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可扩展制造可焊接和可拉伸生理感应系统。

Scalable Manufacturing of Solderable and Stretchable Physiologic Sensing Systems.

机构信息

Department of Bioengineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA, 92093, USA.

Department of NanoEngineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA, 92093, USA.

出版信息

Adv Mater. 2017 Oct;29(39). doi: 10.1002/adma.201701312. Epub 2017 Aug 24.

DOI:10.1002/adma.201701312
PMID:28837756
Abstract

Methods for microfabrication of solderable and stretchable sensing systems (S4s) and a scaled production of adhesive-integrated active S4s for health monitoring are presented. S4s' excellent solderability is achieved by the sputter-deposited nickel-vanadium and gold pad metal layers and copper interconnection. The donor substrate, which is modified with "PI islands" to become selectively adhesive for the S4s, allows the heterogeneous devices to be integrated with large-area adhesives for packaging. The feasibility for S4-based health monitoring is demonstrated by developing an S4 integrated with a strain gauge and an onboard optical indication circuit. Owing to S4s' compatibility with the standard printed circuit board assembly processes, a variety of commercially available surface mount chip components, such as the wafer level chip scale packages, chip resistors, and light-emitting diodes, can be reflow-soldered onto S4s without modifications, demonstrating the versatile and modular nature of S4s. Tegaderm-integrated S4 respiration sensors are tested for robustness for cyclic deformation, maximum stretchability, durability, and biocompatibility for multiday wear time. The results of the tests and demonstration of the respiration sensing indicate that the adhesive-integrated S4s can provide end users a way for unobtrusive health monitoring.

摘要

介绍了可焊接和可拉伸传感系统(S4s)的微制造方法,以及用于健康监测的具有粘性集成式有源 S4s 的规模化生产。通过溅射沉积的镍-钒和金焊盘金属层以及铜互连,实现了 S4s 的优异可焊接性。经过“PI 岛”修饰的施主基底对 S4s 具有选择性粘性,允许异种器件与大面积粘合剂集成,用于封装。通过开发与应变计和板载光学指示电路集成的 S4,证明了基于 S4 的健康监测的可行性。由于 S4s 与标准印刷电路板组装工艺兼容,各种市售的表面贴装芯片组件,如晶圆级芯片规模封装、芯片电阻和发光二极管,无需修改即可回流焊接到 S4s 上,展示了 S4s 的多功能性和模块化。对 Tegaderm 集成的 S4 呼吸传感器进行了循环变形、最大拉伸性、耐用性和多天佩戴时间的生物相容性的稳健性测试。呼吸感应测试和演示的结果表明,粘性集成的 S4s 可以为最终用户提供一种不引人注目的健康监测方式。

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