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A Dynamic Element Matching Technique for Multi-bit Quadrature Delta-Sigma Modulators

机译:多比特正交Δ-Σ调制器的动态元素匹配技术

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Quadrature multi-bit ΔΣ modulators suffer from a twofold mismatch problem: mismatch between the I-branch DAC and the Q-branch DAC, and mismatch among the elements in each multi-bit DAC. These mismatches occur in the feedback paths and are crucial to the modulators' performance. In this paper, a new DEM technique, in which the DAC elements of I- and Q-branches are combined into a common element pool, is reported. The DAC elements are dynamically assigned to I- or Q-branch such that their chances of contributing positively/negatively to I- and Q-branches are equalized. The mismatch-induced DAC error is converted into first-order high-pass-shaped random noise. Behavioral simulations show that, for 1% element mismatch in a third-order 64× over-sampling 3-bit quadrature ΔΣ modulator, a SNDR of 82dB and an image rejection ratio of 96.6dB are achieved.
机译:正交多位ΔΣ调制器遭受双重错配问题:I-Branch DAC和Q-Branch DAC之间的不匹配,并且每个多位DAC中的元素之间的不匹配。这些不匹配发生在反馈路径中,对调制器的性能至关重要。本文报道了一种新的DEM技术,其中I-和Q分支的DAC元件组合成公共元素池。 DAC元件被动态地分配给I-OR Q-BRACH,使得它们对I-和Q分支的正/负面贡献的机会均衡。不匹配诱导的DAC误差被转换为一流的高通随机噪声。行为模拟表明,对于三阶64×过采样3位正交ΔΣ调制器的1%元素不匹配,实现了82dB的SNDR和96.6dB的图像抑制比。

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