Zion Market Research, the market research group announced the analysis report titled "Sapphire Technology Market: Global Industry Analysis, Size, Share, Growth, Trends, and Forecasts 2016–2024"
Sarasota, FL -- (SBWIRE) -- 09/16/2017 -- Global Sapphire Technology Market: Overview
Aluminum oxide in its pure form having no porosity and being dense in nature is nothing but sapphire. Sapphire is widely used as electronic substrate owing to high purity and low dislocation hence being an ideal material. In high frequency and high power CMOS integrated circuits, thin sapphire wafers are used as an insulating substrate. These chips are utilized in high power radio frequency applications such as cellular telephones, satellite communication systems, and others; these chips are known as sapphire or silicon chips. Both digital and analog circuitry integration exists in the SOS chips. Sapphire balances the generated heat in the circuit and even provides good insulation since sapphire has lower conductivity for electricity and higher for heat.
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Global Sapphire Technology Market: Segmentation
The global sapphire technology market is segmented on the basis of growth technologies, substrate wafer, devices, applications, and regions. The sapphire technology market is segmented into production method, sapphire substrate process and growth methods on the basis of the growth technologies. The sapphire substrate process segment is sub-segmented into lapping, CMP, slicing, and polishing. The production method segment is further sub-segmented into the liquid phase and thermal exfoliation, chemical vapor deposition, hybrid vapor phase epitaxy, and others. The sapphire growth method is sub-segmented into Czocharlski crystal pulling method, edge defined film fed growth method, Kyropoulos method, heat exchanger method and others. Based on the substrate wafer, the global sapphire technology market is categorized into its types, wafer size and plane orientation. On the basis of the devices, the global market is segregated into power IC market, power semiconductor market, and opto-semiconductor market. The global market is diversified based on applications as consumer electronics applications, aerospace and defense applications, ICT applications, power sector applications and others. The global sapphire technology market is diversified into regions such as Asia Pacific, North America, Europe, South America and Rest of the World.
Global Sapphire Technology Market: Growth Factors
The advantages provided by the sapphire has made it a versatile material that is mainly used in the semiconductor industry. The sapphire technology is incorporated in the fabrication of components utilized in the end-use products in industries such as power, consumer electronics, aerospace and defense and others thus contributing to the market growth. The silicon-on-sapphire chip consisting of the very thin layer of silicon in a wafer of sapphire at high temperature is widely used in consumer electronics sector. The use of sapphire is highly cost-effective as compared to other substrate materials, thus driving the market growth. The increase in demand for LED technology is also contributing to the market growth. The manufacturers are looking out for ways on developing solutions using the sapphire technology that will result in low operational costs and high profits. Owing to these benefits and features the sapphire technology market is getting a boost.
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Global Sapphire Technology Market: Regional Analysis
Asia Pacific is the dominating region owing to its largest geography, while the American regions are the fastest growing market. In the American region, the U.S. country dominates the sapphire technology market. Europe has also a promising market with Germany and the U.K. leading the market. Countries such as Japan, Taiwan, China, Korea, and others are having their ample share in the market growth of sapphire technology.
Global Sapphire Technology Market: Competitive Players
The major companies in the global sapphire technology market include Rubicon Technology, Monocrystal Inc., Namiki Precision Jewel Co. Ltd., GT Advanced Technology, DK Aztec Co. Ltd., Fraunhofer-Gesellschaft, Monocrystal Inc., Sapphire Technology Co., Ltd., Tera Xtal Technology Corporation, ACME Electronics Corporation, Sumitomo Chemical Co., Ltd. and Kyocera Corporation.
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