EUV Lithography Market to Reach USD 25.3 Billion by 2028: A 21.8% CAGR Surge

EUV Lithography Market Set to Surge: Projected Growth to USD 25.3 Billion by 2028

The extreme ultraviolet (EUV) lithography market is poised for significant expansion, with projections indicating it will reach USD 25.3 billion by 2028, up from USD 9.4 billion in 2023. This represents a compound annual growth rate (CAGR) of 21.8% during the 2023–2028 period. The rapid adoption of EUV lithography is driven by the increasing demand for advanced semiconductors, which are essential for powering next-generation technologies such as artificial intelligence (AI), 5G, and autonomous vehicles.



The Role of EUV Lithography in Semiconductor Manufacturing

EUV lithography is a critical technology in semiconductor manufacturing, enabling the production of smaller, faster, and more power-efficient chips. Traditional lithography methods have reached their physical limits in terms of resolution, making it challenging to produce the intricate patterns required for advanced semiconductor nodes. EUV lithography, which uses light with a wavelength of 13.5 nm, allows for much finer patterning on silicon wafers, facilitating the production of chips with features as small as 5 nanometers or less.

This ability to achieve higher resolution is essential for the development of semiconductors used in high-performance computing, data centers, and mobile devices. As the demand for these devices grows, so does the need for more advanced chips, driving the adoption of EUV lithography.

Key Market Drivers

Several factors are contributing to the growth of the EUV lithography market. One of the primary drivers is the increasing demand for smaller and more powerful semiconductors. As technology companies race to develop devices that are faster and more efficient, the need for advanced lithography techniques becomes more pronounced. EUV lithography is currently the only technology capable of producing the necessary precision for the latest semiconductor nodes, making it indispensable for chip manufacturers.

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1 INTRODUCTION (Page No. — 19)

1.1 STUDY OBJECTIVES

1.2 MARKET DEFINITION

1.3 STUDY SCOPE

1.3.1 MARKETS COVERED

FIGURE 1 EUV LITHOGRAPHY MARKET SEGMENTATION

1.3.2 INCLUSIONS AND EXCLUSIONS

1.3.3 REGIONAL SCOPE

1.3.4 YEARS CONSIDERED

1.4 CURRENCY CONSIDERED

1.5 UNITS CONSIDERED

1.6 LIMITATIONS

1.7 STAKEHOLDERS

1.8 SUMMARY OF CHANGES

1.8.1 RECESSION IMPACT

2 RESEARCH METHODOLOGY (Page No. — 24)

2.1 RESEARCH DATA

FIGURE 2 EUV LITHOGRAPHY MARKET: RESEARCH DESIGN

2.1.1 SECONDARY DATA

2.1.1.1 Key data from secondary sources

2.1.1.2 Key Secondary Sources

2.1.2 PRIMARY DATA

2.1.2.1 Key data from primary sources

2.1.2.2 Key participants in primary interviews

2.1.2.3 Breakdown of primary interviews

2.1.2.4 Key industry insights

2.1.3 SECONDARY AND PRIMARY RESEARCH

2.2 MARKET SIZE ESTIMATION

FIGURE 3 MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 1 (SUPPLY SIDE): REVENUE GENERATED BY KEY COMPONENT SUPPLIERS IN EUV LITHOGRAPHY MARKET

FIGURE 4 MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 2 (SUPPLY SIDE): ILLUSTRATION OF REVENUE ESTIMATED FOR KEY COMPONENT MANUFACTURERS IN EUV LITHOGRAPHY MARKET

FIGURE 5 MARKET SIZE ESTIMATION METHODOLOGY: APPROACH 3 (DEMAND SIDE) — BOTTOM-UP ESTIMATION OF EUV LITHOGRAPHY MARKET SIZE BASED ON REGION

2.2.1 BOTTOM-UP APPROACH

2.2.1.1 Approach to derive market size using bottom-up analysis

FIGURE 6 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH

2.2.2 TOP-DOWN APPROACH

2.2.2.1 Approach to derive market size using top-down analysis

FIGURE 7 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH

2.3 MARKET SHARE ESTIMATION

2.4 DATA TRIANGULATION

FIGURE 8 DATA TRIANGULATION

2.5 RISK ASSESSMENT

TABLE 1 RISK FACTOR ANALYSIS

2.5.1 RECESSION IMPACT ANALYSIS

2.6 RESEARCH ASSUMPTIONS AND LIMITATIONS

2.6.1 RESEARCH ASSUMPTIONS

2.6.2 RESEARCH LIMITATIONS

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