Showing posts with label Applications. Show all posts
Showing posts with label Applications. Show all posts

Saturday, June 2, 2012

2012 Latest Report: Life Sciences & Analytical Reagents Market - Applications, Current Trends, Opportunities & Global Forecasts (2011 – 2016)

Life Sciences & Analytical Reagents Market - Applications, Current Trends, Opportunities & Global Forecasts (2011 – 2016)

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Biotechnology (life science and analytical) reagents are the substances or compounds used to detect or synthesize another substance in order to provide a test reading. These reagents are used in the field of research, diagnosis, bioscience, and education.

The life sciences and analytical reagents market report studies the life science and analytical reagents market, by technology, end-users, and applications. The life sciences and analytical reagents market, by technology studied in this report are segmented as life science reagents and analytical reagents; of which life science segment accounted for the largest share of 59.37% of the total market in 2011. The global life science and analytical reagents market was valued at $40,308.8 million in 2011 and is expected to reach $59,319.2 million by 2016; growing at a CAGR of 8% from 2011 to 2016.

The life sciences and analytical reagents market is driven by the increasing use of reagents in therapeutics, basic research and commercial applications. The demand for biotechnology reagents is mainly dependent upon the growth of the biotechnology instrumentation market. The biotechnology instrumentation market continues to witness significant growth due to an increase in the number of biotechnology firms around the globe and increase in research and development expenditure by the biotechnology companies, thus augmenting the demand for biotechnology instruments. Continual product developments are being witnessed in various industries, such as pharmaceutical/bio-pharmaceutical, agri-biotech, and food and beverages; this is expected to facilitate market growth.

North America dominated the life sciences and analytical reagents market with 46.28% share in 2011. Successful completion of the first phase of the Human Genome Project, ahead of schedule, has given rise in the U.S. reagent market. Investments, government funding, and new products are driving the reagents market in the U.S. The Asian market, however, shows greater opportunities, when compared to other regions, with the highest CAGR of 11.8% from 2011 to 2016; due to increased research outsourcing activities in the life technology field.

Major players in the global life science and analytical reagents market include Life Technologies, (U.S.), Bio-Rad (U.S.), Thermo Fisher Scientific (U.S.), Water Corporation (U.S.), Sigma-Aldrich (U.S.), Agilent Technologies Inc. (U.S.), Betcon Dickinson (U.S.), Beckman Coulter (U.S.), Roche (Switzerland), and Abbott (U.S.).

Scope of the Report

This life sciences and analytical reagents market report will enable strategic understanding of the following key segments of the market:

Global life science and analytical reagents market, by technology
Life science
PCR
Master mixes
Kits
Individual reagent
Cell culture
Sera
Media and regents
IVD
Microbiology culture
Hematology
Immunoassay
Clinical chemistry
Molecular diagnostics
Expression and transfection
Analytical
Chromatography
By reagents type
Solvent
Chemical
Adsorbents
By types of chromatography
Liquid Chromatography
Gas Chromatography
Ion Chromatography
Super critical Fluid Chromatography
Mass Spectrometry
Proteomics
Drug Discovery
Clinical Testing
Genomics
Others
Electrophoresis
Gel
Dye
Buffer
Flow Cytometry
Cell-based flow cytometry
Bead-based flow cytometry
Global life science and analytical reagents market, by applications
Protein synthesis and purification
Gene expression
DNA and RNA analysis
Drug testing
Life science and analytical reagents market, by geography
North America
Europe
Asia
ROW

Each section of the report offers market data for the various market segments and geographies. It also provides market trends with respect to drivers, restraints, and opportunities. The report’s ‘Strategy’ section sketches the competitive landscape, featuring about 26 company profiles.
      

Table of Contents :

1 INTRODUCTION
1.1 KEY TAKE-AWAYS
1.2 REPORT DESCRIPTION
1.3 MARKETS COVERED
1.4 STAKEHOLDERS
1.5 RESEARCH METHODOLOGY
1.5.1 MARKET SIZE
1.5.2 MARKET SHARE
1.5.3 KEY DATA POINTS FROM SECONDARY SOURCES
1.5.4 KEY DATA POINTS FROM PRIMARY SOURCES
1.5.5 ASSUMPTIONS

2 EXECUTIVE SUMMARY

3 MARKET OVERVIEW
3.1 INTRODUCTION
3.2 MARKET SEGMENTATION
3.3 MARKET DYNAMICS
3.3.1 DRIVERS
3.3.1.1 High research and development expenditure by biotechnology companies
3.3.1.2 Increase in number of biotechnology firms
3.3.1.3 Growth in biopharmaceuticals
3.3.1.4 Advancement in technology
3.3.1.5 Protein profiling on a rise
3.3.2 RESTRAINT
3.3.2.1 High price of biopharmaceuticals
3.3.3 OPPORTUNITIES
3.3.3.1 Stem cell research
3.3.3.2 Environmental applications
3.4 BURNING ISSUE
3.4.1 CONTROVERSY ON FEDERAL FUNDING FOR STEM CELL RESEARCH
3.5 END-USER ANALYSIS
3.6 MARKET SHARE ANALYSIS
3.6.1 LIFE SCIENCES MARKET SHARE ANALYSIS
3.6.2 ANALYTICAL MARKET SHARE ANALYSIS

4 LIFE SCIENCES & ANALYTICAL REAGENTS MARKET, BY TECHNOLOGY
4.1 INTRODUCTION
4.2 LIFE SCIENCES
4.2.1 PCR
4.2.1.1 Market share analysis
4.2.1.2 Master mixes
4.2.1.3 PCR kits
4.2.2 CELL CULTURE
4.2.2.1 Market share analysis
4.2.2.2 Sera
4.2.2.3 Media and reagents
4.2.2.3.1 Amino acids & vitamins
4.2.2.3.2 Antibiotics & antimycotics
4.2.2.3.3 Buffers
4.2.2.3.4 Cell dissociation reagents
4.2.2.3.5 Growth supplements
4.2.2.3.6 Others
4.2.3 IVD
4.2.3.1 Market share analysis
4.2.3.2 Microbiology culture
4.2.3.3 Hematology
4.2.3.4 Immunoassay
4.2.3.5 Clinical chemistry
4.2.3.6 Molecular diagnostics
4.2.4 EXPRESSION & TRANSFECTION
4.2.4.1 Market share analysis
4.3 ANALYTICAL
4.3.1 CHROMATOGRAPHY
4.3.1.1 Market share analysis
4.3.1.2 Chromatography, by reagents types
4.3.1.3 Chromatography, by types
4.3.1.3.1 Liquid chromatography
4.3.1.3.2 Gas chromatography
4.3.1.3.3 Ion chromatography
4.3.1.3.4 Supercritical fluid chromatography
4.3.2 MASS SPECTROMETRY
4.3.2.1 Market share analysis
4.3.2.2 Mass spectrometry market, by applications
4.3.3 ELECTROPHORESIS
4.3.3.1 Market share analysis
4.3.3.1.1 Gel electrophoresis market share analysis
4.3.3.1.2 Capillary electrophoresis market share analysis
4.3.3.2 Gel
4.3.3.3 Dye
4.3.3.4 Buffer
4.3.4 FLOW CYTOMETRY
4.3.4.1 Market share analysis
4.3.4.2 Cell-based flow cytometry
4.3.4.3 Bead-based flow cytometry

