U.S. Field Programmable Gate Array Market Size & Share Analysis - Trends, Drivers, Competitive Landscape, and Forecasts (2025 - 2032)
This Report Provides In-Depth Analysis of the U.S. Field Programmable Gate Array Market Report Prepared by P&S Intelligence, Segmented by Configuration (Low-Range, Mid-Range, High-Range FGA), Technology (SRAM, Flash, Anti-Fuse), Node Size (Less Than 20 nm, 20-90 nm, More Than 90 nm), Vertical (Telecommunications, Consumer Electronics, Test, Measurement, & Emulation, Automotive, Industrial, Military & Aerospace, Data Center & Computing), and Geographical Outlook for the Period of 2019 to 2032
U.S. Field Programmable Gate Array Market Size Forecast
Market Statistics
Study Period
2019 - 2032
2024 Market Size
USD 2.5 billion
2025 Market Size
USD 2.7 billion
2032 Forecast
USD 4.5 billion
Growth Rate (CAGR)
7.9%
Largest Region
West
Fastest Growing Region
South
Nature of the Market
Consolidated
Growth Forecast
Key Players
Key Report Highlights
Market Size and Forecast
Industry Trend
Regulatory Landscape
Demand Trend Analysis
Companies Recent Strategical Developments
Key Stakeholders
Voice of Industry Experts/KOLs
Future Opportunity
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U.S. Field Programmable Gate Array Market Future Overview
The U.S. field-programmable gate array (FPGA) market revenue was USD 2.5 billion in 2024, and it is expected to witness a CAGR of 7.9% from 2025 to 2032, reaching USD 4.5 billion in 2032. This is due to the adoption of AI and IoT, which require FPGAs for high-speed computation and real-time processing. Industries such as healthcare, manufacturing, and smart cities are incorporating AI- and IoT-powered solutions.
Furthermore, the introduction of advanced FPGAs with enhanced processing power, higher memory bandwidth, and improved connectivity is driving the growth of the market. Moreover, the increasing development of advanced driver assistance systems, which consist of sensors, LiDAR, cameras, and radar, drives the usage of FPGAs. These components are essential for the real-time monitoring of massive data streams to help in quick decision making for safer driving.
U.S. Field Programmable Gate Array Market Dynamics
Expansion of Data Centers and High-Performance Computing Is Key Market Trend
More data centers are being constructed for cloud computing, artificial intelligence, and big data analytics as these technologies require the storage, processing, and management of vast amounts of data.
FPGAs provide data centers with workload customization and accelerate processing in comparison to traditional processors, such as CPUs and GPUs.
Furthermore, FPGAs enhance computing efficiency and reduce power consumption, both of which are crucial in data centers in present times.
Moreover, in the U.S., the scientific research, financial modeling, environmental sciences, and healthcare industries are focusing on high-performance computing.
High computational power is needed for analyzing complex algorithms in real-time, which cannot be done as efficiently by traditional processors.
In February 2024, Texas A&M University collaborated with World Wide Technologies Inc. for the acquisition of NVIDIA DGX SuperPOD with DGX H200 systems for USD 45 million.
Growing Application across Industries is Driving Market Growth
The high-speed processing, real-time adaptability, and enhanced security make FPGAs popular in the military and aerospace sector of the U.S.
Semiconductor foundries, such as AMD (Xilinx) and Intel (Altera), are developing advanced FPGAs that can operate in high-radiation environments for space missions.
The federal government has allocated USD 25 billion to the National Aeronautics and Space Administration (NASA) for FY2025.
Consumer electronics companies use FPGAs in smartphones, smart TVs, tablets, and gaming consoles as FPGAs offer customizable functionalities.
The CHIPS and Science Act of 2022 has allocated USD 53 billion to boost the domestic manufacturing of semiconductors.
The automotive industry integrated these components in electric vehicles, autonomous driving systems, and advanced driver assistance systems for real-time sensor fusion, image recognition, and decision making.
U.S. Field Programmable Gate Array Market Segmentation Analysis
Configuration Analysis
The low-range category held the largest market share, of 45%, in 2024. This is due to their cost-effectiveness, which makes them suitable for numerous applications, such as industrial automation and automotive.
The mid-range configuration will grow at the highest CAGR, of 8%, during the forecast period. This is due to their cost-effectiveness over high-range FPGAs and better performance than low-range FPGAs.
