The global EUV Lithography sales were valued at around US$ 4,648.6 Million by the end of 2021. The market is projected to register a 21.5% CAGR between 2022 and 2029 reaching a value of US$ 22,978.6 Million by 2029. EUV stands for extreme ultraviolet which refers to light’s wavelength. Increasing advanced lithographic systems is one of the key factors accelerating the sales of this technology in the market.
Attribute | Details |
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Global EUV Lithography Market Value (2021A) | US$ 4,648.6 Million |
Global EUV Lithography Market Analysis Estimation (2022E) | US$ 5,879.6 Million |
Global EUV Lithography Market Analysis Projection (2029F) | US$ 22,978.6 Million |
Value CAGR (2022 to 2029) | 21.5% |
Collective Value Share: Top 3 Countries (2022E) | 60.8% |
FMI has identified Asia Pacific to remain a key market for EUV Lithography System owing to the rising internet penetration as well as developing technology. The region is estimated to witness a value CAGR of 23.6% in the EUV Lithography market over the forecast period.
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Market Statistics | Details |
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H1,2021 (A) | 14.6% |
H1,2022 Projected (P) | 20.9% |
H1,2022 Outlook (O) | 18.3% |
BPS Change : H1,2022 (O) - H1,2022 (P) | (-) 264 ↓ |
BPS Change : H1,2022 (O) - H1,2021 (A) | (+) 373 ↑ |
Future Market Insights presents a comprehensive comparison and review analysis of the extreme ultraviolet (EUV) lithography market which is principally subjected to tremendous growth owing to its increasing demand for advanced lithographic systems.
Extreme Ultraviolet Lithography is a cutting-edge technique for fabricating semiconductors that uses short light wavelengths (14 nanometers and below) to print intricate patterns on integrated circuits.
According to FMI analysis, the change in BPS values observed in the market for digital oilfield solutions for the current estimation for the first half of 2022 as compared to the projected one for the same period is expected to be at a 264-unit decrease. However, as per the current estimates, the market is predicted to rise by 373 basis points in H1-2022 in comparison to H1-2021.
This huge difference between the change in growth rate is due to the complicated nature of EUV lithography systems and the presence of very less players in the manufacturing domain.
EUV lithography systems are becoming increasingly popular on the international market as a result of the rising demand for micro technologies like microprocessors, integrated circuits (IC), and other semiconductors.
Another reason driving demand for the integrated device maker category in the projection period is the rising need for advanced semiconductors, which feature a variety of potentially transformational technologies. To increase their range of technological solutions that meet client objectives, major companies in the EUV lithography market are concentrating on a data-centric strategy.
Extreme Ultraviolet Lithography is a next-generation technology for semiconductor manufacturing that produces short light wavelengths (14 nanometers and below) to create minuscule patterns on integrated circuits. The market is driven by growing technological advancements for high-volume manufacturing of microchips that are significantly used in several applications. The Global EUV Lithography Market is estimated to grow at a CAGR of 21.5% during the forecast period.
Significant investment in research & development to enhance EUV technology, as well as investing in technology providers for mutual cooperation in product development is one of the key factors fuelling the demand for EUV lithographic systems. Manufacturers are also collaborating with technology providers to develop next-generation EUV lithography systems in the market.
The demand for EUV lithographic systems between 2014 and 2021 grew by 65.9% due to a reduction in the cost of manufacturing components as well as continuous investment in Research and Development. Since the market has been established in the recent past, it had witnessed a substantial CAGR over the past years.
Rising automation in the automotive industry is a significant factor accelerating the demand for EUV lithographic systems in the market. The growth in the electric vehicle segment as they contain semiconductors, in developed as well as developing countries across the globe will also contribute to the growing sales of EUV lithographic systems.
Growing investments in research & development to create a new range of integrated circuits (IC), power devices, semiconductors, and others are differentiating factors increasing the overall demand for EUV lithographic systems.
EUV lithography systems are incredibly complicated and require over 10,000 different components to build one unit hence the market is dominated by very fewer manufacturers which gives them a monopoly over the market and ramps up their production volume. Thus manufacturers focus on developing new solutions to cater to the market needs.
The increasing demand for micro technologies like microprocessors, integrated chips (IC), and other semiconductors is also fuelling the demand for EUV lithographic systems in the global market. These are some of the key factors for the boosting demand for EUV lithography systems all over the globe.
