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Advances in High-Resolution Microscale Impedance Sensors

机译:高分辨率微观阻抗传感器的进步

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摘要

Sensors based on impedance transduction have been well consolidated in the industry for decades. Today, the downscaling of the size of sensing elements to micrometric and submicrometric dimensions is enabled by the diffusion of lithographic processes and fostered by the convergence of complementary disciplines such as microelectronics, photonics, biology, electrochemistry, and material science, all focusing on energy and information manipulation at the micro- and nanoscale. Although such a miniaturization trend is pivotal in supporting the pervasiveness of sensors (in the context of mass deployment paradigms such as smart city, home and body monitoring networks, and Internet of Things), it also presents new challenges for the detection electronics, reaching the zeptoFarad domain. In this tutorial review, a selection of examples is illustrated with the purpose of distilling key indications and guidelines for the design of high-resolution impedance readout circuits and sensors. The applications span from biological cells to inertial and ultrasonic MEMS sensors, environmental monitoring, and integrated photonics.
机译:几十年来,基于阻抗变换的传感器在业界得到了很好的巩固。如今,传感元件尺寸向微米和亚微米尺寸的缩小是由光刻工艺的扩散实现的,并由微电子、光子学、生物学、电化学和材料科学等互补学科的融合推动的,所有这些学科都专注于微纳尺度的能量和信息操纵。尽管这种小型化趋势对于支持传感器的普及至关重要(在智能城市、家庭和身体监测网络以及物联网等大规模部署模式的背景下),但它也为探测电子设备带来了新的挑战,并进入了Zeptoforad领域。在本教程回顾中,选择了一些示例,旨在提取高分辨率阻抗读出电路和传感器设计的关键指示和指南。应用范围从生物细胞到惯性和超声波MEMS传感器、环境监测和集成光子学。

著录项

  • 来源
    《Journal of Sensors》 |2017年第1期|共15页
  • 作者

    Carminati Marco;

  • 作者单位

    Politecn Milan Dipartimento Elettron Informaz &

    Bioingn I-20133 Milan Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

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