Showing posts with label flexible electronics. Show all posts
Showing posts with label flexible electronics. Show all posts

Friday, June 27, 2014

PE & Flexible Electronics Equipment and Materials Market is Expected to Reach US$1.65B by 2020

VOLUME MANUFACTURING FOR PRINTED AND FLEXIBLE ELECTRONICS WILL SOON BE ENABLED BY EQUIPMENT AND MATERIALS PROVIDERS


ELECTRONICS.CA PUBLICATIONS, the electronics industry market research and knowledge network, announces the availability of a new report entitled “Market & Technology Trends in Materials & Equipment for Printed & Flexible Electronics“.  For now, organic electronics are made on rigid substrates and mainly manufactured using vapor deposition techniques, which are costly, generally require high temperatures and generate significant product waste. Printed and flexible electronics has been a very hot topic in this past decade, holding the promise of a tremendous new market. While the printing of electronics is mainly a way to produce large electronic surfaces and reduce manufacturing costs, flexibility will provide higher robustness to the end products as well as new features, designs and shapes.


In our report, we explain how this market will be addressed by players that do not necessarily come from the semiconductor field. In this emerging part of the electronics industry, chemical companies and printing equipment companies are the players that will enable volume manufacturing and will leverage technical bottlenecks.


Indeed the main challenges today lay in:


  • The development of high performance materials which will reach or surpass that of inorganic solutions: their intrinsic efficiency, their ability to be printed at a sufficient resolution, to fully operate in combination with several other materials (not to mix one with another), and their lifetime.

  • The capability for chemicals companies to provide formulated molecules with new functionalities as well as very specialized active materials.

  • Equipment dedicated to printed electronics, that are able to handle specialized inks and to provide printing accuracy way beyond that of standard printing (in the 10s of μm range).

Technology enablers are therefore not those usually involved in electronics development. The solution printing & coating industry is very far from the standard electronics industry, in terms of equipment and materials and they have completely different industrial cultures.


Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report:  Market & Technology Trends in Materials & Equipment for Printed & Flexible Electronics.



PE & Flexible Electronics Equipment and Materials Market is Expected to Reach US$1.65B by 2020

Thursday, June 19, 2014

Graphene Materials Market Demand For Transparent Conductive Electrodes and Supercapacitors

Although today there is no graphene-based electronic application in mass production, several companies already offer commercially graphene materials. The graphene materials market value in 2013 was about $11 million, represented principally by the demand for the R&D and prototyping. Two scenarios for the future market growth are presented in the report.  According to the base scenario, the global annual market value for graphene materials in opto and electronic applications will reach $141 million in 2024, featuring a 2013-2019 CAGR of 18.5%.  Accelerated market growth is expected after 2019, with a 2019-2024 CAGR of 35.7%. In 2024, the graphene materials market will be represented mainly by the demand for transparent conductive electrodes and advanced batteries and supercapacitors.


Graphene is a two-dimensional (2D) material with exceptional properties, such as ultrahigh electrical and thermal conductivities, wide-range optical transmittance and excellent mechanical strength and flexibility. These properties make it a promising material for emerging and existing applications in printed & flexible circuitry, ultrafast transistors, touch screens, advanced batteries and supercapacitors, ultrafast lasers, photodetectors and many other non-electronic applications.


Although graphene technology is still in its infancy, remarkable progress has been made in the last few years developing graphene production methods. Numerous opto and electronic devices based on graphene have been demonstrated on lab-scale models. However, the numerous challenges of graphene technology should not be underestimated. The lack of bandgap in graphene is its key fundamental challenge. Other technology challenges are related to the development of industrial methods to produce graphene with high and consistent quality at acceptable costs.


Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report: Graphene Materials For Opto & Electronic Applications.


 



Graphene Materials Market Demand For Transparent Conductive Electrodes and Supercapacitors

Tuesday, February 4, 2014

PE & Flexible Electronics Equipment and Materials Market is Expected to Reach US$1.65B by 2020

VOLUME MANUFACTURING FOR PRINTED AND FLEXIBLE ELECTRONICS WILL SOON BE ENABLED BY EQUIPMENT AND MATERIALS PROVIDERS


ELECTRONICS.CA PUBLICATIONS, the electronics industry market research and knowledge network, announces the availability of a new report entitled “Market & Technology Trends in Materials & Equipment for Printed & Flexible Electronics“.  For now, organic electronics are made on rigid substrates and mainly manufactured using vapor deposition techniques, which are costly, generally require high temperatures and generate significant product waste. Printed and flexible electronics has been a very hot topic in this past decade, holding the promise of a tremendous new market. While the printing of electronics is mainly a way to produce large electronic surfaces and reduce manufacturing costs, flexibility will provide higher robustness to the end products as well as new features, designs and shapes.


In our report, we explain how this market will be addressed by players that do not necessarily come from the semiconductor field. In this emerging part of the electronics industry, chemical companies and printing equipment companies are the players that will enable volume manufacturing and will leverage technical bottlenecks.


Indeed the main challenges today lay in:


  • The development of high performance materials which will reach or surpass that of inorganic solutions: their intrinsic efficiency, their ability to be printed at a sufficient resolution, to fully operate in combination with several other materials (not to mix one with another), and their lifetime.

  • The capability for chemicals companies to provide formulated molecules with new functionalities as well as very specialized active materials.

  • Equipment dedicated to printed electronics, that are able to handle specialized inks and to provide printing accuracy way beyond that of standard printing (in the 10s of μm range).

Technology enablers are therefore not those usually involved in electronics development. The solution printing & coating industry is very far from the standard electronics industry, in terms of equipment and materials and they have completely different industrial cultures.


Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report:  Market & Technology Trends in Materials & Equipment for Printed & Flexible Electronics.



PE & Flexible Electronics Equipment and Materials Market is Expected to Reach US$1.65B by 2020

Monday, February 3, 2014

Graphene Materials Market Demand For Transparent Conductive Electrodes and Supercapacitors

Although today there is no graphene-based electronic application in mass production, several companies already offer commercially graphene materials. The graphene materials market value in 2013 was about $11 million, represented principally by the demand for the R&D and prototyping. Two scenarios for the future market growth are presented in the report.  According to the base scenario, the global annual market value for graphene materials in opto and electronic applications will reach $141 million in 2024, featuring a 2013-2019 CAGR of 18.5%.  Accelerated market growth is expected after 2019, with a 2019-2024 CAGR of 35.7%. In 2024, the graphene materials market will be represented mainly by the demand for transparent conductive electrodes and advanced batteries and supercapacitors.


Graphene is a two-dimensional (2D) material with exceptional properties, such as ultrahigh electrical and thermal conductivities, wide-range optical transmittance and excellent mechanical strength and flexibility. These properties make it a promising material for emerging and existing applications in printed & flexible circuitry, ultrafast transistors, touch screens, advanced batteries and supercapacitors, ultrafast lasers, photodetectors and many other non-electronic applications.


Although graphene technology is still in its infancy, remarkable progress has been made in the last few years developing graphene production methods. Numerous opto and electronic devices based on graphene have been demonstrated on lab-scale models. However, the numerous challenges of graphene technology should not be underestimated. The lack of bandgap in graphene is its key fundamental challenge. Other technology challenges are related to the development of industrial methods to produce graphene with high and consistent quality at acceptable costs.


Details of the new report, table of contents and ordering information can be found on Electronics.ca Publications’ web site. View the report: Graphene Materials For Opto & Electronic Applications.


 



Graphene Materials Market Demand For Transparent Conductive Electrodes and Supercapacitors