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Thin Layer Deposition Equipment

Published by: Global Industry Analysts

Published: Oct. 1, 2008 - 381 Pages


Table of Contents


I. INTRODUCTION, METHODOLOGY & PRODUCT DEFINITIONS

Study Reliability and Reporting Limitations

Disclaimers

Data Interpretation & Reporting Level

Quantitative Techniques & Analytics

Product Definitions and Scope of Study

Physical Vapor Deposition (PVD)

Chemical Vapor Deposition (CVD)

End-Use Sectors - An Overview

Microelectronics Industry

Cutting Tools

Industrial Applications

Specialty Packaging

Data Storage

Optoelectronic Components

Medical Technology Applications

II. EXECUTIVE SUMMARY

1. Industry Overview

A Bumpy Ride with the Economic Cycles

Technology & Timing: The ‘King Makers’

Putting all Eggs in One Basket?

Thin Film Coating: Bouquet of Advantages

CVD Vs PVD

Market Risks

2. Market Analysis

Current & Future Analysis

Analysis by Region

Analysis by Technology/ End Use Segment

3. Competitive Scenario

Established Majors Rule Thin Film Deposition Market

Co-Existing Technologies Defer Positioning

Teamwork Gaining Momentum

Leaders in PVD (Sputtering) Market

Table 1: Leading Players in the Worldwide Sputtering Equipment Market (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus, Ulvac, Veeco and Others (includes corresponding Graph/Chart)

Leaders in Regional Sputtering Markets

Table 2: Sputtering Equipment Market Leaders in Americas (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus Systems, Veeco, and Others (includes corresponding Graph/Chart)

Table 3: Sputtering Equipment Market Leaders in Japan (2005) - Percentage Breakdown by Revenue for Applied Materials, Ulvac,Canon Anelva, and Others (includes corresponding Graph/Chart)

Table 4: Sputtering Equipment Market Leaders in Taiwan (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus Systems, and Others (includes corresponding Graph/Chart)

Table 5: Sputtering Equipment Market Leaders in Rest of Asia-Pacific (2005) - Percentage Breakdown by Revenue for Applied Materials, Veeco, Unaxis, and Others (includes corresponding Graph/Chart)

Table 6: Sputtering Equipment Market Leaders in Europe, Middle East and Africa (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus Systems, Unaxis, and Others (includes corresponding Graph/Chart)

CVD Market Leaders

Table 7: Leading Players in the Worldwide Chemical Vapor Deposition (CVD) Equipment Market (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus, Tokyo Electron, and Others (includes corresponding Graph/Chart)

LDP-CVD Market

Table 8: Leading Players in the Worldwide LDP-CVD Market (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus, ASM International, and Others (includes corresponding Graph/Chart)

Plasma Enhanced CVD (PE CVD) Market Leaders

Table 9: Leading Players In The Worldwide Plasma Enhanced CVD Market (2005) - Percentage Breakdown by Market Share For Applied Materials, Novellus, Asmi, and Others (includes corresponding Graph/Chart)

High Density Plasma CVD (HDP CVD) Market Leaders

Table 10: Leading Players In The Worldwide High Density Plasma CVD Market (2005) - Percentage Breakdown By Market Share For Applied Materials And Novellus

Non-Tube CVD Market Leaders

Table 11: Leading Players in the Worldwide Non-Tube CVD Market (2004 & 2005) - Percentage Breakdown by Market Share for Applied Materials, Novellus,Tokyo Electron Ltd., ASMI, and Others (includes corresponding Graph/Chart)

Low Pressure CVD (LP CVD) Market Leaders

Table 12: Leading Players in the Worldwide Low Pressure CVD Market (2004 & 2005) - Percentage Breakdown by Market Share for Applied Materials, Tokyo Electron Ltd., Novellus, ASMI, and Others (includes corresponding Graph/Chart)

Sub-Atmospheric CVD (SA CVD) Market Leaders

Table 13: Leading Players in the Worldwide Sub-Atmospheric CVD Market (2004 & 2005) - Percentage Breakdown by Market for Applied Materials and Aviza Technology

