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A supposedly clever thing i'll never do again

机译:所谓的聪明事,我再也不会做

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“An expert is a person who has found out by his own painful experience all the mistakes that one can make in a very narrow field.”1 If one learns more from regrets than from successes, then there is knowledge to be gained from this paper. Upon reflecting on the designs of five different time interleaved ADCs over the past decade many mistakes were made. Some of the most clever ideas turned out not to fulfil all their potential. This paper will focus primarily on the use of a slow, but accurate, reference ADC for system-identification approaches for background calibration in time-interleaved ADCs. Although still a valid approach, the complications are varied, multi-dimensional, convoluted and ultimately limits performance in a variety of unanticipated ways. Specific issues that arise include: cross-talk from sub-sampled clocking of the reference ADC, environmental changes due to different power supply conditions during calibration than exists in normal operation, sub-sampled kickback that does not appear uniformly on every sample and slice dependent kickback as each slice cannot be routed an identical distance from the reference ADC. These issues will be discussed in the context of two specific time-interleaved ADCs, an 8b 6-GS/s circuit in 90nm CMOS and a 12b 2.7GS/s in 130nm BiCMOS.
机译:“专家是通过自己的痛苦经历发现了在一个非常狭窄的领域中可能犯的所有错误的人。” 1如果人们从遗憾中学到的东西多于成功,那么从本文中将学到很多知识。在回顾过去十年中五个不同时间交错ADC的设计时,犯了很多错误。一些最聪明的想法竟然没有发挥出它们的全部潜力。本文将主要关注慢速但准确的参考ADC在系统识别方法中的应用,以便在时间交错ADC中进行背景校准。尽管仍然是有效的方法,但是并发症是多种多样的,多维的,令人费解的,并最终以各种无法预料的方式限制了性能。出现的特定问题包括:参考ADC的子采样时钟产生的串扰,由于校准过程中电源条件与正常操作不同而引起的环境变化,子采样反冲在每个样本和切片相关的问题上均不统一反冲,因为无法将每个切片与参考ADC路由相同的距离。这些问题将在两个特定的时间交错ADC的背景下进行讨论,一个是90nm CMOS的8b 6-GS / s电路,另一个是130nm BiCMOS的12b 2.7GS / s。

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