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A Highly Sensitive Force Sensor with Fast Response Based on Interlocked Arrays of Indium Tin Oxide Nanosprings toward Human Tactile Perception

机译:基于对人类触觉感知的氧化铟锡纳米弹簧互锁阵列的快速响应的高灵敏力传感器。

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摘要

Development of a sensor for recognizing tactile feeling is essential for realizing artificial systems that can perform human tactile functions for various applications. For achieving the capability of human tactile sensation, highly sensitive responses are required not only to static pressures but also to dynamic high-frequency vibrations. Here, a highly sensitive force sensor based on interlocked arrays of vertically aligned indium tin oxide (ITO) nanospring structures fabricated on a flexible polyethylene naphthalate substrate is presented. The combination of rigid ITO on the flexible substrate, its unique nanoscale spring-like geometry, and the interlocking configuration results in sensitive responses to both static and dynamic pressures with a sub-millisecond response time over wide pressure and frequency ranges appropriate for human tactile perception. Consequently, the sensor is capable of classifying eight fabrics possessing complex patterns with 99.8% accuracy. In addition, a flexible 14 x 14 force sensor matrix array is demonstrated, thus demonstrating the integration capability.
机译:开发用于识别触觉的传感器对于实现可以执行各种应用的人类触觉功能的人工系统至关重要。为了获得人类的触感,不仅需要对静态压力而且还需要对动态高频振动的高度敏感的响应。在此,提出了一种高灵敏度的力传感器,该传感器基于在柔性聚萘二甲酸乙二醇酯基板上制造的垂直排列的铟锡氧化物(ITO)纳米弹簧结构的互锁阵列。柔性基板上的刚性ITO,其独特的纳米级类似于弹簧的几何形状以及互锁配置的组合,可在对人体触觉适用的宽压力和频率范围内,对静态和动态压力做出敏感响应,响应时间低于毫秒。 。因此,该传感器能够以99.8%的精度对具有复杂花样的八种织物进行分类。此外,还展示了一个灵活的14 x 14力传感器矩阵阵列,从而展示了集成能力。

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