5 GLOBAL LIFE SCIENCE & ANALYTICAL REAGENTS MARKET, BY APPLICATIONS
5.1 INTRODUCTION
5.2 PROTEIN SYNTHESIS & PURIFICATION
5.3 GENE EXPRESSION
5.4 DNA & RNA ANALYSIS
5.5 DRUG TESTING

Tuesday, May 29, 2012

Global Electroactive Polymers Market Trends, Applications and Forecasts (2012 - 2017)

Global Electroactive Polymers Market Trends, Applications and Forecasts (2012 - 2017)

For more details on the content of report and ordering information please visit:

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Technological developments in the electronics and semiconductor industries have led to the creation of polymers that change shape on the application of voltage. The biggest application for electro-active polymers (EAPs) lays in their use in antistatic and electronic applications which is expected to drive its market growth. Among all EAP applications market, the actuator segment is witnessing high R&D activity and medical devices and robotics will be the largest applications of EAP actuators. Actuators and sensors open up a huge spectrum of applications in the fields of electronics, healthcare, sensing, and solar energy generation. With the growing market for each of these applications, EAP is set to become a mainstream market in the next five years. However, the technical specifications for each application differ widely, and extensive research and investments are still needed for developing application-specific EAPs.

The global electro-active polymers product market is expected to be worth $3.4 billion by 2017 and is forecasted to grow by a CAGR of 7.7% from 2012–2017. The conductive plastics segment contributed approximately 84% to the overall electro-active polymer market in 2011, mainly due to its extensive application in electrostatic discharge and electromagnetic interference. As the EAP market is still in the early phase of its growth, it presents many advantages for the early movers. As there are not many players in the market, detailed knowledge of the competitors will be crucial for the success of each company.

The report covers major electro-active polymers which include primarily conductive plastics, inherently conductive polymers (ICPs), and inherently dissipative polymers (IDPs) segments. It also studies other electro-active polymers such as dielectric elastomers and ferroelectrets. The report analyses the market for electro-active polymers with respect to market drivers, opportunities, and winning imperatives related to the industry.

The qualitative analysis of electro-active polymers with respect to its characteristics, parental structure, and business processes which are use by different companies is done in an elaborative manner. Based on the applications, the global electro-active polymers market is segmented as antistatic packaging, protection against EMI/ESD, capacitors, batteries, sensors, solar cells, actuators, organic transistors, plastics coated with electrostatic paints, and textiles and fabrics. Electro-active polymers market has been gaining importance with its major application in the areas of ESD/EMI (electrostatic discharge/electromagnetic interference), medical devices, and biomimetics.

The major devices used for the application of electro-active polymers are medical devices, smart fabrics, digital mechtronics, and high strain sensors. The report gives a qualitative analysis about these devices with respect to their characteristics and applications. Market analysis of patents for the last 5 years is also done in the market study.

The global electro-active polymers application market is also segmented with respect to different geographical regions including North America, Europe, Asia, and ROW. The study analyzes the application market for these regions as well and gives market value for different applications. Of the market studied, North America is the largest market for electro-active polymers with an estimated 65% of the global market revenue share in 2011 and is estimated to reach $2.2 billion by 2017.

Scope of the report

The electro-active polymers market research report categorizes the global market on the basis of types, applications and geography in each of the following submarkets:

Types: Inherently conductive polymers, inherently dissipative polymers, conductive plastics, and other electro-active polymers
Applications: Organic light emitting diode, capacitors, batteries, sensors, solar cells, actuators, organic transistors, textiles and fabrics, protection against EMI, protection against ESD, and antistatic packaging.
Geography: North America, Europe, Asia, and ROW
     

Table of Contents :

1 INTRODUCTION
1.1 KEY TAKE-AWAYS
1.2 REPORT DESCRIPTION
1.3 MARKETS COVERED
1.4 STAKEHOLDERS
1.5 RESEARCH METHODOLOGY
1.5.1 MARKET SIZE
1.5.2 KEY DATA POINTS FROM SECONDARY SOURCES
1.5.3 KEY DATA POINTS FROM PRIMARY SOURCES
1.5.4 ASSUMPTIONS MADE FOR THE REPORT

2 EXECUTIVE SUMMARY

3 MARKET OVERVIEW
3.1 INTRODUCTION
3.2 EAP PRODUCTION PROCESS
3.3 MARKET SEGMENTATION
3.4 BUSINESS & MANUFACTURING PROCESSES
3.5 ELECTRO-ACTIVE POLYMER CHARACTERISTICS
3.6 FACTORS INFLUENCING MARKET GROWTH
3.7 WINNING IMPERATIVES
3.7.1 RESEARCH & NEW PRODUCT DEVELOPMENT
3.8 MARKET DYNAMICS
3.8.1 DRIVERS
3.8.1.1 Low cost materials
3.8.1.2 Low driving voltage
3.8.1.3 Light weight & flexible products
3.8.2 RESTRAINT
3.8.2.1 EAP in Nascent Stage
3.8.3 OPPORTUNITIES
3.8.3.1 Biomimetic applications
3.8.3.2 Better surface conductivity
3.9 ELECTRO-ACTIVE POLYMER DEVICES
3.9.1 EAP MEDICAL DEVICES MARKET
3.9.2 EAP SMART FABRICS MARKET
3.9.3 EAP DIGITAL MECHATRONICS MARKET
3.9.4 EAP HIGH STRAIN SENSOR MARKET
3.10 PATENT ANALYSIS

