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Radio-Frequency Flexible and Stretchable Electronics: The Need, Challenges and Opportunities

机译:射频柔性可伸缩电子产品:需求,挑战和机遇

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Successful integration of ultrathin flexible or stretchable systems with new applications, such as medical devices and biodegradable electronics, have intrigued many researchers and industries around the globe to seek materials and processes to create high-performance, non-invasive and cost-effective electronics to match those of state-of-the-art devices. Nevertheless, the crucial concept of transmitting data or power wirelessly for such unconventional devices has been difficult to realize due to limitations of radio-frequency (RF) electronics in individual components that form a wireless circuitry, such as antenna, transmission line, active devices, passive devices etc. To overcome such challenges, these components must be developed in a step-by-step manner, as each component faces a number of different challenges in ultrathin formats. Here, we report on materials and design considerations for fabricating flexible and stretchable electronics systems that operate in the microwave level. High-speed flexible active devices, including cost effective Si-based strained MOSFETs, GaAs-based HBTs and GaN-based HEMTs, performing at multi-gigahertz frequencies are presented. Furthermore, flexible or stretchable passive devices, including capacitors, inductors and transmission lines that are vital parts of a microwave circuitry are also demonstrated. We also present unique applications using the presented flexible or stretchable RF components, including wearable RF electronics and biodegradable RF electronics, which were impossible to achieve using conventional rigid, wafer-based technology. Further opportunities like implantable systems exist utilizing such ultrathin RF components, which are discussed in this report as well.
机译:成功地将超薄柔性或可拉伸系统与医疗设备和可生物降解电子产品等新应用集成,吸引了全球许多研究人员和行业寻求材料和工艺来制造高性能,无创且具有成本效益的电子产品,以与之匹敌最先进的设备。不过,由于射频(RF)电子设备在构成无线电路的单个组件(例如天线,传输线,有源设备,为了克服这些挑战,必须逐步开发这些组件,因为每个组件都面临着超薄格式的许多不同挑战。在这里,我们报告了在微波级制造柔性和可拉伸电子系统的材料和设计注意事项。提出了在数千兆赫兹频率下运行的高速灵活有源器件,包括经济高效的基于Si的应变MOSFET,基于GaAs的HBT和基于GaN的HEMT。此外,还展示了柔性或可拉伸的无源器件,包括电容器,电感器和传输线,它们是微波电路的重要组成部分。我们还介绍了使用提出的柔性或可拉伸RF组件的独特应用,包括可穿戴RF电子设备和可生物降解的RF电子设备,而使用传统的基于晶圆的刚性技术则无法实现这些应用。利用这种超薄RF组件还存在诸如可植入系统之类的更多机会,本报告中还将对此进行讨论。

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