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Nyquist-Rate Current-Steering Digital-to-Analog Converters With Random Multiple Data-Weighted Averaging Technique and $Q^{N}$ Rotated Walk Switching Scheme

机译:奈奎斯特速率电流控制数模转换器,具有随机多数据加权平均技术和$ Q ^ {N} $旋转步态切换方案

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摘要

In this brief, Nyquist-rate current-steering digital-to-analog converters (DACs) applying the random multiple data-weighted averaging (RMDWA) technique and the QN rotated walk switching scheme are proposed such that high spurious-free dynamic range (SFDR) and small maximum output error can be achieved without calibrations, which are area and power consuming. RMDWA suppresses the harmonics caused by element mismatches to gain high SFDR performance. Furthermore, QN rotated walk can lower the maximum output error when RMDWA and Q N rotated walk are employed simultaneously. Because the benefits of both dynamic element matching technique and switching scheme are obtained by the proposed DAC structure, the proposed structure can deliver smaller maximum output errors than traditional randomization techniques even if a low-cost small-area DAC with poor matching property is adopted
机译:在本简介中,提出了应用随机多数据加权平均(RMDWA)技术和QN旋转步行切换方案的奈奎斯特速率电流控制数模转换器(DAC),从而实现了高无杂散动态范围(SFDR) )且无需校准即可实现很小的最大输出误差,这不但会占用面积而且会消耗大量功率。 RMDWA可以抑制由元件失配引起的谐波,从而获得较高的SFDR性能。此外,当同时使用RMDWA和Q N旋转步进时,QN旋转步进可以降低最大输出误差。因为通过提出的DAC结构既获得了动态元素匹配技术又获得了切换方案的好处,所以即使采用了匹配性能较差的低成本小面积DAC,与传统的随机化技术相比,该结构也可以提供较小的最大输出误差。

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