4 ELECTRO-ACTIVE POLYMERS MARKET, BY TYPES
4.1 INTRODUCTION
4.2 INHERENTLY CONDUCTIVE POLYMERS (ICP)
4.2.1 POLYTHIOPHENES
4.2.2 POLYANILINES
4.2.3 POLYPYRROLES
4.2.4 POLYACETYLENES
4.2.5 POLYPHENYLENE VINYLENE (PPV)
4.2.6 POLYFLUORENE
4.2.7 POLYPHENYLENE SULFIDE (PPS)
4.2.8 POLYNAPHTHALENE
4.2.9 DOPING TECHNOLOGIES FOR ICPS
4.2.9.1 Chemical doping technology
4.2.9.2 Electrochemical doping technology
4.2.9.3 Types of dopants
4.2.10 TECHNICAL ASPECTS OF ICPS
4.2.10.1 Molecular weight
4.2.10.2 Improvement in thermal stability
4.2.10.3 Alloys and blends of ICP with resins
4.2.11 BENEFITS OF ICPS
4.2.11.1 Conductivity
4.2.11.2 Electrochromic effect
4.2.11.3 Electroluminescence effect
4.2.11.4 Photoconductivity effect
4.2.11.5 Thermochromic effects
4.3 INHERENTLY DISSIPATIVE POLYMERS
4.4 CONDUCTIVE PLASTICS
4.4.1 ESD/EMI COMPOUNDS
4.4.2 ANTISTATIC ADDITIVES
4.4.3 CARBON/METAL FIBERS
4.4.4 CARBON NANOTUBES
4.4.5 BLENDS OF CONDUCTIVE PLASTICS & POWDER COATINGS
4.5 DIELECTRIC ELASTOMERS
4.5.1 LOW POWER CONSUMPTION
4.5.2 HIGH FORCE-TO-WEIGHT RATIO
4.5.3 SILICONE ELASTOMERS
4.5.4 ACRYLATES
4.5.5 POLYURETHANES
4.6 FERROELECTRETS
4.6.1 POLYPROPYLENE
4.6.2 POLYCARBONATE
4.6.3 CYCLIC OLEFIN COPOLYMER (COC)
4.6.4 FLUORINATED ETHYLENE PROPYLENE

5 ELECTRO-ACTIVE POLYMERS MARKET, BY APPLICATIONS
5.1 INTRODUCTION
5.2 ORGANIC LIGHT EMITTING DIODES
5.3 CAPACITORS
5.3.1 INCREASED RESPONSE RATE
5.3.2 NO RISK OF BURSTING
5.4 BATTERIES
5.4.1 LITHIUM BATTERY
5.4.2 ALL-POLYMER BATTERY
5.4.3 BUTTON BATTERY
5.4.4 AUTOMOTIVE BATTERY
5.4.5 PORTABLE COMPUTER BATTERY
5.5 SENSORS
5.5.1 GAS SENSORS
5.5.2 ODOR SENSORS
5.5.3 CHEMICAL SENSORS
5.5.4 BIOSENSORS
5.6 SOLAR CELLS
5.7 ACTUATORS
5.8 ORGANIC/PLASTIC TRANSISTORS
5.9 TEXTILES & FABRICS
5.10 PROTECTION AGAINST ELECTROMAGNETIC INTERFERENCE (EMI)
5.11 PROTECTION AGAINST ELECTROSTATIC DISCHARGE (ESD)
5.12 ANTISTATIC PACKAGING
5.13 PLASTICS COATED WITH ELECTROSTATIC PAINTS
5.14 OTHER APPLICATIONS

6 GEOGRAPHICAL ANALYSIS
6.1 INTRODUCTION
6.2 NORTH AMERICA
6.3 EUROPE
6.4 ASIA
6.5 ROW

7 COMPETITIVE LANDSCAPE
7.1 INTRODUCTION
7.2 MERGERS & ACQUISITIONS
7.3 AGREEMENTS, PARTNERSHIPS, CONTRACTS, JOINT VENTURES & COLLABORATIONS
7.4 NEW PRODUCT DEVELOPMENTS
7.5 OTHERS

