事件驱动的模数转换器,具有以转换速度为中心的架构和与活动相关的功耗

D. Koscielnik, M. Miśkowicz
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引用次数: 2

摘要

本文提出了一种事件驱动的模数转换器的概念,该转换器具有以转换速度为中心的结构和与活动相关的功耗,可以接受不规则的转换需求。所提出的基于二值缩放电容器阵列的转换器架构使用事件驱动的连续电荷再分配技术,并允许前一个样本的转换和下一个样本的捕获重叠。转换器正常工作的一般条件是,连续的转换需求之间的间隔必须至少等于最大转换时间。特别地,所提出的转换器可用于异步Sigma-Delta adc的时间-数字转换。本文导出了给定调制深度下电荷再分配速率的下界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Event-driven analog-to-digital converter with conversion-speed-centric architecture and activity-dependent power consumption
The paper presents a concept of an event-driven analog-to-digital converter accepting irregular conversion demands with conversion-speed-centric architecture and activity-dependent power consumption. The proposed converter architecture based on a binary-scaled capacitor array uses a technique of event-driven successive charge redistribution and allows overlapping of a conversion of the previous sample and a capture of the next sample. The general condition on proper converter operation is that the consecutive conversion demands have to be spaced at least by the interval equal to the maximum conversion time. In particular, the proposed converter can be used for time-to-digital conversion in the asynchronous Sigma-Delta ADCs. In the paper, the lower bound on charge redistribution rate for a given Sigma-Delta modulation depth is derived.
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