首页> 外文会议>International Conference on Microwaves, Radar and Wireless Communications >Inkjet-printed amp;#x201C;Zero-Poweramp;#x201D; wireless sensor and power management nodes for IoT and amp;#x201C;Smart Skinamp;#x201D; applications
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Inkjet-printed amp;#x201C;Zero-Poweramp;#x201D; wireless sensor and power management nodes for IoT and amp;#x201C;Smart Skinamp;#x201D; applications

机译:喷墨打印“零功率”无线传感器和电源管理节点为物联网和“智能皮肤”应用程序

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Nanotechnology and inkjet-printed flexible electronics, sensor and power management (PMU) nodes fabricated on paper, plastic and other polymer substrates are introduced as a sustainable ultra-low-cost solution for the first paradigms of Internet of Things (IoT), “Smart Skins” and “Zero-Power” applications. The paper will cover examples from the state-of-the-art of fully integrated wireless sensor modules on paper or flexible polymers. We will demonstrate numerous 3D multilayer paper-based and LCP-based RF/Microwave Structures that include embedded energy harvesters and PMU's, that could potentially set the foundation for the truly convergent batteryless wireless Internet-of-Things networks of the future with enhanced cognitive intelligence and “zero-power” operability through ambient energy harvesting. Examples from wearable (e.g.biomonitoring) antennas and RF modules will be reported, as well as the first integration of inkjet-printed nanotechnology-based (e.g.CNT, graphene) sensors on paper and organic substrates. The talk will close with a discussion about the challenges for inkjet-printed high-complexity modules as future directions in the area of environmentally-friendly (“green”) RF electronics and “smart house” conformal IoT topologies.
机译:纸张,塑料和其他聚合物基板上制造的纳米技术和喷墨印刷的柔性电子,传感器和电源管理(PMU)节点,作为可持续的超低成本解决方案的可持续超低成本解决方案(IOT),“Smart皮肤“和”零功率“应用。本文将涵盖纸张或柔性聚合物上完全集成的无线传感器模块的最先进的实例。我们将展示许多基于3D多层纸张和基于LCP的RF /微波结构,包括嵌入式能量收割机和PMU,这可能会为未来的真正收敛无线无线互联网网络的基础,以增强的认知智慧为基础。通过环境能量收集和“零功率”可操作性。将报告可穿戴(例如,e.g.biomonitoring)天线和射频模块的实例,以及纸和有机基材上的喷墨印刷纳米技术的第一次集成的基于喷墨印刷的纳米技术的(E.Gnt,Graphene)传感器。谈话将讨论讨论喷墨印刷的高度复杂性模块的挑战,作为环境友好(“绿色”)RF电子和“智能房屋”的未来方向,以及“智能房屋”的集合IOT拓扑。

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