Physical Vapor Deposition (PVD)
Global Markets
| Publication Date | October 2007 |
|---|---|
| Publisher | BCC Research |
| Product Type | Report |
| Pages | 254 |
| ISBN Number | not applicable |
| Product Code | BCC00176 |
Summary
BCC Research's goal in conducting this study was to determine the current status of the worldwide market for physical vapor deposition (PVD) equipment, materials deposited, and services and to assess the growth potential of this deposition technology over the period from 2007 to 2013. We were particularly interested in the types of equipment and materials being used for consumer and industrial applications. BCC Research previously published a study on PVD in 2005 and was interested in changes in the market and its future potential since then. Solar energy applications, for example, were added to this report.
The key objective is to present a comprehensive analysis of the current PVD industry and project its future course.
Scope of study
This report contains:
- Descriptions of various types of physical vapor deposition (PVD) equipment, and current and potential applications for each
- The current market status of the PVD industry, trends and forecasts for growth over the next 5 years
- Technological issues, including important trends and a patent analysis
- An analysis of market factors that will impact demand
- A review of the PVD industry's competitiveness by sector
- A discussion of industry structure and company profiles.
Report Highlights
- The value of the global PVD industry will increase from an estimated $9.0 billion to $9.9 billion in 2008. It should reach $16.7 billion in 2013, a compound annual growth rate of 11%.
- PVD equipment will remain the largest market as shipments grow at a compound annual rate of 9.6% to reach an estimated $7.1 billion in 2008. Growth will continue at a CAGR of 10.9% to reach $11.9 billion in 2013.
- The microelectronics industry, encompassing semiconductors, components and flat panel displays, represent the largest market for PVD equipment, materials and services.
Content
- Chapter 1 - Summary
- Summary
- Summary Table: Value of Global PVD Industry, through 2013 ($ Millions)
- Summary Figure: Global Value of PVD Industry, 2007-2013 ($ Millions)
- Chapter 2 - Overview
- PVD Deposition Technology
- Classification of Materials
- Major Applications
- Chapter 3 - PVD Industry Structure
- Recent Changes in The Industry
- PVD Key Player in Large Scale Solar Production
- Merger Trend Continues
- PVD Continues to Grow in India and China
- PVD Efficiency Constantly Improving
- Global PVD Manufacturing
- Global Consumption of PVD Equipment
- Market Shares
- Company Profiles
- Aja International, Inc., Scituate, Ma
- Applied Materials, Inc., Santa Clara, Ca
- Aviza Technology, Inc., Scotts Valley, Ca
- Nv Bekaert, Kortrijk, Belgium
- Boc Edwards, West Sussex, United Kingdom
- Cha Industries, Fremont, Ca
- Denton Vacuum, Moorestown, Nj
- Intevac, Santa Clara, Ca
- Kdf Electronics, Rockleigh, Nj
- Kurt J. Lesker Company, Clairton, Pa
- Leybold Optics Gmbh, Alzenau, Germany
- Mill Lane Engineering, Lowell, Ma
- Nanoshield & Royal Ace PVD Ion Plating, Thailand
- Novellus Systems, Inc., San Jose, Ca
- Oerlikon Balzers and Leybold, Europe
- Oerlikon Balzers Coating Services
- Oerlikon Leybold Vacuum
- Richter Precision, Inc., East Petersburg, Pa
- Singulus Technologies, Frankfurt, Germany
- System Control Technologies, Santa Clara, California
- Ulvac Technologies, Methuen, Ma
- Veeco Instruments, Woodbury, Ny
- Recent Changes in The Industry
- Chapter 4 - PVD Technology
- The Basic Physical Vapor Deposition Process
- The Evaporation Process
- Key Advantages of Evaporation