8 COMPANY PROFILES
8.1 3M
8.1.1 OVERVIEW
8.1.2 FINANCIALS
8.1.3 PRODUCTS & SERVICES
8.1.4 STRATEGY
8.1.5 DEVELOPMENTS
8.2 AGFA-GEVAERT N.V.
8.2.1 OVERVIEW
8.2.2 FINANCIALS
8.2.3 PRODUCTS & SERVICES
8.2.4 STRATEGY
8.2.5 DEVELOPMENTS
8.3 BAYER AG
8.3.1 OVERVIEW
8.3.2 FINANCIALS
8.3.3 PRODUCTS & SERVICES
8.3.4 STRATEGY
8.3.5 DEVELOPMENTS
8.4 CAMBRIDGE DISPLAY TECHNOLOGY LTD (CDT)
8.4.1 OVERVIEW
8.4.2 FINANCIALS
8.4.3 PRODUCTS & SERVICES
8.4.4 STRATEGY
8.4.5 DEVELOPMENTS
8.5 CHEVRON PHILLIPS CHEMICAL COMPANY LP
8.5.1 OVERVIEW
8.5.2 FINANCIALS
8.5.3 PRODUCTS & SERVICES
8.5.4 STRATEGY
8.5.5 DEVELOPMENTS
8.6 CNANO TECHNOLOGY LTD
8.6.1 OVERVIEW
8.6.2 FINANCIALS
8.6.3 PRODUCTS & SERVICES
8.6.4 STRATEGY
8.6.5 DEVELOPMENTS
8.7 CROSSLINK
8.7.1 OVERVIEW
8.7.2 FINANCIALS
8.7.3 PRODUCTS & SERVICES
8.7.4 STRATEGY
8.7.5 DEVELOPMENTS
8.8 DANFOSS A/S
8.8.1 OVERVIEW
8.8.2 FINANCIALS
8.8.3 PRODUCTS & SERVICES
8.8.4 STRATEGY
8.8.5 DEVELOPMENTS
8.9 EAMEX CORP.
8.9.1 OVERVIEW
8.9.2 FINANCIALS
8.9.3 PRODUCTS & SERVICES
8.9.4 STRATEGY
8.9.5 DEVELOPMENTS
8.10 EEONYX CORP.
8.10.1 OVERVIEW
8.10.2 FINANCIALS
8.10.3 PRODUCTS & SERVICES
8.10.4 STRATEGY
8.10.5 DEVELOPMENTS
8.11 ENTHONE INC.
8.11.1 OVERVIEW
8.11.2 FINANCIALS
8.11.3 PRODUCTS & SERVICES
8.11.4 STRATEGY
8.11.5 DEVELOPMENTS
8.12 HYPERION CATALYSIS INTERNATIONAL INC.
8.12.1 OVERVIEW
8.12.2 FINANCIALS
8.12.3 PRODUCTS & SERVICES
8.12.4 STRATEGY
8.12.5 DEVELOPMENTS
8.13 KEMET CORP.
8.13.1 OVERVIEW
8.13.2 FINANCIALS
8.13.3 PRODUCTS & SERVICES
8.13.4 STRATEGY
8.13.5 DEVELOPMENTS
8.14 KONARKA TECHNOLOGIES INC.
8.14.1 OVERVIEW
8.14.2 FINANCIALS
8.14.3 PRODUCTS & SERVICES
8.14.4 STRATEGY
8.14.5 DEVELOPMENTS
8.15 MEDIPACS INC.
8.15.1 OVERVIEW
8.15.2 FINANCIALS
8.15.3 PRODUCTS & SERVICES
8.15.4 STRATEGY
8.15.5 DEVELOPMENTS
8.16 PLEXTRONICS INC.
8.16.1 OVERVIEW
8.16.2 FINANCIALS
8.16.3 PRODUCTS & SERVICES
8.16.4 STRATEGY
8.16.5 DEVELOPMENTS
8.17 POLYONE CORP.
8.17.1 OVERVIEW
8.17.2 FINANCIALS
8.17.3 PRODUCTS & SERVICES
8.17.4 STRATEGY
8.17.5 DEVELOPMENTS
8.18 PREMIX OY
8.18.1 OVERVIEW
8.18.2 FINANCIALS
8.18.3 PRODUCTS & SERVICES
8.18.4 STRATEGY
8.18.5 DEVELOPMENTS
8.19 RIEKE METALS INC.
8.19.1 OVERVIEW
8.19.2 FINANCIALS
8.19.3 PRODUCTS & SERVICES
8.19.4 STRATEGY
8.19.5 DEVELOPMENTS
8.20 RTP COMPANY
8.20.1 OVERVIEW
8.20.2 FINANCIALS
8.20.3 PRODUCTS & SERVICES
8.20.4 STRATEGY
8.20.5 DEVELOPMENTS
8.21 SAUDI BASIC INDUSTRIES CORP.
8.21.1 OVERVIEW
8.21.2 FINANCIALS
8.21.3 PRODUCTS & SERVICES
8.21.4 STRATEGY
8.21.5 DEVELOPMENTS
8.22 SIGMA-ALDRICH CORP.
8.22.1 OVERVIEW
8.22.2 FINANCIALS
8.22.3 PRODUCTS & SERVICES
8.22.4 STRATEGY
8.22.5 DEVELOPMENTS
8.23 TDA RESEARCH INC.
8.23.1 OVERVIEW
8.23.2 FINANCIALS
8.23.3 PRODUCTS & SERVICES
8.23.4 STRATEGY
8.23.5 DEVELOPMENTS
8.24 THE LUBRIZOL CORP.
8.24.1 OVERVIEW
8.24.2 FINANCIALS
8.24.3 PRODUCTS & SERVICES
8.24.4 STRATEGY
8.24.5 DEVELOPMENTS
8.25 TICONA GMBH
8.25.1 OVERVIEW
8.25.2 FINANCIALS
8.25.3 PRODUCTS & SERVICES
8.25.4 STRATEGY
8.25.5 DEVELOPMENTS

