6E-4 Acoustic ID-Tags for Under Water Use

A. Rønnekleiv
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Abstract

Passive ID-tags that could be read remotely is an area of growing commercial interest. Here we look at a small tag in the low MHz range for under water use, based on acoustic resonances. It could be used in sea water, where RF-signals are heavily damped, and it could easily be made small, as there is no need for bulky antennas and hence will have an advantage over the more common RF-ID-tags based on electromagnetic waves. The tag is intended for an as yet unspecified laboratory use, where we may assume a moderate distance between tag and detector system. As a design example we look at a circular tag with diameter 300 micrometer, and resonances in the 1 to 4 MHz range. The resonators are circular nitride membranes over an evacuated cavity in the tag substrate. We review the analysis of the resonators, which is based on coupling of the acoustic vibration modes of the membranes and the tag substrate through the fluid A detailed response of an ID-tag with on the order of ten to twenty resonators may be found easily and fast from predetermined data for resonators and substrate. Both radiation losses and viscosity losses in water are included. It is found that resonator Q's are limited to about 20 in water at 4 MHz, and further that the viscosity leads to a small shift in the resonance frequencies. The number of identities for a tag design as discussed here could be in the range 50,000 to 100,000 or more.
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6E-4水下使用声学id标签
可以远程读取的被动式身份标签是一个日益增长的商业兴趣领域。在这里,我们看一个小标签在低兆赫兹范围内用于水下使用,基于声学共振。它可以在射频信号严重衰减的海水中使用,而且它可以很容易地变小,因为不需要笨重的天线,因此与基于电磁波的更常见的射频识别标签相比,它具有优势。标签是为一个尚未指定的实验室使用,我们可以假设标签和检测器系统之间的距离适中。作为一个设计例子,我们看一个直径300微米的圆形标签,共振在1到4 MHz范围内。谐振器是位于标签基板上的真空腔上的圆形氮化膜。我们回顾了基于膜和标签衬底通过流体耦合声振动模式的谐振器的分析,从谐振器和衬底的预定数据可以很容易和快速地找到10到20个谐振器的id标签的详细响应。辐射损失和水中粘度损失都包括在内。发现在4 MHz时,谐振器Q在水中被限制在20左右,并且粘度导致谐振频率的小位移。这里讨论的标签设计的标识数量可能在50,000到100,000之间,甚至更多。
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