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- W3150923181 abstract "This work shows in details the design and performance of precise ink jet printing system which has been constructed for organic electronic technology analysis. The printing system was designed for laboratory investigation of inks and substrates compatibility. Printing system has been tested by its precision and abilities by fabrication electronic elements. PEDOT: PSS, Sun Tronic U6415, Nano silver based inks were tested. Glass, alumina ceramic, PEN foil and paper were tested as substrates. Printer was design in order to solve disadvantages of commercial systems. It has improved software with user friendly graphic interface, improved accuracy and precision. New drop watch solution has been develop. In the investigation, compatibility of materials and inks was tested. Methods of making inks and substrates compatible, by setting the substrate temperature, ink jet printhead voltage and geometry, were studied. Printed lines after sintering process become conductive. Ohmic resistance of lines was measured and their quality was evaluated. According to analytics prediction printed electronics will be developed rapidly in the next few years. It will play a crucial role in the future in a production of cheap, flexible consumer products. Each printing techniques brings variety of advantages, by using large scale flexography the price of final product can be lowered down more than two orders of magnitude according to single scale production. By combining layers printed with different inks, conductive, semi conductive and dielectric, complicated electronic structures can be manufactured. Organic electronic will never compete with silicon based electronic on field of efficiency or integration scale, this is not the way it’s evolves into. Organic electronic elements can fill the market niche with flexible, low cost simple electronic devices. Main targets are “smart clothes” – sensors integrated clothes for firefighters, one time usage low cost biosensor – paper glucose sensor for diabetics and other basic but very useful devices. [1] Low cost RFID antennas can bring more wireless applications of sensors to new areas of applications. [2] Screen printing can be found very useful for material science, flexibility of process variables gives an opportunity to optimize paste properties easily. Variety of substrates material can be tested using screen printing, there are no limitations to flexibility or hardness as in flexography are. In ITME and ITR screen printed organic electronic investigation are being carried. Applying this method in ITR are being printed UHF RFID antennas on flexible substrates using organic and nanoparticle pastes[3]. Investigation of using CNT [4] based screen printable pastes as conductive material for flexible, transparent electrode applications have been also carried in ITME [5]. Third mentioned technique Inkjet is widely described in following article. Basic advantage of this technique is that additional tools are not needed for printing different patterns. It is very useful technique for rapid prototyping of electronic devices. [6]Inkjet printing is a simplest way to print the pattern in small series or even only one time. This method bases on jetting single, pico litter volume drop of an ink “on demand”. Jetting single, round drop on demand is a critical variable of inkjet printing process.[7]Most common inkjet print heads are based on piezoelectric ceramic, electric pulse, sent from the driver, deform piezoelectric element which generates acoustic wave inside print head. Reaching nozzle edge wave generates drop.[8] There are print heads based on other that piezoelectric actuators, acoustic wave can be generated by small heater. Heater rapidly boils ink inside of the print head for a very short period of time, vapor bubble rapidly gain volume and rapidly disappears. This rapid volume change squeeze out drop through the nozzle." @default.
- W3150923181 created "2021-04-13" @default.
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- W3150923181 date "2011-01-01" @default.
- W3150923181 modified "2023-09-27" @default.
- W3150923181 title "Low cost Inkjet printing system for organic electronic applications." @default.
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