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首页> 外文期刊>IEEE Electron Device Letters >Field-Controllable Flexible Strain Sensors Using Pentacene Semiconductors
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Field-Controllable Flexible Strain Sensors Using Pentacene Semiconductors

机译:使用并五苯半导体的现场可控柔性应变传感器

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摘要

In this letter, we present the first flexible strain sensor based on pentacene semiconductors, employing a transistor-like Wheatstone bridge configuration, where the ON/OFF state of the sensor is controlled by the bottom gate bias. The sensor was characterized with bending at 0deg, 45deg, and 90deg with respect to the bridge bias direction for different strains of 1deg/infin, 1.25deg/infin, 1.67deg/infin, and 2.5deg/infin. The sensitivity values at the ON state for the 0deg, 45deg, and 90deg bending exhibit 1.6, 7.2, and 4.1 nA/deg/infin, respectively, revealing the highest sensitivity for the diagonal (45deg) direction. It is expected that this field-controllable strain sensor leads to a reduced circuit complexity and a reduced cost when embedded into a large-area sensor array system by eliminating the need for additional switching devices.
机译:在这封信中,我们介绍了第一个基于并五苯半导体的挠性应变传感器,采用晶体管式惠斯通电桥结构,其中传感器的开/关状态由底栅偏置控制。对于1deg / infin,1.25deg / infin,1.67deg / infin和2.5deg / infin的不同应变,传感器的特征是相对于桥偏置方向在0deg,45deg和90deg处弯曲。对于0度,45度和90度弯曲,ON状态下的灵敏度值分别显示为1.6、7.2和4.1 nA / deg / infin,显示出对角线(45deg)方向的最高灵敏度。期望通过消除对附加开关设备的需求,当将这种现场可控的应变传感器嵌入到大面积传感器阵列系统中时,将导致电路复杂性的降低和成本的降低。

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