4. End Use Markets

A Peek into TFD Materials & Technologies for Various Industry Segments

Microelectronics Industry

Driven by IT

Integrated Metrology: A Rising Trend

Semiconductor Industry

Applications of CVD and PVD Technologies

Key TFD Technologies Employed

Optoelectronic Components

Applications of TFD Equipment

CVD Equipment & Thin Film Materials for the FPD Industry

Key Technologies

Trends

Digital/HDLCD TVs Spike PECVD Systems’ Use in Flat Panel Display Industry

OLED: ‘The Future’ of TFD in FPDs

Medical Technology

Surgical Tools - A Host of Performance Parameters to Satisfy

Orthopedic Prostheses - A Quest for Higher S Quality of Life

Biocompatibility - A Key Stipulation

TFD Techniques Used

Process Fallacies to be Addressed

Other Areas of Application

Major Influencers

Industrial Market

Key TFD Technologies Used

Automotive & Architectural Glass - A Major End Use

High Concentration of Glass Manufacturers - Depriving Margins

Industrial Machining - High Volume Applications

Critical Requirements of Tool Coatings

Decorative Coatings: Bountiful Opportunities

Major Influencers

Cutting Tools

Trends

Cost-Efficiency Expands the Volume of Cutting Tools Coated

Chromium Nitride Emerges the Preferred Coating

Thin Film Diamond Coatings for the ‘Cutting Edge’

Dry Cutting Props TFD Coatings

Data Storage

Trends

High-Volume End Use Applications Shape the Data Storage Industry’s Demand

High-Density Thin Films Improve Areal Densities of Magnetic Recording Heads

Optics Industry

Specialty Packaging

Typical Structure of a Flexible Package

Package Productivity Rises with Thin Film Coating

Market Drivers

Demand for Consumer Goods & State of Economy

Package Innovations & Consumer Preferences for Package Convenience and Shelf

Life

Package’s Visual Appeal

E-Commerce

Labeling Requirements

Recyclability of Package

Other Applications

5. Product/Technology Overview

Thin Layer Deposition: An Introduction

Role of Evaporation in Thin Layer Deposition

Deposition Techniques by Technology Type

Physical Vapor Deposition (PVD): A Technical Run-through

Advantages

Disadvantages

Sputtering: An Enabling PVD Process

Sputtering Materials

Types of Spluttering

DC Diode Sputtering

Radio-Frequency RF Diode Sputtering

DC and RF Magnetron Sputtering

Ion Beam Sputtering

Chemical Vapor Deposition (CVD): A Technical Overview

Advantages

Types

Atmospheric Pressure Chemical Vapor Deposition (APCVD)

Low Pressure Chemical Vapor Deposition (LPCVD)

Rapid Thermal Chemical Vapor Deposition (RTCVD)

Plasma Enhanced Chemical Vapor Deposition (PECVD)

High-Density Plasma Chemical Vapor Deposition (HDPCVD)

Metal Organic Chemical Vapor Deposition (MOCVD)

Atomic Layer Deposition (ALD)

Advantages of ALD

End-Use Application Areas

Capacitor layers

Gate dielectrics

Interconnects

Non-Semiconductor Applications

Electrochemical Deposition (ECD)

Other Deposition Techniques

Epitaxy

Molecular Beam Epitaxy (MBE)

Ion Beam Deposition (IBD)

