CMOS差分放大器的设计及其在a /D和D/ a转换器中的应用

Shu-Chuan Huang, M. Ismail
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引用次数: 13

摘要

差分放大器(DDA)是带两个差分输入的运放的扩展。由于差分输入的特性,基于数模转换器的电路通常具有高输入阻抗和简单的外部电路。因此,基于dda的电路是基于opamp电路的竞争性替代品。在本文中,我们将介绍使用所提出的线性V-I转换器的DDA设计,其线性度通过体效应得到改善。该DDA具有几乎轨到轨的输入共模范围和输出摆幅,因此适用于低压应用。采用MOSIS 2 /spl μ m p-well工艺制备了DDA,并给出了模拟和实验结果。讨论了在A/D和D/A转换器中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a CMOS differential difference amplifier and its applications in A/D and D/A converters
The differential difference amplifier (DDA) is an extension of an opamp with two differential inputs. DDA-based circuits often provide high input impedance and simple external circuitry due to the feature of differential difference inputs. Therefore, DDA-based circuits are competitive alternatives to opamp-based circuits. In this paper, we will present the design of a DDA using a proposed linear V-I converter whose linearity is improved by the body effect. This DDA possesses almost rail-to-rail input common-mode range and output swing and is therefore suitable for low-voltage applications. The DDA was fabricated in a MOSIS 2 /spl mu/m p-well process, and its simulation and experimental results are provided. Applications in A/D and D/A converters are discussed.
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