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Semiconductor Wafer Cleaning Equipment Market By Technology (wet chemistry-based cleaning technology, etch cleaning technology, and front side-up cleaning technology) By Equipment (rotary wafer etching system, semi-automated wet batch systems, and manual wet batch system)-Growth, Future Prospects & Competitive Analysis, 2016 – 2030

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Credence Research Inc

date

a year ago

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1 business day

Key Highlights of the report

How are the major segments performing in the Semiconductor Wafer Cleaning Equipment market?

  • In 2021, the wet chemistry-based cleaning technology segment accounted for the largest share of the market. This is the most popular chemical cleaning method for removing contamination from semiconductor wafer surfaces.
  • In 2021, the rotary wafer etching system segment was anticipated to hold a prominent share of the global semiconductor wafer cleaning equipment market. This can be attributed to the increasing use of wafer-cleaning equipment and in-vehicle entertainment and guidance systems in manufacturing smart gadgets.
  • In 2021, the metallic contamination segment accounted for the largest share of the market as it is the major issue faced by the people.

 

Which region dominated the Semiconductor Wafer Cleaning Equipment market?

In 2021, the Asia Pacific region was anticipated to hold a prominent share of the global semiconductor wafer cleaning equipment market. Since most major semiconductor manufacturers are located in Asia-Pacific, this region currently occupies a significant portion of the market. In addition, due to the increased adoption of consumer electronic devices, it is also the fastest-growing region in the industry. Higher demand for wafer cleaning equipment was seen in the region because of the increasing consolidation in the Outsourced Semiconductor Assembly and Test (OSAT) industry.

 

How is China Market Performing in the Semiconductor Wafer Cleaning Equipment market?

In 2021, the Asia-Pacific region was anticipated to hold a prominent share of the global semiconductor wafer cleaning equipment market. China is becoming a key hub for major players in the wafer-cleaning equipment market to expand its investment and business capabilities. The country’s favorable economic conditions and low labor costs are the key drivers of increased business opportunities. The country’s high concentration of wafer and integrated circuit manufacturing firms contributes to the growth of the wafer-cleaning equipment market.

 

What is the competitive environment of the Semiconductor Wafer Cleaning Equipment market?

The semiconductor wafer cleaning equipment industry’s competitive environment provides information on the entire economic profit made by suppliers and businesses, the sales and revenues created in this sector, the semiconductor wafer cleaning equipment market share globally, the business organization summary, the introduction of new products, and the opportunities for the industrial semiconductor wafer cleaning equipment market. For instance, in January 2020, in an agreement signed with Applied Materials (US), a manufacturer of semiconductor chips for consumer electronics, SCREEN Semiconductor Solutions Co., Ltd. will collaborate on process development at Applied Materials’ new R&D facility. As a result of the agreement, SCREEN’s expertise in wafer cleaning technology will be combined with Applied Materials’ leadership in materials engineering solutions. Furthermore, in July 2019, Kokusai Electric Corporation, a leading provider of high-productivity batch processing systems and services to memory, foundry, and logic customers, was acquired by Applied Materials for USD 2.2 billion. Due to the acquisition, the company is likely to expand its global services business and enhance customer support capabilities.

 

Executive Summary

What are the key trends in the Semiconductor Wafer Cleaning Equipment market?

In addition to the increased popularity of 3D devices, the demand for silicon wafers for use in 3D applications is also increasing rapidly. Silicon components are required in order to make 3D devices work seamlessly. In 3D devices, transistors and chips are incorporated into the 3D structure. Ensuring that silicon wafers used in 3D structures are clean and precise is critical. 3D structures require the highest quality silicon wafers, which must be carefully cleaned.

 

What are technical developments being developed in the Semiconductor Wafer Cleaning Equipment Market Market Market?

The widespread adoption of smart and compatible devices significantly aids global semiconductor wafer cleaning equipment market growth. Smartphone technology is profoundly influencing consumers’ daily marketing strategies, business activities, and lifestyles. Smartphone technology acceptance is a key factor in determining success in today’s technology. Therefore, it is very valuable to identify the main factors influencing consumers’ behavior toward smartphones. This growth in demand has resulted in a reduction in the cost of smartphones. Smartphones are experiencing significant growth; their increasing adoption has led to an increase in bulk production. Globally, smartphones have become more popular as a result of this factor.

