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Dynamic element matching in digital-to-analog converters with non-linear output resistance

机译:具有非线性输出电阻的数模转换器中的动态元件匹配

摘要

This thesis focuses on evaluating the performance of dynamic element matching in digital-to-analog converters, when the unit conversion cells of the converter have finite output resistance. The main goal of this thesis is to see the effect of the non-linearity introduced in the digital-to-analog converter's output, by the finite value of the output resistance and the mismatches in it and to realize if this non-linearity can be corrected by using the DEM encoder.This thesis considers the tree DEM encoder which is well known, in the literature, to be effective against amplitude and timing mismatches among different conversion cells. The available literature however doesn't consider the impact of finite output resistance. This thesis theorizes that since the DEM encoder scrambles the conversion cell order to correct the non-linearities, it will be ineffective against the output resistance as it is common to all the conversion cells. However, in the presence of output resistance mismatches, which exist between different conversion cells, DEM is again able to shape their non-linearity by scrambling.This thesis presents three conversion cell models with varying degrees of mismatches among the finite output resistances and derives the corresponding total output current expressions. In addition a MATLAB implementation of the most comprehensive model among the three derived models is also presented.The MATLAB simulation results show that the non-linearity caused by the output resistance, in the absence of any mismatches, is not shaped by the DEM encoder, however, in the presence of mismatches, the DEM encoder is able to shape the non-linearity. Also evident from the simulation results is that even very high order of mismatch in the output resistance doesn't significantly degrade the performance of the practical system we are using.
机译:当转换器的单位转换单元具有有限的输出电阻时,本论文着重于评估数模转换器中动态元件匹配的性能。本文的主要目的是通过数模转换器的输出电阻的有限值及其失配来了解数模转换器输出中引入的非线性效应,并了解这种非线性是否可以解决。本文认为,在文献中众所周知的树型DEM编码器可以有效地防止不同转换单元之间的幅度和时序失配。但是,现有文献没有考虑有限输出电阻的影响。该理论从理论上讲,由于DEM编码器对转换单元的顺序进行加扰以校正非线性,因此它对所有转换单元通用的输出电阻无效。然而,在不同转换单元之间存在输出电阻失配的情况下,DEM仍可以通过加扰来塑造其非线性。本文提出了三种转换单元模型,它们在有限输出电阻之间具有不同程度的失配,并推导了相应的总输出电流表达式。此外,还提出了在三个导出模型中最全面的模型的MATLAB实现.MATLAB仿真结果表明,在没有任何失配的情况下,由输出电阻引起的非线性不会受到DEM编码器的影响,但是,在存在不匹配的情况下,DEM编码器可以调整非线性。从仿真结果还可以明显看出,即使输出电阻的失衡非常高,也不会显着降低我们正在使用的实际系统的性能。

著录项

  • 作者

    Siddique Muhammad;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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