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Tel: 400-009-0050 全球软性电子产品设备R2R(Roll-to-Roll)技术
Global Markets for Roll-to-Roll Technologies for Flexible Devices
Report Description
REPORT HIGHLIGHTS
The global market for flexible devices manufactured by R2R technologies totaled $14.6 billion in 2015 and is expected to reach $28.1 billion by 2020 at a compound annual growht rate (CAGR) of 13.9% from 2015 to 2020.
This report provides:
An overview of the market for roll-to-roll (R2R) technologies in the development and commercialization of
flexible devices, including electronic devices, such as flexible displays, and energy devices, such as
flexible solar cells
Analys of global market trends, with data from 2014, estimates for 2015, and projections of compound
annual growth rates (CAGRs) through 2020
Description of various types of flexible devices produced by R2R methods, together with a historical
review of the technology and an outline of the most significant recent developments; current and
emerging applications for the products also will be discusd
Examination of technical issues, and examples of significant patents recently issued or applied for
A list of the leading providers of R2R technologies and flexible devices, along with a description of th
eir products
Profiles of major players in the industry
SCOPE OF REPORT
汽修学徒
This report provides an updated review of R2R technologies for flexible devices, including a description
of various device types and R2R fabrication process, and identifies current and emerging devices
fabricated using R2R technologies.
BCC Rearch determines the current market status for the products, defines trends, and prents
growth forecasts for the next five years. The R2R flexible device market is bad on the following gments: device type, substrate material, process, and region. In addition, technological issues, including key events and the latest process developments, are discusd.
More specifically, the market analysis conducted by BCC Rearch for this report is divided into five ctions.
In the first ction, an introduction to the topic and a historical review of R2R technologies for flexible devices are provided, including an outline of recent events. This ction identifies devices that are currently commercially available or emerging, and offers a description of the main types.
The cond ction provides a technological review of the fabrication steps ud to manufacture R2R flexible devices, with an outline of the most common process. This ction concludes with an analysis of the most important technological developments since 2013, including examples of significant patents recently issued or applied for, as well as highlighting the most active rearch organizations operating in this field.
The third ction entails a global market analysis of R2R flexible devices. Global revenues (sales data in millions of dollars) are prented for each gment (device type, process, substrate material, and region) with actual data for the years 2013 and 2014, and estimated revenues for 2015.
The analysis of current revenues for R2R flexible devices is followed by a detailed prentation of market growth trends bad on industry growth, technological trends, and regional trends. The third
ction concludes by providing projected revenues for R2R flexible devices within each gment, together with forecast compound annual growth rates (CAGRs) for 2015 through 2020.
In the fourth ction of the study, which covers global industry structure, the report offers a list of the leading manufacturers of R2R flexible devices, together with a description of their products. The analysis includes a description of the geographical distribution of the suppliers and an evaluation of other key industry players. Detailed company profiles of the top players are also provided.
The final ction includes an extensive U.S. patent analysis, with a summary of patents related to materials, fabrication process, equipment and applications for R2R flexible device. The patents examined in this study were issued during the period 2013 through 2015. Patent analysis is performed by region, country, assignee, patent category, process and device type.
ANALYST'S CREDENTIALS
Margareth Gagliardi, Chief Rearch Analyst in Advanced Materials for BCC Rearch, has more than 30 years of experience in the field of advanced materials, specializing in ceramic formulations, materials processing, and new product development. She has held management positions in both manufacturing and R&D within U.S. and European firms producing electronic, mechanical, chemical,
and structural components. She holds a B.S. in Chemical Engineering and an M.S. in Ceramic Engineering.