- Some Limitations of Evaporation
- Sputtering
- Radio Frequency (RF) and Direct Current (DC) Diode Sputtering
- Magnetically Enhanced Sputtering
- Magnetron Sputtering Can Produce High Rates
- Reactive Sputtering
- Ion Beam Assisted Deposition
- Pulsed Laser Deposition
- Basic Components
- Cathodic Arc Deposition
- Key Components
- Roll Coating
- The Evaporation Process
- Equipment Configurations
- Cluster Tools
- Technical Advantages
- in-Line Systems
- Advantages of in-line Systems
- Cluster Tools
- Technology Trends in PVD
- The Impact of Nanotechnology
- PVD's Early Success with Nanocoatings
- Sputtered Nanolaminate Coatings
- Deposition of Large-Scale Decorative Coatings
- Current Technologies
- Magnetron Sputtering
- Arc Bond Sputtering
- Current Technologies
- Flat Glass Coating with Rotatable Magnetrons
- Better Performance, Lower Cost in Current Equipment
- Cluster Tool Recommendations
- Perspective on Traditional Technologies
- The Impact of Nanotechnology
- Industry Competitiveness
- Patent Analysis
- Patents by Technlogical Topic
- Patents by Worldwide Region
- Patents by Assignees
- Sample Patent Abstracts
- Methods, Devices, and Compositions for Depositing and Orienting Nanostructures
- Method and Apparatus for Improving Metal Interconnects
- Magnetically Enhanced Capacitive Plasma Source for Ionized Physical Vapor Deposition
- Source for Physical Vapor Deposition of Organic Electroluminescent Layers
- Sputtering Thin Film Solar Cells
- Depositing a Metal Seed Layer on Semiconductor Substrates
- The Basic Physical Vapor Deposition Process
- Chapter 5 - PVD Markets
- Industry Focus
- Measurement Objectives
- Industry Focus
- Chapter 6 - PVD in The Microelectronics Market
- PVD in The Microelectronics Market
- Microelectronics Product Definition
- Changing Product Characteristics
- Industry Competitiveness of PVD in Microelectronics
- Microelectronics Economic Conditions
- Global Environment
- Product Development and Standards
- Semi
- Globalization
- Standards
- Benefits of Standards
- Sematech
- What They Do
- International Technology Roadmap for Semiconductors (ITRS)
- The Semiconductor Industry Association
- Semi
- PVD Technology
- Technology Challenge
- Mircoelectronics Growth Factors
- Driving Force for PVD
- Impact of Market Growth Factors
- Semiconductor Applications
- Impact of Copper Metallurgy
- Deposition of Thin Films
- Gate Dielectrics
- Interconnects
- Barrier Layers
- Contact and Adhesion Layers
- Types of PVD Systems
- Technological Expansion in PVD for Semiconductors
- Advantages of PVD in Semiconductor Fabrication
- Nanotechnology and the Future of PVD
- Major Materials Used in Semiconductor Products
- Sputtering Targets
- Semiconductor Market Drivers and Trends
- PVD Equipment Demand
- Cmos Business Model
- Fluctuating Growth Trends
- PVD Equipment Demand
- Other Microelectronics Applications
- Flat Panel Displays
- Electronic Components
- Impact of Mems Manufacturing
- Advantages of PVD for Other Microelectronic Applications
- Key Materials Used in Other Microelectronic Products
- Market Drivers for Other Microelectronics Products
- PVD Demand
- Impact of Other Production Methods
- Forecast Assumptions-PVD in Microelectronics
- Forecast-Value of PVD Equipment Shipments
- Forecast-Value of Deposited PVD Materials
- Measurement Considerations
- Sputtering Target Materials
- Forecast-Value of PVD Services
- Summary
- Chapter 7 - PVD in The Storage Market
- PVD in The Storage Market
- Storage Product Definition
- Storage Industry Competitiveness
- Data Storage Economics
- The Cost Factor
- Tape Drives
- Tape Packaging
- International Involvement
- Where Storage Is Made
- Standards
- Developments in PVD Technology
