Global Semiconductor Foundry Market Overview
According to SPER Market Research, the Global Semiconductor Foundry Market is estimated to reach USD 145.36 billion by 2032 with a CAGR of 6.45%.
Internet-connected devices that use sensors and software to acquire and analyse data will be a big growth area for semiconductors in the upcoming years. For instance, smart factories may enable you to monitor activity on the shop floor and guarantee that every machine is operating as efficiently as possible, freeing up space on the floor and helping businesses cut costs. The development of smart homes has made it possible for users to control their home's lighting and appliances through a smartphone app. IoT users might remotely check on their home's security features, like if their windows are latched or are leaking smoke. The transition to 4G and the upgrade to 5G have resulted in much higher speeds, dependability, and latency in today's mobile telecommunications networks. High-speed connections are necessary for 5G to deliver the data that all Internet-connected devices need. Manufacturers of mobile phones have created 5G phones for a future market.
The market for semiconductor foundries, however, is expanding significantly. In anticipation of a rise in the number of semiconductors needed in autonomous driving, semiconductor foundries are increasing their efforts to make automotive chips, which is propelling the semiconductor foundry sector. Services provided by semiconductor foundries will benefit several industries. Telecommunications, computer and networking, consumer electronics, and the auto industry are some of the primary sectors that use semiconductor foundry services.
Impact of COVID-19 on the Global Semiconductor Foundry Market
The worldwide semiconductor market experienced strong growth in previous year despite the pandemic's effects, and this trend persisted into next year. The COVID-19 epidemic has been primarily blamed for the supply chain gap that resulted from the industry's high deficit and rising demand. In addition, the worldwide semiconductor shortage brought on by the COVID-19 epidemic has pushed players to concentrate on boosting output. For instance, Semiconductor Manufacturing International Corp (SMIC) said that it will open a new facility in Shanghai's free trade zone as part of its aggressive ambitions to double its manufacturing capacity by building new chip fabrication factories in several cities. The COVID-19 epidemic is causing supply chains to break down and limiting the growth of the global semiconductor foundry market. Interruptions in publicly disclosed supply chains are threatening the revenues of semiconductor assembly and testing service providers, and this is resulting in falling share prices. Low shareholder returns result in little investments being made. The current crisis has semiconductor foundry service providers concentrating on creating backup plans to handle both short-term and long-term supply chain interruptions.
Scope of the Report:
Report Metric | Details |
Market size available for years | 2019-2032 |
Base year considered | 2021 |
Forecast period | 2022-2032 |
Segments covered | By Technology, By Foundry Type, By Application,
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Regions covered | Asia-Pacific, Europe, Middle East and Africa, North America, Latin America
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Companies Covered | DB Hi Tek, Fujitsu Semiconductor Limited Global Foundries, Magnachip, Powerchip, Samsung Group, Semiconductor Manufacturing International Corporation, STMicroelectronics, Tower Semiconductor Ltd., TSMC, United Microelectronics Corporation , X-Fab.
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Target Audience:
- Semiconductor foundry companies
- Semiconductor equipment and material suppliers
- Integrated device manufacturers (IDMs)
- Original equipment manufacturers (OEMs)
- System integrators and designers
- Government agencies and regulatory bodies
- Research and consulting firms
- Investors and financial institutions
- Academic institutions and industry associations
Global Semiconductor Foundry Market Segmentation:
1. By Technology:
- 10/7/5nm
- 16/14nm
- 20nm
- 45/40nm
2. By Foundry Type:
3. By Application:
- Automotive
- Communication
- Computer
- Consumer Electronics
4. By Region:
- Asia-Pacific
- Europe
- Middle East & Africa
- North America
- Latin America
Key Topics Covered in the Report:
- Size of Global Semiconductor Foundry Market (FY’2019-FY’2032)
- Overview of Global Semiconductor Foundry Market
- Segmentation of Global Semiconductor Foundry Market By Technology (10/7/5nm, 16/14nm ,20nm, 45/40nm ,Others)
- Segmentation of Global Semiconductor Foundry Market By Foundry Type (Pure Play Foundry, IDMs)
- Segmentation of Global Semiconductor Foundry Market By Application (Automotive, Communication, Computer, Consumer Electronics, Other)
- Statistical Snap of Global Semiconductor Foundry Market
- Growth Analysis of Global Semiconductor Foundry Market
- Problems and Challenges in Global Semiconductor Foundry Market
- Competitive Landscape in the Global Semiconductor Foundry Market
- Impact of COVID-19 and Demonetization on Global Semiconductor Foundry Market
