Atomic Layer Deposition Market Size & Growth Report, 2022-2030
The global Atomic Layer Deposition market size is expected to be worth around US$ 10.3 billion by 2030, according to a new report by Vision Research Reports.
The global Atomic Layer Deposition market size was valued at US$ 2.9 billion in 2020 and is anticipated to grow at a CAGR of 8.8% during forecast period 2021 to 2030.
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Report Coverage
Report Scope | Details |
Market Size | US$ 10.3 Bn by 2030 |
Growth Rate | CAGR of 8.8% From 2021 to 2030 |
Base Year | 2021 |
Forecast Period | 2021 to 2030 |
Segments Covered | Product, Application |
Regional Scope | North America, Europe, Asia Pacific, Latin America, Middle East & Africa |
Companies Mentioned | Tokyo Electron Limited, Denton Vacuum LLC, Kurt J. Lesker Company, Beneq Oy, Veeco Instruments, Canon Anvela Corporation, Picosun Oy, Entergis Inc., and ALD NanoSolutions, Inc. |
Growth Factors
Atomic Layer Deposition is considered as one of the superior deposition methods for producing thin and conformal films. The industry is expected to be driven by the growing electronics industry and semiconductor solutions particularly in the Asia Pacific and North America. Various deposition instruments are used in the manufacturing of semiconductor categories such as copper electrodes, High-K dielectric gate stacks, and copper barrier/seed layers. Rising demand for electronic components in the automotive industry is expected to increase the demand for semiconductors and hence, directly impact the atomic layer deposition market positively.
Increasing concerns for global warming climate change and has encouraged governments around the globe towards renewable & green energy sources. The subsidies offered by government have encouraged the growth of the solar power industry. Thin-film materials overcome this problem with their properties of efficiency and reliability.
By Product Analysis
Aluminum oxide ALD is expected to remain the largest type of product segment by 2025 which was valued at USD 328.2 million in 2016. With the abundance of aluminum, the demand for aluminum oxide film using this deposition technique is also anticipated to increase in industrial penetration.
Technological developments in the precursor materials and substrates is a major trend for the industry. The advancements have resulted in plasma enhanced-atomic layer deposition (PEALD) as the fastest-growing category.
The extensive research initiatives for the technology concerning enhanced nucleation have resulted in deposition on particles and polymers. This technology type holds a smaller share of the overall market due to high capital costs and specific applications.
By Application Analysis
The atomic layer deposition industry has numerous promising areas of application. The semiconductor industry was the leading application sector in 2016 while accounting for over 40% of the total revenue in the same year.
The technology in the semiconductor industry finds applications in both IC (Integrated Circuit) and Non-IC components. The other application sectors for the technology include flexible electronic devices, fuel cells, solar cells, medical devices, and data storage devices.
The changing consumer preerence and government initiatives to reduce greenhouse gas emissions have resulted in swift growth of the solar sector. The technique is widely used for conformal coatings in solar cells and devices.
By Regional Analysis
Asia Pacific was the dominant region in 2020 with revenue estimated over USD 504 million for the same year. The rapidly growing demand from end-use industries such as semiconductors, electronics, medical equipment industry, and the solar sector has led Asia Pacific to achieve the maximum market share.
Some of the Asian countries offer lucrative opportunities for the industry participants due to increase in capacity of solar photovoltaics. North American ALD market followed Asia Pacific in 2020 in terms of market capitalization. The U.S. and Canada are the major contributors to the growth of the regional market.
Key Players
Tokyo Electron Limited, Denton Vacuum LLC, Kurt J. Lesker Company, Beneq Oy, Veeco Instruments, Canon Anvela Corporation, Picosun Oy, Entergis Inc., and ALD NanoSolutions, Inc.
Market Segmentation
- By Product
- Metal
- Aluminum Oxide
- Plasma Enhanced
- Catalytic
- Others
- By Application
- Semiconductors
- Solar devices
- Electronics
- Medical equipment
- Others
- Regional
- North America
- The U.S.