Ion Implantation

Types of Ion Implantation Tools

Pulsed Plasma Doping: A Generation-X Ion Implantation Technology

A Quick Primer on Etching

Chemical Etch

Plasma Etch

6. Recent Industry Activity

IHI Acquires Hauzer Techno Coating

Veeco Acquires Mill Lane Engineering

Oerlikon Balzers Completes Acquisition of Suomen Plasmapinta

Applied Materials Acquires Baccini

AIXTRON to Supply GaAs MOCVD System to Korea Advanced Nano Fab Center

Tegal Corporation Wins an Order for Endeavor AT PVD Tool

Oerlikon and PT. Artoda Form Joint Venture for New Coating Center in Jakarta

Tegal Selects WESI for Distribution of PVD and Plasma Etch Products

Next Solar to Build Thin-Film Solar Module Facility

Tokyo Electron Enters into a Joint Venture with Sharp

ASMI Receives Indicative Unsolicited Offer from Applied Materials

GT Solar Enters into a Contract with The Silicon Mine

Beneq Takes Over Planar Systems’ ALD Business

INFICON Completes Acquisition of Maxtek

EPOD Acquires Majority Stake in ICP Solar Technologies

SANYO Completes Acquisition of AIXTRON MOCVD System

Plastic Logic Acquires AIXTRON Gen 3.5 Deposition Tool

Aixtron Takes Over Nanoinstruments

Oerlikon Balzers Opens Coating Centers in Turkey and Romania

CVD Inks Contract to Expand First Nano Laboratory

Tokyo Electron Inks Agreement with Integrated Materials

Tegal to Supply Endeavor to Major Accelerometer & Inertial Sensor Maker

Tegal Receives Repeat Order for Endeavor from U.S. Customer

InterCrossIP Enters into Licensing Agreements with Ceimig and SFU

Williams Advanced Materials Sets Up New Facility in Czech Republic

Applied Materials Sets Up a New Wafer Reclaim Facility in Taiwan

ASM Obtains Order for Multiple System Contract

Tegal Wins Order for Endeavor PVD System from Major MEMS Foundry

JUSUNG Signs Agreement with CEA for Joint Development of Solar Cells

CSP Partners with ULVAC for Thin Film Solar Cells

Sunner Solar Partners with ULVAC to Produce Thin Film Solar Cells

Amtech Enters into a License Deal with PST

GE Global Research Enters into a Joint Agreement with TOKKI

Epistar Purchases Five Reactors from AIXTRON

Applied Materials Leads Low k Technology with Black Diamond II

Balzers Changes Name to Oerlikon Balzers Coating

ASM Europe to Supply Vertical Furnaces to Taiwan’s Inotera Memories

Balzers Inaugurates Coating Center in Houston

Williams Advanced Materials Purchases Cerac

Balzers Acquires PVD Coating Operations

Applied Materials Acquires Applied Films

Veeco Instruments Partners with Fluens

Kopin® Inks an Accord with Aixtron

APA Divests Business Unit

7. Product Innovations/ Introductions

Oerlikon Balzers Introduces Low-temperature PVD Coatings

Tokyo Electron Introduces Trias™ HP Ti

Applied Materials Launches Applied Producer® BLOk™ II PECVD System

ASM International Launches Eagle® XP Platform

Applied Materials Introduces Applied SunFab™ Thin Film Line

Applied Materials Launches Applied Producer® ACE™ SACVD® System

Axcelis Launches Optima XE High Energy Ion Implanter

First Nano Launches ET2000-SS and ET3000-SS Solid Source Deposition System

Novellus Launches VECTOR Extreme™ PECVD System

Denton Launches Discovery 785 Deposition System

Tokyo Electron Rolls out Trias™ High-k CVD System

Novellus Systems Unveils Vector Express

Veeco Unveils TurboDisc K-series MOCVD Platform

Veeco Instruments Introduces New Vapor Deposition System

Applied Materials Unveils AKT-PiVot Deposition System

Veeco Launches PV-Series of Thermal Deposition Sources

Applied Materials Introduces Advanced Strain Engineering Technology

Oerlikon Balzers Introduces BALINIT® ALDURA Coatings for Cutting Tools

ASM Announces Availability of Pulsar® ALCVD™ Module for Volume Production

Novellus Introduces Enhancement for INOVA® 300 mm System

Novellus Introduces Vector Express with AHM™ Technology

Applied Materials Launches Applied Producer® GT™

sp3 Unveils Advanced Diamond Deposition System

IMEC and Applied Materials Introduce 22nm, 32nm Interconnects

ASM Introduces Stellar™ 3000 Multi-Chamber PEALD Tool

Tokyo Electron Launches Trias™ LT Ti/TiN

Tokyo Electron Unveils TELINDY™ IRad™

Oerlikon Balzers Introduces P3e™ Technology for Cutting Tools

Applied Materials Introduces Endura® iLB™ II for 45nm Contacts

Applied Materials Announces Applied Producer® APF™-e (1) System

Ionbond Introduces Thermal Diffusion Coatings

Jusung Develops Semi-Batch LP CVD process

French Inventors Develop A New Thin Layer Deposition Process

8. Focus on Select Players

AIXTRON (Germany)

Applied Materials, Inc. (USA)

ASM International N.V. (The Netherlands)

Axcelis Technologies, Inc. (USA)

Canon ANELVA Corporation (Japan)

CHA Industries (USA)

CVD Equipment Corporation (USA)

Denton Vacuum (USA)

Edwards Limited (UK)

Ibis Technology Corporation (USA)