- Storage Growth Factors
- Driving Force for PVD
- Impact of Market Growth Factors
- Data Storage Economics
- Storage Applications
- PVD System Types
- Emerging Applications
- Tape Products
- Disk Products
- Optical Disks
- Nanofilms
- Advantages of PVD in The Storage Industry
- PVD Products Keep Evolving
- Major Materals Used in Storage Media
- Storage Market Drivers and Trends
- Projected PVD Equipment Demand
- Growth Trends
- Forecast Assumptions-PVD Growth in The Storage Industry
- Forecast-Value of PVD Shipments
- Forecast-Value of Deposited Materials for Storage Devices
- Measurement Considerations
- Sputtering Target Materials
- Forecast-Value of PVD Services
- Projected PVD Equipment Demand
- Chapter 8 - PVD in The Cutting Tool Market
- PVD in The Cutting Tool Market
- Product Definition
- Cutting Tool Industry Competitiveness
- Economic Conditions
- Slowdown Warnings
- International Conditions
- Changing Market Shares
- Technology
- Cutting Tool Growth Factors
- Driving Force for PVD
- Impact of Market Growth Factors
- Economic Conditions
- Cutting Tool Appplications
- Types of PVD Systems
- PVD vs Cvd Process
- Advantages of PVD in Cutting Tool Coating
- Major Materials Deposited for Cutting Tools
- Nanocoatings
- PVD Coated Carbides
- Types of PVD Systems
- Cutting Tool Market Drivers and Trends
- PVD Equipment Demand
- Fluctuating Growth Trends
- Forecast Assumptions-PVD in Cutting Tools
- Forecast-Value of PVD Shipments
- Forecast-Value of Cutting Tool Material Shipments
- Measurement Considerations
- Sputtering Target Materials
- Forecast-Value of PVD Services
- PVD Equipment Demand
- Chapter 9 - PVD in The Solar Industry
- PVD in The Solar Industry
- Product Definition
- The Photovoltaic Effect
- Solar Thermal Technology
- Bcc's Focus
- Kinds of Photovoltaic Products
- Solar Industry Competitiveness
- Energy Demand, The Environment, and Costs
- Global Research and Development in Solar Energy
- North America
- European Industry Activities
- Japanese Participation in Solar
- Other Asian and Chinese Activities
- Technology
- Nano-scale Solar Technology
- Solar Industry Growth Factors
- Driving Force for PVD
- Impact of Market Growth Factors
- Solar Industry Aplications
- Emerging Solar Applications
- Organic Solar Cells
- More Nanofilms
- Traditional Materials
- Types of PVD Systems
- Advantages of PVD in Solar Manufacturing
- Major Materials Used in The Solar Industry
- Newer Materials
- Emerging Solar Applications
- Solar Market Drivers and Trends
- PVD Equipment Demand
- Solar and PVD Growth Trends
- Forecast Assumptions-PVD Growth in The Solar Industry
- Forecast-Value of PVD Shipments
- Forecast-Value of Solar Materials
- Material Market Definition
- Measurement Considerations
- Forecast-Value of PVD Services
- PVD Equipment Demand
- Chapter 10 - PVD in The Optics Industry
- Product Definition
- Optical Industry Competitiveness
- Economic Environment
- International Activity
- Industry and Government Support
- Technology
- Optical Market Growth Factors
- Driving Force for PVD
- Impact on Market Growth Factors
- Optics Industry Applications
- Plastic Lenses
- Nanocoatings
- Type of PVD Systems
- Materials Used for Optical Applications
- Optical Market Drivers and Trends
- PVD Equipment Demand
- Changing Growth Trends
- Forecast Assumptions-PVD in Optics
- Forecast-Value of Global PVD Shipments
- Forecast-Value of Optical Material Shipments
- Measurement Considerations
- Sputtering Target Materials
- Forecast-Value of PVD Services
- PVD Equipment Demand
- Chapter 11 - PVD in The Medical Equipment Market
- PVD in The Medical Equipment Market
- Product Definition
- Medical Industry Competitiveness
- Global Economics
- Cost Issues
