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Considerations for fast settling operational amplifiers

机译:快速建立运算放大器的注意事项

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The design considerations for fast-settling operational amplifiers (op amps) are significantly different between sampled-data switched-capacitor (SC) and conventional continuous-time applications. In SC circuits, the shape of the output voltage waveform of an op amp is of no consequence provided that the output settles to within a specified tolerance of its steady-state value prior to the next sampling instant. This feature allows for an optimum op amp frequency shaping to obtain a minimum small-signal settling time. The theory applies to any op amp that is well approximated by a two-pole model, including the conventional two-stage and single-stage folded-cascode topologies. As the commonly used equivalent-circuit Miller-effect model for frequency compensation has generally been improperly applied to two-stage transconductance amplifiers, it does not provide sufficient accuracy to achieve the optimum phase margin condition. Therefore, the use of equivalent-circuit models has been refined to provide greater accuracy and to eliminate some previous misconceptions.
机译:快速建立的运算放大器(op amps)的设计考虑因素在采样数据开关电容器(SC)和常规连续时间应用之间有很大不同。在SC电路中,只要输出在下一个采样时刻之前稳定在其稳态值的指定公差之内,运算放大器的输出电压波形的形状就无关紧要。此功能可实现最佳的运放频率整形,从而获得最小的小信号建立时间。该理论适用于任何由两极模型近似的运算放大器,包括传统的两级和单级折叠共源共栅拓扑。由于通常用于频率补偿的等效电路米勒效应模型通常不适当地应用于两级跨导放大器,因此无法提供足够的精度来实现最佳相位裕量条件。因此,已经改进了等效电路模型的使用,以提供更高的准确性并消除以前的一些误解。

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