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Design Fabrication and Failure Analysis of Stretchable Electrical Routings

机译:可伸缩电气布线的设计制作和故障分析

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摘要

Stretchable microelectromechanical systems (MEMS) possess higher mechanical deformability and adaptability than devices based on conventional solid and flexible substrates, hence they are particularly desirable for biomedical, optoelectronic, textile and other innovative applications. The stretchability performance can be evaluated by the failure strain of the embedded routing and the strain applied to the elastomeric substrate. The routings are divided into five forms according to their geometry: straight; wavy; wrinkly; island-bridge; and conductive-elastomeric. These designs are reviewed and their resistance-to-failure performance is investigated. The failure modeling, numerical analysis, and fabrication of routings are presented. The current review concludes with the essential factors of the stretchable electrical routing for achieving high performance, including routing angle, width and thickness. The future challenges of device integration and reliability assessment of the stretchable routings are addressed.
机译:可伸缩的微机电系统(MEMS)具有比基于传统的固态和柔性基板的设备更高的机械变形能力和适应性,因此,它们对于生物医学,光电,纺织和其他创新应用特别理想。可以通过嵌入布线的破坏应变和施加到弹性体基材上的应变来评估拉伸性能。布线根据其几何形状分为五种形式:直线型;波浪状的;皱纹岛桥和导电弹性体。审查了这些设计,并研究了它们的抗故障性能。介绍了故障建模,数值分析和工艺路线的制作。当前的综述以实现高性能的可伸缩电气布线的主要因素作为结束,包括布线角度,宽度和厚度。解决了设备集成和可扩展路由可靠性评估的未来挑战。

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