Implant Sciences Corporation (USA)

Ionbond AG (Switzerland)

Jusung Engineering Co., Ltd. (Korea)

KDF Electronic & Vacuum Services, Inc. (USA)

Kokusai Semiconductor Equipment Corporation (USA)

Kookje Electric Korea Co., Ltd. (Korea)

Novellus Systems, Inc. (USA)

OC Oerlikon Corporation AG (Switzerland)

RIBER SA (France)

Seki Technotron USA (USA)

SEN Corporation (Japan)

Silicon Genesis Corporation (USA)

Tecvac Limited (UK)

Tegal Corporation (USA)

Ti-Coating, Inc. (USA)

Tokyo Electron Limited (TEL)

Ultramet (USA)

ULVAC Technologies, Inc. (USA)

Vapor Technologies, Inc. (USA)

Veeco Instruments (USA)

9. Global Market Perspective

Table 14: World Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 15: World Long-term Projections for Thin Layer Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 16: World Historic Review for Thin Layer Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 17: World 15-Year Perspective for Thin Layer Deposition Equipment by Geographic Region - Percentage Breakdown of Dollar Sales for US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 18: World Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 19: World Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 20: World Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 21: World 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 22: World Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 23: World Long-term Projections for Physical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 24: World Historic Review for Physical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 25: World 15-Year Perspective for Physical Vapor Deposition Equipment by Geographic Region - Percentage Breakdown of Dollar Sales for US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 26: World Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 27: World Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 28: World Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 29: World 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics,Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 30: World Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 31: World Long-term Projections for Chemical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 32: World Historic Review for Chemical Vapor Deposition Equipment by Geographic Region - US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 33: World 15-Year Perspective for Chemical Vapor Deposition Equipment by Geographic Region - Percentage Breakdown of Dollar Sales for US, Canada, Japan, Europe, Asia-Pacific (excluding Japan), and Rest of World Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 34: World Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 35: World Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 36: World Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 37: World 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

III. MARKET

1. The United States

A. Market Analysis

Current & Future Analysis

Strategic Corporate Developments

Product Innovations/ Introductions

Select Players

B. Market Analytics

Table 38: US Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 39: US Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 40: US Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 41: US 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 42: US Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 43: US Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 44: US Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 45: US 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 46: US Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 47: US Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 48: US Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 49: US 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

2. Canada

Market Analysis

Current & Future Analysis

Table 50: Canadian Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 51: Canadian Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 52: Canadian Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 53: Canadian 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 54: Canadian Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 55: Canadian Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 56: Canadian Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 57: Canadian 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 58: Canadian Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 59: Canadian Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 60: Canadian Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 61: Canadian 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

3. Japan

A. Market Analysis

Current & Future Analysis

Sputtering Market - Leadership Dynamics

Table 62: Sputtering Equipment Market Leaders in Japan (2005) - Percentage Breakdown by Revenue for Applied Materials, Ulvac, Canon Anelva and Others (includes corresponding Graph/Chart)

Strategic Corporate Developments

Product Innovations/ Introductions

Select Players

B. Market Analytics

Table 63: Japanese Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 64: Japanese Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 65: Japanese Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 66: Japanese 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 67: Japanese Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 68: Japanese Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 69: Japanese Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 70: Japanese 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 71: Japanese Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 72: Japanese Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 73: Japanese Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 74: Japanese 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

4. Europe

A. Market Analysis

Current & Future Analysis

Strategic Corporate Developments

Product Innovations/ Introductions

Select Players

B. Market Analytics

Table 75: European Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 76: European Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 77: European Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 78: European 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 79: European Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 80: European Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 81: European Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 82: European 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 83: European Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 84: European Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 85: European Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 86: European 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

5. Asia-Pacific

A. Market Analysis

Current & Future Analysis

Leaders in Sputtering Equipment Market

Table 87: Sputtering Equipment Market Leaders in Taiwan (2005) - Percentage Breakdown by Revenue for Applied Materials, Novellus Systems, and Others (includes corresponding Graph/Chart)

Table 88: Sputtering Equipment Market Leaders in Rest of Asia-Pacific (2005) - Percentage Breakdown by Revenue for Applied Materials, Veeco, Unaxis, and Others (includes corresponding Graph/Chart)

Strategic Corporate Developments

Select Players

B. Market Analytics

Table 89: Asia-Pacific Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 90: Asia-Pacific Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 91: Asia-Pacific Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 92: Asia-Pacific 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 93: Asia-Pacific Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 94: Asia-Pacific Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 95: Asia-Pacific Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 96: Asia-Pacific 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 97: Asia-Pacific Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 throughc2010 (includes corresponding Graph/Chart)

