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Market Overview
The global photolithography market was valued at USD 7.34 billion in 2018. It should be worth USD 9.80 billion in 2025. The market is expected to register a CAGR of 4.26% for the time period that this report covers.
The process of transferring geometric patterns on a substrate using optical radiations is referred to as photolithography. It’s also known as optical lithography or ultraviolet (UV) lithography. Wafer cleaning, barrier layer formation, photoresist application, soft baking, mask alignment, exposure and development, and hard-baking are the primary phases in photolithography. This is a difficult technique that necessitates a very clean substrate surface for etching patterns as well as ideal temperature conditions. Photolithography is used to make integrated circuits (ICs), printed electronic boards, nameplates, and printer plates, among other things.
Photolithography has recently been utilized to create nanites as well as microscopic computer systems. The growing demand for consumer electronics has contributed to the expansion of the worldwide Photolithography Market. Furthermore, manufacturers’ proclivity toward miniaturization in order to boost the adoption of portable devices has produced a number of opportunities in the worldwide photolithography market. However, the complex manufacturing process, as well as the constantly changing semiconductor sector, may act as a restraint on the worldwide photolithography market’s growth.
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By application
This segment can be grouped into the following sub-segments:
The back-end sub-segment held the greatest market share in 2019. This is expected to continue for the time period that this report covers.
By end-users
This segment is grouped into the following sub-segments by propulsion type:
The ultraviolet sub-segment had the greatest market share in 2019. It also generated the greatest amount of revenue in that year. These two trends are expected to continue for the time period that this report covers.
That said, the extreme ultraviolet sub-segment is expected to register the highest CAGR for the time period that this report covers.
By light source
This segment can be grouped into the following sub-segments:
The mercury lamp sub-segment held the greatest market share and generated the largest amount of revenue in 2019. This is expected to continue for the time period that this report covers.
Key Players
Eminent players profiled in the global photolithography market report include Samsung Electronics (South Korea), Carl Zeiss AG (Germany), ASML Holding NV (Netherlands), Applied Materials, Inc. (US), Taiwan Semiconductor Manufacturing Company Limited (Taiwan), JEOL Ltd (Japan), Rudolph Technologies, Inc. (US), NIL TECHNOLOGY (Denmark), Shanghai Micro Electronics Equipment (Group) Co., Ltd. (SMEE) (China), and EV Group (EVG) (Austria). Apart from the aforementioned players, the others include Veeco Instruments Inc. (US), SÜSS MICROTEC SE (Germany), NuFlare Technology Inc. (Japan), Tokyo Electron Limited (Japan), Vistec Electron Beam GmbH (Germany), Omega Optical, Inc. (US), Nikon Corporation (Japan), and Canon Inc. (Japan).
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Regional Analysis
The global photolithography market can be grouped into the following regions:
The Asia-Pacific region held the largest market share in the global photolithography market three years ago. This is expected to continue for the time period that this report covers. The Asia-Pacific region is also projected to register the highest regional CAGR for the time period that this report covers.
There are three major economies that are accounting for most of the growth in the market in this region. They are China, India, and Japan. There are a growing number of companies in this region that need to use the parts that are created by photolithography.
The North American region held the second-largest market share of all of the regions in the world. What’s driving growth in this region is the fact that EUV lithography, similar lithography processes, and electronics products manufacturing.
The technologies needed to produce these devices are rapidly advancing in the North American region. Also, devices that are powered by AI including Alexa, require components that are powered by photolithography to operate
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