Based on configuration, the market has the following categories:
Low-Range (Largest Category)
Mid-Range (Fastest-Growing Category)
High-Range
Technology Insights
The SRAM technology held the largest market share, of 40%, in 2024, and will grow at the highest CAGR of 8.5% during the forecast period. This is due to their re-programmability and high performance, flexibility, and speed. This technology is in high demand for AI and IoT applications, telecommunication (especially 5G) infrastructure, and the aerospace, defense, and automotive sectors. Moreover, FPGAs’ integration for advanced technologies does not require complete redesign and modification, unlike traditional technologies, such as flash and anti-fuse.
Based on technology, the market has the following categories:
SRAM (Largest and Fastest-Growing Category)
Flash
Anti-Fuse
Others
Node Size Analysis
The 20–90 mm category held the largest market share, of 65.5%, in 2024, due to their cost-efficiency, which lowers the overall manufacturing costs for price-sensitive industries. Therefore, these FPGAs are widely adopted in industrial networking, video processing, and automotive electronics, all of which are major trends in the U.S. currently.
The less than 20 nm category will grow at the highest CAGR, of 10%, during the forecast period. These variants are widely used in the FinFET technology to reduce power consumption and heat dissipation.
Based on node size, the market has the following categories:
Less than 20 nm (Fastest-Growing Category)
20–90 nm (Largest Category)
More than 90 nm
Vertical Insights
The telecommunications category held the largest market share, of 35%, in 2024. This is due to the growing demand for high-speed communication technologies from individuals, businesses, industries, and government agencies. As per the Cellular Telecommunications Industry Association, carriers have invested over USD 700 billion in 5G infrastructure in the country till date.
The automotive category will grow at the highest CAGR, of 10.2%, the forecast period. FPGAs enable the development of innovative safety applications, including advanced driver-assistance systems, blind-spot detection, adaptive cruise control, and collision avoidance.
Based on vertical, the market has the following categories:
Telecommunications (Largest Category)
Consumer Electronics
Test, Measurement, & Emulation
Automotive (Fastest-Growing Category)
Industrial
Military & Aerospace
Data Center & Computing
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U.S. Field Programmable Gate Array Market Regional Outlook
The West region held the largest market share, of 40%, in 2024. This region is a hub for semiconductor and technology companies, such as AMD (Xilinx), Lattice Semiconductor, NVIDIA, and Intel. They are all engaged in extensive research and development on advanced FPGAs for AI, cloud computing and high-performance computing. Additionally, the universities and startups in the region are working on the development of FPGAs.
The South region will grow at the highest CAGR, of 10.5%, during the forecast period. The demand for FPGAs in the region is the most prominent in the aerospace & defense industry for radar systems, avionics, and satellite communications. Moreover, the region is the hub for semiconductor companies such as NXP Semiconductors, Samsung, and Texas Instruments.
The market has been categorized into the following regions:
Northeast
Midwest
West (Largest Regional Market)
South (Fastest-Growing Regional Market)
U.S. Field Programmable Gate Array Market Share
The market is consolidated due to the presence of few major market players, such as Xilinx, Lattice Semiconductor, Microchip Technologies, and Altera. These players are heavily investing in the research and development to enable the application of FPGAs in more areas. Additionally, developing FGPAs requires a high capital and technical expertise, which makes it nearly impossible for new companies to enter the market. Moreover, since the customers are all industries, players supply under long-term contracts.
U.S. Field Programmable Gate Array Companies:
Advanced Micro Devices, Inc.
Intel Corporation
Lattice Semiconductor Corporation
Microchip Technology Inc.
Achronix Semiconductor Corporation
QuickLogic Corporation
Efinix
Gowin Semiconductor
NanoXplore
Cologne Chip
BAE Systems, Inc.
Qualcomm
U.S. Field Programmable Gate Array Market News
In January 2025, Intel Corporation spun off its FPGA group Programmable Solutions Group (PSG) as an independent company, named Altera.
In January 2025, NXP Semiconductors N.V. announced plans to acquire TTTEch Auto for USD 625 million, to create technologies for software-defined vehicles.
In December 2024, NXP Semiconductors N.V. announced the acquisition of American Aviva Links for USD 242.5 million in cash.
In May 2023, Intel Corporation launched Agilex 7 FPGAs with R-Tile with CXL and PCIe 5.0 Capabilities. They are integrated with hard intellectual property (IP).
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