一个“数字”6位ADC在0.25 /spl μ m CMOS

Conor Donovan, M. Flynn
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引用次数: 4

摘要

传统上,电路设计人员采用模拟技术来克服闪存变换器中的比较器偏移。这些方案通常对面积和功耗有不利影响,更严重的是不容易扩展到低压工艺。我们描述了一种数字技术,它消除了比较器的精度限制。由于没有模拟匹配要求,比较器可以是小,快,节能。采用标准0.25 /spl mu/m数字CMOS工艺的6位原型转换器占用1.2 mm/sup 2/,从2.2 V电源以300 Ms/s的速度消耗110 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 'digital' 6-bit ADC in 0.25 /spl mu/m CMOS
Traditionally, circuit designers have adopted analog techniques to overcome comparator offset in flash converters. These schemes usually have an adverse effect on area and power consumption, and more seriously do not scale easily to low voltage processes. We describe a digital technique, which removes the accuracy constraints from the comparators. With no analog matching requirement, the comparators can be small, fast and power efficient. A 6-bit prototype converter built in a standard 0.25 /spl mu/m digital CMOS process occupies 1.2 mm/sup 2/ and dissipates 110 mW from a 2.2 V supply at 300 Ms/s.
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