Global OLED Display Market Forecast 2015-2025 : The Rise of Plastic and Flexible Displays

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Global OLED Display Market Forecast 2015-2025 : The Rise of Plastic and Flexible Displays Advancement in manufacturing induced a remarkable change in the way technology is perceived by customers around the globe. In the mid-1980s, Eastman Kodak pioneered the OLED technology that denoted the arrival of flexible consumer electronics products. Different from the traditional light emanating diodes, OLED utilizes organic substances which glow on the introduction of electricity. This revolutionary material is an indispensable part of the new design approach that is predicted to intensely decrease the weight and thickness of the television. OLED displays are light in weight, more slender, and they offer a discernible change in the performance of color when compared with liquid crystal displays, otherwise called LCDs. The slender and more flexible OLED displays are progressively incorporated in smartphones and televisions. A recent report on the global market for OLED display for TV panels says that the market will experience steady growth during the next decade, at a remarkable 25% CAGR from 2015 to 2025. Plastic and Flexible Displays: A Significant and Evolving Technology LED displays are slender, light in weight, and offer better performance of color as compared to backlit liquid crystal displays (LCD). OLED displays are now produced in bulk for cellular telephones, and OLEDs will keep gaining market share, progressively inching ahead of LCD technology. The consequent advancement will be plastic and flexible displays. IDTechEx predicts the first flagship phone having a flexible display to ship in 2017. In view of this situation, the market for plastic and flexible AMOLED displays will surge to US$16 billion by 2020. The boom of plastic and flexible displays will be guided by a shift from glass substrates to plastic substrates such as polyimide. In spite of this, glass-based displays will remain a vital technology, particularly in TV applications where scale-up and cost diminution are still huge difficulties. Curved and flat OLED TVs were recently introduced by Samsung and LG. Although manufacturers investing in R&D pertaining to LCD backlights enhanced with quantum dots, these latest ‘quantum dot LCD’ TVs will be a less expensive redesign from existing sets. In any case, the market for OLED TV panels will experience consistent development throughout the following decade, with an anticipated 25% CAGR. Browse the full Global OLED Display Market Report : http://www.mrrse.com/oled-displayforecast Automotive and Aerospace Application Sectors Predicted to Demonstrate Highest Growth Rate The global OLED display market, by application, can be segmented into: Automotive and aerospace, mobile phone displays, TV panels, tablet and notebook displays, industrial and professional displays, wearable electronics, microdisplays, and others. Market analysts forecast that the automotive and aerospace application sectors will represent the highest growth during the forecast horizon, followed by TV and wearable electronics. The

<strong>Global</strong> <strong>OLED</strong> <strong>Display</strong> <strong>Market</strong> <strong>Forecast</strong> <strong>2015</strong>-<strong>2025</strong> :<br />

<strong>The</strong> <strong>Rise</strong> <strong>of</strong> <strong>Plastic</strong> <strong>and</strong> <strong>Flexible</strong> <strong>Display</strong>s<br />

Advancement in manufacturing induced a remarkable change in the way technology is perceived<br />

by customers around the globe. In the mid-1980s, Eastman Kodak pioneered the <strong>OLED</strong><br />

technology that denoted the arrival <strong>of</strong> flexible consumer electronics products. Different from the<br />

traditional light emanating diodes, <strong>OLED</strong> utilizes organic substances which glow on the introduction<br />

<strong>of</strong> electricity. This revolutionary material is an indispensable part <strong>of</strong> the new design approach that is<br />

predicted to intensely decrease the weight <strong>and</strong> thickness <strong>of</strong> the television. <strong>OLED</strong> displays are light<br />

in weight, more slender, <strong>and</strong> they <strong>of</strong>fer a discernible change in the performance <strong>of</strong> color when<br />

compared with liquid crystal displays, otherwise called LCDs. <strong>The</strong> slender <strong>and</strong> more flexible <strong>OLED</strong><br />

displays are progressively incorporated in smartphones <strong>and</strong> televisions.<br />