APPENDIX
? U.S. PATENTS
? EUROPE PATENTS
? ASIA PATENTS

LIST OF TABLES

TABLE 1 GLOBAL ELECTRO-ACTIVE POLYMERS MARKET REVENUE,
BY SEGMENTS, 2010 – 2017 ($MILLION)
TABLE 2 GLOBAL ELECTRO-ACTIVE POLYMERS MARKET VOLUME, BY SEGMENTS, 2010 – 2017 (MILLION POUNDS)
TABLE 3 EAP MARKET REVENUE, BY DEVICES, 2012 – 2017 ($MILLION)
TABLE 4 EAP MEDICAL DEVICES MARKET REVENUE, BY GEOGRAPHY,
2012 – 2017 ($MILLION)
TABLE 5 EAP SMART FABRICS MARKET REVENUE, BY GEOGRAPHY,
2012 – 2017 ($MILLION)
TABLE 6 EAP DIGITAL MECHATRONICS MARKET REVENUE, BY GEOGRAPHY,
2012 – 2017 ($MILLION)
TABLE 7 EAP HIGH STRAIN SENSOR MARKET REVENUE, BY GEOGRAPHY,
2009 – 2014 ($MILLION)
TABLE 8 GLOBAL INHERENTLY CONDUCTIVE POLYMERS MARKET REVENUE,
BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 9 INHERENTLY CONDUCTIVE POLYMERS MARKET REVENUE,
BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 10 MAJOR ICP SUPPLIERS
TABLE 11 POLYTHIOPHENES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 12 POLYANILINES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 13 POLYACETYLENES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 14 POLYPHENYLENE VINYLENE MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 15 POLYFLUORENE MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 16 POLYPHENYLENE SULFIDE MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 17 POLYNAPHTHALENE MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 18 CHEMICALS USED FOR DOPING ICP
TABLE 19 INHERENTLY DISSIPATIVE POLYMERS MARKET REVENUE,
BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 20 GLOBAL CONDUCTIVE PLASTICS MARKET REVENUE, BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 21 CONDUCTIVE PLASTICS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 22 ESD/EMI COMPOUNDS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 23 ANTISTATIC ADDITIVES IN EAP MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 24 CARBON/METAL FIBERS IN EAP MARKET REVENUE, BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 25 CARBON NANOTUBES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 26 SURFACE RESISTIVITY OF DIFFERENT MATERIALS
TABLE 27 PROPERTIES OF ICP VS CONDUCTIVE PLASTICS
TABLE 28 COMPARISON OF DIELECTRIC ELASTOMER ACTUATORS VS. VOICE COILS
TABLE 29 COMPARISON OF STRETCHABILITY VS CHANGE IN RESISTANCE OF SILICONE
TABLE 30 POLYURETHANE STRETCHABILITY VS RESISTIVITY
TABLE 31 GLOBAL ELECTRO-ACTIVE POLYMERS MARKET REVENUE,
BY APPLICATIONS, 2010 – 2017 ($MILLION)
TABLE 32 ADVANTAGES & DISADVANTAGES OF OLED OVER CONVENTIONAL LED
TABLE 33 EAP OLED MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 34 ELECTRO-ACTIVE POLYMER CAPACITORS VS ELECTROLYTIC CAPACITORS
TABLE 35 CAPACITORS IN EAP MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 36 GLOBAL BATTERIES MARKET REVENUE, BY SEGMENTS,
2010 – 2017 ($MILLION)
TABLE 37 SECONDARY BATTERIES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 38 PRIMARY BATTERIES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 39 BATTERIES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 40 GLOBAL EAP BATTERIES MARKET REVENUE, BY PRODUCTS,
2010 – 2017 ($THOUSAND)
TABLE 41 EAP LITHIUM BATTERIES MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 42 EAP BUTTON BATTERY MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 43 EAP AUTOMOTIVE BATTERY MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 44 EAP PORTABLE COMPUTER BATTERY MARKET REVENUE,
BY GEOGRAPHY, 2010 – 2017 ($THOUSAND)
TABLE 45 SENSORS MARKET REVENUE, BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 46 EAP SENSORS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 47 EAP SOLAR CELLS MARKET REVENUE, BY GEOGRAPHY,
2012 – 2017 ($THOUSAND)
TABLE 48 EAP ACTUATORS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 49 EAP ORGANIC/PLASTIC TRANSISTOR MARKET REVENUE,
BY GEOGRAPHY, 2010 – 2017 ($THOUSAND)
TABLE 50 EAP TEXTILES & FABRICS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($THOUSAND)
TABLE 51 EAP ELECTROMAGNETIC INTERFERENCE MARKET REVENUE,
BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 52 EAP ELECTROSTATIC DISCHARGE MARKET REVENUE, BY GEOGRAPHY, 2010 – 2017 ($MILLION)
TABLE 53 ELECTRO-ACTIVE POLYMERS MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
TABLE 54 NORTH AMERICA: ELECTRO-ACTIVE POLYMERS MARKET REVENUE,
BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 55 EUROPE: ELECTRO-ACTIVE POLYMERS MARKET REVENUE,
BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 56 ASIA: ELECTRO-ACTIVE POLYMERS MARKET REVENUE, BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 57 ROW: ELECTRO-ACTIVE POLYMERS MARKET REVENUE, BY PRODUCTS, 2010 – 2017 ($MILLION)
TABLE 58 MERGERS & ACQUISITIONS, 2010 – 2012
TABLE 59 AGREEMENTS, PARTNERSHIPS, CONTRACTS, JOINT VENTURES & COLLABORATIONS, 2010-2012
TABLE 60 NEW PRODUCT DEVELOPMENTS, 2010 – 2012
TABLE 61 OTHERS, 2010 – 2012
TABLE 62 3M CORP: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 63 3M CORP: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 64 AGFA-GEVAERT: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 65 AGFA-GEVAERT: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 66 AGFA-GEVAERT: PRODUCTS & ITS APPLICATION
TABLE 67 BAYER MATERIALSCIENCE: MARKET REVENUE, BY SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 68 BAYER MATERIALSCIENCE: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 69 DANFOSS: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 70 DANFOSS: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 71 KEMET CORP: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 72 KEMET CORP: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 73 POLYONE CORP: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 74 POLYONE CORP: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 75 SABIC: MARKET REVENUE, BY BUSINESS SEGMENTS,
2009 – 2010 ($MILLION)
TABLE 76 SIGMA-ALDRICH: MARKET REVENUE, BY BUSINESS SEGMENTS,
2010 – 2011 ($MILLION)
TABLE 77 SIGMA-ALDRICH: MARKET REVENUE, BY GEOGRAPHY,
2010 – 2011 ($MILLION)
TABLE 78 LUBRIZOL CORP: MARKET REVENUE, BY BUSINESS SEGMENTS,
2009 – 2010 ($MILLION)
TABLE 79 LUBRIZOL CORP: MARKET REVENUE, BY GEOGRAPHY,
2009 – 2010 ($MILLION)

LIST OF FIGURES

FIGURE 1 GLOBAL ELECTRO-ACTIVE POLYMERS MARKET
FIGURE 2 EAP PRODUCTION PROCESS
FIGURE 3 GLOBAL ELECTRO-ACTIVE POLYMERS MARKET REVENUE, BY PRODUCT TYPES, 2011
FIGURE 4 BUSINESS & MANUFACTURING PROCESS IN THE EAP INDUSTRY
FIGURE 5 FACTORS INFLUENCING EAP MARKET GROWTH
FIGURE 6 IMPACT OF DRIVERS ON GLOBAL ELECTRO-ACTIVE POLYMERS MARKET
FIGURE 7 IMPACT OF RESTRAINT ON GLOBAL ELECTRO-ACTIVE POLYMERS MARKET
FIGURE 8 ELECTRO-ACTIVE POLYMER DEVICES
FIGURE 9 PATENTS ANALYSIS, BY MARKET PLAYERS, 2008 – 2012
FIGURE 10 INHERENTLY CONDUCTIVE POLYMERS, BY TYPES
FIGURE 11 TYPES OF CONDUCTIVE PLASTICS
FIGURE 12 OPPORTUNITY MATRIX
FIGURE 13 ELECTRO-ACTIVE POLYMERS, BY END-USERS
FIGURE 14 ELECTRO-ACTIVE POLYMER BATTERIES, BY TYPES
FIGURE 15 ELECTRO-ACTIVE POLYMER SENSORS, BY TYPES
FIGURE 16 TRENDS IN THE GLOBAL EAP MARKET REVENUE, BY GEOGRAPHY,
2010 – 2017 ($MILLION)
FIGURE 17 KEY GROWTH STRATEGIES, 2010 – 2012

Thursday, May 3, 2012

2012 Latest Report: Global Industrial Enzymes Market Report: 2012 Edition | Market Research Reports 2012 Latest Report: Global Industrial Enzymes Market Report: 2012 Edition | Market Research Reports For more details on the content of report and ordering

2012 Latest Report: Global Industrial Enzymes Market Report: 2012 Edition | Market Research Reports

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Enzymes are known to play a crucial role as a metabolic catalyst in the development of life, since the advent of civilization. However, scientific research over a long period has discovered the actual functioning of enzymes, leading to their increased usage in various industries and applications. The market for industrial enzymes, world over, is projected to record CAGR of approximately 4.7% for the period spanning 2012-2014, mainly driven by development of new enzyme technologies and rising need for more environmental friendly and sustainable solutions in every aspect of life.

