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Piezoresistive Polymer Diaphragm Sensor Array Using Conductive Elastomeric Nanocomposite Films for Skin-Mountable Keypad Applications

机译:使用导电弹性纳米复合膜的压阻聚合物膜片传感器阵列,用于皮肤固定式键盘应用

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This paper reports on arrayed piezoresistive polymer diaphragm sensor made entirely of elastomer for skin-mountable keypad applications. Two-step transfer of conductive elastomeric nanocomposites (CENs) combined with soft lithographic techniques enables the achievement of elastic sensing layers with strip-patterned CENs embedded in polydimethylsiloxane (PDMS) channels. After assembling with an elastomeric bump layer, simple all-elastomer sensor architectures are successfully demonstrated. The activated buttons of the sensor can be easily and distinguishably identified by sensing the simultaneous changes in the electrical resistance of CEN strips with respect to the applied force. The straightforward sensing mechanism makes it possible to detect the exact locations of input with negligible crosstalk between adjacent sensing buttons to each other. The usability of the sensor platform as a skin-mountable keypad is also demonstrated by integrating on a wrist. [2014-0072]
机译:本文报道了完全由弹性体制成的阵列压阻聚合物膜片传感器,适用于可皮肤安装的键盘应用。导电弹性体纳米复合材料(CEN)的两步转移与软光刻技术相结合,可以实现具有嵌入在聚二甲基硅氧烷(PDMS)通道中的带状CEN的弹性传感层。在装配了弹性凸点层后,成功地展示了简单的全弹性传感器架构。传感器的激活按钮可以通过感测CEN条的电阻相对于施加的力的同时变化而轻松而有区别地识别。直观的感应机制使检测彼此相邻感应按钮之间串扰可忽略不计的输入的精确位置成为可能。集成在手腕上还展示了传感器平台作为可皮肤安装的键盘的可用性。 [2014-0072]

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