A recent report on the global market for <strong>OLED</strong> display for TV panels says that the market will<br />

experience steady growth during the next decade, at a remarkable 25% CAGR from <strong>2015</strong> to <strong>2025</strong>.<br />

<strong>Plastic</strong> <strong>and</strong> <strong>Flexible</strong> <strong>Display</strong>s: A Significant <strong>and</strong> Evolving Technology<br />

LED displays are slender, light in weight, <strong>and</strong> <strong>of</strong>fer better performance <strong>of</strong> color as compared to<br />

backlit liquid crystal displays (LCD). <strong>OLED</strong> displays are now produced in bulk for cellular<br />

telephones, <strong>and</strong> <strong>OLED</strong>s will keep gaining market share, progressively inching ahead <strong>of</strong> LCD<br />

technology. <strong>The</strong> consequent advancement will be plastic <strong>and</strong> flexible displays. IDTechEx predicts<br />

the first flagship phone having a flexible display to ship in 2017. In view <strong>of</strong> this situation, the market<br />

for plastic <strong>and</strong> flexible AM<strong>OLED</strong> displays will surge to US$16 billion by 2020.<br />

<strong>The</strong> boom <strong>of</strong> plastic <strong>and</strong> flexible displays will be guided by a shift from glass substrates to plastic<br />

substrates such as polyimide. In spite <strong>of</strong> this, glass-based displays will remain a vital technology,<br />

particularly in TV applications where scale-up <strong>and</strong> cost diminution are still huge difficulties. Curved<br />

<strong>and</strong> flat <strong>OLED</strong> TVs were recently introduced by Samsung <strong>and</strong> LG. Although manufacturers<br />

investing in R&D pertaining to LCD backlights enhanced with quantum dots, these latest ‘quantum<br />

dot LCD’ TVs will be a less expensive redesign from existing sets. In any case, the market for<br />

<strong>OLED</strong> TV panels will experience consistent development throughout the following decade, with an<br />

anticipated 25% CAGR.<br />

Browse the full <strong>Global</strong> <strong>OLED</strong> <strong>Display</strong> <strong>Market</strong> Report : http://www.mrrse.com/oled-displayforecast<br />

Automotive <strong>and</strong> Aerospace Application Sectors Predicted to Demonstrate Highest Growth<br />

Rate<br />

<strong>The</strong> global <strong>OLED</strong> display market, by application, can be segmented into: Automotive <strong>and</strong><br />

aerospace, mobile phone displays, TV panels, tablet <strong>and</strong> notebook displays, industrial <strong>and</strong><br />

pr<strong>of</strong>essional displays, wearable electronics, microdisplays, <strong>and</strong> others.<br />

<strong>Market</strong> analysts forecast that the automotive <strong>and</strong> aerospace application sectors will represent the<br />

highest growth during the forecast horizon, followed by TV <strong>and</strong> wearable electronics. <strong>The</strong>


application sector <strong>of</strong> microdisplays, tablets, <strong>and</strong> notebook will also exhibit a good growth rate. A<br />

moderate growth rate will be registered in the mobile phones <strong>and</strong> other applications segments.<br />

Some <strong>of</strong> the top players operating in the global <strong>OLED</strong> market are Heraeus, Beijing Aglaia<br />

Technology Development Co., Mitsubishi Chemical Corporation, Jilin Optical & Electronic Materials<br />

Co., Daejoo Electronic Materials Company, Universal <strong>Display</strong> Corporation, Dow Chemical, Konica<br />

