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Embedded Field Programmable Gate Array (FPGA) Market Size, Share & Trends Estimation Reports By Type Outlook (EEPROM, Anti fuse, SRAM, Flash, Others), By Application Outlook (Data processing, Consumer electronics, Industrial, Military & aerospace, Automotive, Telecom, Others), By Region and Forecasts, 2022-2030.
The Global Embedded Field Programmable Gate Array (FPGA) Market Was Valued At $73.2 Million In 2022, And Is Projected To Reach $310.3 Million By 2030, Growing At A CAGR Of 15.6% From 2022 To 2030.
Global Embedded Field Programmable Gate Array (FPGA) Market Overview:
Growing adoption of Embedded Field-Programmable Gate Arrays in the industry to build products with rich features at low cost will fuel the market growth. Additionally, growing demand for embedded FPGAs for designing specialized integrated circuits drives the market over the forecast period. In designing next-generation high-end applications for embedded FGPAs, the focus has shifted to factors such as higher bandwidth and lower power consumption.
Therefore, the increasing demand for higher bandwidth requirements using low cost and low power creates potential for advanced embedded FPGA designs. It offers low power consumption and high computing density, making it popular for streaming data processing and applications requiring large data flows. Therefore, demand from the military and aerospace industries increases as embedded FGPAs are utilized in consumer electronics such as image processing, waveform generation, and secure communications. Its adoption is also growing in various sectors such as network processing, security domain, and deep packet inspection. These factors may drive the embedded FPGA market during the forecast period.
Field-Programmable Gate Array, or FPGA, is a type of configurable integrated circuit that a customer or creator can program. The word "field" comes from the word "field," which means the tools. Designable means that it can be programmed or set up by the creator as needed. Embedded Field-Programmable Gate Array (FPGA), also called an FPGA.
The electronics data is use today are becoming more and more intelligent. Such as a smart systems find its use in our daily lives. The electronics we use today are able to collect data through sensors. The appliances we use are smart with a lot of functionalities. This has been made possible with the help of IoT. Sensors used in physical devices in our daily lives collect data continuously. They are connected to a common IoT platform. Various sensors provide the data continuously which can be integrated to build more informative data.
Major Market Segments Covered in Embedded Field Programmable Gate Array (FPGA) Market Research:
Market Key Players:- Intel
- Xilinx
- Lattice Semiconductor
- Microsemi
- Microchip Technology
- Achronix
- Others.
Key Vendors:
1.Intel: It is to shape the future of technology to help create a better future for the entire world. By pushing forward in fields like AI, analytics and cloud-to-edge technology, Intel’s work is at the heart of countless innovations. From major breakthroughs like self-driving cars and rebuilding the coral reefs, to things that make everyday life better like blockbuster effects and improved shopping experiences — they’re all powered by Intel technology. With a career at Intel, you have the opportunity to help make the future more wonderful for everyone.
2.Xilinx: Xilinx’s highly flexible, programmable silicon, enabled by a suite of advanced software and tools, drove rapid innovation across a wide span of industries and technologies. Xilinx delivered the most dynamic processing technology in the industry, enabling rapid innovation with its adaptable, intelligent computing.
3.Lattice Semiconductor: It is the low power programmable leader. We solve customer problems across the network, from the Edge to the Cloud, in the growing communications, computing, industrial, automotive and consumer markets. Our technology, long-standing relationships, and commitment to world-class support lets our customers quickly and easily unleash their innovation to create a smart, secure and connected world. Lattice is headquartered in Hillsboro, Oregon and has locations around the world, including world-class R&D facilities, global operations facilities, and region-specific sales offices.
4.Microsemi: Microsemi Corporation, a wholly owned subsidiary of Microchip Technology Inc. (Nasdaq: MCHP), offers a comprehensive portfolio of semiconductor and system solutions for communications, defense & security, aerospace and industrial markets. Products include high-performance and radiation-hardened analog mixed-signal integrated circuits, FPGAs, SoCs and ASICs; power management products; timing and synchronization devices and precise time solutions, setting the world's standard for time; voice processing devices; RF solutions; discrete components; enterprise storage and communication solutions, security technologies and scalable anti-tamper products; Ethernet solutions; Power-over-Ethernet ICs and midspans; as well as custom design capabilities and services.
5.Microchip Technology: It is a leading semiconductor supplier of smart, connected and secure embedded control solutions. Its easy-to-use development tools and comprehensive product portfolio enable customers to create optimal designs which reduce risk while lowering total system cost and time to market.
By Type:
- EEPROM
- Antifuse
- SRAM
- Flash
- Others
By Application:
- Data processing
- Consumer electronics
- Industrial
- Military & aerospace
- Automotive
- Telecom
- Others
By Region:
North America accounted for the largest market share in 2017.
The Asia Pacific region is expected to witness a faster growth rate during the forecast period owing to increasing adoption of FPGAs for industrial applications in various end-user industries such as automotive and consumer electronics.
Europe is expected to be the second largest market by value.
- North America
- US
- Canada
- Mexico
- Rest of North America
- Europe
- Denmark
- Finland
- Iceland
- Sweden
- Norway
- Belgium
- The Netherlands
- Luxembourg
- Germany
- France
- Italy
- Spain
- UK
- Nordic Countries
- Benelux Union
- Rest of Europe
- Asia-Pacific
- Indonesia
- Thailand
- Malaysia
- Singapore
- Rest of Southeast Asia
- Japan
- China
- India
- Australia
- South Korea
- Southeast Asia
- Rest of Asia-Pacific
- The Middle East & Africa
- Saudi Arabia
- UAE
- Egypt
- South Africa
- Rest of the Middle East & Africa
- Latin America
- Brazil
- Argentina
- Rest of Latin America
Market Dynamics
The telecom sector dominated the embedded FPGA market owing to increased adoption in wireless connectivity. Embedded FPGAs have been making way into networking/data centers as well as a wireless base station and other application. Embedded FPGA is used in many applications within networking and telecom systems like packet processing and switching, and optical transport network (OTN). In many situations, embedded FPGAs are used to connect merchant silicon devices together for providing proprietary functionality.
FPGA are the devices that enable users to create their digital circuits Factors, like low-power requirements and reduced system cost, drive the growth of the embedded FPGA market. Also, the telecommunication industry is increasing rapidly owing to the advancement in the telecom industry including technologies such as 3G and LTE supplemented the growth of the embedded FPGA market. The adoption of FPGA in high-end applications is an opportunity for the market. The complex design of embedded FPGA hampers the embedded FPGA market growth.
Scope of Report :
Report Attribute | Details |
Study Period | 2017-2030 |
Base Year | 2022 |
Estimated year | 2023 |
Forecast period | 2023-2030 |
Historic Period | 2017-2022 |
Units | $310.3 Million |
Growth Rate | CAGR of 15.6% from 2023 to 2030 |
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Conclusion:
FPGA makers are always looking for new features to add to their devices so that they can be used in more places. They do this by taking advantage of the latest advances in microelectronics fabrication technologies. In some cases, they are just extensions or improvements to previously available resources, whereas in other cases, architectures are extended with new resources aimed at mitigating traditional limitations (e.g., for interfacing with analog signals or for efficient computation of floating-point operations) or at improving performance (e.g., regarding memory controllers or serial communication interfaces). With all of these improvements, FPGAs can no longer be thought of as just configurable hardware devices.