- Details on Recent Investment in Global Semiconductor Foundry Market
- Competitive Analysis of Global Semiconductor Foundry Market
- Major Players in the Global Semiconductor Foundry Market
- SWOT Analysis of Global Semiconductor Foundry Market
- Global Semiconductor Foundry Market Future Outlook and Projections (FY’2019-FY’2032)
- Recommendations from Analyst
1. Introduction
1.1. Scope of the report
1.2. Market segment analysis
2. Research Methodology
2.1 Research data source
2.1.1 Secondary data
2.1.2 Primary data
2.1.3 SPER’s internal database
2.1.4 Premium insight from KOL’s
2.2 Market size estimation
2.2.1 Top-down and Bottom-up approach
2.3 Data triangulation
3. Executive Summary
4. Market Dynamics
4.1. Driver, Restraint, Opportunity and Challenges analysis
4.1.1 Drivers
4.1.2 Restraints
4.1.3 Opportunities
4.1.4 Challenges
4.2. COVID-19 Impacts of the Global Semiconductor Foundry Market
5. Market variables and outlook
5.1. SWOT analysis
5.1.1 Strengths
5.1.2 Weaknesses
5.1.3 Opportunities
5.1.4 Threats
5.2. PESTEL analysis
5.2.1 Political landscape
5.2.2 Economic landscape
5.2.3 Social landscape
5.2.4 Technological landscape
5.2.5 Environmental landscape
5.2.6 Legal landscape
5.3. PORTER’S five forces analysis
5.3.1 Bargaining power of suppliers
5.3.2 Bargaining power of Buyers
5.3.3 Threat of Substitute
5.3.4 Threat of new entrant
5.3.5 Competitive rivalry
5.4. Heat map analysis
6. Competitive Landscape
6.1 Global Semiconductor Foundry Market Manufacturing Base Distribution, Sales Area, Product Type
6.2 Mergers & Acquisitions, Partnerships, Product Launch, and Collaboration in Global Semiconductor Foundry Market
7. Global Semiconductor Foundry Market, By Technology, 2019-2032 (USD Million)
7.1 10/7/5nm
7.2 16/14nm
7.3 20nm
7.4 45/40nm
7.5 Others
8. Global Semiconductor Foundry Market, By Foundry Type, 2019-2032 (USD Million)
8.1 Pure Play Foundry
8.2 IDMs
9. Global Semiconductor Foundry Market, By Application, 2019-2032 (USD Million)
9.1 Automotive
9.2 Communication
9.3 Computer
9.4 Consumer Electronics
9.5 Others
10. Global Semiconductor Foundry Market, By Region, 2019-2032 (USD Million)
10.1 Global Semiconductor Foundry Market Size and Market Share by Region (2019-2025)
10.2 Global Semiconductor Foundry Market Size and Market Share by Region (2026-2032)
10.3 Asia-Pacific
10.3.1 Australia
10.3.2 China
10.3.3 India
10.3.4 Japan
10.3.5 South Korea
10.3.6 Rest of Asia-Pacific
10.4 Europe
10.4.1 France
10.4.2 Germany
10.4.3 Italy
10.4.4 Spain
10.4.5 United Kingdom
10.4.6 Rest of Europe
10.5 Middle East and Africa
10.5.1 Kingdom of Saudi Arabia
10.5.2 United Arab Emirates
10.5.3 Rest of Middle East & Africa
10.6 North America
10.6.1 Canada
10.6.2 Mexico
10.5.3 United States
10.7 Latin America
10.7.1 Argentina
10.7.2 Brazil
10.7.3 Rest of Latin America
11.Company Profiles
11.1 DB Hi Tek
11.1.1 Company details
11.1.2 Financial outlook
11.1.3 Product summary
11.1.4 Recent developments
11.2 Fujitsu Semiconductor Limited
11.2.1 Company details
11.2.2 Financial outlook
11.2.3 Product summary
11.2.4 Recent developments
11.3 Global Foundries.
11.3.1 Company details
11.3.2 Financial outlook
11.3.3 Product summary
11.3.4 Recent developments
11.4 Magnachip
11.4.1 Company details
11.4.2 Financial outlook
11.4.3 Product summary
11.4.4 Recent developments
11.5 Powerchip
11.5.1 Company details
11.5.2 Financial outlook
11.5.3 Product summary
11.5.4 Recent developments
11.6 Samsung Group
11.6.1 Company details
11.6.2 Financial outlook
11.6.3 Product summary
11.6.4 Recent developments
11.7 Semiconductor Manufacturing International Corporation
11.7.1 Company details
11.7.2 Financial outlook
11.7.3 Product summary
11.7.4 Recent developments
11.8 STMicroelectronics.
11.8.1 Company details
11.8.2 Financial outlook
11.8.3 Product summary
11.8.4 Recent developments
11.9 Tower Semiconductor Ltd.
11.9.1 Company details
11.9.2 Financial outlook
11.9.3 Product summary
11.9.4 Recent developments
11.10 TSMC
11.10.1 Company details
11.10.2 Financial outlook
11.10.3 Product summary
11.10.4 Recent developments
11.11 United Microelectronics Corporation
11.11.1 Company details
11.11.2 Financial outlook
11.11.3 Product summary
11.11.4 Recent developments
11.12 X-Fab
11.12.1 Company details
11.12.2 Financial outlook
11.12.3 Product summary
11.12.4 Recent developments
12.List of Abbreviations
13.Reference Links
14.Conclusion
15.Research Scope
SPER Market Research’s methodology uses great emphasis on primary research to ensure that the market intelligence insights are up to date, reliable and accurate. Primary interviews are done with players involved in each phase of a supply chain to analyze the market forecasting. The secondary research method is used to help you fully understand how the future markets and the spending patterns look likes.
The report is based on in-depth qualitative and quantitative analysis of the Product Market. The quantitative analysis involves the application of various projection and sampling techniques. The qualitative analysis involves primary interviews, surveys, and vendor briefings. The data gathered as a result of these processes are validated through experts opinion. Our research methodology entails an ideal mixture of primary and secondary initiatives.