Rise in diverse needs like food, energy, etc. of growing population and urbanization in the world, an escalating demand for cosmetics with improvement in general economic conditions, besides expanding fuel ethanol market are the chief influences driving the upward market demand for industrial enzymes, all across the globe. Further, constant upgradations and innovations in the enzyme technology also helps widen the diversity of usages of enzymes and also their more efficient use in different applications. This in turn naturally converts into enhanced demand for industrial enzymes. However, rising energy and raw material costs and stringent regulatory measures by the governments also keep check on the unassailed growth of the industrial enzymes market.

The end use market for industrial enzymes is extremely wide spread with numerous industrial and commercial applications. Food & beverages and household care industries represent the largest application areas of enzymes, followed by animal feed, biofuels, textile, and other technical industries. The demand of industrial enzymes for use in the aforementioned sectors and various others is on continuous rise driven by growing need for sustainable solutions. In terms of major regions, Europe represents the largest market for industrial enzymes in the world, however, the developing economies of Asia Pacific and Africa and Middle East regions, among others, are emerging as the most promising markets for industrial enzymes.

The global industrial enzymes market is intensely competitive with Novozymnes being the largest player in the industry, followed by DSM, and DuPont, among others. The companies mainly compete on the basis of product quality, performance, use of intellectual property rights, and the ability to innovate, among other such factors.

The report provides an analysis of the global industrial enzymes market. It also discusses major developments, growth drivers and challenges for the market. The report presents the competitive structure of the industry and profiles major players in the market with a discussion of their key business strategies.

By combining SPSS Inc.’s data integration and analysis capabilities with our relevant findings, we have predicted the future growth of the industry. We employed various significant variables that have an impact on this industry and created regression models with SPSS Base to determine the future direction of the industry. Before deploying the regression model, the relationship between several independent or predictor variables and the dependent variable was analyzed using standard SPSS output, including charts, tables and tests.
     

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Table of Contents :

1. Industrial Enzymes: An Overview

1.1 An Introduction
1.2 Application of Enzymes
1.3 Benefits of Enzymes
1.4 Production of Enzymes
1.5 Industrial Enzymes: Value Chain Analysis

2. Global Market Structure

2.1 Global Industrial Enzyme Market

Market Overview
Market Size

2.2 Industrial Enzyme Market by Industries

2.2.1 Detergent Enzyme Market
2.2.2 Animal Feed Market
2.2.3 Fuel Ethanol Market

2.3 Industrial Enzyme Market by Regions

2.3.1 Europe

Industrial Enzymes Market
Food Enzymes Market

2.3.2 China

Market Segmentation
Market Share

2.3.3 India

Market Overview
Market Size

3. Market Dynamics

3.1 Growth Drivers

3.1.1 Growing Population and Urbanization
3.1.2 Expanding Fuel Ethanol Market
3.1.3 Growth in Demand for Cosmetics

3.2 Industry Developments

3.2.1 New Enzyme Product for Advanced Cellulosic Biofuels
3.2.2 New Feed Additive Enzyme Range

3.3 Challenges

3.3.1 Rising Energy and Raw Material Costs
3.3.2 Stringent Regulations

4. Competitive Scenario

Competitive Overview
Market Share

5. Company Profiles

5.1 Novozymes A/S

Business Description
Key Financials
Business Strategies
Expanding Market Presence
Investment in Capacity Expansion

5.2 E. I. du Pont de Nemours and Company (DuPont)

Business Description
Key Financials
Business Strategies
Focus on Inclusive Innovation
Creating a Differential Management

5.3 Royal DSM N.V. (DSM)

Business Description
Key Financials
Business Strategies
Focus on Emerging Markets
Growth through Acquisitions/Partnerships

6. Market Outlook

6.1 Market Forecast

6.2 Forecast Methodology

6.2.1 Dependent and Independent Variables
6.2.2 Correlation Analysis
6.2.3 Regression Analysis

List of Charts

Value Chain of Industrial Enzyme Industry
Global Industrial Enzymes Market Revenues, 2005-2011
Enzyme Spend per capita by Regions, 2011
Global Industrial Enzyme Market by Industries – by Value, 2010
Number of Detergents Containing Enzymes Launched Globally, 2000-2010
Share of Detergents with Enzymes, 2000 & 2010
Global Animal Feed Additives Market by Type, 2010
Global Animal Feed Market, 2010
Global Fuel Ethanol Production by Major Regions, 2011
Enzyme Use Cost per Gallon Bioethanol, 2007-2010
Production Cost per Gallon Bioethanol, 2007-2010
European Industrial Enzymes Market, 2010-2011
European Food Enzymes Market, 2011 & 2016
China Enzyme Market by Industry – by Value, 2010
China Enzyme Market Share by Companies, 2010
Share of Industrial Enzymes Sector in Indian Biotechnology Industry, FY2011
Indian BioIndustrial (Industrial Enzymes) Market, FY10-FY11
Global Population Growth, 2005-2012F
The US Fuel Ethanol Production, 2008-2022
Global Cosmetics Market Revenues, 2004-2011
Global Industrial Enzymes Market Share by Companies, 2011
Novozymes’ Revenue Breakdown by Business Segments, 2011
Novozymes’ Total and Enzyme Business Revenues, 2007-2011
DuPont’s Revenue Breakdown by Business Segments, 2011
DuPont’s Revenues and Net Income, 2007-2011
DSM’s Revenue Breakdown by Business Segments, 2011
DSM’s Revenues and Net Income, 2007-2011
Global Industrial Enzymes Market Forecast: 2010-2014F

List of Tables

Top 5 BioIndustrial Companies in India - by Revenue, FY09-FY11
Dependent & Independent Variables, 2003-2011
Correlation Matrix
Model Summary – Coefficient of Determination
Regression Coefficients Output

Saturday, April 7, 2012

2012 Aarkstore.com: Global Lactic Acid & Poly Lactic Acid (PLA) Market by Applications and Potential Opportunities (2011-2016)

2012 Aarkstore.com: Global Lactic Acid & Poly Lactic Acid (PLA) Market by Applications and Potential Opportunities (2011-2016)

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Report Description:

Today, public concern regarding the environment, increasing desire of manufacturing companies to develop more sustainable products, limited fossil fuel resources, and climate change are important reasons for governments and companies to find substitutes to crude oil-based products. Bio-based plastics present huge potential to reduce the dependence on fossil fuels and the related environmental impacts. In recent years, PLA has emerged as one of the most popular bio-degradable plastics available in the market. PLA finds major applications in the food packaging industry, especially in frozen foods, ready-to-eat meals, and cutlery. Increasing awareness regarding the environmental consequences by the use of conventional plastic packaging is expected to drive the demand for PLA in the near future. This surge in PLA demand is expected to reflect in demand for lactic acid as PLA is the largest application market for it. The technical developments in emerging bio-based plastics have substantially improved the properties of novel bio-based plastics such as heat resistance of PLA, enabling a much wider range of applications.

