Design of a SAW-based sensor combined with a micro-hotplate for biological applications

B. V. Lahijani, H. Badri Ghavifekr
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引用次数: 1

Abstract

A SAW-based sensor for chemical and biological application is designed in this paper. An Aluminum nitride piezoelectric layer is used over a bulk micromachined silicon substrate, so the design is compatible with CMOS Process. An additional micro-hotplate is integrated on system for thermal adjustment of sensing layer on required temperature and thermal stabilization of whole sensor. The SAW device with a working frequency of 610 MHz is built over a 21µm membrane. The frequency response and sensing property of the sensor are achieved via finite element analysis. The temperature distribution of the micro-hotplate is demonstrated.
结合生物微热板的电锯传感器设计
本文设计了一种基于saw的化学和生物传感器。氮化铝压电层被用在微加工硅衬底上,因此该设计与CMOS工艺兼容。在系统上增加了一个微热板,用于根据需要的温度对传感层进行热调节,并对整个传感器进行热稳定。工作频率为610 MHz的SAW器件构建在21µm的膜上。通过有限元分析获得了传感器的频率响应和传感特性。演示了微热板的温度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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