电化学运动传感器技术与应用

V. Krishtop
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引用次数: 6

摘要

本文讨论了电化学换能器的技术及其应用。电化学系统是一种很有前途的新型微电子元件基础。其中一个重要的方向是设计微型电化学加速度和压力传感器,而电化学转移是最有前途的技术之一。电化学换能器非常敏感和节能,最适合测量微弱的机械运动。其基本原理是:在硅片上形成微电极,并将硅片置于装有液体电解质的容器中。在外部机械信号的影响下,电解质液体开始移动(由于惯性或压力)并在电极之间转移离子。所产生的电流与外部机械信号成正比。我们开发了一种新的微电子技术用于电化学换能器,并设计了基于新型电化学微电子芯片的新型仪器。目前,ECTs可用于各种工程任务。在铁路、海啸预警系统、海底站电化学水听器和地质勘探系统、精确方位测定惯性系统中,ect被用于记录地面振荡。版权所有©VBRI出版社。
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Technology and application оf electrochemical motion sensors
In this paper, we consider technology and application of electrochemical transducers (ECT). Electrochemical systems are very promising for the development of a new element base for microelectronics. One of the most important directions is the design of micro-sized electrochemical acceleration and pressure sensors, and one of the most promising technologies is electrochemical transfer. Electrochemical transducers are very sensitive and energy-efficient and best suited for measuring weak mechanical movements. The basic principle consist in the following: microelectrodes are formed on a silicon chip and the chip is placed in a container with liquid electrolyte. Under the influence of an external mechanical signal, the electrolyte liquid starts moving (by inertia or by pressure) and transfers ions between the electrodes. The generated electric current is proportional to the external mechanical signal. We have developed a new microelectronic technology for electrochemical transducers, and have designed new instruments based on new electrochemical microelectronic chips. Currently, ECTs are applied for a variety of engineering tasks. ECTs are used to record the ground oscillation in the railway, in the tsunami early warning system, in electrochemical hydrophones for sea-bottom stations and for geoexploration systems, in the precise azimuth determination inertial systems. Copyright © VBRI Press.
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