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Amplifier performance enhancement methods using positive feedback techniques.

机译:使用正反馈技术的放大器性能增强方法。

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摘要

The dramatic growth in the hi-tech sector of consumer market has created many unprecedented challenges in the area of integrated circuits. The present and future communication and entertainment systems including high speed cable and DSL modems, broadband wired and wireless systems, and high definition visual products require very fast and high accuracy amplifiers, data converters and filters. Analog design in the new digital CMOS submicron processes is becoming an economical necessity in the industry. The task of building fast Op-Amp with very high DC-gain is already a very difficult problem, and this task has become more difficult using these new submicron digital processes, where traditional gain enhancement techniques are loosing their ability to deliver amplifiers with sufficient gain. In this work three new methods of implementing the internal positive-feedback to build very high DC-gain amplifiers with very low gain sensitivity to signal swings are presented. Amplifiers proposed in the first method have very high current-controlled gain. A DC gain larger than 100dB is possible without limiting the speed of the amplifier. Amplifiers proposed in the second method exhibit both enhanced speed, i.e., unity gain frequency, and enhanced gain. Amplifiers proposed in the third method have self-adjusting gain without extra control block. An implementation of a 3 bit multiplying DAC in a 9-bit 165MS/s pipeline ADC built in a 1.8V, 0.21μ digital CMOS process using one of the proposed amplifiers is described. Test results show high gain with very fast settling.
机译:消费市场的高科技领域的迅猛发展给集成电路领域带来了许多前所未有的挑战。当前和未来的通信和娱乐系统,包括高速电缆和DSL调制解调器,宽带有线和无线系统以及高清视觉产品,都需要非常快速和高精度的放大器,数据转换器和滤波器。新的数字CMOS亚微米工艺中的模拟设计正在成为行业中的经济必需品。建立具有很高直流增益的快速运算放大器的任务已经是一个非常困难的问题,而使用这些新的亚微米数字工艺使这一任务变得更加困难,因为传统的增益增强技术使它们无法提供足够增益的放大器。 。在这项工作中,提出了三种新的实现内部正反馈的方法,以构建非常高的直流增益放大器,对信号摆幅的增益灵敏度非常低。第一种方法中提出的放大器具有非常高的电流控制增益。可以在不限制放大器速度的情况下获得大于100dB的DC增益。在第二种方法中提出的放大器表现出增强的速度,即单位增益频率,和增强的增益。第三种方法中提出的放大器具有自调节增益,而没有额外的控制块。描述了使用建议的放大器之一在以1.8V,0.21μ数字CMOS工艺构建的9位165MS / s流水线ADC中实现3位乘法DAC的方法。测试结果显示,建立速度非常快,增益很高。

著录项

  • 作者

    Amourah, Mezyad M.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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