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Integrated interface electronics for capacitive MEMS inertial sensors

机译:电容式MEMS惯性传感器的集成接口电子设备

摘要

This thesis is composed of 13 publications and an overview of the research topic, which also summarizes the work. The research presented in this thesis concentrates on integrated circuits for the realization of interface electronics for capacitive MEMS (micro-electro-mechanical system) inertial sensors, i.e. accelerometers and gyroscopes. The research focuses on circuit techniques for capacitive detection and actuation and on high-voltage and clock generation within the sensor interface. Characteristics of capacitive accelerometers and gyroscopes and the electronic circuits for accessing the capacitive information in open- and closed-loop configurations are introduced in the thesis. One part of the experimental work, an accelerometer, is realized as a continuous-time closed-loop sensor, and is capable of achieving sub-micro-g resolution. The interface electronics is implemented in a 0.7-µm high-voltage technology. It consists of a force feedback loop, clock generation circuits, and a digitizer. Another part of the experimental work, an analog 2-axis gyroscope, is optimized not only for noise, but predominantly for low power consumption and a small chip area. The implementation includes a pseudo-continuous-time sense readout, analog continuous-time drive loop, phase-locked loop (PLL) for clock generation, and high-voltage circuits for electrostatic excitation and high-voltage detection. The interface is implemented in a 0.35-µm high-voltage technology within an active area of 2.5 mm². The gyroscope achieves a spot noise of 0.015 °/s/√H̅z̅ for the x-axis and 0.041 °/s/√H̅z̅ for the y-axis. Coherent demodulation and discrete-time signal processing are often an important part of the sensors and also typical examples that require clock signals. Thus, clock generation within the sensor interfaces is also reviewed. The related experimental work includes two integrated charge pump PLLs, which are optimized for compact realization but also considered with regard to their noise performance. Finally, this thesis discusses fully integrated high-voltage generation, which allows a higher electrostatic force and signal current in capacitive sensors. Open- and closed-loop Dickson charge pumps and high-voltage amplifiers have been realized fully on-chip, with the focus being on optimizing the chip area and on generating precise spurious free high-voltage signals up to 27 V.
机译:本论文由13种出版物和研究主题的概述组成,并对研究工作进行了总结。本文提出的研究集中在集成电路上,以实现用于电容式MEMS(微机电系统)惯性传感器(即加速度计和陀螺仪)的接口电子学。该研究的重点是用于电容性检测和驱动的电路技术,以及传感器接口内的高压和时钟生成。本文介绍了电容式加速度计和陀螺仪的特性以及在开环和闭环配置下访问电容信息的电子电路。实验工作的一部分,即加速度计,被实现为连续时间的闭环传感器,并且能够实现亚微克分辨率。接口电子器件采用0.7 µm高压技术实现。它由力反馈回路,时钟生成电路和数字转换器组成。实验工作的另一部分,即模拟2轴陀螺仪,不仅针对噪声进行了优化,而且还针对低功耗和小芯片面积进行了优化。该实现包括伪连续时间感测读数,模拟连续时间驱动环路,用于时钟生成的锁相环(PLL),以及用于静电激励和高压检测的高压电路。该接口采用0.35 µm高压技术在2.5mm²的有效区域内实现。陀螺仪的点噪声在x轴上为0.015°/ s /√H̅zand,在y轴上为0.041°/ s /√H̅z̅。相干解调和离散时间信号处理通常是传感器的重要组成部分,也是需要时钟信号的典型示例。因此,传感器接口内的时钟生成也将得到审查。相关的实验工作包括两个集成的电荷泵PLL,它们针对紧凑的实现进行了优化,但也考虑了其噪声性能。最后,本文讨论了完全集成的高压发生器,该发生器可以在电容式传感器中提供更高的静电力和信号电流。开环和闭环Dickson电荷泵和高压放大器已完全在芯片上实现,重点是优化芯片面积并生成高达27 V的精确无杂散高压信号。

著录项

  • 作者

    Aaltonen Lasse;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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