- Canada
- Europe
- Germany
- The U.K.
- France
- Asia Pacific
- China
- Japan
- India
- Middle East & Africa
- Central & South America (CSA)
- North America
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Reasons to Purchase this Report:
– Market segmentation analysis including qualitative and quantitative research incorporating the impact of economic and policy aspects
– Regional and country level analysis integrating the demand and supply forces that are influencing the growth of the market.
– Market value USD Million and volume Units Million data for each segment and sub-segment
– Competitive landscape involving the market share of major players, along with the new projects and strategies adopted by players in the past five years
– Comprehensive company profiles covering the product offerings, key financial information, recent developments, SWOT analysis, and strategies employed by the major market players
Table of Contents
Chapter 1. Introduction
1.1. Research Objective
1.2. Scope of the Study
1.3. Definition
Chapter 2. Research Methodology
2.1. Research Approach
2.2. Data Sources
2.3. Assumptions & Limitations
Chapter 3. Executive Summary
3.1. Market Snapshot
Chapter 4. Market Variables and Scope
4.1. Introduction
4.2. Market Classification and Scope
4.3. Industry Value Chain Analysis
4.3.1. Raw Material Procurement Analysis
4.3.2. Sales and Distribution Channel Analysis
4.3.3. Downstream Buyer Analysis
Chapter 5. Market Dynamics Analysis and Trends
5.1. Market Dynamics
5.1.1. Market Drivers
5.1.2. Market Restraints
5.1.3. Market Opportunities
5.2. Porter’s Five Forces Analysis
5.2.1. Bargaining power of suppliers
5.2.2. Bargaining power of buyers
5.2.3. Threat of substitute
5.2.4. Threat of new entrants
5.2.5. Degree of competition
Chapter 6. Competitive Landscape
6.1.1. Company Market Share/Positioning Analysis
6.1.2. Key Strategies Adopted by Players
6.1.3. Vendor Landscape
6.1.3.1. List of Suppliers
6.1.3.2. List of Buyers
Chapter 7. Global Atomic Layer Deposition Market, By Product
7.1. Atomic Layer Deposition Market, by Product, 2021-2030
7.1.1. Metal
7.1.1.1. Market Revenue and Forecast (2017-2030)
7.1.2. Aluminum Oxide
7.1.2.1. Market Revenue and Forecast (2017-2030)
7.1.3. Plasma Enhanced
7.1.3.1. Market Revenue and Forecast (2017-2030)
7.1.4. Catalytic
7.1.4.1. Market Revenue and Forecast (2017-2030)
Chapter 8. Global Atomic Layer Deposition Market, By Application
8.1. Atomic Layer Deposition Market, by Application, 2021-2030
8.1.1. Semiconductors
8.1.1.1. Market Revenue and Forecast (2017-2030)
8.1.2. Solar devices
8.1.2.1. Market Revenue and Forecast (2017-2030)
8.1.3. Electronics
8.1.3.1. Market Revenue and Forecast (2017-2030)
8.1.4. Medical equipment
8.1.4.1. Market Revenue and Forecast (2017-2030)
Chapter 9. Global Atomic Layer Deposition Market, Regional Estimates and Trend Forecast
