电容感应
电容
触觉传感器
材料科学
电容器
声学
测距
光电子学
灵敏度(控制系统)
电感器
电感
电阻抗
电磁线圈
电气工程
电压
电极
计算机科学
物理
电子工程
工程类
人工智能
机器人
电信
量子力学
作者
Baoqing Nie,Ting Yao,Yiqiu Zhang,Jian Liu,Xinjian Chen
摘要
A droplet-based flexible wireless force sensor has been developed for remote tactile-sensing applications. By integration of a droplet-based capacitive sensing unit and two circular planar coils, this inductor-capacitor (LC) passive sensor offers a platform for the mechanical force detection in a wireless transmitting mode. Under external loads, the membrane surface of the sensor deforms the underlying elastic droplet uniformly, introducing a capacitance response in tens of picofarads. The LC circuit transduces the applied force into corresponding variations of its resonance frequency, which is detected by an external electromagnetic coupling coil. Specifically, the liquid droplet features a mechanosensitive plasticity, which results in an increased device sensitivity as high as 2.72 MHz N−1. The high dielectric property of the droplet endows our sensor with high tolerance for noise and large capacitance values (20–40 pF), the highest value in the literature for the LC passive devices in comparable dimensions. It achieves excellent reproducibility under periodical loads ranging from 0 to 1.56 N and temperature fluctuations ranging from 10 °C to 55 °C. As an interesting conceptual demonstration, the flexible device has been configured into a fingertip-amounted setting in a highly compact package (of 11 mm × 11 mm × 0.25 mm) for remote contact force sensing in the table tennis game.
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