- Technology
- Medical Market Growth Factors
- Driving Force for PVD
- Impact of Marketing Growth Factors
- Medical Equipment Applications
- Growing Applications
- Types of PVD Equipment
- Major Materials Used in The Medical Device Industry
- Nanomaterials
- Market Drivers and Trends
- Growth Trends
- Forecast Assumptions for PVD in The Medical Industry
- Forecast-Value of PVD Equipment Shipments
- Forecast-Value of PVD Materials
- Measurement Considerations
- Sputtering Target Materials
- Forecast-Value of PVD Services
- Chapter 12 - PVD in The Flexible Packaging Market
- PVD in The Flexible Packaging Market
- Product Definition
- Packaging Industry Competitiveness
- Economic Considerations
- International Activities
- European Activity
- Increased Asian Activity
- Technology
- Flexible Packaging Market Growth Factors
- Driving Force for PVD
- Impact of Market Growth Factors
- Packaging Industry Applications
- Transparent Coatings
- Types of PVD Systems
- Web Coating Process
- Advantages of PVD in Flexible Packaging
- Key Materials Used for Flexible Packaging
- Nanomaterials
- Flexible Packaging Market Drivers and Trends
- PVD Equipment Demand
- Growth Trends
- Forecast Assumptions-PVD in Flexible Packaging
- Forecast-Value of PVD Equipment Shipments
- Forecast-Value of Flexible Packaging Materials
- Measurement Considerations
- Sputtering Targets
- Forecast-Value of PVD Services
- PVD Equipment Demand
- Chapter 13 - PVD in The Industrial Market
- Product Definition
- Industrial Market Competitiveness
- Automotive Market
- Domestic and International Economic Conditions
- External Factors
- Technology
- Domestic and International Economic Conditions
- Aerospace Market
- Economic Considerations
- International Market
- Technology
- Market Growth Factors for Industrial PVD
- Driving Force for PVD
- Impact of Market Growth Factors
- Automotive Market
- Key Industrial Applications
- Automotive
- Aerospace
- Types of PVD Systems
- Advantages of PVD in The Industrial Market
- Key Industrial Coating Materials
- Industrial Market Drivers and Trends
- PVD Equipment Demand
- Fluctuating Growth Trends
- Forecast Assumptions-PVD in The Industrial Market
- Forecast-Value of PVD Equipment Shipments
- Forecast-Value of Industrial Materials
- Measurement Considerations
- Sputtering Targets
- Nanomaterials
- Forecast-Value of PVD Services
- PVD Equipment Demand
- List of Tables
- Table 1 Basic Physical Vapor Deposition Technologies
- Table 2 Typical Materials Deposited by PVD and Their Properties
- Table 3 Leading PVD Applications by Industry
- Table 4 Key Companies Involved in The Global PVD Business
- Table 5 Factors Influencing China and India Growth in PVD Microelectronic Manufacturing
- Table 6 Regional Share of Global PVD Manufacturing 2007-2013 (%)
- Table 7 Global Share of PVD Consumption, 2007-2013 (%)
- Table 8 Market Shares of Global PVD Manufacturing Companies, 2007 ($ Millions, %)
- Table 9 PVD Evaporation Sources
- Table 10 Key Advantages of The PVD Evaporation Process
- Table 11 Major Limitations of Evaporation
- Table 12 Major Advantages of The Sputtering Process
- Table 13 Limitations of The Sputtering Process
- Table 14 Advantages/Limitations of The Ion Beam Assisted Deposition Process
- Table 15 Key Advantages of Pulsed Laser Deposition
- Table 16 Advantages and Limitations of The Cathodic Arc Process
- Table 17 Basic Advantages of Roll Coating
- Table 18 Technical Advantages of Cluster Tools
- Table 19 Basic Benefits of in-Line PVD Systems
- Table 20 Key Benefits of A Magnetron Sputtered Nanolaminate Coating
- Table 21 Suggestions for Better Performance of Current Equipment
- Table 22 PVD-Related Patents by Technological Topic, 2005-2007
