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首页> 外文期刊>Sensors and Actuators, A. Physical >Polymer-based flexible tactile sensor up to 32 x 32 arrays integrated with interconnection terminals
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Polymer-based flexible tactile sensor up to 32 x 32 arrays integrated with interconnection terminals

机译:基于聚合物的柔性触觉传感器,最多32 x 32阵列,并带有互连端子

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摘要

A polymer-based flexible tactile sensor array integrated with interconnection terminals was fabricated with polymer MEMS technologies and electroplating. The tactile sensing arrays were made as 4 x 4,8 x 8, 16 x 16 and 32 x 32 sensing elements connected with a pluggable connector. Both the tactile sensor arrays and the interconnection terminals were fabricated together on the same polymer substrate in order to integrate them as a sensor module. The tactile sensor array with FFC (flexible flat cable) can be easily connected with the sensor array mounting PCB board by inserting the flexible cable into the pluggable connector socket on the board. The number and pitch of the fabricated interconnection terminals for 32 x 32 arrays were 68 and 500 mu m, respectively. Continuous normal force ranging 0-1 N was applied to a unit tactile sensor for evaluating the tactile sensor characteristics through the integrated interconnection terminals. The measured resistance increased linearly with normal force in the range of 0-0.6 N but the resistance variation rate decreased above 0.6 N. The variation rate of the resistance is about 2.0%/N in the range of 0-0.6 N and 1%/N in the range of 0.6-1 N. The characterization of the tactile sensor array for the rod bar and a fingertip was successfully evaluated using the custom designed controller and the window-based 3D display software.
机译:集成了互连端子的基于聚合物的柔性触觉传感器阵列是利用聚合物MEMS技术和电镀技术制成的。触觉感测阵列制成与可插拔连接器相连的4 x 4,8 x 8、16 x 16和32 x 32感测元件。触觉传感器阵列和互连端子都在同一聚合物基板上一起制造,以便将它们集成为传感器模块。通过将柔性电缆插入板上的可插拔连接器插座,可以轻松地将带有FFC(柔性扁平电缆)的触觉传感器阵列与传感器阵列安装PCB板连接。制造的用于32 x 32阵列的互连端子的数量和间距分别为68和500μm。范围为0-1 N的连续法向力通过集成的互连端子施加到单元触觉传感器,以评估触觉传感器的特性。在0-0.6 N的范围内,测得的电阻随法向力线性增加,但在0.6 N以上的电阻变化率减小。在0-0.6 N和1%/的范围内,电阻的变化率约为2.0%/ N。 N在0.6-1 N范围内。使用定制设计的控制器和基于窗口的3D显示软件成功评估了杆和指尖的触觉传感器阵列的特性。

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