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  4. > Sputtering Targets & Evaporation Materials Market: By Sputtering Method (DC, Reactive, RF, Others); By Evaporation Method (Thermal, Vacuum, Others); By Material (Pure Metals, Alloys, Compounds); By Application and By Geography- Forecast (2015-2020)

Sputtering targets and evaporation materials (ST&EM) are target materials which are used to deposit thin film or layer on desired substrate by employing various methods. Basically, sputtering and evaporation are variants of physical vapor deposition (PVD) processes which are used for various commercial and scientific purposes. Sputtering targets and evaporation materials have wide range of applications in semiconductor components, displays, sensors, data storage devices, photovoltaic cells, batteries, industrial tools, optics, automobile mirrors, decorative and many more. Owing to their significant applications in diverse end user industries, sputtering targets and evaporation materials market is set to grow at a considerable pace in the coming years. As per IndustryARC analysis, for the period of 2015 until 2020, the global sputtering targets and evaporation materials market is estimated to grow at a CAGR of 2.2% to reach $3.2 billion.

This market has been segmented into methods of sputtering and evaporation, materials used as targets, application sectors and geography. The geography segmentation includes North America, Europe, APAC and RoW and market revenue is provided with respect to each region. Additionally, detailed qualitative and quantitative analysis of the factors responsible for driving and restraining growth of the ST&EM market along with future opportunities have been analyzed in the market forces chapter.

This report also includes profiles of the major companies such as:
Heraeus Holding,
Umicore Thin Film Products,
Hitachi Metals,
KAMIS Inc.,
The Kurt J.Leskar Company,
ULVAC GmbH and many more.

The global ST&EM market is set to experience considerable growth in the coming years, due to constant demand from dedicated end user sectors, especially electronics, energy, industrial, optical and others. APAC region is the major shareholder with more than 45% share in the global ST&EM market, due to the presence of numerous targets and materials providers and end user sectors. In the global ST&EM market, North America held the second major share followed by Europe and RoW. Overall, this market will find steady demand from dedicated end used industries.

Table Of Contents

Sputtering Targets and Evaporation Materials Market: By Sputtering Method (DC, Reactive, RF, Others); By Evaporation Method (Thermal, Vacuum, Others); By Material (Pure Metals, Alloys, Compounds); By Application and By Geography- Forecast (2015-2020)
1. Global Sputtering Targets and Evaporation Materials Market Overview
2. Executive Summary
3. Global Sputtering Targets and Evaporation Materials Market Landscape
3.1. Market share Analysis
3.2. Comparative Analysis
3.2.1. Product Benchmarking
3.2.2. End-User Profiling
3.2.3. Patent Analysis
3.2.4. Top 5 Financial Analysis
4. Global Sputtering Targets and Evaporation Materials - Market Forces
4.1. Market Drivers
4.2. Market Constraints
4.3. Market Challenges
4.4. Attractiveness of the Sputtering Targets and Evaporation Materials Industry
4.4.1. Power of Suppliers
4.4.2. Power of Customers
4.4.3. Threat of New entrants
4.4.4. Threat of Substitution
4.4.5. Degree of Competition
5. Global Sputtering Targets and Evaporation Materials Market - Strategic Analysis
5.1. Value Chain Analysis
5.2. Pricing Analysis
5.3. Opportunity Analysis
5.4. Product Life Cycle Analysis
5.5. Suppliers and Distributors
6. Global Sputtering Targets and Evaporation Materials Market - By Sputtering Method
6.1. Introduction
6.2. DC sputtering
6.3. Reactive sputtering
6.4. RF sputtering
6.5. Ion assisted sputtering
6.6. Magnetron sputtering
6.7. Gas flow sputtering
7. Global Sputtering Targets and Evaporation Materials Market - By Evaporation Method
7.1. Introduction
7.2. Thermal evaporation
7.3. Electron-beam evaporation
7.4. Vacuum evaporation
7.5. Reactive evaporation
8. Global Sputtering Targets and Evaporation Materials Market - By Material Type
8.1. Introduction
8.2. Pure metals
8.3. Elemental semiconductors
8.4. Alloys
8.5. Compounds (oxides, nitrides, sulphides and carbides)
9. Global Sputtering Targets and Evaporation Materials Market - By Application
9.1. Electronics
9.1.1. Magnetic data storage
9.1.2. Displays
9.1.3. Semiconductors
9.1.4. Sensors
9.2. Industrial
9.2.1. Wear Resistant
9.2.2. Corrosion Resistant
9.2.3. Heat Resistant
9.3. Energy
9.3.1. Photovoltaic cells
9.3.2. Solar thermal collectors
9.3.3. Batteries
9.4. Optics
9.4.1. Microscopes
9.4.2. Camera lenses
9.4.3. Automobile mirrors
9.5. Others
10. Global Sputtering Targets and Evaporation Materials Market - By Geography
10.1. Introduction
10.2. North America
10.2.1. U.S.
10.2.2. Canada
10.2.3. Others
10.3. Europe
10.3.1. U.K.
10.3.2. Germany
10.3.3. France
10.3.4. Switzerland
10.3.5. Others
10.4. APAC
10.4.1. China
10.4.2. Japan
10.4.3. India
10.4.4. Australia
10.4.5. Others
10.5. RoW
10.5.1. South America
10.5.2. Middle East and Africa
11. Market Entropy
11.1. New Product Launches
11.2. MandAs, Collaborations, Partnerships and JVs
12. Company Profiles
12.1. Heraeus Holding
12.2. Umicore AGandCo.
12.3. Hitachi Metals
12.4. Treibacher Industrie AG
12.5. KAMIS Inc
12.6. The Kurt J.Leskar Company
12.7. AJA International Inc
12.8. ACI alloys Inc
12.9. Soleras Advanced Coatings
12.10. Evochem Advanced Materials
12.11. American Elements
12.12. ULVAC GmbH
12.13. ADVANTIV Technologies Inc
12.14. SCI Engineered Materials
12.15. Able Target Limited
12.16. International Advanced Materials
12.17. Oerlikon balzers
12.18. Plasmaterials Inc
12.19. Leadmat Advanced Materials Co., Ltd
12.20. FURAYA Metals Co., Ltd
*More than 40 Companies are profiled in this Research Report, Complete List available on Request*
"*Financials would be provided on a best efforts basis for private companies"
13. Appendix
13.1. Abbreviations
13.2. Sources
13.3. Research Methodology
13.4. Bibliography
13.5. Compilation of Expert Insights
13.6. Disclaimer

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