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Optimizing voltage gain, thermal noise, and settling time of CMOS operational amplifiers by using moderate inversion.

机译:通过使用适度的反转来优化CMOS运算放大器的电压增益,热噪声和建立时间。

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摘要

Complementary metal-oxide silicon (CMOS) amplifiers used in switched capacitor circuits require high voltage gain, low input-referred thermal-noise voltage, and fast settling time. This dissertation presents optimization techniques for two types of CMOS amplifiers. The first amplifier is a two-stage, Miller-compensated, low-voltage amplifier. As the CMOS transistor size and power supply voltage for integrated circuits continue to decrease, the two-stage amplifier with folded-cascode first stage is a good choice for high gain, wide bandwidth, and low voltage operation. This dissertation presents a new optimization method that uses the CMOS transistor inversion level and moderate-inversion operation for selected devices. This achieves required performance while saving about 37% in power consumption compared to existing strong-inversion designs. The second amplifier presented is a gain-boosted, single-stage amplifier. This amplifier has high voltage gain and improved frequency and transient performance at lower power consumption compared to two-stage amplifiers. This dissertation investigates the frequency response of the internal gain boosting amplifier and describes a new compensation method to improve the amplifier frequency response. This saves about 70% in power consumption for the internal gain boosting amplifier compared to existing designs. Finally, this dissertation presents the use of low flicker noise CMOS amplifiers for continuous-time, sigma-delta modulators in analog-to-digital converters (ADCs) used for wireless biomedical sensing applications.
机译:开关电容器电路中使用的互补金属氧化物硅(CMOS)放大器需要高电压增益,低输入参考热噪声电压和快速建立时间。本文提出了两种类型的CMOS放大器的优化技术。第一个放大器是两级,米勒补偿的低压放大器。随着CMOS晶体管尺寸和集成电路电源电压的不断降低,具有折叠共源共栅第一级的两级放大器是高增益,宽带宽和低电压工作的理想选择。本文提出了一种新的优化方法,该方法将CMOS晶体管的反相电平和中等反相操作用于所选器件。与现有的强反相设计相比,这可实现所需的性能,同时节省约37%的功耗。展示的第二个放大器是增益增强的单级放大器。与两级放大器相比,该放大器具有较高的电压增益,并以较低的功耗改善了频率和瞬态性能。本文研究了内部增益提升放大器的频率响应,并提出了一种新的补偿方法来改善放大器的频率响应。与现有设计相比,内部增益提升放大器可节省约70%的功耗。最后,本论文介绍了低闪烁噪声CMOS放大器在用于无线生物医学传感应用的模数转换器(ADC)中用于连续时间sigma-delta调制器的用途。

著录项

  • 作者

    Yang, Yi.;

  • 作者单位

    The University of North Carolina at Charlotte.;

  • 授予单位 The University of North Carolina at Charlotte.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:27

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