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Flexible Tactile Sensor Skin Using Wireless Sensor Elements Coupled with 2D Microwaves

机译:使用无线传感器元件和2D微波的灵活触觉传感器皮肤

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The stretchable sensor skin we propose uses microwaves propagating in a two-Dimensional Signal Transmission (2DST) sheet. A small tactile sensor chip with a pair of Resonant Proximity Connectors (RPCs) couples with 2D microwaves carrying signals. Chip operating power is also supplied by 2D microwaves. The RPC is a spiral electrode whose arc length is a quarter of the electromagnetic wavelength. Chip operating power is supplied by 2D microwaves. Sensor chips are connected to the 2DST sheet by RPCs without electrical contacts anywhere on the sheet. Resonance induced at the electrode reduces impedance between the connector and the conductive layer of the 2DST sheet, enabling sensor chips to be connected stably to the sheet. Experimental results on the RPC show the concept to be effective. We fabricated a 1-bit (touch detection) tactile sensor element consisting of a RFID-tag and RPCs, and confirmed in experiments that the sensor element operates in a stretchable 2DST sheet.
机译:我们提出的可拉伸传感器皮肤使用在二维信号传输(2DST)薄片中传播的微波。带有一对谐振接近连接器(RPC)的小型触觉传感器芯片与承载信号的2D微波耦合。芯片工作功率也由2D微波提供。 RPC是一种螺旋电极,其电弧长度为电磁波长的四分之一。芯片工作功率由2D微波提供。传感器芯片通过RPC连接到2DST薄板上,而薄板上的任何地方都没有电接触。在电极处感应出的谐振会降低2DST薄板的连接器和导电层之间的阻抗,从而使传感器芯片能够稳定地连接到薄板上。在RPC上的实验结果表明该概念是有效的。我们制造了一个由RFID标签和RPC组成的1位(触摸检测)触觉传感器元件,并在实验中确认该传感器元件在可拉伸的2DST薄板中运行。

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