- Table 23 PVD-Related Patents by Region, 2005-2007
- Table 24 Assignees with Three Or More Patents
- Table 25 Basic Types of Microelectronic Products Using The PVD Process
- Table 26 Integrated Circuit Characteristics
- Table 27 Global Demand for Key Microelectronic Products by Type, through 2006 ($ Billions)
- Table 28 Estimated Global Fabrication Capacity, 2007
- Table 29 Basic Advantages of Standards
- Table 30 Challenges Facing The Sia
- Table 31 Impact of Major Factors on The Growth of PVD in The Microelectronics Industry (%)
- Table 32 Basic PVD Semiconductor Applications
- Table 33 Desired Dielectric Properties Formicroelectronic Products
- Table 34 Impacts Made on PVD Systems by Changes in Semiconductor Applications
- Table 35 Advantages of PVD in Semiconductor Fabrication
- Table 36 Key Materials Deposited by PVD for Semiconductor Fabrication
- Table 37 PVD Functions Versus Other Technologies in Semiconductor Fabrication
- Table 38 Global Growth Trend of PVD for Semiconductors, through 2007 (Value and Percentage Ratio)
- Table 39 Overview of Other Microelectronics PVD Applications
- Table 40 Advantages of PVD for Other Microelectronic Products
- Table 41 Key Materials Used in Other Microelectronic Products
- Table 42 Forecast Assumptions: PVD Growth in Microelectronics
- Table 43 Projected Global Growth Trend of PVD for Semiconductors, through 2013 (Value and Percentage Ratio)
- Table 44 Forecast-Value of Global Shipments of PVD Equipment for Microelectronics, through 2013 ($ Millions)
- Table 45 Forecast of The Global Value of Materials Deposited by PVD in Microelectronics, through 2013 ($ Millions)
- Table 46 Value of Global PVD Deposition Services for The Microelectronics Industry, through 2013 ($ Millions)
- Table 47 Representative Storage Products
- Table 48 Functions of The Idema
- Table 49 Global Storage Manufacturing Companies by Region, 2007 (%)
- Table 50 Representative Standards Topics
- Table 51 Impact of Major Factors on The Growth of PVD in The Data Storage Market (%)
- Table 52 Key Storage Applications by Substrate Material
- Table 53 Development of Tape Storage and Deposition
- Table 54 Major Advantages of PVD for Storage Products
- Table 55 Major Materials Deposited by PVD for The Fabrication of Storage Devices
- Table 56 Global Growth Trend of PVD for The Storage Industry, through 2007 (Value and Percenatge Ratio)
- Table 57 Forecast Assumptions for PVD Growth in The Storage Industry
- Table 58 Projected Global Growth Trend of PVD for The Storage Industry, through 2013 (Value and Percentage Ratio)
- Table 59 Forecast-Value of Global PVD Shipments by Type for The Storage Industry, through 2013 ($ Millions)
- Table 60 Forecast-Global Value of Materials Deposited by PVD in The Storage Industry, through 2013 ($ Millions)
- Table 61 Forecast-Value of Global PVD Services in The Storage Industry, through 2013 ($ Millions)
- Table 62 Basic Types of Cutting Tools Coated by PVD
- Table 63 Global Cutting Tool Market by Region through 2007-2013 (%)
- Table 64 Impact of Major Factors on The Growth of PVD in The Cutting Tool Industry (%)
- Table 65 Basic Cutting Tool PVD Applications
- Table 66 Key Materials Deposited by PVD for Cutting Tool Applications
- Table 67 Global Growth Trend of PVD for The Cutting Tool Industry, 1998-2007 (Value and Percentage Ratio)
- Table 68 Forecast Assumptions for PVD Growth in Cutting Tools
- Table 69 Projected Global Growth Trend of PVD for The Cutting Tool Industry, through 2013 (Value and Percentage Ratio)
- Table 70 Forecast-Value of Global PVD Equipment for The Cutting Tool Industry, through 2013 ($ Millions)
- Table 71 Forecast - Global Value of Materials Deposited by PVD for Cutting Tool Applications, through 2013 ($ Millions)
