开关电容CMFB对积分器全差分运算放大器增益的影响

Joydeep Basu, P. Mandal
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引用次数: 6

摘要

开关电容共模反馈(SC-CMFB)是一种稳定全差分运算放大器输出共模电平的常用技术。与连续CMFB相比,它具有在宽放大器输出摆幅范围内优异的线性度、最低的功耗和更好的反馈回路稳定性;因此,适用于实现高增益、宽摆幅、低功耗的运放大器。但是,它的实施需要仔细考虑一些实际方面,其中一些在文献中有很好的记录。然而,它对放大器的差模增益的不利影响并没有得到充分的探讨。SC-CMFB的等效电阻负载是产生这种效应的原因,在具有大增益的运放(如折叠级联码)中尤为重要。本文讨论了SC-CMFB引起的放大器直流增益下降及其对连续和离散时间积分器设计的影响,并给出了相关的解析推导和晶体管级仿真。还提供了一些实用的指南和电路拓扑结构,以尽量减少增益降低效应。
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Effect of Switched-Capacitor CMFB on the Gain of Fully Differential Op-Amp for Design of Integrators
Switched capacitor common-mode feedback (SC-CMFB) is a popular technique for stabilization of the output common-mode level of fully differential operational amplifiers. It provides advantages of excellent linearity across a wide amplifier output swing, lowest power consumption, and better feedback loop stability in contrast to continuous CMFB; and hence, are suitable for realization of high-gain wide-swing low-power opamps. But, its implementation demands careful consideration of some practical aspects, a number of which are well documented in literature. However, its detrimental effect on the amplifier's differential-mode gain is not quite explored. Equivalent resistive loading from the SC-CMFB is the reason for this effect, and is particularly important in op-amps meant to have large gain (like, the folded cascode). This SC-CMFB induced drop in amplifier dc-gain, and the consequent effect on the design of continuous and discrete-time integrators have been discussed together with pertinent analytical derivations and transistor level simulations. A few practical guidelines and circuit topologies for minimizing the gain reduction effect have also been provided.
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