基于CMOS的新型SAW生物/化学传感器的设计与制造

O. Tigli, M. Zaghloul
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引用次数: 11

摘要

介绍了一种基于CMOS技术的表面声波生物/化学传感器的设计、制造、后处理和表征。传感器采用AMI 1.5 mum 2 metal, 2 poly工艺设计。设计并完成了一套独特的无掩模后处理程序。这三个后处理步骤与任何CMOS技术完全兼容。这使得任何信号控制/处理电路可以很容易地集成在同一芯片上。ZnO是产生SAW的压电材料。对溅射ZnO进行了全面的表征和图像化优化。SAW延迟线特性中引入的主要新颖之处是:用于温度控制的嵌入式加热元件,补偿和旨在消除边缘反射和最小化三重传输干扰的吸声器。这两个属性都是通过使用CMOS层来设计的,而不会影响SAW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。
Design and fabrication of a novel SAW bio/chemical sensor in CMOS
The design, fabrication, post-processing and characterization of a novel SAW (Surface Acoustic Wave) based bio/chemical sensor in CMOS technology is introduced. The sensors are designed in AMI 1.5 mum 2 metal, 2 poly process. A unique maskless post processing sequence is designed and completed. The three post-processing steps are fully compatible with any CMOS technology. This allows any signal control/processing circuitry to be easily integrated on the same chip. ZnO is used as the piezoelectric material for the SAW generation. A thorough characterization and patterning optimization of the sputtered ZnO was carried out. The major novelties that are introduced in the SAW delay line features are: The embedded heater elements for temperature control, compensation and acoustic absorbers that are designed to eliminate edge reflections and minimize triple transit interference. Both of these attributes are designed by using the CMOS layers without disturbing the SAW performance
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