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Fabrication of Resistor Component Using Magnetostrictive Inkjet Printing at Room Temperature

机译:在室温下使用磁致伸缩喷墨印刷法制造电阻器组件

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The present study shows fabrication of electronic resistor by means of inexpensive inkjet printing method on the photonic paper substrate at room temperature. The objective of this work is to demonstrate the feasibility of the inkjet printed resistor with different resistance values for the application of electronic devices. Inkjet printing process is performed using magnetostrictive inkjet printhead designed by our laboratory which use a magnetostrictive material, Terfenol-D rod as an actuation mechanism. For printing resistor component on the photonic paper substrate, we use two functional inks: one is the silver nanoparticle ink, which is used to make conducting layer, the other one is poly (3,4-ethylene dioxythiophene): poly (styrene sulfonate) (PEDOT:PSS) ink, which is used to make resistive layers. The resistivity of the printed resistor is altered with different resistance values with respect to the printing layers, different ink formulations, and length of the resistor line. An electronic circuit is sketched and tested using fabricated resistor component. The printed resistor with various resistance values provides an important building block for low cost, printed electronic circuit application. From these results, we can show that magnetostrictive inkjet printhead has a potential to fabricate electronic devices. (C) 2019 Society for Imaging Science and Technology.
机译:本研究表明在室温下通过廉价的喷墨印刷方法在光子纸基材上制造电子电阻器。这项工作的目的是证明具有不同电阻值的喷墨印刷电阻器在电子设备应用中的可行性。喷墨打印过程是使用我们实验室设计的磁致伸缩喷墨打印头进行的,该打印头使用磁致伸缩材料Terfenol-D杆作为驱动机构。为了在光子纸基板上印刷电阻器组件,我们使用两种功能性墨水:一种是银纳米颗粒墨水,用于制造导电层,另一种是聚(3,4-乙烯二氧噻吩):聚(苯乙烯磺酸盐) (PEDOT:PSS)墨水,用于制造电阻层。相对于印刷层,不同油墨配方和电阻线的长度,印刷电阻的电阻率会随不同的电阻值而变化。使用制造的电阻器组件绘制电路并进行测试。具有各种电阻值的印刷电阻器为低成本印刷电子电路应用提供了重要的组成部分。从这些结果可以看出,磁致伸缩喷墨打印头具有制造电子设备的潜力。 (C)2019影像科学与技术学会。

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