This study estimates the global capacity of PLA and lactic acid by the end of 2016. Europe is the most dominant market for PLA while Asia-Pacific, owing to significant domestic demand, is expected to be the fastest growing market in the next five years. Cost competitiveness against alternatives is a key challenge for industry participants along with the growing mismatch in the supply demand scenario. The global PLA market is currently witnessing supply restraints as there are only a few major suppliers on a global platform. However, market players are increasingly focusing on increasing production capacities; especially in the Asia-Pacific region owing to the cheap availability and wide abundance of starting raw materials such as sugarcane, sugar beet, and tapioca in the region for lactic acid production. Growing demand for PLA is expected to drive the lactic acid market in the near future. Lack of supply capabilities on the part of market players is perceived to be a key issue for the lactic acid market in the near future.

The global lactic acid market is dominated by North America, accounting for 35.8% of the overall market in 2010. Europe and Asia-Pacific are the second and third largest markets for lactic acid; accounting for 29.9% and 29.2% of the overall market respectively in 2010. Industrial applications are the largest for lactic acid, accounting for 42.4% of the overall market in 2010. In the last few years, industrial applications have surpassed food and beverages as a leading application for the consumption of lactic acid. This has primarily been a result of strong growth in the PLA and solvents markets for which lactic acid is the primary raw material.

The report provides a comprehensive review of major market drivers, challenges, opportunities, and key issues in the market. The market is further segmented and forecasted for major geographic regions; North America, Europe, Asia-Pacific, and Rest of the World that include key growth regions such as Brazil. The key countries covered include U.S., U.K., China, and Japan. The report estimates the market size for lactic acid and PLA; both in terms of volumes and revenue. The market has been further segmented on the basis of applications. The various applications for PLA such as packaging, textiles, electronics, and medical have been discussed in detail in the report. Market share for major market players has been calculated on the basis of announced production capacities and is described in detail for both lactic acid and PLA. The report also consists of profiles of leading players of this industry with their recent developments and the other strategic industry activities. The key players included in the report are NatureWorks LLC (U.S.), Purac (The Netherlands), Pyramid Bioplastics Guben GmBH (Germany), Archer Daniels Midland Company (U.S.), and Henan Jindan (China).

Scope of the report

Poly Lactic Acid (PLA) Market and Lactic Acid Market research report categorizes the global market for PLA and lactic acid on the basis of applications, raw materials, and geography; forecasting volumes, revenues, and analyzing trends in each of the following submarkets:

On the basis of applications: The PLA market is segmented on the basis of applications such as packaging, textiles, electronics, medical, agriculture, transportation, and the other applications. The packaging application for PLA is further segmented on the basis of packaging types such as rigid packaging, loose fill packaging, compost bags, and others. The lactic market is segmented on the basis of applications such as industrial applications, food and beverages, pharmaceuticals, personal care products, and others.

On the basis of raw materials: Corn (maize), sugarcane and sugar beet, tapioca, and others.

On the basis of geography: North America, Europe, Asia-Pacific, Latin America, ROW, and key countries in every region
 
     

Table of Contents :

1 INTRODUCTION
1.1 KEY TAKE-AWAYS
1.2 REPORT DESCRIPTION
1.3 STAKEHOLDERS
1.4 RESEARCH METHODOLOGY
1.4.1 MARKET SIZE
1.4.2 KEY DATA POINTS FROM SECONDARY SOURCES
1.4.3 KEY DATA POINTS FROM PRIMARY SOURCES
1.4.4 ASSUMPTIONS MADE FOR THIS REPORT
1.4.5 LIST OF COMPANIES COVERED DURING PRIMARIES
1.5 KEY QUESTIONS ANSWERED

2 SUMMARY

3 MARKET OVERVIEW
3.1 INTRODUCTION
3.2 VALUE CHAIN ANALYSIS
3.3 BURNING ISSUES
3.3.1 ECONOMIES OF SCALE REQUIRED TO MEET DEMAND
3.4 WINNING IMPERATIVES
3.4.1 FOCUS ON AGREEMENTS & COLLABORATIONS
3.5 PLA (POLYLACTIC ACID)
3.5.1 DRIVERS
3.5.1.1 Increasing awareness towards sustainability and greener products
3.5.1.2 Regulatory push towards bioplastics
3.5.1.3 Rising oil prices
3.5.1.4 Shifting consumer preferences towards eco-friendly packaging
3.5.2 RESTRAINTS
3.5.2.1 Price competitiveness against conventional polymers
3.5.2.2 Supply limitations hampering market growth
3.5.2.3 Limited performance capabilities compared to conventional plastics
3.5.3 OPPORTUNITIES
3.5.3.1 Production of PLA from lignocellulose feedstocks
3.5.3.2 Co-polymers with synthetic plastics
3.5.3.3 Films & fibers
3.5.3.4 Increasing scope of application in end-user segments
3.6 LACTIC ACID
3.6.1 DRIVER
3.6.1.1 Growth in the end-user applications
3.6.2 RESTRAINT
3.6.2.1 Raw material price volatility
3.6.3 OPPORTUNITY
3.6.3.1 Growing PLA market
3.7 RAW MATERIAL ANALYSIS
3.7.1 CORN (MAIZE)
3.7.2 SUGARCANE
3.7.3 TAPIOCA (CASSAVA)
3.7.4 WHEAT
3.8 PORTER’S FIVE FORCES ANALYSIS
3.8.1 DEGREE OF COMPETITION
3.8.2 BARGAINING POWER OF BUYER
3.8.3 THREAT OF NEW ENTRANTS
3.8.4 THREAT OF SUBSTITUTES
3.8.5 BARGAINING POWER OF SUPPLIERS
3.9 COST ANALYSIS
3.10 MARKET SHARE ANALYSIS
3.11 PATENT ANALYSIS

4 LACTIC ACID MARKET
4.1 INTRODUCTION
4.2 GLOBAL LACTIC ACID MARKET
4.3 GLOBAL LACTIC ACID MARKET, BY APPLICATIONS
4.3.1 INDUSTRIAL APPLICATIONS
4.3.2 FOOD & BEVERAGES
4.3.3 PERSONAL CARE PRODUCTS
4.3.4 PHARMACEUTICALS
4.3.5 OTHERS
4.4 LACTIC ACID MARKET, BY GEOGRAPHY
4.4.1 NORTH AMERICA
4.4.1.1 U.S.
4.4.2 EUROPE
4.4.2.1 Germany
4.4.2.2 U.K.
4.4.2.3 France
4.4.3 ASIA-PACIFIC
4.4.3.1 China
4.4.3.2 Japan
4.4.4 ROW
4.4.4.1 Brazil