 

REPORT ATTRIBUTEDETAILS
Semiconductor Wafer Cleaning Equipment Market by VolumeYes
Semiconductor Wafer Cleaning Equipment Market by ValueYes
Semiconductor Wafer Cleaning Equipment Market, Tornado AnalysisYes
Semiconductor Wafer Cleaning Equipment Market, STAR AnalysisYes
Semiconductor Wafer Cleaning Equipment Market, SRC AnalysisYes
Semiconductor Wafer Cleaning Equipment Market, Import-Export DataYes (On Demand)
Semiconductor Wafer Cleaning Equipment Market Pricing AnalysisYes (On Demand)
Semiconductor Wafer Cleaning Equipment Market Segment Analysis

By Technology (wet chemistry-based cleaning technology, etch cleaning technology, and front side-up cleaning technology)

 

By Equipment (rotary wafer etching system, semi-automated wet batch systems, and manual wet batch system)

By Application (metallic contamination, chemical contamination, and particle contamination)

Semiconductor Wafer Cleaning Equipment Market, Geographical Analysis

North America (US and Canada)

 

Europe (Germany, UK, France, Italy, Spain, and the Rest of Europe)

Asia Pacific (China, India, Japan, South Korea, South East Asia, and the Rest of Asia Pacific)

Latin America (Brazil, Mexico, and the Rest of Latin America)

Middle East and Africa (GCC Countries, South Africa, and the Rest of the Middle East and Africa)

Semiconductor Wafer Cleaning Equipment Market Key CompaniesSCREEN Holdings Co., Ltd., Tokyo Electron Limited, Kla Tencor Corp., FSI International, Falcon Process Systems, Inc., Cleaning Technologies Group, Solid State Equipment, Semsysco GmbH, Modutek Corporation, and MEI Wet Processing Systems and Services LLC.
Semiconductor Wafer Cleaning Equipment Market Competitive Landscape

Market Share Analysis

 

Competitive Benchmarking

Key Players Market Positioning

Geographical Presence Analysis

Major Strategies Adopted

 

Which are the key investments by the Semiconductor Wafer Cleaning Equipment market players?

Leading players operating in the semiconductor wafer cleaning equipment market are focusing on expansion in production capacities for semiconductor wafer cleaning equipment. Apart from this, players are concentrating on strategic mergers and acquisitions, collaborations and creating awareness in the domestic market to gain a competitive edge. For instance, as part of a joint development agreement, Nanexa and Applied Materials will validate, adapt, and scale up Nanexa’s production of ALD-coated injectable drugs. Furthermore, Lam Research Corp. announced it would expand its manufacturing footprint in Oregon by building a 45,000-square-foot facility in Sherwood in December 2021.

 

Some major players in the semiconductor wafer cleaning equipment market are SCREEN Holdings Co., Ltd., Tokyo Electron Limited, Kla Tencor Corp., FSI International, Falcon Process Systems, Inc., Cleaning Technologies Group, Solid State Equipment, Semsysco GmbH, Modutek Corporation, and MEI Wet Processing Systems and Services LLC.

 

What are the Major Driving Factors for the Semiconductor Wafer Cleaning Equipment Market?

In the semiconductor wafer cleaning equipment market, one of the major factors driving growth is the increasing number of critical steps in the wafer cleaning sequence. During the COVID-19 pandemic, MEMS technology helped revive the market, while silicon-based sensors, chips, and diodes were used more frequently in the Internet of Things applications to drive market growth. Additionally, the market is impacted by the growing demand for portable electronic device supplements and their high use in various applications. Also, the semiconductor and electrical industries are growing, urbanization and digitization are accelerating, advanced technologies are becoming more accepted, and investment has increased. Furthermore, semiconductor wafer cleaning equipment advancements will offer profitable opportunities for market players in the next few years.

 

What are the Major Risks for the Semiconductor Wafer Cleaning Equipment Market?

Growing demand for wafers led to the adoption of wafer-cleaning equipment before COVID-19 to carry out the fabrication and cleaning processes thoroughly and effectively. Wafer manufacturers, however, are finding it harder to expand their facilities due to the Coronavirus pandemic. Due to the weakening financial position of semiconductor industries, investment plans for semiconductor industries with a dedicated fabrication facility have stalled.

