基于激光的快速成型方法,生产可拉伸和符合要求的电子系统

F. Axisa, F. Bossuyt, T. Vervust, J. Vanfleteren
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引用次数: 19

摘要

出于用户舒适性和可靠性的考虑,用于人体相关应用的电子电路理想情况下应该是柔软的,弹性的和可拉伸的,适用于智能纺织品应用,也适用于需要高水平生物相容性的应用。我们正在开发几种使用MID(模制互连设备)和低成本标准PCB技术(印刷电路板)的卷对卷技术,以生产柔软,可拉伸,与人类兼容的包装。所有这些技术都是基于一个牺牲层,在这个牺牲层上形成曲线形的互连。这些可拉伸的互连连接在一起的不可拉伸的功能岛SMD组件焊接。然后将整个系统嵌入可拉伸的聚合物基体、硅橡胶或聚氨酯中。所有这些技术都使用PCB生产的标准方法(层压,光刻,铜蚀刻,回流炉无铅焊接)。为了简化可伸缩电子电路的开发,开发了一种快速原型技术。从CAD设计到定型需要不到1天的时间:刚性或柔性的标准部件或电子子系统通过YAG激光成型弯曲互连互连,然后在硅橡胶中成型。从任何一种柔性电路,可拉伸电路可以用这种方法生产。可拉伸弯曲互连可以拉伸100%以上,并且可以在20%的变形下维持至少3000次循环。本文介绍了可拉伸电子工艺的总体概述,详细介绍了使用YAG激光切割的快速原型技术,以及在欧洲项目STELLA(大面积可拉伸电子)[7]和比利时项目SWEET(纺织品可拉伸和可水洗电子)[8]和BIOFLEX(生物相容性可拉伸电子系统)[9]框架下开发的演示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser based fast prototyping methodology of producing stretchable and conformable electronic systems
For user comfort and reliability reasons, electronic circuits for human body related applications should ideally be soft, elastic and stretchable, for smart textile application, but also for applications which need a high level of biocompatibility. We are developing several roll-to roll technologies using MID (Molded Interconnect Device) and low cost standard PCB technology (Printed Circuit Board) to produce soft, stretchable, human-compatible packaging. All those technologies are based on a sacrificial layer on where meander shaped interconnections are patterned. Those stretchable interconnections are connecting together non-stretchable functional islands on where SMD components are soldered. All the system is then embedded in stretchable polymer matrix, silicone rubber or polyurethane. All these technologies are using standards methodologies for PCB productions (lamination, photolithography, copper etching, reflow oven lead free soldering). A fast prototyping technology has been developed to ease the development of stretchable electronic circuits. Less than 1 day is necessary from CAD design to finalization: Rigid or flexible standard components or electronic sub-systems are interconnected with YAG laser shaped meander interconnections and molded in silicone rubber afterwards. From any kind of flexible circuit, stretchable circuit can be produced using this methodology. The stretchable meander interconnection can be stretched more than 100% and can sustain at least 3000 cycles at 20% of deformation. This paper presents a general overview of stretchable electronic process, a detailed view of the fast prototyping technology using YAG laser cutting, and the demonstrators developed in the frame of the European project STELLA (Stretchable Electronic for large area) [7] and in the Belgian project SWEET (Stretchable and washable electronic in textile) [8] and BIOFLEX (Biocompatible stretchable electronic system) [9].
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