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Electrode design on plastic substrates using laser patterned double-sided tape and gold leaf

机译:激光图案双面胶带和金箔塑料基材电极设计

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The production of electrodes and sensors using plastic substrates has increased substantially for the last decades. Although devices are fabricated using plastic substrates suitable for the purpose of each device, it is difficult to find a process that can be used commonly for most types of plastics. In this paper, two kinds of electrode fabrication process that can be applied to most plastic films using kapton double sided tape and gold leaf are proposed. One is for the plastic film with adhesive and the other is for the film without adhesive. First, the kapton double-sided tape was patterned using a CO2 laser. After transfer double-sided tape to desired substrate, release paper was detached and gold leaf was attached on the exposed side of the tape. Then, the tape was appropriately removed according to the presence or absence of the adhesive. After that, the packaging was performed using an adhesive when the used film has adhesive, and otherwise, heat press was used for packaging. These processes have a variety of advantages such as inexpensive, fast-running and commonly applicable to many plastics. To prove its usability, impedance and minimum line width was measured.
机译:使用塑料基材的电极和传感器的生产大幅增加到过去几十年。尽管使用适合于每个装置的目的的塑料基材制造的装置,但是难以找到可以用于大多数类型的塑料的过程。在本文中,提出了两种电极制造工艺,其可以应用于使用Kapton双面胶带和金箔的大多数塑料薄膜。一个是具有粘合剂的塑料薄膜,另一个用于没有粘合剂的薄膜。首先,使用CO的kapton双面胶带图案化 2 激光。将双面胶带转移到所需的基板后,脱离剥离纸,并在胶带的暴露侧附着金箔。然后,根据粘合剂的存在或不存在,适当地除去胶带。之后,当使用薄膜具有粘合剂时,使用粘合剂进行包装,否则,使用热压件用于包装。这些工艺具有各种优点,例如廉价,快速运行,通常适用于许多塑料。为了证明其可用性,测量阻抗和最小线宽。

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