- Table 72 Forecast-Value of PVD Coating Services in The Cutting Tool Industry, through 2013 ($ Millions)
- Table 73 Basic Types of Photovoltaic Products
- Table 74 Overview of Solar Energy Status
- Table 75 Research Projects at Nrel
- Table 76 Key Reasons for Japanese Investment in Photovoltaics
- Table 77 Impact of Major Factors in The Growth of PVD in The Solar Industry (%)
- Table 78 Basic PVD Solar Industry Applications
- Table 79 Emerging PVD Solar Applications
- Table 80 Major Advantages of PVD in Making Solar Cells
- Table 81 Major Materials for Solar Applications
- Table 82 Growth Trends for PVD in The Solar Industry, through 2007 (Value and Percentage Ratio)
- Table 83 Forecast Assumptions for PVD Growth in The Solar Industry
- Table 84 Projected Growth Trends for PVD in The Solar Market, through 2013 (Value and Percentage Ratio)
- Table 85 Forecast-Value of Global PVD Shipments for The Solar Industry, through 2013 ($ Millions)
- Table 86 Forecast-Global Value of Materials Deposited by PVD for The Solar Industry, through 2013 ($ Millions)
- Table 87 Forecast-Value of Global PVD Services in The Solar Industry, through 2013 ($ Millions)
- Table 88 Basic Types of Optical Products
- Table 89 Positive Economic Factors for The Optics Industry
- Table 90 Requirements for Optical Coatings
- Table 91 Impact of Major Factors in PVD Growth in The Optics Industry (%)
- Table 92 Overview of Optics Applications
- Table 93 Major Materials Used for Optical
- Table 94 Global Growth Trend of PVD for The Optics Industry through 2007 (Value and Percentage Ratio)
- Table 95 Forecast Assumptions-PVD Growth in The Optics Market
- Table 96 Projected Global Growth Trend of PVD for The Optics Industry, through 2013 (Value and Percentage Ratio)
- Table 97 Forecast-Value of Global PVD Equipment Shipments by Type for The Optics Industry, through 2013 ($ Millions)
- Table 98 Forecast-Global Value of Materials Deposited by PVD in The Optics Industry, through 2013 ($ Millions)
- Table 99 Forecast-Value of Global PVD Services in The Optics Industry, through 2013 ($ Millions)
- Table 100 Basic Types of Medical Devices
- Table 101 Global Production of Medical Equipment and Supplies by Region, 2007-2013 (%)
- Table 102 Positive Economic Factors for The Medical Device Industry
- Table 103 Impact of Major Factors on The Growth of PVD in The Medical Equipment Industry (%)
- Table 104 Overview of Medical Equipment Applications
- Table 105 Major Thin Film Materials Used for Medical Devices and Equipment
- Table 106 Global Growth Trend of PVD for The Medical Equipment Industry, through 2007 (Value and Percentage Ratio)
- Table 107 Forecast Assumptions for PVD Growth in The Medical Equipment Market
- Table 108 Projected Global Growth Trend of PVD for The Medical Equipment Market, through 2013 (Value and Percentage Ratio)
- Table 109 Forecast-Global Value of PVD Eqipment Shipments for The Medical Equipment Industry, through 2013 ($ Millions)
- Table 110 Forecast-Global Value of Materials Deposited by PVD in The Medical Equipment Market, through 2013 ($ Millions)
- Table 111 Forecast-Value of Worldwide PVD Services in The Medical Equipment Market, through 2013 ($ Millions)
- Table 112 Representative Products Using Flexible Packaging
- Table 113 Goals of Flexible Packaging Europe
- Table 114 Positive Factors for International Flexible Packaging
- Table 115 Impact of Major Growth Factors on PVD for Flexible Packaging (%)
- Table 116 Key Advantages of Glass Coatings
- Table 117 Overview of Flexible Packaging Applications
- Table 118 Advantages of PVD in Flexible Packaging
- Table 119 Key Materials Deposited by PVD in Flexible Packaging
