Europe Atomic Layer Deposition Market, By Product Type (Metal ALD, Aluminium Oxide ALD, Plasma Enhanced ALD, Catalytic ALD, Others), Application (Semiconductors, Solar Devices, Electronics, Medical Equipment, Research & Development Facilities, Fuel Cells, Optical Devices, Thermoelectric Materials, Magnetic Heads, Sensors, Barrier Layers, Primer Layers, Non—IC Application, Others) Industry Trends and Forecast to 2029.
Europe Atomic Layer Deposition Market Analysis and Insights
The Europe atomic layer deposition market is expected to drive due to an increase in demand for semiconductor industries. As semiconductor is the main component or application of ALD, the increase in demand for semiconductor help increases the demand for ALD. Some other factors expected to drive the market growth are raising concerns about energy harvesting results in the high growth of photovoltaic (PV) cells.
The primary factor anticipated to limit the market is the high initial investment cost in producing ALD, which has affected the market growth.
Data Bridge Market Research analyses that the Europe atomic layer deposition market will grow at a CAGR of 13.7% during the forecast period of 2022 to 2029.
Report Metric
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Details
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Forecast Period
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2022 to 2029
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Base Year
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2021
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Historic Years
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2020 (Customizable to 2019 - 2015)
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Quantitative Units
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Revenue in USD Million, Pricing in USD
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Segments Covered
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By Product Type (Metal ALD, Aluminium Oxide ALD, Plasma Enhanced ALD, Catalytic ALD, Others), Application (Semiconductors, Solar Devices, Electronics, Medical Equipment, Research & Development Facilities, Fuel Cells, Optical Devices, Thermoelectric Materials, Magnetic Heads, Sensors, Barrier Layers, Primer Layers, Non—IC Application, Others)
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Countries Covered
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Germany, the U.K., France, Italy, Spain, Turkey, Russia, Belgium, Netherlands, Switzerland, and Rest of Europe.
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Market Players Covered
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ADEKA CORPORATION, AIXTRON, Applied Materials Inc., ASM International, LAM RESEARCH CORPORATION, Tokyo Electron Limited, Kurt J. Lesker Company, Beneq, Veeco Instruments Inc., ANRIC TECH., Encapsulix, SENTECH Instruments GmbH, Oxford Instruments, Forge Nano Inc., Merck KGaA, HZO, Inc., Picosun Oy., among others.
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Market Definition
Atomic layer deposition (ALD) refers to the process of deposition of precursor materials on substrates for improving or modifying properties such as chemical resistance, strength, and conductivity. The process is considered a sub-division of chemical vapor deposition (CVD) in atomic layer deposition. Usually, two chemicals are utilized for the reaction, generally called precursors.
Europe Atomic Layer Deposition Market Dynamics
This section deals with understanding the market drivers, opportunities, restraints, and challenges. All of this is discussed in detail below:
Drivers:
- HIGH DEMAND FOR MICROELECTRONICS AND CONSUMER ELECTRONICS
Microelectronics is a process of manufacturing electronic components at the microscopic level. The microelectronics market is rapidly growing due to the demand for inexpensive and lightweight equipment. Microelectronics components include transistors, capacitors, diodes, resistors, inductors, and others. All these electronic components are used to manufacture mobile phones, laptops, electronic toys, and others.
- RAISING CONCERN ON ENERGY HARVESTING RESULTS IN HIGH GROWTH OF PHOTOVOLTAIC (PV) CELLS
Photovoltaic (PV) is commonly called an energy harvesting technology, and the technology is used to convert solar energy into electric energy, which is electricity. The demand for photovoltaic cells has been increasing due to the relatively low price and wide range of applications such as solar traffic lights, solar power pumps, solar lamps, solar power calculators, and others.
Restraint
- HIGH INITIAL INVESTMENT COSTS
Atomic layer deposition (ALD) is the deposition of precursor materials on substrates to improve/modify properties such as conductivity, chemical resistance, and strength. To provide ALD services, the provider has to buy equipment for the atomic layer deposition process, such as Cambridge NanoTech Fiji F200 Atomic Layer Deposition System, Open Load ALD System: OpAL, ALD 200L Series from Kurt J. Lesker Company, Cambridge NanoTech Savannah Series Atomic Layer Deposition System, Plasma & Thermal ALD System: FlexAL, Ion Beam Deposition System: IonFab IBD and Cambridge NanoTech Savannah Series Atomic Layer Deposition System.
The price of each piece of equipment is around USD 10000, and the provider must buy all equipment to provide all types of atomic layer deposition services. The cost of equipment would be very high to provide all types of atomic layer deposition services. Thus, many buyers will avoid buying due to the high cost compared to regular furniture.
Opportunity
- TREND OF MINIATURIZATION
Miniaturization is the process of manufacturing the smallest mechanical, electronic, and optical devices. In other words, it is a process of making electronic devices smaller. Miniaturization is in trend because everyone wants smaller, compacted, more portable devices. Now nanotechnology has the potential to transform the molecular beam into nano-devices (functional). This is a big step toward miniaturization.
