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Discrete-time simulation of arbitrary digital/analog converter waveforms in continuous-time sigma-delta modulators

机译:连续时间sigma-delta调制器中任意数字/模拟转换器波形的离散时间仿真

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In this paper, the inclusion of arbitrary feedback pulses into the method of discrete-time simulation of continuoustime sigma-delta modulator is investigated. Although rectangular feedback pulses cover the majority of the published sigma-delta modulator circuits, there arise well known advantages from other waveform shapes, such as reduced sensitivity to excessloop- delay in the feedback path, finite gain bandwidths in the operational amplifiers and clock-jitter. In order to also utilize the benefit of fast discrete-time simulations of continuous-time modulators in the case of non-rectangular digital-to-analog converter waveforms, this work provides the mathematical background for accurate modeling. Comparative simulations show a speed advantage of up to more than three order of magnitude.
机译:本文研究了将任意反馈脉冲包含在连续时间sigma-delta调制器的离散时间模拟方法中的方法。尽管矩形反馈脉冲覆盖了大多数已发布的sigma-delta调制器电路,但是从其他波形中也可以获得众所周知的优势,例如降低了对反馈路径中过大环路延迟的灵敏度,运算放大器中的有限增益带宽和时钟抖动。为了在非矩形数模转换器波形的情况下也能利用连续时间调制器的快速离散时间仿真的优势,这项工作为精确建模提供了数学背景。对比仿真显示了高达三个数量级以上的速度优势。

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