(Wireless-NewsWire.Com, February 26, 2018 ) Field-effect transistors (FETs) are a class of transistors used for signal amplification. An FET consists of two electrodes, a source, and a drain, which are connected by a channel. An electric charge is passed between the two electrodes via the channel. The conductivity of the FET will depend on how wide the electrical diameter or gate is. A small variation in the current will create a high variation in the voltage, thereby changing the amplitude of the signal created by the device. An organic FET (OFET) includes a source, a drain, a layer of organic semiconductor, and gate electrodes. OFETs incorporate an organic semiconductor as a channel. An insulator layer, such as SiO2, is placed between the organic semiconductor and gate electrode. OFETs are extensively researched for their use in flexible displays as well as their applicability with other IC chipsets. Unlike silicon-based FETs, OFETs can be printed on plastic, flexible substrates at a lower temperature using solution-based techniques. This is an added advantage that enables the wider application of OFETs across a variety of flexible displays.
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Covered in this report The report covers the present scenario and the growth prospects of the global organic field-effect transistor (OFET) market for 2017-2021. To calculate the market size, the report considers the investments by independent labs and universities and grants from government bodies that aim at exploring and enhancing the applicability of the technology in the future.
The market is divided into the following segments based on geography: -Americas -APAC -EMEA
Publisher's report, Global Organic Field-effect Transistor (OFET) Market 2017-2021, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.
Key vendors -University of California, Santa Barbara -Catalan Institute of Nanoscience and Nanotechnology -Graphenea and Chalmers University of Technology -National Institute of Material Sciences
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Market driver -Emergence of 4G standards -For a full, detailed list, view our report
Market challenge -Availability of diverse inorganic low-cost alternative technologies -For a full, detailed list, view our report
Market trend -Growing adoption of OLED displays in automotive applications -For a full, detailed list, view our report
Key questions answered in this report -What will the market size be in 2021 and what will the growth rate be- -What are the key market trends- -What is driving this market- -What are the challenges to market growth- -Who are the key vendors in this market space-
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