- Table 120 Global Growth Trend of PVD for The Flexible Packaging Industry, through 2007 (Value and Percentage Ratio)
- Table 121 Forecast Assumptions for PVD Growth in The Flexible Packaging Market
- Table 122 Projected Global Growth Trend of PVD for The Specialty Packaging Market, through 2013 (Value and Percentage Ratio)
- Table 123 Global Shipments of PVD Equipment by Type for Flexible Packaging, through 2013 ($ Millions)
- Table 124 Forecast-Global Value of Materials Deposited by PVD in The Flexible Packaging Industry, through 2013 ($ Thousands)
- Table 125 Forecast-Value of Worldwide PVD Services in The Flexible Packaging Industry, through 2013 ($ Millions)
- Table 126 Basic Types of Industrial Products
- Table 127 Closing Gap between U.S and Asian Automakers, 1996-2006 (Percent of Market)
- Table 128 External Factors Impacting The Auto Industry
- Table 129 U.S.Aerospace Sales by Product, through 2006 ($ Billions)
- Table 130 Impact of Major Factors on PVD Growth in The Industrial Market (%)
- Table 131 Overview of Current and Emerging Industrial PVD Applications
- Table 132 Advantages of PVD Industrial Coatings
- Table 133 Key Materials Deposited by PVD for Industrial Applications
- Table 134 Global Growth Trend of PVD for The Industrial Market, through 2007 (Value and Percentage Ratio)
- Table 135 Forecast Assumptions-PVD Growth in The Industrial Market
- Table 136 Projected Global Growth Trend of PVD in The Industrial Market, through 2013 (Value and Percentage Ratio)
- Table 137 Forecast-Value of Global PVD Systems for Use in The Industrial Market, through 2013 ($ Millions)
- Table 138 Forecast-Global Value of Materials Deposited by PVD in The Industrial Market, through 2013 ($ Millions)
- Table 139 Forecast-Value of Global PVD Services in The Industrial Market, through 2013 ($ Millions)
- List of Figures
- Figure 1 Global PVD Manufacturing by Region, 2007-2013 (%)
- Figure 2 Global PVD Consumption by Region, 2007-2013 (%)
- Figure 3 Global Shipments of PVD Equipment for The Microelectronics Industry, 2007-2013 ($ Millions)
- Figure 4 Global Value of Materials Deposited by PVD in Microelectronics, 2007-2013 ($ Millions)
- Figure 5 Global Value of PVD Equipment for The Storage Industry, 2007-2013 ($ Millions)
- Figure 6 Global Shipments of Materials for PVD in The Storage Industry, 2007-2013 ($ Millions)
- Figure 7 Global Value of PVD Shipments for The Cutting Tool Industry 2007-2013 ($ Millions)
- Figure 8 Global Shipments of Materials Deposited by PVD in The Cutting Tool Industry, 2007-2013 ($ Millions)
- Figure 9 Global Shipments of PVD Eqeuipment for Use in The Solar Industry, 2007-2013 ($ Millions)
- Figure 10 Global Value of PVD Shipments for The Solar Industry, 2007-2013 ($ Millions)
- Figure 11 Global Value of PVD Shipments for The Optical Industry, 2007-2013 ($ Millions)
- Figure 12 Global Value of Materials Deposited by PVD in The Optics Industry, 2007-2013 ($MILLIONS)
- Figure 13 Global Value of PVD Equipment Shipments for The Medical Equipment Market, 2007-2013 ($ Millions)
- Figure 14 Global Value of PVD Shipments for The Medical Equipment Market, 2007-2013 ($ Millions)
- Figure 15 Global Value of PVD Equipment Shipments for The Flexible Packaging Market ($ Millions)
- Figure 16 Global Value of Materials Deposited by PVD in The Flexible Packaging Industry. 2003-2013 ($ Millions)
- Figure 17 Global Value of Automotive PVD Systems Deposited by PVD 2007-2013 ($ Millions)
- Figure 18 Global Value of Aerospace PVD Systems Deposited by PVD 2007-2013 ($ Millions)
- Figure 19 Global Value of Materials Deposited by PVD for The Industrial Market, 2007-2013 ($ Millions)
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