Challenge
- ALTERNATIVES OF ATOMIC LAYER DEPOSITION
The chemical vapor deposition process is widely used to produce high-quality, high-performance thin films. The chemical vapor deposition process is commonly used in the semiconductor industry. On the other hand, physical vapor deposition (PVD) is a method used to produce thin films and coatings with high temperature, high strength, excellent abrasion resistance, and others. Chemical vapor deposition and physical vapor deposition can be used as alternatives to atomic layer deposition due to the below advantages over atomic layer deposition.
- Chemical vapor deposition has a higher deposition rate than atomic layer deposition
- In chemical vapor deposition, deposit material is hard to evaporate
- The physical vapor deposition process can operate in low temperatures as compared to atomic layer deposition
- Physical vapor deposition can control the chemical composition
Recent Developments
- In 2020, AIXTRON was leading the MOCVD equipment. The AIXTRON contributes 58% of the Europe market share for MOCVD equipment. The AMEC (China), with 16%, and Veeco (U.S.), with 26%, contribute the remaining segment share. The Europe market share is around USD 438 million for MOCVD equipment in the year 2020.
- In December 2021, Tokyo Electron Limited developed its product for a plasma etch system called Tactras-UDEMAE. This new product development will help the company satisfy the high demand for power and discrete devices. The etch technology is important in manufacturing these products, and the Tactras-UDEMAE is increasing the performance of etch system to increase productivity.
Europe Atomic Layer Deposition Market Scope
The Europe atomic layer deposition market is segmented based on product type, and application. The growth amongst these segments will help you analyze major growth segments in the industries and provide the users with a valuable market overview and market insights to help them make strategic decisions for identifying core market applications.
Product Type
- Metal ALD
- Aluminium Oxide ALD
- Plasma Enhanced ALD
- Catalytic ALD
- Others
On the basis of product type, the Europe atomic layer deposition market is classified into metal ALD, aluminium oxide ALD, plasma enhanced ALD, catalytic ALD, and others.
Application
- Semiconductors
- Electronics
- Solar Devices
- Medical Equipment
- Optical Devices
- Thermoelectric Materials
- Fuel Cells
- Research & Development Facilities
- Magnetic Heads
- Sensors
- Barrier Layers
- Primer Layers
- Non-IC Application
- Others
On the basis of application, the Europe atomic layer deposition market is classified into semiconductors, solar devices, electronics, medical equipment, research & development facilities, fuel cells, optical devices, thermoelectric materials, magnetic heads, sensors, barrier layers, primer layers, non—IC application, and others.
Europe Atomic Layer Deposition Market Regional Analysis/Insights
The Europe atomic layer deposition market is analyzed, and market size insights and trends are provided based on country, product type, and application, as referenced above.
Some countries covered in the Europe atomic layer deposition market report are Germany, the U.K., France, Italy, Spain, Turkey, Russia, Belgium, Netherlands, Switzerland, Rest of Europe.
Germany is expected to dominate the Europe atomic layer deposition market in terms of market share and revenue. It is estimated to maintain its dominance during the forecast period due to the growing trend for miniaturization.
The region section of the report also provides individual market-impacting factors and changes in regulations that impact the market's current and future trends. Data points, such as new and replacement sales, country demographics, disease epidemiology, and import-export tariffs, are some of the major pointers used to forecast the market scenario for individual countries. In addition, the presence and availability of European brands and their challenges faced due to high competition from local and domestic brands and the impact of sales channels are considered while providing forecast analysis of the country data.
Competitive Landscape and Europe Atomic Layer Deposition Market Share Analysis
The competitive Europe atomic layer deposition market provides details about the competitors. Details include company overview, company financials, revenue generated, market potential, investment in research and development, new market initiatives, Europe presence, production sites and facilities, production capacities, company strengths and weaknesses, product launch, product width and breadth, and application dominance. The above data points are only related to the company’s focus on the Europe atomic layer deposition market.
Some of the major players operating in the Europe atomic layer deposition market are ADEKA CORPORATION, AIXTRON, Applied Materials Inc., ASM International, LAM RESEARCH CORPORATION, Tokyo Electron Limited, Kurt J. Lesker Company, Beneq, Veeco Instruments Inc., ANRIC TECH., Encapsulix, SENTECH Instruments GmbH, Oxford Instruments, Forge Nano Inc., Merck KGaA, HZO, Inc., Picosun Oy., among others.
Research Methodology
Data collection and base year analysis are done using data collection modules with large sample sizes. The market data is analyzed and estimated using market statistical and coherent models. In addition, market share analysis and key trend analysis are the major success factors in the market report. The key research methodology used by the DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market, and primary (industry expert) validation. Apart from this, data models include Vendor Positioning grids, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Company Market Share Analysis, Standards of Measurement, Europe Vs Regional, and Vendor Share Analysis. Please request an analyst call in case of further inquiry.
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