Table 98: Asia-Pacific Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 99: Asia-Pacific Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 100: Asia-Pacific 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

6. Rest of World

Market Analysis

Current & Future Analysis

Table 101: Rest of World Recent Past, Current & Future Analysis for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 102: Rest of World Long-term Projections for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 103: Rest of World Historic Review for Thin Layer Deposition Equipment by Technology - Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 104: Rest of World 15-Year Perspective for Thin Layer Deposition Equipment by Technology - Percentage Breakdown of Dollar Sales for Physical Vapor Deposition (PVD) and Chemical Vapor Deposition (CVD) Markets for Years 1998, 2008 & 2012

Table 105: Rest of World Recent Past, Current & Future Analysis for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 106: Rest of World Long-term Projections for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 107: Rest of World Historic Review for Physical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 108: Rest of World 15-Year Perspective for Physical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial, Specialty Packaging Storage, Optics, and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

Table 109: Rest of World Recent Past, Current & Future Analysis for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets IndependentlyAnalyzed with Annual Sales Figures in US$ Million for Years 2001 through 2010 (includes corresponding Graph/Chart)

Table 110: Rest of World Long-term Projections for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools, Industrial and Medical Markets Independently Analyzed with Annual Sales Figures in US$ Million for Years 2011 through 2015 (includes corresponding Graph/Chart)

Table 111: Rest of World Historic Review for Chemical Vapor Deposition Equipment by End-Use Segment - Microelectronics, Cutting Tools,Industrial and Medical Markets IndependentlyAnalyzed with Annual Sales Figures in US$ Million for Years 1991 through 2000 (includes corresponding Graph/Chart)

Table 112: Rest of World 15-Year Perspective for Chemical Vapor Deposition Equipment by End-Use Segment - Percentage Breakdown of Dollar Sales for Microelectronics, Cutting Tools, Industrial and Medical Markets for Years 1998, 2008 & 2012 (includes corresponding Graph/Chart)

IV. COMPETITIVE LANDSCAPE

Total Companies Profiled: 119 (including Divisions/Subsidiaries - 131)

Region/Country Players

The United States 73

Canada 4

Japan 15

Europe22

France3

Germany 2

The United Kingdom6

Rest of Europe 11

Asia-Pacific (Excluding Japan)15

Middle East2

Abstract

This report analyzes the worldwide markets for Thin Layer Deposition Equipment in Millions of US$. The major product segments analyzed are 1.Physical Vapor Deposition (PVD) Equipment (Microelectronics, Cutting Tools, Industrial, Specialty Packaging, Storage, Optics, and Medical), and 2.Chemical Vapor Deposition (CVD) Equipment (Microelectronics, Cutting Tools, Industrial, and Medical). The End-use segments discussed include Microelectronics, Cutting Tools, Industrial Applications, Specialty Packaging, Data Storage, Optoelectronic Components, and Medical Technology Applications. The report provides separate comprehensive analytics for the US, Canada, Japan, Europe, Asia-Pacific, and Rest of World. Annual forecasts are provided for each region for the period of 2001 through 2015. A ten-year historic analysis is also provided for these markets with annual market analytics. The report profiles 119 companies including players such as AIXTRON, Applied Materials, Inc., ASM International N.V., Axcelis Technologies, Inc., Canon ANELVA Corporation, CHA Industries, CVD Equipment Corporation, Denton Vacuum, Edwards Limited, Ibis Technology Corporation, Implant Sciences Corporation, Ionbond AG, Jusung Engineering Co., Ltd., KDF Electronic & Vacuum Services, Inc., Kokusai Semiconductor Equipment Corporation, Kookje Electric Korea Co., Ltd., Novellus Systems, Inc., OC Oerlikon Corporation AG, RIBER SA, Seki Technotron USA, SEN Corporation, Silicon Genesis Corporation, Tecvac Limited, Tegal Corporation, Ti-Coating, Inc., Tokyo Electron Limited, Ultramet, ULVAC Technologies, Inc., Vapor Technologies, Inc., and Veeco Instruments. Market data and analytics are derived from primary and secondary research. Company profiles are mostly extracted from URL research and reported select online sources.

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