触觉传感器
电容
振荡(细胞信号)
触觉显示器
电子皮肤
机制(生物学)
触觉知觉
计算机科学
电感
声学
人工智能
电气工程
计算机硬件
计算机视觉
工程类
神经科学
材料科学
电压
光电子学
物理
心理学
感知
机器人
生物
量子力学
遗传学
电极
作者
Yuanzhao Wu,Yiwei Liu,Youlin Zhou,Qikui Man,Chao Hu,Waqas Asghar,Fali Li,Zhe Yu,Jie Shang,Gang Liu,Meiyong Liao,Run‐Wei Li
出处
期刊:Science robotics
[American Association for the Advancement of Science]
日期:2018-09-19
卷期号:3 (22)
被引量:314
标识
DOI:10.1126/scirobotics.aat0429
摘要
) and a very low detection limit of 10 micronewtons (or 0.3 pascals). The integration of the tactile sensor with an inductance-capacitance (LC) oscillation circuit enabled direct transduction of force stimuli into digital-frequency signals. The frequency increased with the force stimuli, consistent with the relationship between stimuli and human responses. The minimum loading of 50 micronewtons (or 1.25 pascals), which is less than the sensing threshold value of human skin, was also encoded into the frequency, similar to the pulse waveform of humans. The proposed tactile sensor not only showed desirable sensitivity and low detection limit but also exhibited transduction of digital-frequency signals like human stimuli responses. These features of the GMI-based tactile sensor show potential for its applications in smart prosthetics, especially prosthetic limbs that can functionally replace natural limbs.
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