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Novel RF CMOS integrated circuits and systems for broadband dielectric spectroscopy.

机译:用于宽带介电谱的新型RF CMOS集成电路和系统。

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摘要

Broadband dielectric spectroscopy has proven to be a valuable technique for characterization of chemicals and biomaterials. It has the great potential to become an indispensable and cost-effective tool in point-of-care medical applications due to its label-free and non-invasive operation. However, most of the existing dielectric spectroscopy instruments require bulky, heavy and expensive measurement set-up, restricting their use to only special applications in industry and laboratories. Therefore, integrated dielectric spectroscopy on silicon capable of direct detection of chemicals/biomaterials' complex permittivity can yield significant cost and size reduction, system integration, portability, enormous processing, and high throughput.;A CMOS wideband dielectric spectroscopy system is proposed for chemical and biological material characterization. The complex permittivity detection is performed using a configurable harmonic-rejecting receiver capable of indirectly measuring the complex admittance of sensing capacitor exposed to the material-under-test (MUT) and subject to RF signal excitation with a frequency range of 0.62-10 GHz. The sensing capacitor is embedded in a voltage divider topology with a fixed capacitor and the relative variations in the magnitude and phase of the voltages across the capacitors are used to find the real and imaginary parts of the permittivity. The sensor achieves an rms permittivity error of less than 1% over the entire operation bandwidth.;Using a sub-harmonic mixing scheme, the system can perform complex permittivity measurements from 0.62 to 10 GHz while requiring an input signal source with frequency range of only from 5 to 10 GHz. Thereby, the permittivity measurement system can be easily made self-sustained by implementing a 5-10 GHz frequency synthesizer on the same chip. One of the key building blocks in such a frequency synthesizer is the voltage-controlled oscillator (VCO) which has to cover an octave of frequency range. A novel low-phase-noise wide-tuning range VCO is presented using a triple-band LC resonator. The implemented VCO in 0.18mum CMOS technology achieves a continuous tuning range of 86.7% from 5.12 GHz to 12.95 GHz while drawing 5 to 10 mA current from 1-V supply. The measured phase noise at 1 MHz offset from carrier frequencies of 5.9, 9.12 and 12.25 GHz is -122.9, -117.1 and -110.5 dBc/Hz, respectively. Also, a dual-band quadrature voltage-controlled oscillator (QVCO) is presented using a transformer-based high-order LC-ring resonator which inherently provides quadrature signals without requiring noisy coupling transistors as in traditional approaches. The proposed resonator shows two possible oscillation frequencies which are exploited to realize a wide-tuning range QVCO employing a mode-switching transistor network. Due to the use of transformers, the oscillator has minimal area penalty compared to the conventional designs. The implemented prototype in a 65-nm CMOS process achieves a continuous tuning range of 77.8% from 2.75 GHz to 6.25 GHz while consuming 9.7 to 15.6 mA current from 0.6-V supply. The measured phase noise figure-of-merit (FoM) at 1 MHz offset ranges from 184 dB to 188.2 dB throughout the entire tuning range. The QVCO also exhibits good quadrature accuracy with 1.5º maximum phase error and occupies a relatively small silicon area of 0.35 mm2.
机译:宽带介电谱已被证明是表征化学物质和生物材料的宝贵技术。由于其无标签且无创的操作,它具有成为护理点医疗应用中必不可少且具有成本效益的工具的巨大潜力。然而,大多数现有的介电谱仪器需要庞大,笨重和昂贵的测量装置,将它们的使用仅限于工业和实验室的特殊应用。因此,能够直接检测化学物质/生物材料的复介电常数的硅上集成介电谱可以显着降低成本和尺寸,系统集成度,便携性,巨大的处理能力和高通量。;提出了一种用于化学和生物化学领域的CMOS宽带介电谱系统。生物材料表征。使用可配置的谐波抑制接收器执行复介电常数检测,该接收器能够间接测量暴露于被测材料(MUT)并经受频率范围为0.62-10 GHz的RF信号的传感电容器的复导纳。感测电容器被嵌入具有固定电容器的分压器拓扑中,并且电容器两端电压的大小和相位的相对变化用于找到介电常数的实部和虚部。该传感器在整个工作带宽上的均方根介电常数误差均小于1%;使用亚谐波混频方案,该系统可以在0.62至10 GHz的频率范围内执行复杂的介电常数测量,而仅需输入信号源的频率范围仅为5至10 GHz。因此,通过在同一芯片上实现5-10 GHz频率合成器,可以很容易地使介电常数测量系统自我维持。这种频率合成器的关键组成部分之一是压控振荡器(VCO),它必须覆盖八度的频率范围。利用三频LC谐振器提出了一种新颖的低相位噪声宽调谐范围VCO。在0.18mum CMOS技术中实现的VCO在5.12 GHz至12.95 GHz范围内实现了86.7%的连续调谐范围,同时从1 V电源汲取5至10 mA电流。从5.9、9.12和12.25 GHz载波频率偏移1 MHz时测得的相位噪声分别为-122.9,-117.1和-110.5 dBc / Hz。此外,提出了一种使用基于变压器的高阶LC环形谐振器的双频正交压控振荡器(QVCO),该振荡器固有地提供正交信号,而无需像传统方法那样需要噪声耦合晶体管。所提出的谐振器示出了两个可能的振荡频率,它们被利用来利用模式切换晶体管网络来实现宽调谐范围QVCO。由于使用了变压器,与传统设计相比,振荡器的面积损失最小。在65 nm CMOS工艺中实现的原型在2.75 GHz至6.25 GHz范围内实现了77.8%的连续调谐范围,同时在0.6V电源下消耗9.7至15.6 mA电流。在整个调谐范围内,在1 MHz偏移下测得的相位噪声品质因数(FoM)为184 dB至188.2 dB。 QVCO还具有良好的正交精度,最大相位误差为1.5º,并且占用的硅面积相对较小,为0.35 mm2。

著录项

  • 作者

    Moslehi Bajestan, Masoud.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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