TABLE OF CONTENTS
CHAPTER 1 INTRODUCTION
雨季不再来
STUDY GOALS AND OBJECTIVES
REASONS FOR DOING THIS STUDY
INTENDED AUDIENCE
SCOPE OF REPORT
METHODOLOGY AND INFORMATION SOURCES
RELATED BCC RESEARCH REPORTS
ANALYST'S CREDENTIALS
BCC RESEARCH WEBSITE
DISCLAIMER
公司简介模板CHAPTER 2 EXECUTIVE SUMMARY
SUMMARY TABLE: GLOBAL MARKET FOR FLEXIBLE DEVICES MANUFACTURED BY R2R TECHNOLOGIES, THROUGH 2020 ($ MILLIONS)
SUMMARY FIGURE: GLOBAL MARKET FOR FLEXIBLE DEVICES MANUFACTURED BY R2R TECHNOLOGIES, 2013-2020 ($ MILLIONS)
CHAPTER 3 OVERVIEW
INTRODUCTION
DEFINITION AND STUDY FOCUS
R2R VERSUS BATCH PROCESSES
IMPORTANCE OF FLEXIBLE DEVICES AND R2R PROCESSES
MILESTONES IN THE HISTORY OF R2R FLEXIBLE DEVICES AND RECENT EVENTS TABLE 1 R
2R FLEXIBLE DEVICES-TECHNOLOGICAL MILESTONES
FIGURE 1 NUMBER OF GLOBAL FLEXIBLE DEVICES PATENTS ISSUED, 1970-2014 CURRENT AND EMERGING FLEXIBLE DEVICES PRODUCED BY R2R TECHNOLOGIES TABLE 2 FLEXIBLE DEVICES MANUFACTURED BY R2R TECHNOLOGIES, 2015 ELECTRONIC DEVICES
Flexible Printed Circuits
Other Circuit Devices
Other Electronic Devices
OPTOELECTRONIC DEVICES
Electrochromic Displays
TABLE 3 ELECTROCHROMIC MATERIALS, 2015
Inorganic Electrochromic Materials
Organic Electrochromic Materials
Electrolyte
Counter-Electrodes
Electrophoretic Displays
Basic Design
Microcapsule Design
Polymer Disperd Liquid Crystal Displays
Encapsulation
Pha Separation
Holography
Prefabricated Templates
Organic Light Emitting Diode Displays
Basic Design
Solid-State Lighting Devices and Roll Tablets
ENERGY DEVICES
Solar Cells and Modules
Other Energy Devices
SENSORS AND OTHER DEVICES
CHAPTER 4 ROLL-TO-ROLL TECHNOLOGIES
INTRODUCTION
BASIC ROLL-TO-ROLL FABRICATION PROCESS
TABLE 4 BASIC ROLL-TO-ROLL FABRICATION STEPS, 2015 SUBSTRATE SELECTION
TABLE 5 SUBSTRATE MATERIALS FOR R2R MANUFACTURING, 2015 FILM DEPOSITION AND PATTERNING
SUBTRACTIVE METHODS
Substrate Coating
TABLE 6 THICK-FILM COATING TECHNOLOGIES, 2015
TABLE 7 THIN-FILM COATING TECHNOLOGIES, 2015
Lithography
一缕拼音
Optical Lithography
Immersion Lithography
Nanostencil Lithography
Deep Ultraviolet Light Lithography
X-Ray Lithography
Electron Beam Lithography
Reflective E-beam Lithography
Ion Beam Lithography
Scanning Probe Lithography
Dip-pen Nanolithography
Nanoimprint
Thermoplastic Nanoimprint Lithography
Photo Nanoimprint Lithography
Lar-assisted Direct Imprint
Self-Aligned Imprint Lithography
Extreme Ultraviolet Lithography
Directed Self Asmbly
Nanomotor Lithography
TABLE 8 LITHOGRAPHIC METHODS, 2015
Etching
ADDITIVE METHODS
TABLE 9 PRINTING TECHNOLOGIES, 2015
Screen Printing
Stencil Printing
Gravure
Direct Gravure
Rever Gravure
Offt Gravure
玄武湖
Smooth Roll Gravure
Microgravure
Pad Printing
cf特殊符号Flexography
Transfer Printing
Offt Lithography
Micropen Printing
Extrusion Printing
Inkjet Printing
Continuous Inkjet Printing
Drop-on-Demand Inkjet Printing
Thermal
Piezoelectric
小班数学
Electrostatic企业贷款
Acoustic
Pha-Change
Organic Vapor Jet Printing
Lar Printing
Micro-Spray Printing
Aerosol Jet Printing
Electrophotography
Ionography
Magnetography
Nanography
Thermography
Most Common Additive Process
MULTI-LAYER STRUCTURES
CURING
ASSEMBLY, CUTTING, TESTING AND PACKAGING
LATEST TECHNOLOGICAL DEVELOPMENTS FROM 2013 TO PRESENT CAPACITIVE TOUCH SENSOR CIRCUITS BY R2R PRINTING
HYBRID PRINTING SYSTEM
R2R MICROCONTACT PRINTING SYSTEM
ELECTROCHROMIC GEL FOR STRETCHABLE DISPLAYS CONJUGATED ELECTROCHROMIC POLYMER
R2R FABRICATION OF ELECTROACTIVE POLYMERIC TRANSDUCERS SILVER INK FOR INKJET PRINTING ON FLEXIBLE SUBSTRATES OTHER RELEVANT R&D ACTIVITIES
TABLE 10 OTHER RELEVANT R &D ACTIVITIES, 2015