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Silicon nanomembranes for fingertip electronics

机译:指尖电子用硅纳米膜

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We describe the use of semiconductor nanomaterials, advanced fabrication methods and unusual device designs for a class of electronics capable of integration onto the inner and outer surfaces of thin, elastomeric sheets in closed-tube geometries, specially formed for mounting on the fingertips. Multifunctional systems of this type allow electrotactile stimulation with electrode arrays multiplexed using silicon nanomembrane (Si NM) diodes, high-sensitivity strain monitoring with Si NM gauges, and tactile sensing with elastomeric capacitors. Analytical calculations and finite element modeling of the mechanics quantitatively capture the key behaviors during fabrication/assembly, mounting and use. The results provide design guidelines that highlight the importance of the NM geometry in achieving the required mechanical properties. This type of technology could be used in applications ranging from human-machine interfaces to instrumented surgical gloves and many others.
机译:我们描述了半导体纳米材料的使用,先进的制造方法和不寻常的设备设计,它们针对一类电子产品,这些电子产品可以集成到密闭管几何形状的弹性薄板的内表面和外表面中,专门用于安装在指尖上。这种类型的多功能系统允许使用硅纳米膜(Si NM)二极管多路复用的电极阵列进行电触觉刺激,使用Si NM量规监测高灵敏度应变,并使用弹性体电容器进行触觉传感。力学的分析计算和有限元建模可以定量地捕获制造/组装,安装和使用过程中的关键行为。结果提供了设计准则,突出了NM几何形状在实现所需机械性能中的重要性。这种类型的技术可以用于从人机界面到器械手术手套等许多其他应用。

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