Albany, NY (PRWEB) December 15, 2013
Smart glass technology has received hundreds of millions of dollars in investment over the past few years. This has resulted in a rapid expansion of the production capacity globally. At the same time, the trends towards energy efficiency, comfort and privacy are creating demand. The demand is also being pushed by the fact that smart glass technology is also being exploited as a differentiator in the otherwise highly competitive and commoditised glass industry.
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Despite this and despite more than twenty years of technology development the market today remains relatively small. The foundation stones for future growth are however being set today, both on the supply and the demand side. Indeed, IDTechEx Research estimates that the value of this market will reach at least $700 million in 2013.
Smart glass refers to a multitude of technologies covering electro-chromic, thermo-chromic, suspended particle and liquid crystal technologies. Each technology offers a different set of attributes and cost structure, and is therefore aimed at a different market segment. Interestingly, there are slight variations even within a given technology, owing to the launch of successive technology generations.
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Electro-chromic technologies (EC) give the user the ability to tune the optical transmission from clear to dark. They however have a low switching speed, lack complete opacity, and offer only a mid-range price tag compared to other smart glass technologies. Thermo-chromic technologies, in contrast, give no control to the end user. Instead, the offer the lowest cost option.
This report will offer
Detailed assessment of each smart glass technology covering operating principles, materials, manufacturing processes, latest innovations and unresolved technology challenges
Detailed benchmarking of different smart glass technologies on the basis of cost, transmission, quality, controllability, power usage, etc...
Smart glass has already achieved limited commercial success. For example, suspended particles smart glass technology is being increasingly adopted in premium luxury cars such as the Mercedes Benz SLK. This technology was gained traction in this market segment owing to its high switching speed and high user controllability. Another high-profile success story is the new Boeing 787 Dreamliner which has incorporated electrochromatic technology onto its passenger windows.
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The building sector is potentially the highest volume market. There are still remaining challenges in this market however. In particular, smart glass windows are still over-priced and price parity will only be reached if global capacity utilisation reaches economies of scale in the range of 500,000 sqm, according to our detailed analysis of the cost structure and depreciation.
Smart Glass 2014-2024: Technologies, Markets, Forecasts offers:
Global map of production sites and production capacities
Price evolution for smart glass and detailed cost models including BoM and capital investment
Ten-year market forecast in $ and area broken down by technology (e.g., electro-chromic, thermo-chromic, suspended particles and liquid crystals)
Table of Contents
3.SMART GLASS TECHNOLOGIES
3.1.Chromogenic and Light Scattering Phenomena
3.2.2.Electrochromic smart glass device
3.2.3.First Generation Electrochromics: Tungsten Oxides - SAGE and View Co.
4.1.Glass Windows - from structural to functional elements
4.1.1.Building glass market
4.2.Flat Glass world market structure during economic crisis
4.3.Flat Glass World market structure now - 2013 and 2023
4.4.Residential and Commercial segments
Future Mobile Phone-Cell Phone Technology And Functions 2014-2024
This report concerns the future technologies and functions of mobile phones (cell phones) and, to a lesser extent, the allied products phablets and tablets. The primary emphasis is on what will become possible in the next decade. The potential for mobile phones seems almost limitless so, obviously, no one report can cover everything. Indeed, sensors and other components in a phone may be introduced for one purpose and then used for others in unforeseen ways. Barometers and gyroscopes being used for inertial navigation are examples of this. In other words no one can predict all the things a mobile phone will perform or even how its existing and future parts will combine in "sensor fusion", "structural components" and so on, to achieve new this.
Nonetheless, this report clarifies many key trends, unfulfilled needs and future routes to commercialisation. This vision is based on a plethora of interviews, event attendance, data searches and careful analysis by the PhD level researchers at IDTechEx. It recognises that improving the hardware and firmware are just as important as adding new infrastructure such as ubiquitous contactless charging and Real Time Locating Systems (RTLS).
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What is the importance of forthcoming functions and enabling technologies such as Indoor Positioning Systems (IPS), the Internet of Things (IoT) and printed electronics? For the next decade, what is the market for planned tightly-rollable displays and key parts of them such as transparent conductive films, of which use in mobile phones forms just a part? How can the human interface be radically improved and the intolerably brief availability of today's smart phones before recharging? What new components will be useful in mobile phones and how will they merge? It is all here with the main emphasis on what is coming beyond improved integrated circuits.
Table of Contents
1.EXECUTIVE SUMMARY AND CONCLUSIONS
1.4.Healthcare diagnostics and more
1.6.Internet of Things
2.1.Dreams and realities
2.2.Mobile phone improvements - responses from general survey
3.IMPROVED HUMAN INTERFACE AND HEALTHCARE
3.1.Human senses that can interact with a device or be a feature
3.1.1.What is wanted?
3.2.Roll out screen, photovoltaics, keyboard
Hydrogen And Fuel Cells 2014 - 2025: Forecasts, Technologies, Markets
This report covers stationary and mobile applications of fuel cells in addition to hydrogen infrastructure and delivery. The report addresses existing markets for fuel cells, providing current market sizes in addition to forecasts of growth for these and emerging application areas. It provides a description and analysis of the current technology choices as well as the latest R&D. In particular, we cover the value proposition, price and pricing trends for each application.
Trends and Geographical Analysis
Further important focal points of this market analysis includes the future potential, legislation, incentives and R&D efforts in different geographic zones - Europe, North America, and Asia, rest of the world with a particular focus on the BRICS countries.
Global Company Profiles
An accurate study of the leading players for every geographic zone has been undertaken with focus on OEMs, fuel cell system and stack suppliers.
Stationary Fuel Cell Applications, Forecasts and Players
The development of stationary applications of fuel cells (such as back-up power supplies), by contrast to mobile ones (such as for powering vehicles), has been led by different types of industrial companies with very different scopes and strategies depending on their geographic regions. Depending on the business opportunity certain players find lucrative niches. This report details the business models that have led to recent market successes giving a view of the economics and future growth potential. These businesses including addressing applications such as the IT back-up and energy supply of data center; Infrastructure (harbors, shipping and airport); mining; water treatment plants; micro-chip fabs; and large distributed generation.
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Mobile Fuel Cell Applications, Forecasts and Players
For the mobile applications of fuel cells this report details the market development for fuel cell cars, fuel cell buses, two- and three-wheelers, and the development of the H2 Infrastructure. An overview of other transportation applications is also provided including military applications, fuel cell powered vessels and material handling. The report compares the business model of the traditional fuel cell car manufacturers with those of new comers and analyzes trends of fuel cell system suppliers for fuel cell buses.
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