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Epidermal radio frequency electronics for wireless power transfer

机译:用于无线功率传输的表皮射频电子设备

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摘要

Epidermal electronic systems feature physical properties that approximate those of the skin, to enable intimate, long-lived skin interfaces for physiological measurements, human–machine interfaces and other applications that cannot be addressed by wearable hardware that is commercially available today. A primary challenge is power supply; the physical bulk, large mass and high mechanical modulus associated with conventional battery technologies can hinder efforts to achieve epidermal characteristics, and near-field power transfer schemes offer only a limited operating distance. Here we introduce an epidermal, far-field radio frequency (RF) power harvester built using a modularized collection of ultrathin antennas, rectifiers and voltage doublers. These components, separately fabricated and tested, can be integrated together via methods involving soft contact lamination. Systematic studies of the individual components and the overall performance in various dielectric environments highlight the key operational features of these systems and strategies for their optimization. The results suggest robust capabilities for battery-free RF power, with relevance to many emerging epidermal technologies.
机译:表皮电子系统具有近似于皮肤的物理特性,从而可以实现生理寿命的亲密,长寿命的皮肤界面,人机界面以及其他当今市售可穿戴硬件无法解决的应用。一个主要的挑战是电源。与常规电池技术相关的物理体积,大质量和高机械模量会阻碍实现表皮特性的努力,并且近场功率传输方案仅提供有限的工作距离。在这里,我们介绍了一种表皮,远场射频(RF)功率收集器,该收集器是使用超薄天线,整流器和倍压器的模块化集合构建而成的。这些单独制造和测试的组件可以通过涉及软接触层压的方法集成在一起。对各个组件和各种介电环境中整体性能的系统研究突出了这些系统的关键操作特性以及优化策略。结果表明,无电池射频功率具有强大的功能,与许多新兴的表皮技术有关。

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