By end use, the integrated device manufacturers (IDM) segment is anticipated to remain one of the fastest-growing segments in the EUV lithography market. Increasing wafer capacity is driving the lithography market in the forecast period. New leading-edge nodes with increased lithography intensity are estimated to further drive the lithography demand for the IDM segment.
Rising demand for advanced semiconductors that have a wide range of potentially transformative technologies is also a factor that is increasing demand for the integrated device manufacturer segment in the forecast period. This segment is projected to create an absolute dollar opportunity of more than US$ 6,956.8 Million during the forecast period of 2022 to 2029.
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Key players in the EUV Lithography market are focusing on a data-centric approach with an aim of expanding their portfolio of technology solutions that address customer needs. Many key players are also using innovation to expand their product offerings to meet customer requirements. Players are aiming at research & development to develop new products.
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*The list is not exhaustive and is only for representational purposes. Full competitive intelligence with SWOT analysis is available in the report.
Attribute | Details |
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Forecast Period | 2022 to 2029 |
Historical Data Available for | 2014 to 2021 |
Market Analysis | US$ Million for Value and Units for Volume |
Key Regions Covered | Americas, EMEA, and Asia Pacific |
Key Countries Covered | USA, Germany, France, China, Japan, South Korea, and Singapore |
Key Segments Covered | By End Use, By Region |
Key Companies Profiled |
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Report Coverage | Market Forecast, Company Share Analysis, Competition Intelligence, Drivers, Restraints, Opportunities and Threats Analysis, Market Dynamics and Challenges, and Strategic Growth Initiatives |
Customization & Pricing | Available upon Request |
The Global EUV Lithography Market is expected to total US$ 5,879.6 Million in 2022.
During the forecast period, the demand for the EUV lithography market is estimated to grow by a CAGR of 21.5% on a value basis.
ASML, TSMC, Samsung Electronics, Intel Corporation, and others are the key market players. They are anticipated to collectively account for about 60% of the global market share.
The demand in China is expected to increase by 24.1% CAGR between 2022 and 2029 on a value basis.
China, Taiwan, Japan, and the USA, are the most profit-making countries in the Global EUV Lithography Market.
Key players involved in the market are focusing on increasing investment in research & development for introducing new technologies in the market to cater to the growing demands of the customers. Many players are focusing on securing leadership by promoting new technologies through sustained development. Key players are also focusing on the mass production of semiconductors using EUV technology which is an important growth strategy shaping the Global EUV Lithography Market.