9.1. North America
9.1.1. Market Revenue and Forecast, by Product (2017-2030)
9.1.2. Market Revenue and Forecast, by Application (2017-2030)
9.1.3. U.S.
9.1.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.1.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.1.4. Rest of North America
9.1.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.1.4.2. Market Revenue and Forecast, by Application (2017-2030)
9.2. Europe
9.2.1. Market Revenue and Forecast, by Product (2017-2030)
9.2.2. Market Revenue and Forecast, by Application (2017-2030)
9.2.3. UK
9.2.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.2.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.2.4. Germany
9.2.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.2.4.2. Market Revenue and Forecast, by Application (2017-2030)
9.2.5. France
9.2.5.1. Market Revenue and Forecast, by Product (2017-2030)
9.2.5.2. Market Revenue and Forecast, by Application (2017-2030)
9.2.6. Rest of Europe
9.2.6.1. Market Revenue and Forecast, by Product (2017-2030)
9.2.6.2. Market Revenue and Forecast, by Application (2017-2030)
9.3. APAC
9.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.3.3. India
9.3.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.3.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.3.4. China
9.3.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.3.4.2. Market Revenue and Forecast, by Application (2017-2030)
9.3.5. Japan
9.3.5.1. Market Revenue and Forecast, by Product (2017-2030)
9.3.5.2. Market Revenue and Forecast, by Application (2017-2030)
9.3.6. Rest of APAC
9.3.6.1. Market Revenue and Forecast, by Product (2017-2030)
9.3.6.2. Market Revenue and Forecast, by Application (2017-2030)
9.4. MEA
9.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.4.2. Market Revenue and Forecast, by Application (2017-2030)
9.4.3. GCC
9.4.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.4.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.4.4. North Africa
9.4.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.4.4.2. Market Revenue and Forecast, by Application (2017-2030)
9.4.5. South Africa
9.4.5.1. Market Revenue and Forecast, by Product (2017-2030)
9.4.5.2. Market Revenue and Forecast, by Application (2017-2030)
9.4.6. Rest of MEA
9.4.6.1. Market Revenue and Forecast, by Product (2017-2030)
9.4.6.2. Market Revenue and Forecast, by Application (2017-2030)
9.5. Latin America
9.5.1. Market Revenue and Forecast, by Product (2017-2030)
9.5.2. Market Revenue and Forecast, by Application (2017-2030)
9.5.3. Brazil
9.5.3.1. Market Revenue and Forecast, by Product (2017-2030)
9.5.3.2. Market Revenue and Forecast, by Application (2017-2030)
9.5.4. Rest of LATAM
9.5.4.1. Market Revenue and Forecast, by Product (2017-2030)
9.5.4.2. Market Revenue and Forecast, by Application (2017-2030)
Chapter 10. Company Profiles
10.1. Tokyo Electron Limited
10.1.1. Company Overview
10.1.2. Product Offerings
10.1.3. Financial Performance
10.1.4. Recent Initiatives
10.2. Denton Vacuum LLC
10.2.1. Company Overview
10.2.2. Product Offerings
10.2.3. Financial Performance
10.2.4. Recent Initiatives
10.3. Kurt J. Lesker Company
10.3.1. Company Overview
10.3.2. Product Offerings
10.3.3. Financial Performance
10.3.4. Recent Initiatives
10.4. Beneq Oy
10.4.1. Company Overview
10.4.2. Product Offerings
10.4.3. Financial Performance
10.4.4. Recent Initiatives
10.5. Veeco Instruments
10.5.1. Company Overview
10.5.2. Product Offerings
10.5.3. Financial Performance
10.5.4. Recent Initiatives
10.6. Canon Anvela Corporation
10.6.1. Company Overview
10.6.2. Product Offerings
10.6.3. Financial Performance
10.6.4. Recent Initiatives
10.7. Picosun Oy
10.7.1. Company Overview
10.7.2. Product Offerings
10.7.3. Financial Performance
10.7.4. Recent Initiatives
10.8. Entergis Inc
10.8.1. Company Overview
10.8.2. Product Offerings
10.8.3. Financial Performance
10.8.4. Recent Initiatives
10.9. ALD NanoSolutions, Inc
10.9.1. Company Overview
10.9.2. Product Offerings
10.9.3. Financial Performance
10.9.4. Recent Initiatives
Chapter 11. Research Methodology
11.1. Primary Research
11.2. Secondary Research
11.3. Assumptions
Chapter 12. Appendix
12.1. About Us
12.2. Glossary of Terms
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