A Novel Method for Evaluation of Band Width of MEMS-Based Embedded Gas Sensor

R. Kumar, S. A. Imam, M. Beg
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引用次数: 1

Abstract

This paper represents a novel method of evaluation of band width of MEMS based embedded gas sensor by using the concept of adding white Noise. In this paper we are providing the details of MEMS based embedded gas sensor and adding a concept to evaluate narrowed bandwidth of MEMS based gas sensor. Novel technique includes the concept of amplitude demodulation and temperature modulation. The gas sensor virtual component encloses the sensor and its associated analog circuitry into a digital shell so that all interface connections to the virtual component are digital. The system architecture supports an array of gas sensor elements. System response time is limited by the sensor and is complex. Example gas sensor characterization results are presented showing isothermal response to carbon monoxide molecules with detection sensitivity better than 100 nanomoles/mole. In the present scenario all the sensors output is communicated through computer system so evaluation of Centre frequency and bandwidth is important. Bandwidth of MEMS based gas sensor is measured and compared with help of spectral analysis.
基于mems的嵌入式气体传感器带宽评估新方法
本文提出了一种利用添加白噪声的概念来评估基于MEMS的嵌入式气体传感器带宽的新方法。在本文中,我们提供了基于MEMS的嵌入式气体传感器的细节,并增加了一个概念来评估基于MEMS的气体传感器的窄带带宽。新技术包括幅度解调和温度调制的概念。气体传感器虚拟组件将传感器及其相关的模拟电路封装到数字外壳中,以便与虚拟组件的所有接口连接都是数字的。该系统架构支持一系列气体传感器元件。系统的响应时间受传感器的限制,而且很复杂。举例气体传感器的表征结果显示一氧化碳分子的等温响应,检测灵敏度优于100纳摩尔/摩尔。在这种情况下,所有传感器的输出都通过计算机系统进行通信,因此中心频率和带宽的评估很重要。利用光谱分析对MEMS气体传感器的带宽进行了测量和比较。
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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