5 PLA MARKET
5.1 INTRODUCTION
5.2 GLOBAL PLA MARKET
5.3 GLOBAL PLA MARKET, BY APPLICATIONS
5.3.1 PACKAGING
5.3.1.1 Rigid packaging
5.3.1.2 Compost bags
5.3.1.3 Loose fill packaging
5.3.1.4 Others
5.3.2 TEXTILE
5.3.3 AGRICULTURE
5.3.4 TRANSPORTATION
5.3.5 ELECTRONICS
5.3.6 OTHERS
5.4 GLOBAL PLA MARKET, BY RAW MATERIALS
5.5 PLA MARKET, BY GEOGRAPHY
5.5.1 NORTH AMERICA
5.5.1.1 U.S.
5.5.2 EUROPE
5.5.2.1 Germany
5.5.2.2 U.K.
5.5.2.3 France
5.5.3 ASIA-PACIFIC
5.5.3.1 China
5.5.3.2 Japan
5.5.4 ROW
5.5.4.1 Brazil

Saturday, March 10, 2012

Global Multi Touch Market, by Product (SmartPhones, Tablets, Laptops, Televisions/LCD, Tables, Floors), Applications (Entertainment, Infotainment, Enterprises, others) & Geography, 2011-2016

Global Multi Touch Market, by Product (SmartPhones, Tablets, Laptops, Televisions/LCD, Tables, Floors), Applications (Entertainment, Infotainment, Enterprises, others) & Geography, 2011-2016

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After its inception in 1980, multi-touch technology came into light after Apple re-introduced the technology through its products to the world. The technology is associated with capacitive touch screen displays rather than with more common resistive touch screen displays. Natural user interface is the common parlance used by designers and developers of computer interfaces to refer to a user interface that is effectively invisible, or becomes invisible with successive learned interactions to its users. The report describes the various technical advantages and insights provided by multi-touch screen products.

The report pertaining to global multi-touch market is segmented with sectors such as product, technology, and applications. Multi-touch technology market forecasts are provided for each region from 2011 to 2016.

Multi-touch is an additional upcoming accessibility option combined with products. It can be seen as a replacement for the traditional keypad/keyboard and mouse. Multi-touch technology is in a great demand with multi-touch enabled products such as smartphones & tablets, and they have a big share in the market. Consumer electronic products are the ones that contribute maximum to the multi-touch screen market.

Different technologies are specifically used for different applications based on the features and performance of multi-touch technologies. The market is now on the rise due to increase in the use of multi-touch in smartphones, tablets, laptops, televisions, floors, and tables.

North America and Europe are reaching the maturity stage; whereas APAC and ROW both are considered as high growth markets. In 2010, North America accounted for about 42% of the global sales and is expected to grow at a CAGR of 11.7% from 2011 to 2016. APAC is contributing only $389 million. It is expected to grow at a CAGR of 26% from 2011 to 2016.

The report deals with the market trends in multi-touch displays and the growth associated to them.

Multi-touch screens market was worth around $1.9 billion in 2010 and is expected to grow to about $5.5 billion by 2016. It is expected to have a healthy CAGR of 18.18% from 2011 to 2016.
      

Table of Contents :

1 Introduction
1.1 Key Take-aways
1.2 Report Description
1.3 Markets Covered
1.4 Stakeholders
1.5 Research Methodology
1.5.1 Market Size
1.5.2 Key Data Points From Primary Sources
1.5.3 Key Data Points From Secondary Sources
1.5.4 Assumptions Made For This Report
1.5.5 List Of Companies Covered During Primaries
2 Summary
3 Market Overview
3.1 Evolution Of Multi-touch Screens
3.2 Target Group For Multi-touch Screens
3.3 Pricing Trends For Multi-touch Screens
3.4 Market Definition & Segmentation
3.5 Porter’s Five Forces
3.6 Market Dynamics
3.6.1 Drivers
3.6.1.1 Growth In Mobile Phone And Tablet Market
3.6.1.2 Increase In Corporate Buyers
3.6.1.3 Rise In Applications Related To Multi-touch
3.6.1.4 Most Of The Technologies Are Touch Object Independent
3.6.2 Restraints
3.6.2.1 Average Cost
3.6.2.2 Frequent Calibration Required
3.6.2.3 Shortage Of Indium Tin Xide (Ito)
3.6.3 Opportunities
3.6.3.1 Emerging Retail, Media, And Advertising Applications
3.6.3.2 Highly Evolving Replacement Market For Educational Sector
3.6.3.3 Merger With Gesture Recognition Technology
3.6.3.4 Combination With Video Calling And 3d Imaging
3.7 Burning Issues
3.7.1 Measuring The Z-axis
3.7.2 Profile Height
3.7.3 Uneven Geographic Distribution Of Suppliers
3.8 Winning Imperatives
3.8.1 Backward Integration For System Aggregators
3.8.2 Partnering With The High Grossing Products/Technologies
3.8.3 Niche Markets/Localizing Products
3.9 Market Share Analysis
3.10 Patent Analysis
3.10.1 Multi-touch Patents Activity Since Last Six Years (2005 - 2011)
3.10.2 Multi-touch Patents, By Assignee Region
3.10.3 Multi-touch Patents, By Assignees
4 Products Market
4.1 Multi-touch Screens Market Forecast, By Consumer Electronic Products
4.1.1 Mobile Phones
4.1.2 Tablets
4.1.3 Pmp/Mp3 Players
4.1.4 Other Consumer Electronic Products
4.2 Multi-touch Screens Market Forecast, By It Electronic Products
4.2.1 Trackpad/Touchpad
4.2.2 Multi-touch Mouse
4.2.3 All-in-one Pc
4.2.4 Other It Electronic Products
4.3 Miscellaneous Electronic Products
4.3.1 Kiosks
4.3.2 Large Interactive Screens
4.3.3 Atms/Hospitality Counters/Other Public-space Machines
5 Applications Market
5.1 Introduction
5.2 Personal Applications
5.2.1 Entertainment Applications
5.2.2 Infotainment Applications
5.2.2.1 Automotive
5.2.2.2 Pc-based
5.3 Enterprise Applications
5.3.1 Retail
5.3.2 Educational
5.3.3 Government & Corporate
5.3.4 Public Space Application
5.4 Miscellaneous Applications

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