1. Executive Summary | EUV Lithography Market 1.1. Global Market Outlook 1.2. Demand Side Trends 1.3. Supply Side Trends 1.4. Technology Roadmap 1.5. Analysis and Recommendations 2. Market Overview 2.1. Market Coverage / Taxonomy 2.2. Market Definition 3. Key Market Trends 3.1. Key Trends Impacting the Market 3.2. Product Innovation / Development Trends 4. Key Success Factors 5. Global Market Demand Analysis 2014 to 2021 and Forecast, 2022 to 2029 5.1. Historical Market Volume (Units) Analysis, 2014 to 2021 5.2. Current and Future Market Volume (Units) Projections, 2022 to 2029 5.3. Y-o-Y Growth Trend Analysis 6. Global Market - Pricing Analysis 6.1. Regional Pricing Analysis 7. Global Market Demand (in Value or Size in US$ Million) Analysis 2014 to 2021 and Forecast, 2022 to 2029 7.1. Historical Market Value (US$ Million) Analysis, 2014 to 2021 7.2. Current and Future Market Value (US$ Million) Projections, 2022 to 2029 7.2.1. Y-o-Y Growth Trend Analysis 7.2.2. Absolute $ Opportunity Analysis 8. Market Background 8.1. Macro-Economic Factors 8.1.1. Electrical & Electronics Industry Outlook 8.1.2. Global Automotive Industry Outlook 8.2. Forecast Factors - Relevance & Impact 8.3. Value Chain Analysis 8.3.1. List of End Users 8.3.2. List of Equipment Suppliers 8.4. Raw Material Analysis 8.5. Market Dynamics 8.5.1. Drivers 8.5.2. Restraints 8.5.3. Opportunity Analysis 8.5.4. Trends 8.6. Patents Analysis 9. Global Market Analysis 2014 to 2021 and Forecast 2022 to 2029, by End Use 9.1. Introduction / Key Findings 9.2. Historical Market Size (US$ Million) and Volume Analysis By End Use, 2014 to 2021 9.3. Current and Future Market Size (US$ Million) and Volume Analysis and Forecast By End Use, 2022 to 2029 9.3.1. Integrated Device Manufacturer (IDM) 9.3.2. Foundry 9.3.3. Memory 9.4. Market Attractiveness Analysis By End Use 10. Global Market Analysis 2014 to 2021 and Forecast 2022 to 2029, by Region 10.1. Introduction 10.2. Historical Market Size (US$ Million) and Volume Analysis By Region, 2014 to 2021 10.3. Current Market Size (US$ Million) and Volume Analysis and Forecast By Region, 2022 to 2029 10.3.1. Americas 10.3.2. EMEA 10.3.3. Asia Pacific 10.4. Market Attractiveness Analysis By Region 11. Americas Market Analysis 2014 to 2021 and Forecast 2022 to 2029 11.1. Introduction 11.2. Pricing Analysis 11.3. Historical Market Size (US$ Million) and Volume Trend Analysis By Market Taxonomy, 2014 to 2021 11.4. Market Size (US$ Million) and Volume Forecast By Market Taxonomy, 2022 to 2029 11.4.1. By Country 11.4.1.1. USA 11.4.1.2. Rest of Americas 11.4.2. By End Use 11.5. Market Attractiveness Analysis 11.5.1. By Country 11.5.2. By End Use 11.6. Drivers and Restraints - Impact Analysis 12. EMEA Market Analysis 2014 to 2021 and Forecast 2022 to 2029 12.1. Introduction 12.2. Pricing Analysis 12.3. Historical Market Size (US$ Million) and Volume Trend Analysis By Market Taxonomy, 2014 to 2021 12.4. Market Size (US$ Million) and Volume Forecast By Market Taxonomy, 2022 to 2029 12.4.1. By Country 12.4.1.1. Germany 12.4.1.2. France 12.4.1.3. Rest of EMEA 12.4.2. By End Use 12.5. Market Attractiveness Analysis 12.5.1. By Country 12.5.2. By End Use 12.6. Drivers and Restraints - Impact Analysis 13. Asia Pacific Market Analysis 2014 to 2021 and Forecast 2022 to 2029 13.1. Introduction 13.2. Pricing Analysis 13.3. Historical Market Size (US$ Million) and Volume Trend Analysis By Market Taxonomy, 2014 to 2021 13.4. Market Size (US$ Million) and Volume Forecast By Market Taxonomy, 2022 to 2029 13.4.1. By Country 13.4.1.1. China 13.4.1.2. Japan 13.4.1.3. South Korea 13.4.1.4. Singapore 13.4.1.5. Rest of South Asia 13.4.2. By End Use 13.5. Market Attractiveness Analysis 13.5.1. By Country 13.5.2. By End Use 13.6. Drivers and Restraints - Impact Analysis 14. Emerging Countries Market Analysis 2014 to 2021 and Forecast 2022 to 2029 14.1. Introduction 14.1.1. Market Value Proportion Analysis, By Key Countries 14.1.2. Global Vs. Country Growth Comparison 14.2. China Market Analysis 14.2.1. Introduction 14.2.2. PEST Analysis 14.2.3. Market Value Proportion Analysis by Market Taxonomy 14.2.4. Market Volume (Units) and Value (US$ Million) Analysis and