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A Multi-Sensor Chip for Monitoring the Quality of Drinking Water.

机译:用于监控饮用水质量的多传感器芯片。

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摘要

Drinking water should meet quality standards for the safety and satisfaction of the consumer. Quality parameters of interest include turbidity, total dissolved solids (TDS), and temperature. It is desirable to monitor these parameters in typically good sources of water to indicate if and when the water becomes unacceptable for drinking. The Environmental Protection Agency recommends that turbidity levels in drinking water remain under 5 NTU and that TDS levels remain under 500 mg/L.;A MEMS based multi-sensor chip has been developed for the purpose of monitoring turbidity, TDS, and temperature in a sample of drinking water. The benefits of MEMS technology over conventional sensors include compact size, low power consumption, integration capability, and low cost bulk manufacturing. Two revisions of the multi-sensor silicon chip were designed, fabricated, and tested. The layout of the chip and the fabrication process were redesigned in the second spin to provide more robust and sensitive responses.;The sensor structures include photodiodes, temperature diodes, interdigitated electrodes in direct contact with the sample, and capacitive interdigitated fingers. The sensors were characterized with the use of commercially available thermometers, turbidity standard solutions, and TDS standard solutions. Signal conditioning circuitry was implemented to convert each sensor output to a DC level between 0 and 1 V. The sensors were shown to be responsive to temperature, turbidity, and TDS in the ranges applicable to drinking water, although obstacles relating to reliability and signal conditioning still remain.
机译:饮用水应符合质量标准,以确保消费者的安全和满意。感兴趣的质量参数包括浊度,总溶解固体(TDS)和温度。期望在通常良好的水源中监视这些参数以指示水是否以及何时变得不能饮用。环境保护署建议饮用水中的浊度水平保持在5 NTU以下,TDS水平保持在500 mg / L以下。已开发出一种基于MEMS的多传感器芯片,用于监测水中的浊度,TDS和温度。饮用水样本。与传统传感器相比,MEMS技术的优势包括紧凑的尺寸,低功耗,集成能力和低成本的批量制造。设计,制造和测试了多传感器硅芯片的两个修订版。在第二次旋转中重新设计了芯片的布局和制造工艺,以提供更鲁棒和敏感的响应。传感器结构包括光电二极管,温度二极管,与样品直接接触的叉指电极和电容叉指。传感器的特点是使用市售的温度计,浊度标准溶液和TDS标准溶液。实施信号调节电路可将每个传感器的输出转换为介于0和1 V之间的DC电平。尽管在可靠性和信号调节方面存在障碍,但这些传感器在适用于饮用水的范围内显示出对温度,浊度和TDS的响应仍然保持。

著录项

  • 作者

    Purrington, Heidi M.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Electrical engineering.;Environmental engineering.
  • 学位 M.S.
  • 年度 2010
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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