 

Which is the key Technology in the Semiconductor Wafer Cleaning Equipment market?

During the forecast period, the wet chemistry-based cleaning technology segment is expected to hold a prominent share in the global semiconductor wafer cleaning equipment market. Cleaning semiconductor chip surfaces with wet chemistry is the most commonly employed chemical cleaning method. Semiconductor wafers are typically cleaned using hydrofluoric acid and ozonized water using wet chemistry-based cleaning techniques. Among the most common chemical solutions, hydrofluoric acid is useful for removing foreign objects from wafer surfaces due to its acidic nature and ability to dissolve various impurities..

 

How is the Semiconductor Wafer Cleaning Equipment market performing in regions?

Due to the significant focal point for the important players, Asia Pacific is anticipated to dominate the semiconductor wafer cleaning equipment market. Taiwan and Taiwanese semiconductor wafer cleaning equipment markets are expected to benefit from improvements in semiconductor equipment production capabilities. Additionally, major semiconductor wafer cleaning equipment players have targeted the region as a place to increase investments and expand their businesses. A favorable economic climate and low labor costs are the main factors determining regional business prospects. Moreover, semiconductor wafer cleaning equipment is growing in popularity in the region because of the high concentration of wafer and integrated circuit manufacturers.

 

What is the regulatory landscape for the Semiconductor Wafer Cleaning Equipment market?

One of the most basic and recurring steps in the semiconductor industry is wafer cleaning, which is essential for producing high-quality semiconductor devices. However, the constantly shrinking dimensions of semiconductor devices have led to the establishment of rigid standards regarding acceptable levels of impurities. Assenic pentafluoride (AsF5), arsenic pentafluoride (AsF5), arsenic (As), boron trichloride (BCl3), boron trifluoride (BF3), chlorine (Cl), germane (GeH4), hydrogen sulfide (H2S), hydrogen peroxide (H2O2), and oxidized carbon are among the toxic chemicals and acids used to fabricate and clean wafers. Since all these chemicals are hazardous and toxic and have an adverse effect on human and environmental health, their usage and application should be controlled.

 

What is the Market Size of Semiconductor Wafer Cleaning Equipment regarding value?

The global semiconductor wafer cleaning equipment market is projected to grow at a substantial CAGR of 8.80% in the upcoming years. The global semiconductor wafer cleaning equipment industry was estimated to be worth USD 6.1 billion in 2021 and was expected to be worth USD 10.12 billion by 2028.

 

What are the major players planning for the future of the Semiconductor Wafer Cleaning Equipment market?

Growing regional existence and investment in downstream applications are anticipated to deliver a competitive edge in the market. For instance, as part of a joint development agreement, Nanexa and Applied Materials will validate, adapt, and scale up Nanexa’s production of ALD-coated injectable drugs. Furthermore, in July 2019, Kokusai Electric Corporation, a leading provider of high-productivity batch processing systems and services to memory, foundry, and logic customers, was acquired by Applied Materials for USD 2.2 billion. A possible outcome of the acquisition will be the expansion of the company’s global services business and the enhancement of its customer support services.

 

Segmentation of Global Semiconductor Wafer Cleaning Equipment Market-

Global Semiconductor Wafer Cleaning Equipment Market – By Technology

  • Wet Chemistry-Based Cleaning Technology
  • Etch Cleaning Technology
  • Front Side Up Cleaning Technology

Global Semiconductor Wafer Cleaning Equipment Market – By Equipment

  • Rotary Wafer Etching System
  • Semi-Automated Wet Batch Systems
  • Manual Wet Batch System

Industrial Global Semiconductor Wafer Cleaning Equipment Market – By Application

  • Metallic Contamination
  • Chemical Contamination
  • Particle Contamination

Global Semiconductor Wafer Cleaning Equipment Market – By Region

  • North America
    • U.S
    • Canada
  • Europe
    • Germany
    • France
    • U.K.
    • Italy
    • Spain
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • South Korea
    • South-east Asia
    • Rest of Asia Pacific
  • Latin America
    • Brazil
    • Mexico
    • Rest of Latin America
  • Middle East & Africa
    • GCC Countries
    • South Africa
    • Rest of the Middle East and Africa

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