激光图案化驻极体超声传感器的制备及其特性

IF 0.5 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Kakeru Kobayashi, Yoshiaki Kawada, Kensuke Kageyama
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引用次数: 0

摘要

在本研究中,驻极体电容器传感器(ECS)是一种机电交换装置,由夹在两个电极之间的驻极体组成,通过激光烧蚀在绝缘电极的PTFE(聚四氟乙烯)层中形成作为间隔物的脊和作为间隙的槽。然后使用PTFE驻极体制备了ECS,并研究了其电荷保持和机载超声波发射和接收特性。具有激光图案化绝缘电极的ECS的电荷保持特性略低于二氧化硅聚集体驻极体的电荷保持特征。随着绝缘层厚度的增加或凹槽宽度的减小,发射和接收灵敏度显著增加,然后在发射和接收测量时达到峰值并降低。通过激光图案化获得的具有最高峰值灵敏度的ECS具有与具有二氧化硅聚集体驻极体的传统ECS相当的带宽,但是峰值灵敏度提高了高达8dB。因此,激光图案化有助于提高ECS的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication and characteristics of electret ultrasonic-sensor using laser patterning

In this study, in an electret capacitor sensor (ECS), which is an electromechanical exchange device consisting of an electret sandwiched between two electrodes, ridges as spacers and grooves as gaps were formed in the PTFE (polytetrafluoroethylene) layer of the insulating electrode by laser ablation. The ECSs were then fabricated using PTFE electrets, and the charge retention and airborne ultrasonic wave transmitting and receiving characteristics were investigated. The charge retention characteristics of the ECS with laser-patterned insulating electrodes were slightly lower than those of the silica-aggregate electret. As the thickness of the insulating layer increased or the groove width decreased, the transmitting and receiving sensitivity increased significantly and then peaked and degraded at the measurements of transmitting and receiving. The ECS with the highest peak sensitivity obtained by laser patterning had a bandwidth comparable to that of the conventional ECS with silica aggregate electret, but the peak sensitivity was improved by up to 8 dB. Therefore, laser patterning could contribute to the improvement of ECS performance.

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来源期刊
Electronics and Communications in Japan
Electronics and Communications in Japan 工程技术-工程:电子与电气
CiteScore
0.60
自引率
0.00%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Electronics and Communications in Japan (ECJ) publishes papers translated from the Transactions of the Institute of Electrical Engineers of Japan 12 times per year as an official journal of the Institute of Electrical Engineers of Japan (IEEJ). ECJ aims to provide world-class researches in highly diverse and sophisticated areas of Electrical and Electronic Engineering as well as in related disciplines with emphasis on electronic circuits, controls and communications. ECJ focuses on the following fields: - Electronic theory and circuits, - Control theory, - Communications, - Cryptography, - Biomedical fields, - Surveillance, - Robotics, - Sensors and actuators, - Micromachines, - Image analysis and signal analysis, - New materials. For works related to the science, technology, and applications of electric power, please refer to the sister journal Electrical Engineering in Japan (EEJ).
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