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Design of micropower operational amplifiers

机译:微功率运算放大器的设计

摘要

The operational amplifier is a fundamental building block for electronic devices and systems. The advancement of modern electronic technology has been setting more performance demand on the underlying integrated circuits including the operational amplifier. Reduction in power consumption and improvement in speed are some of the most important requirements. To address these concerns, this thesis presents a design of micropower Class AB operational amplifiers which has the ratio of gain bandwidth product to supply current higher than that of an existing IC. The design is in a 0.6pxm CMOS process. The input stage of the design has the folded-cascode architecture that allows the input common-mode range down to negative supply voltage. The Class AB output stage swings rail-to-rail and has the ratio of maximum current to quiescent current greater than 100. The bias cell of the operational amplifier is designed to consume only 6% of the total supply current. The thesis concludes the operational amplifier design with two frequency compensation options.
机译:运算放大器是电子设备和系统的基本构建块。现代电子技术的进步已经对包括运算放大器在内的基础集成电路提出了更高的性能要求。降低功耗和提高速度是最重要的要求。为了解决这些问题,本文提出了一种微功耗AB类运算放大器的设计,该放大器的增益带宽积与电源电流之比高于现有IC。该设计采用0.6pxm CMOS工艺。该设计的输入级具有折叠共源共栅架构,该架构允许输入共模范围降低至负电源电压。 AB类输出级可在轨到轨之间摆动,最大电流与静态电流之比大于100。运算放大器的偏置单元设计为仅消耗总电源电流的6%。本文总结了具有两个频率补偿选项的运算放大器设计。

著录项

  • 作者

    Rayanakorn Surapap;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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