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A low voltage rail-to-rail operational amplifier with constant operation and improved process robustness

机译:低压轨到轨运算放大器,具有恒定的操作能力和改进的过程鲁棒性

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摘要

An operational amplifier is one of the most basic components in analog, mixed-signal, RF, and other integrated circuit designs. Low voltage and low power operational amplifier design has become an increasingly interesting subject as many applications switch to portable battery powered operations. The need for design techniques to allow amplifiers to maintain an acceptable level of performance when the supply voltages are decreased is immense. One of the most important features in low voltage amplifier design is ensuring that the amplifier maintains constant behavior in the presence of rail-to-rail input common-mode variations while providing a rail-to-rail output to maximize signal-to-noise ratio.In this work a new rail-to-rail low voltage operational amplifier is designed, simulated, and compared against state of the art. The amplifier architecture aims at achieving constant amplifier operation over a rail-to-rail common-mode input voltage range. The concept of constant operation refers to the ability to maintain constant specifications such as gain, gain-bandwidth product, phase margin, slew rate, and power consumption against large variations in input common-mode voltage. The amplifier is additionally designed to be robust with respect to variations in process parameters, supply voltages, and operating temperatures (PVT). A final evaluation of the performance of the proposed design versus that of the state of the art in the open literature is carried out. The intended capabilities and advantages of the new design are verified through extensive simulation.
机译:运算放大器是模拟,混合信号,RF和其他集成电路设计中最基本的组件之一。随着许多应用转向便携式电池供电的操作,低压低功耗运算放大器的设计已成为越来越有趣的主题。对设计技术的需求是巨大的,以允许放大器在电源电压降低时保持可接受的性能水平。低压放大器设计中最重要的功能之一是确保放大器在存在轨到轨输入共模变化的情况下保持恒定的性能,同时提供轨到轨输出以最大程度地提高信噪比在这项工作中,设计,模拟了新的轨到轨低压运算放大器,并与最新技术进行了比较。该放大器架构旨在在轨至轨共模输入电压范围内实现恒定的放大器工作。恒定工作的概念是指保持恒定规格的能力,例如增益,增益带宽乘积,相位裕度,压摆率和功耗,以抵抗输入共模电压的较大变化。此外,该放大器还针对过程参数,电源电压和工作温度(PVT)的变化而设计,具有很强的鲁棒性。对所提出的设计的性能与公开文献中的现有技术进行了最终评估。通过广泛的仿真,可以验证新设计的预期功能和优势。

著录项

  • 作者

    Beal, Rien Lerone;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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