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An overview of decimator structures for efficient sigma-delta converters: Trends, design issues and practical solutions

机译:高效sigma-delta转换器的抽取器结构概述:趋势,设计问题和实用解决方案

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Classical decimation structures usually use comb filters at first stage due to the simplicity of comb filters. However, comb filters cannot satisfy high performance demands of state-of-the-art Sigma-Delta (ΣΔ) analog-digital converters (ADCs). Some possible solutions are comb based structures which are power and area efficient and posses an improved magnitude characteristic. The principal issues in the comb-based filter design are: power and area efficiency, high alias rejection and approximately flat passband characteristic, considering also high values of the decimation factors. In this paper we first review the new trends in ΣΔ ADCs and demands for the decimation block design. Next we review power and area efficient structures. The methods to improve the alias rejection of comb filters, as well as the methods for the compensation for the comb passband droop, and those strategies which simultaneously improve the alias rejection and the passband droop are reviewed in the following. Finally we review the multirate decimation structures.
机译:由于梳状滤波器的简单性,典型的抽取结构通常在第一阶段使用梳状滤波器。但是,梳状滤波器不能满足最新的Sigma-Delta(ΣΔ)模数转换器(ADC)的高性能要求。一些可能的解决方案是基于梳子的结构,其具有功率和面积效率高并且具有改善的幅度特性。基于梳齿的滤波器设计的主要问题是:功率和面积效率,高混叠抑制和近似平坦的通带特性,同时还要考虑高抽取因子值。在本文中,我们首先回顾了ΣΔADC的新趋势以及对抽取模块设计的要求。接下来,我们回顾一下功率和面积有效的结构。下面将介绍改善梳状滤波器混叠抑制的方法以及补偿梳状通带下垂的方法,以及同时改善混叠抑制和通带下垂的那些策略。最后,我们回顾了多速率抽取结构。

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