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梯度结构电容式触觉传感器,具有高灵敏度和超宽线性范围。

Gradient Architecture-Enabled Capacitive Tactile Sensor with High Sensitivity and Ultrabroad Linearity Range.

机构信息

Joint Key Laboratory of the Ministry of Education Institute of Applied Physics and Materials Engineering University of Macau, Avenida da Universidade, Taipa, Macau, 999078, China.

Shenzhen Shineway Technology Corporation, Shenzhen, Guangdong, 518000, China.

出版信息

Small. 2021 Oct;17(43):e2103312. doi: 10.1002/smll.202103312. Epub 2021 Sep 29.

Abstract

The sensitivity and linearity are critical parameters that can preserve the high pressure-resolution across a wide range and simplify the signal processing process of flexible tactile sensors. Although extensive micro-structured dielectrics have been explored to improve the sensitivity of capacitive sensors, the attenuation of sensitivity with increasing pressure is yet to be fully resolved. Herein, a novel dielectric layer based on the gradient micro-dome architecture (GDA) is presented to simultaneously realize the high sensitivity and ultrabroad linearity range of capacitive sensors. The gradient micro-dome pixels with rationally collocated amount and height can effectively regulate the contact area and hence enable the linear variation in effective dielectric constant of the GDA dielectric layer under varying pressures. With systematical optimization, the sensor exhibits the high sensitivity of 0.065 kPa in an ultrabroad linearity range up to 1700 kPa, which is first reported. Based on the excellent sensitivity and linearity, the high pressure-resolution can be preserved across the full scale of pressure spectrum. Therefore, potential applications such as all-round physiological signal detection in diverse scenarios, control instruction transmission with combinatorial force inputs, and convenient Morse code communication with non-overlapping capacitance signals are successfully demonstrated through a single sensor device.

摘要

灵敏度和线性度是至关重要的参数,它们可以在宽范围内保持高压力分辨率,并简化柔性触觉传感器的信号处理过程。尽管已经探索了广泛的微结构电介质来提高电容传感器的灵敏度,但灵敏度随压力增加而衰减的问题尚未得到完全解决。本文提出了一种基于梯度微穹顶结构(GDA)的新型介电层,以同时实现电容传感器的高灵敏度和超宽线性度范围。具有合理布置数量和高度的梯度微穹顶像素可以有效地调节接触面积,从而使 GDA 介电层的有效介电常数在不同压力下呈线性变化。通过系统优化,传感器在超宽的线性度范围内(高达 1700kPa)表现出 0.065kPa 的高灵敏度,这是首次报道。基于优异的灵敏度和线性度,可以在整个压力谱范围内保持高压力分辨率。因此,通过单个传感器设备,成功演示了各种场景下全方位生理信号检测、组合力输入的控制指令传输以及非重叠电容信号的便捷莫尔斯码通信等潜在应用。

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