Jaafar Ahmad, Schoinas Spyridon, Passeraub Philippe
Institute of Industrial Sciences and Technologies, University of Applied Sciences and Arts Western Switzerland (HEPIA/HES-SO Geneva), CH-1202 Geneva, Switzerland.
Sensors (Basel). 2021 Oct 13;21(20):6802. doi: 10.3390/s21206802.
The purpose of this paper is to present a newly developed process for the fabrication of multilayer circuits based on the pad-printing technique. Even though the maturity level, in terms of accuracy, substrate type and print size of several printing industrial processes is relatively high, the fabrication complexity of multilayer printed electronics remains relatively high. Due to its versatility, the pad-printing technique allows the superposition of printed conductive and insulating layers. Compared to other printing processes, its main advantage is the ability to print on various substrates even on flexible, curved or irregular surfaces. Silver-based inks were used for the formulation of conductive layers while UV inks were employed to fulfil the functionality of the insulating layers. To demonstrate the functionality of the pad-printing results, a multilayer test pattern has been designed and printed on Kapton. Furthermore, to demonstrate the efficacy of this approach, a multilayer circuit composed of three stacked layers has been designed and printed on various substrates including Kapton, paper and wood. This electronic circuit controls an array of LEDs through the manipulation of a two-key capacitive touch sensor. This study, allowed us to define recommendations for the different parameters leading to high printing quality. We expect a long-term beneficial impact of this study towards a low-cost, fast, and environmental-friendly production of printed electronics.
本文的目的是介绍一种基于移印技术的多层电路制造新方法。尽管在精度、基板类型和几种印刷工业工艺的印刷尺寸方面成熟度相对较高,但多层印刷电子产品的制造复杂度仍然较高。由于其通用性,移印技术允许印刷导电层和绝缘层叠加。与其他印刷工艺相比,其主要优点是能够在各种基板上印刷,甚至在柔性、弯曲或不规则表面上印刷。银基油墨用于配制导电层,而紫外油墨用于实现绝缘层的功能。为了展示移印结果的功能,设计并在聚酰亚胺薄膜上印刷了一个多层测试图案。此外,为了证明这种方法的有效性,设计并在包括聚酰亚胺薄膜、纸张和木材在内的各种基板上印刷了一个由三层堆叠组成的多层电路。该电子电路通过操作一个双键电容式触摸传感器来控制一组发光二极管。这项研究使我们能够为实现高印刷质量的不同参数定义建议。我们预计这项研究将对低成本、快速且环保的印刷电子产品生产产生长期的有益影响。