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首页> 外文期刊>IEEE Journal of Solid-State Circuits >An Over-60 dB True Rail-to-Rail Performance Using Correlated Level Shifting and an Opamp With Only 30 dB Loop Gain
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An Over-60 dB True Rail-to-Rail Performance Using Correlated Level Shifting and an Opamp With Only 30 dB Loop Gain

机译:使用相关电平转换和仅30 dB环路增益的运算放大器,可提供超过60 dB的真正轨到轨性能

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摘要

Correlated level shifting (CLS) is introduced as a new switched-capacitor technique to provide true rail-to-rail performance while reducing errors from finite opamp gain. There is negligible kT/C noise increase and in many cases a speed advantage compared to using a high gain opamp. The gain enhancement is quantified with formulas and the general technique is compared to correlated double sampling (CDS). Results are presented from a 0.18 $~mu{hbox {m}}$ CMOS testchip of a 20 MHz, 12-bit pipelined A/D converter using CLS to reduce errors from finite opamp dc gain and limited opamp swing. It achieves 10.5 ENOB operating beyond the supply rails using an opamp circuit with 30 dB loop gain and 0.9 V supply.
机译:引入了相关电平移动(CLS)作为一种新的开关电容器技术,以提供真正的轨到轨性能,同时减少有限运放增益带来的误差。与使用高增益运算放大器相比,kT / C噪声的增加可忽略不计,并且在许多情况下具有速度优势。使用公式对增益增强进行量化,并将通用技术与相关双采样(CDS)进行比较。结果来自使用CLS的20 MHz,12位流水线A / D转换器的0.18μmCMOS测试芯片的结果,该芯片使用CLS来减少有限的运算放大器直流增益和有限的运算放大器摆幅带来的误差。使用具有30 dB环路增益和0.9 V电源的运算放大器电路,它可以在电源轨之外实现10.5 ENOB的工作。

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