Minolta, <strong>and</strong> Toray Industries.<br />

Table <strong>of</strong> Contents<br />

1 Table <strong>of</strong> Contents<br />

1 Table <strong>of</strong> Contents 2<br />

1.1 List <strong>of</strong> Tables 4<br />

1.2 List <strong>of</strong> Figures 6<br />

2 MRRSE Research Report Guidance 8<br />

3 Definitions 8<br />

3.1 Multiparameter Patient Monitoring Devices 8<br />

3.2 High Acuity Monitors 8<br />

3.2.1 Critical Care Monitors 8<br />

3.2.2 MRI Compatible Monitors 8<br />

3.2.3 Perioperative Care Monitors 8<br />

3.3 Mid Acuity Monitors 8<br />

3.3.1 Emergency Care Monitors 8<br />

3.3.2 Post Anesthesia Care Monitors 8<br />

3.4 Low Acuity Monitors 8<br />

3.4.1 Ambulatory Monitors 8<br />

3.4.2 Vital Signs Monitors 8<br />

3.5 Central Stations 8<br />

4 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Europe, Revenue, 2006–2020 9<br />

4.1 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Europe, Revenue ($m), 2006–2013 9<br />

4.2 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Europe, Revenue ($m), 2013–2020 9<br />

5 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Germany, Revenue <strong>and</strong> Volume, 2006–<br />

2020 11<br />

5.1 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Germany, Revenue ($m), 2006–2013 11<br />

5.2 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Germany, Revenue ($m), 2013–2020 11<br />

5.3 High Acuity Monitors <strong>Market</strong>, Germany 12<br />

5.3.1 High Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2006–2013 12<br />

5.3.2 High Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2013–2020 12<br />

5.3.3 High Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2006–2013 13<br />

5.3.4 High Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2013–2020 13<br />

5.4 Mid Acuity Monitors <strong>Market</strong>, Germany 14


5.4.1 Mid Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2006–2013 14<br />

5.4.2 Mid Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2013–2020 14<br />

5.4.3 Mid Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2006–2013 15<br />

5.4.4 Mid Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2013–2020 15<br />

5.5 Low Acuity Monitors <strong>Market</strong>, Germany 16<br />

5.5.1 Low Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2006–2013 16<br />

5.5.2 Low Acuity Monitors <strong>Market</strong>, Germany, Revenue ($m), 2013–2020 16<br />

5.5.3 Low Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2006–2013 17<br />

5.5.4 Low Acuity Monitors <strong>Market</strong>, Germany, Volume (‘000), 2013–2020 17<br />

5.6 Central Stations <strong>Market</strong>, Germany 18<br />

5.6.1 Central Stations <strong>Market</strong>, Germany, Revenue ($m), 2006–2013 18<br />

5.6.2 Central Stations <strong>Market</strong>, Germany, Revenue ($m), 2013–2020 18<br />

5.6.3 Central Stations <strong>Market</strong>, Germany, Volume (‘000), 2006–2013 19<br />

5.6.4 Central Stations <strong>Market</strong>, Germany, Volume (‘000), 2013–2020 19<br />

5.7 Multiparameter Patient Monitoring Devices <strong>Market</strong>, Germany, Key Company Share by Revenue<br />

(%), 2013 20<br />

6 Multiparameter Patient Monitoring Devices <strong>Market</strong>, France, Revenue <strong>and</strong> Volume, 2006–<br />

2020 22<br />

6.1 Multiparameter Patient Monitoring Devices <strong>Market</strong>, France, Revenue ($m), 2006–2013 22<br />

6.2 Multiparameter Patient Monitoring Devices <strong>Market</strong>, France, Revenue ($m), 2013–2020 22<br />

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Mineral fibers are fibers made from either natural or synthetic minerals. Usually, the term man<br />

made mineral fibers refers to the synthetic fibers such as fiberglass, stone wool <strong>and</strong> ceramic fibers.<br />

Industrial applications <strong>of</strong> mineral fibers include thermal insulation, soundpro<strong>of</strong>ing filtration <strong>and</strong><br />

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Piperic acid is extracted from black pepper seeds. Piperic acid is obtained by carrying out<br />

hydrolysis <strong>of</strong> alkaloid piperine. Piperic acid is an essential intermediate used for the synthesis <strong>of</strong><br />

compounds such as piperonal. It is also widely used to produce flavorants, perfumes, drugs,<br />

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