Additively Manufactured Flexible and Stretchable Antenna Systems for Wearable Applications

A. Shamim, M. Vaseem, An Sizhe, M. Farooqui
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引用次数: 3

Abstract

Emerging applications such as Internet of things (IoT) and wearable sensors require new kind of electronics that can be bent, stretched, worn, washed, etc. These electronics must be extremely low cost, to the extent that they become disposable. The flexibility and low-cost aspects can be addressed by using additive manufacturing techniques, such as inkjet and screen printing on light-weight and flexible substrates like paper or plastics. However, the best solution for wearable electronics is to print them directly on textiles. Though, the driving electronics are still predominantly realized in standard CMOS platforms but all the remaining parts of these systems, such as sensors, antennas, interconnects, etc, that are large and expensive to realize on CMOS, can be printed. These could be integrated with CMOS chips to demonstrate system level wearable examples. This paper will show some examples of such flexible and stretchable components and systems that have been realized through additive manufacturing. Performance issues under flexed and stretched conditions are discussed. The promising results of these designs indicate that the day when electronics can be printed like newspapers and magazines through roll-to-roll and reel-to-reel printing is not far away.
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用于可穿戴应用的增材制造柔性和可拉伸天线系统
物联网(IoT)和可穿戴传感器等新兴应用需要新型电子设备,这些电子设备可以弯曲、拉伸、磨损、洗涤等。这些电子产品的成本必须非常低,达到可以一次性使用的程度。灵活性和低成本方面可以通过使用增材制造技术来解决,例如在纸张或塑料等轻质和柔性基材上喷墨和丝网印刷。然而,可穿戴电子产品的最佳解决方案是直接在纺织品上打印。虽然,驱动电子器件仍然主要在标准CMOS平台上实现,但这些系统的所有其余部分,如传感器、天线、互连等,在CMOS上实现起来又大又贵,可以打印出来。这些可以与CMOS芯片集成,以演示系统级可穿戴示例。本文将展示通过增材制造实现的这种柔性和可拉伸部件和系统的一些示例。讨论了弯曲和拉伸条件下的性能问题。这些设计的令人鼓舞的结果表明,电子产品可以像报纸和杂志一样通过卷对卷和卷对卷印刷的日子不远了。
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