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CMOS analog correlator based glucose sensor readout circuit.

机译:基于CMOS模拟相关器的葡萄糖传感器读出电路。

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摘要

Recent investigations show research and development of alternative methods of glucose sensing using electrochemical biosensors to help significantly reduce the difficulties associated with treating diabetes. The integration of microelectronic circuit technology with biosensors is generating greater research interest. The advantages of small size and less power consumption of integrated circuits (ICs) are helping with the realization of biosensors for improved performance. The major challenges involving designing of readout ICs for the electrochemical biosensors are accuracy and range.;In this research work, an analog correlator based readout circuit for amperometric glucose electrochemical biosensors is designed and implemented. It is designed to work with the output range of a novel microneedle based non-enzymatic painless glucose sensor. This minimally invasive sensor is designed to measure the glucose level of the interstitial fluid in epidermis layer. The analog correlator based readout circuit can achieve the required input current range (5µA to 30µA) from the microneedle based glucose sensor and show a linear output in that range. The analog correlator based glucose sensor readout circuit offers lower noise and wider dynamic range compared to the conventional TIA architecture and is a better solution for the readout circuit for the microneedle based sensor.;For the CMOS IC implementation, the analog correlator based readout circuit is designed and fabricated in 0.35um CMOS process. The design and analysis of the individual circuit components including the op-amp and multiplier are presented in this work. The op-amp achieves a 118.3 dB gain and 47.3 degrees phase margin. The circuit DC response for input range of 5uA to 30uA gives a linear output voltage range from 0.21V to 1.38V. The total output RMS noise is simulated to be 6.6mVRMS. The circuit has a mean error of 1.6% and consumes 5.1mW of power. The total area of the proposed readout circuit is 300um × 167um.
机译:最近的研究显示了使用电化学生物传感器的葡萄糖传感替代方法的研究和开发,以帮助显着减少与治疗糖尿病相关的困难。微电子电路技术与生物传感器的集成引起了更大的研究兴趣。集成电路(IC)体积小,功耗低的优势有助于实现生物传感器以提高性能。涉及设计电化学生物传感器读出IC的主要挑战是准确性和范围。在这项研究工作中,设计并实现了基于模拟相关器的电流型葡萄糖电化学生物传感器读出电路。它旨在与基于新型微针的非酶促无痛葡萄糖传感器的输出范围配合使用。该微创传感器设计用于测量表皮层中组织液的葡萄糖水平。基于模拟相关器的读出电路可以从基于微针的葡萄糖传感器获得所需的输入电流范围(5μA至30μA),并在该范围内显示线性输出。与传统的TIA架构相比,基于模拟相关器的葡萄糖传感器读出电路具有更低的噪声和更宽的动态范围,是针对基于微针的传感器的读出电路的更好解决方案。对于CMOS IC实现,基于模拟相关器的读出电路为采用0.35um CMOS工艺设计和制造。这项工作介绍了各个电路组件(包括运算放大器和乘法器)的设计和分析。运算放大器可实现118.3 dB的增益和47.3度的相位裕度。输入范围为5uA至30uA的电路DC响应可提供0.21V至1.38V的线性输出电压范围。总输出RMS噪声仿真为6.6mVRMS。该电路的平均误差为1.6%,功耗为5.1mW。建议的读出电路的总面积为300um×167um。

著录项

  • 作者

    Shenoy, Varun.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering General.;Engineering Electronics and Electrical.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 81 p.
  • 总页数 81
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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