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Sizing of multi-stage Op Amps by combining design equations with the gm/ID method

机译:通过将设计方程与GM / ID方法相结合来大小化多级运算放大器

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摘要

Analog integrated circuit design has as integral parts both analytical reasoning and numerical validation in the process from topology construction to sizing. Given a circuit topology, different circuit sizing results can be obtained from different processes of sizing inference. Sizing methods by simulation-based numerical searching have been a continuously studied subject. However, almost all approaches in this category require an overwhelming number of circuit simulations to arrive at an optimized sizing result. On the other hand, many published manual sizing methods by using the conventional device equations also require repeated SPICE simulations to correct the equation-based sizing results. This paper proposes a systematic gm/ID-based initial sizing method specifically customized for designing multiple-stage operational amplifiers (Op Amps). A main feature of the proposal is to use circuit-level design equations as constraints on the gm/ID table lookup method to substantially reduce the uncertainty in the sizing calculations. As a result, a significant amount of SPICE based correction work can be reduced to complete an initial sizing. The proposed sizing procedure includes a few regular sizing rules customized to the configuration of multi-stage Op Amps. We validate the proposed sizing method by application to several multi-stage Op Amp examples with a capacitive load or Miller compensation. Simulations have justified that the produced initial sizing results can achieve most of the prespecified design targets.
机译:模拟集成电路设计具有从拓扑结构到尺寸的过程中的分析推理和数值验证。鉴于电路拓扑,可以从大化推理的不同过程中获得不同的电路尺寸结果。通过基于仿真的数值搜索的尺寸尺寸方法是一个不断研究的主题。然而,本类别中的几乎所有方法都需要大量的电路模拟来到达优化的尺寸结果。另一方面,使用传统的设备方程的许多公开的手动大小化方法还需要重复的Spice模拟来校正基于方程的尺寸结果。本文提出了一种专门定制了用于设计多级运算放大器(运算放大器)的系统基于GM / ID的初始尺寸尺寸。该提案的主要特征是使用电路级设计方程作为GM / ID表查找方法的约束,以大大降低尺寸计算中的不确定性。结果,可以减少大量的基于香料的校正工作以完成初始尺寸。建议的规模过程包括一些定期定制的规则规则,用于配置多级运算放大器。我们通过应用于几个多级运算放大器示例来验证提出的大小化方法,具有电容负载或米勒补偿。模拟已证明产生的初始尺寸结果可以实现大部分预定的设计目标。

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