.
Market Restraint
High power consumption:
FPGAs mostly need more power compared to ASIC or regular CPUs, specifically in high-performance applications. This higher power utilization is a considerable disadvantage for energy-efficient or battery-powered mechanisms such as edge computing, portable devices and IoT applications.
Performance and latency restrictions:
Although FPGAs are immensely adaptable, their logic blocks and programmable interconnects cause natural latency issues. These pauses act as a hurdle in applications which need extremely real-time computing and low latency, such as autonomous mechanisms or high-frequency trading.
Field Programmable Gate Array (FPGA) Market Segmentation
Our experts at KD Market Insights have segmented the global Field Programmable Gate Array (FPGA) Market research report as:
By Type |
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By Technology |
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By Application |
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By Region |
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Field Programmable Gate Array (FPGA) Market Regional Synopsis
Asia Pacific is expected to dominate the field programmable gate array market due to increased investment in the high-tech industry. The R&D expenditure in the high-tech industry by China as of 2022 was approximately USD 89.80 billion. Despite being late, the Chinese FPGA makers have been able to establish a robust foundation in the low-end chips, with visible advancement in several applications fields as of 2022, and will concentrate on mid to high-end FPGAs. With its broad range of programmability and flexibility, FPGA has made its way into several applications. The Chinese FPGA makers have covered well-conventional applications, such as electric power, communications, medical care, automobiles and emerging fields such as AI, IoT & autonomous driving. The Chinese FPGA makers carry on with their R&D layout against the transition in the international and Chinese ambience. The Chinese FPGA chips have expanded from 40nm to 28nm/55nm/16nm in procedure technology from dozens of KLUTs to around 500K LUTs in chip size and rate of many self-developed SerDes reaching 12.5Gbps stably, wrapping the market demand for mid-range FPGAs.
Asia Pacific is expected to dominate the field programmable gate array market because of the growth of smart cities initiative. In the development of smart cities initiative, FPGA is mostly used to process high data volume, allowing effective handling of several urban mechanisms such as energy grids, traffic lights and public security by offering flexible personalization to maximize functions depending on live conditions. As of August 2024, 12 novel smart city initiatives under the National Industrial Corridor Development Program were approved by India’s Cabinet Committee. As part of the Union Budget 2024-25, the Smart Cities Mission in India has been apportioned USD 19.67 billion. South Korea has made an announcement regarding its “4th Smart City Comprehensive Scheme” for the years 2024 to 2028. The scheme targets to construct upon past initiatives by nurturing “a smart city of coexistence and leap forward.”
Regional Company Names
- GOWIN Semiconductor Corporation
- S2C
- Shenzhen Ziguang Tongchuang Electronics Co., Ltd.
- Xi'an Zhiduoji Microelectronics Co., Ltd.
- Renesas Electronics Corporation
Field Programmable Gate Array (FPGA) Market Competitive Landscape
Some of the key players who have the top global Field Programmable Gate Array (FPGA) Market share:
- Intel Corporation
- AMD
- Lattice Semiconductor Corporation
- Microchip Technology Inc.
- Quicklogic Corporation
- Achronix Semiconductor Corporation
- Efinix Inc.
- Flex Logix Technologies
- Gowin Semiconductor Corporation
- Microsemi Corporation
- S2C
- Executive Summary
- Market Overview
- Key Findings
- Market Trends
- Market Outlook
- Introduction
- Scope of the Report
- Research Methodology
- Definitions and Assumptions
- Acronyms and Abbreviations
- Market Dynamics
- Drivers
- Restraints
- Opportunities
- Challenges
- Global Field Programmable Gate Array (FPGA)Market
- Market Overview
- Market Size and Forecast
- Market Segmentation
- By Type
- By Technology
- By Application
- By Region
- Market Segmentation by Type
- Low-end
- Mid-range
- High-end
- Others
- Market Segmentation by Technology
- SRAM
- EEPROM
- Antifuse
- Flash
- Others
- Market Segmentation by Application
- Consumer Electronics
- Automotive
- Industrial
- Data Processing
- Military & Aerospace
- Telecom
- Others
- Regional Analysis
- North America
- United States
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Canada
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Mexico
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- United States
- Europe
- United Kingdom
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Germany
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- France
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Italy
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Spain
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Rest of Europe
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- United Kingdom
- Asia Pacific
- China
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Japan
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- India
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Australia
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- South Korea
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Rest of Asia Pacific
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- China
- Latin America
- Brazil
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Argentina
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Colombia
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Rest of Latin America
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Brazil
- Middle East & Africa
- South Africa
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Saudi Arabia
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- UAE
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- Rest of Middle East & Africa
- Market Size and Forecast
- Key Trends and Developments
- Market Analysis by Type, Technology and Application
- South Africa
- North America
- Competitive Landscape
- Market Share Analysis
- Company Profiles
- Intel Corporation
- AMD
- Lattice Semiconductor Corporation
- Microchip Technology Inc.
- Quicklogic Corporation
- Achronix Semiconductor Corporation
- Efinix Inc.
- Flex Logix Technologies
- Gowin Semiconductor Corporation
- Microsemi Corporation
- S2C
- Others
- Strategic Recommendations
- Appendix
- List of Tables
- List of Figures
- References
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