Forecast by Market Taxonomy 14.2.4.1. By End Use 14.3. South Korea Market Analysis 14.3.1. Introduction 14.3.2. PEST Analysis 14.3.3. Market Value Proportion Analysis by Market Taxonomy 14.3.4. Market Volume (Units) and Value (US$ Million) Analysis and Forecast by Market Taxonomy 14.3.4.1. By End Use 15. Market Structure Analysis 15.1. Market Analysis by Tier of Companies (EUV Lithography) 15.2. Market Share Analysis of Top Players 16. Competition Analysis 16.1. Competition Dashboard 16.2. Competition Benchmarking 16.3. Competition Deep Dive 16.3.1. ASML 16.3.1.1. Overview 16.3.1.2. Product Portfolio 16.3.1.3. Profitability by Market Segments (Product/Channel/Region) 16.3.1.4. Strategy Overview 16.3.1.4.1. Marketing Strategy 16.3.1.4.2. Product Strategy 16.3.1.4.3. Channel Strategy 16.3.2. Nikon 16.3.2.1. Overview 16.3.2.2. Product Portfolio 16.3.2.3. Profitability by Market Segments (Product/Channel/Region) 16.3.2.4. Strategy Overview 16.3.2.4.1. Marketing Strategy 16.3.2.4.2. Product Strategy 16.3.2.4.3. Channel Strategy 16.3.3. Canon 16.3.3.1. Overview 16.3.3.2. Product Portfolio 16.3.3.3. Profitability by Market Segments (Product/Channel/Region) 16.3.3.4. Strategy Overview 16.3.3.4.1. Marketing Strategy 16.3.3.4.2. Product Strategy 16.3.3.4.3. Channel Strategy 16.3.4. Carl Zeiss 16.3.4.1. Overview 16.3.4.2. Product Portfolio 16.3.4.3. Profitability by Market Segments (Product/Channel/Region) 16.3.4.4. Strategy Overview 16.3.4.4.1. Marketing Strategy 16.3.4.4.2. Product Strategy 16.3.4.4.3. Channel Strategy 16.3.5. Toppan Printing 16.3.5.1. Overview 16.3.5.2. Product Portfolio 16.3.5.3. Profitability by Market Segments (Product/Channel/Region) 16.3.5.4. Strategy Overview 16.3.5.4.1. Marketing Strategy 16.3.5.4.2. Product Strategy 16.3.5.4.3. Channel Strategy 16.3.6. NTT Advanced Technology 16.3.6.1. Overview 16.3.6.2. Product Portfolio 16.3.6.3. Profitability by Market Segments (Product/Channel/Region) 16.3.6.4. Strategy Overview 16.3.6.4.1. Marketing Strategy 16.3.6.4.2. Product Strategy 16.3.6.4.3. Channel Strategy 16.3.7. Intel 16.3.7.1. Overview 16.3.7.2. Product Portfolio 16.3.7.3. Profitability by Market Segments (Product/Channel/Region) 16.3.7.4. Strategy Overview 16.3.7.4.1. Marketing Strategy 16.3.7.4.2. Product Strategy 16.3.7.4.3. Channel Strategy 16.3.8. Samsung 16.3.8.1. Overview 16.3.8.2. Product Portfolio 16.3.8.3. Profitability by Market Segments (Product/Channel/Region) 16.3.8.4. Strategy Overview 16.3.8.4.1. Marketing Strategy 16.3.8.4.2. Product Strategy 16.3.8.4.3. Channel Strategy 16.3.9. SK Hynix 16.3.9.1. Overview 16.3.9.2. Product Portfolio 16.3.9.3. Profitability by Market Segments (Product/Channel/Region) 16.3.9.4. Strategy Overview 16.3.9.4.1. Marketing Strategy 16.3.9.4.2. Product Strategy 16.3.9.4.3. Channel Strategy 16.3.10. Toshiba 16.3.10.1. Overview 16.3.10.2. Product Portfolio 16.3.10.3. Profitability by Market Segments (Product/Channel/Region) 16.3.10.4. Strategy Overview 16.3.10.4.1. Marketing Strategy 16.3.10.4.2. Product Strategy 16.3.10.4.3. Channel Strategy 16.3.11. TSMC 16.3.11.1. Overview 16.3.11.2. Product Portfolio 16.3.11.3. Profitability by Market Segments (Product/Channel/Region) 16.3.11.4. Strategy Overview 16.3.11.4.1. Marketing Strategy 16.3.11.4.2. Product Strategy 16.3.11.4.3. Channel Strategy 16.3.12. Global Foundries 16.3.12.1. Overview 16.3.12.2. Product Portfolio 16.3.12.3. Profitability by Market Segments (Product/Channel/Region) 16.3.12.4. Strategy Overview 16.3.12.4.1. Marketing Strategy 16.3.12.4.2. Product Strategy 16.3.12.4.3. Channel Strategy 17. Assumptions and Acronyms Used 18. Research Methodology
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