The Global Semiconductor Foundry Market size is expected to reach $183.8 billion by 2030, rising at a market growth of 7.4% CAGR during the forecast period.
The 130nm technology node represents a well-established and mature semiconductor manufacturing process. It is often used for applications where more advanced nodes are not required due to cost considerations. Thus, the 130nm segment registered $6,526.9 million revenue in the market in 2022. This includes applications like RF transceivers, Bluetooth, Wi-Fi connectivity chips, and other wireless communication standards. The automotive industry relies on 130nm technology for various components, such as microcontrollers, sensor interfaces, and control systems, especially in older vehicles and legacy automotive systems. Some of the factors impacting the market are Cost-effective manufacturing of semiconductors, Proliferation of IoT and edge devices, and Supply chain vulnerabilities.
The economic advantage of semiconductor manufacturing is achieved through the consolidation of semiconductor fabrication within specialized foundries, rather than individual companies establishing costly in-house facilities. Cost-effective manufacturing facilitates increased market participation, enabling a broader array of semiconductor companies, including fabless designers and smaller enterprises, to develop and bring innovative semiconductor products to market. Cost-effective semiconductor manufacturing also promotes global market diversification, reducing dependency on a few dominant players. This diversification is particularly important in mitigating supply chain risks and ensuring the stability of semiconductor production. Moreover, the proliferation of IoT and edge devices, which require low-power, compact, and specialized semiconductor components, has increased foundry services for these applications. IoT devices require various connectivity options, including Wi-Fi, Bluetooth, LoRa, NB-IoT, and more. Semiconductor foundries are essential for providing customized, low-power, and efficient solutions that enable the widespread deployment of IoT and edge devices across various industries and applications. As these technologies continue to evolve and increase, the role of semiconductor foundries in supporting their development becomes even more critical. The growth of the Internet of Things (IoT) and edge computing significantly impacts the market.
However, As evidenced by the COVID-19 pandemic, the semiconductor industry relies on a global supply chain, making it susceptible to supply disruptions. Supply chain problems can cause lead times to increase and component shortages. Natural disasters, geopolitical tensions, and public health crises disrupt the global supply chain, causing semiconductor manufacturing shortages and delays. The semiconductor industry often relies on just-in-time inventory management, which minimizes excess stock. While this approach can be cost-effective, it also makes the supply chain susceptible to disruptions. Achieving full visibility into the semiconductor supply chain can be challenging. Companies lack transparency into sub-tier suppliers, making it difficult to assess risk. Supply chain vulnerabilities are a critical challenge for the market.
By node size, the market is categorized into 180nm, 130nm, 65nm, 45/40nm, 32/28nm, 16/14nm, 10/7nm, 7/5nm, 5nm, and others. The 16/14nm segment procured a remarkable revenue share in the market in 2022. One of its primary advantages is cost-effectiveness. It provides a cost-efficient solution for various semiconductor applications. This technology is commonly used in mid-range and budget smartphones, where the emphasis is on affordability without compromising essential performance.
Based on application, the market is classified into telecommunication, defense & military, industrial, consumer electronics, automotive, and others. The consumer electronics segment witnessed the largest revenue share in the market in 2022. Consumer electronics, particularly smartphones, have driven the demand for advanced semiconductor components. These devices require powerful application processors, modems, sensors, and memory chips produced by semiconductor foundries. Additionally, foundries have contributed to developing 5G technology to support faster and more efficient mobile connectivity.
Report Attribute | Details |
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Market size value in 2022 | USD 104.9 Billion |
Market size forecast in 2030 | USD 183.8 Billion |
Base Year | 2022 |
Historical Period | 2019 to 2021 |
Forecast Period | 2023 to 2030 |
Revenue Growth Rate | CAGR of 7.4% from 2023 to 2030 |
Number of Pages | 271 |
Number of Table | 360 |
Report coverage | Market Trends, Revenue Estimation and Forecast, Segmentation Analysis, Regional and Country Breakdown, Companies Strategic Developments, Company Profiling |
Segments covered | Node Size, Application, Region |
Country scope | US, Canada, Mexico, Germany, UK, France, Russia, Spain, Italy, China, Japan, India, South Korea, Singapore, Malaysia, Brazil, Argentina, UAE, Saudi Arabia, South Africa, Nigeria |
Growth Drivers |
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Restraints |
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Region-wise, the market is analysed across North America, Europe, Asia Pacific, and LAMEA. In 2022, the North America region led the market by generating the highest revenue share. North America has several prominent semiconductor foundries, which offer various services, including leading-edge process technology and custom solutions. North American foundries often focus on providing custom and specialty manufacturing services. This allows them to cater to various applications, including aerospace, defense, automotive, and industrial sectors.
Free Valuable Insights: Global Semiconductor Foundry Market size to reach USD 183.8 Billion by 2030
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Intel Corporation, Texas Instruments, Inc., GLOBALFOUNDRIES Inc., Samsung Electronics Co. Ltd, Hua Hong Semiconductor Limited, Taiwan Semiconductor Manufacturing Company Limited, United Microelectronics Corporation, Semiconductor Manufacturing International Corporation, Micron Technology, Inc., and X-FAB Silicon Foundries SE.
By Node Size
By Application
By Geography
This Market size is expected to reach $183.8 billion by 2030.
Cost-effective manufacturing of semiconductors are driving the Market in coming years, however, Supply chain vulnerabilities restraints the growth of the Market.
Intel Corporation, Texas Instruments, Inc., GLOBALFOUNDRIES Inc., Samsung Electronics Co. Ltd, Hua Hong Semiconductor Limited, Taiwan Semiconductor Manufacturing Company Limited, United Microelectronics Corporation, Semiconductor Manufacturing International Corporation, Micron Technology, Inc., and X-FAB Silicon Foundries SE.
The expected CAGR of this Market is 7.4% from 2023 to 2030.
The 7/5nm segment is leading the Market by Node Size in 2022; thereby, achieving a market value of $33.8 billion by 2030.
The North America region dominated the Market by Region in 2022 and would continue to be a dominant market till 2030; thereby, achieving a market value of $61.5 billion by 2030.
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