Photolithography Equipment Market Size Worth USD 22.90 Billion in 2028, Market Trends – Technological advancements in semiconductor manufacturing

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Photolithography Equipment Market Size Worth USD 22.90 Billion in 2028, Market Trends – Technological advancements in semiconductor manufacturing

April 22
18:10 2021
The global photolithography equipment market size is expected to reach USD 22.90 Billion in 2028, and register a CAGR of 8.9% during the forecast period.

The global photolithography equipment market size is expected to reach USD 22.90 Billion at a steady CAGR of 8.9% in 2028, according to latest analysis by Emergen Research. A key factor attributed to rapid market revenue growth includes rapid growth of the global semiconductor industry. Photolithography equipment is used to make geometric patterns to a semiconductor substrate/film. These patterns on a semiconductor substrate help in providing a path for electrical conductivity and in turn development of semiconductor devices. The primary benefit of photolithography is in the offering of parallel process technique, which is essential for mass production. Additionally, photolithography is capable of controlling the precise shape and size of whole semiconductor substrate, along with transferring of pattern created through CAD (computer-aided design) software.

Key players in the market include Nikon Corporation, SUSS Microtec SE, ASML Holding NV, Veeco Instruments Inc., EV Group, NuFlare Technology Inc., Canon Inc., Neutronix Inc., Onto Innovation Inc., and Eulitha AG.

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The report projects the market is anticipated to grow at a significant rate owing to raid advancements and technological developments in the sector. The report offers strategic recommendations to the businesses and investors to capitalize on the lucrative growth opportunities. The report further provides a comprehensive analysis of the competitive landscape and provides complete coverage with regard to company profiles, product portfolio, revenue generation, financial standing, and market position. It also covers mergers and acquisitions, joint ventures, product launches, brand promotions, collaborations, agreements, and partnerships, among others. It also offers insights into the manufacturing processes, revenue estimations, R&D advancements, and industrial penetration.

Emergen Research has segmented the global photolithography equipment market on the basis of type, light source, wavelength, end-use, and region:

  • Type Outlook (Revenue, USD Billion; 2018–2028)
    • EUV
    • I-Line
    • DUV
    • ArFi
    • ArF
    • KrF
  • Light Source Property Outlook (Revenue, USD Billion; 2018–2028)
    • Mercury Lamps
    • Fluorine Lasers
    • Excimer Lasers
    • Laser-Produced Plasma
  • Wavelength Outlook (Revenue, USD Billion; 2018–2028)
    • 370 nm-270 nm
    • 270 nm-70 nm
    • 70 nm- 1 nm
  • End-Use Outlook (Revenue, USD Billion; 2018–2028)
    • Integrated Device Manufacturers (IDMs)
    • Foundries

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Photolithography Equipment Market Segmentation by Regions:

  • North America (U.S., Canada)
  • Europe (U.K., Italy, Germany, France, Rest of EU)
  • Asia Pacific (India, Japan, China, South Korea, Australia, Rest of APAC)
  • Latin America (Chile, Brazil, Argentina, Rest of Latin America)
  • Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)

Objectives of the Report:

  • Study of the global Photolithography Equipment market size by key regions, types, and applications with reference to historical data (2018-2019) and forecast (2021-2028)
  • Industrial structure analysis of the Photolithography Equipment market by identification of various sub-segments
  • Extensive analysis of key market players along with their SWOT analysis
  • Competitive landscape benchmarking
  • Analysis of Photolithography Equipment market based on growth trends, futuristic outlook, and contribution to the total growth of the market
  • Analysis of drivers, constraints, opportunities, challenges, and risks in the global Photolithography Equipment market
  • Comprehensive analysis of competitive developments such as expansions, agreements, new product launches, and other strategic alliances

Table of Content

Chapter 1. Methodology & Sources

    1.1. Market Definition

    1.2. Research Scope 

    1.3. Methodology

    1.4. Research Sources

          1.4.1. Primary

          1.4.2. Secondary

          1.4.3. Paid Sources

    1.5. Market Estimation Technique

Chapter 2. Executive Summary

    2.1. Summary Snapshot, 2020-2028

Chapter 3. Key Insights

Chapter 4. Photolithography Equipment Market Segmentation & Impact Analysis

    4.1. Photolithography Equipment Market Material Segmentation Analysis

    4.2. Industrial Outlook

          4.2.1. Market indicators analysis

          4.2.2. Market drivers’ analysis

                    4.2.2.1. Growth of the semiconductor industry

                    4.2.2.2. Increasing demand for miniaturized electronic devices

                    4.2.2.3. Technological advancements in semiconductor manufacturing

          4.2.3. Market restraints analysis

                    4.2.3.1. Cost prohibitive photolithography equipment

    4.3. Technological Insights

    4.4. Regulatory Framework

    4.5. Porter’s Five Forces Analysis

    4.6. Competitive Metric Space Analysis

    4.7. Price trend Analysis

    4.8. Covid-19 Impact Analysis

Chapter 5. Photolithography Equipment Market By Type Insights & Trends, Revenue (USD Billion)

    5.1. Type Dynamics & Market Share, 2021 & 2028

          5.1.1. EUV

          5.1.2. I-Line

          5.1.3. DUV

          5.1.4. ArFi

          5.1.5. ArF

          5.1.6. KrF

Chapter 6. Photolithography Equipment Market By Light Source Insights & Trends Revenue (USD Billion)

    6.1. Light Source Dynamics & Market Share, 2021 & 2028

          6.1.1. Mercury Lamps

          6.1.2. Fluorine Lasers

          6.1.3. Excimer Lasers

          6.1.4. Laser-Produced Plasma

Chapter 7. Photolithography Equipment Market By Wavelength Insights & Trends, Revenue (USD Billion)

    7.1. Wavelength Dynamics & Market Share, 2021 & 2028

          7.1.1. 370 nm-270 nm

          7.1.2. 270 nm-70 nm

          7.1.3. 70 nm- 1 nm

CONTINUED…!

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