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Comparator-based binary-search ADC architectures for UWB receivers

机译:适用于UWB接收器的基于比较器的二进制搜索ADC架构

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Recently, modern wireless communication applications have pushed ADCs power consumption into the range of fJ/conversion step by introducing circuit and architectural level enhancements. In this paper we propose improvements to binary-search topologies and demonstrate them on two ADC designs. The first one, a 4-bit ADC, uses 2~N - 1 comparators arranged in N stages, and a set of N time-interleaved track-and-holds is introduced along with a pipelined operation of the comparators, leading to an increase of the ADC throughput rate. The second is a 5-bit ADC in which the number of comparators is reduced to N. The reduction is possible because we employ reconfigurable comparator with multiple thresholds, thus splitting the comparison range. As the implementation of accurate threshold voltages has a critical impact on ADC performance, an effective design methodology based on optimization through genetic algorithms was used for the comparators. Monte Carlo simulations performed on the first ADC show that, sampling at 1.5 GSps, the ADC consumes 4.2 mW, providing 3.67 effective bits, leading to a figure of merit (FOM) of 219 fJ/conversion step. With the reduction in the number of comparators, the second ADC consumes 5 mW providing 4.6 effective bits and a FOM of 138 fJ/conversion step at the same sampling rate.
机译:最近,现代无线通信应用通过引入电路和体系结构方面的增强,已将ADC功耗推至fJ /转换步骤范围。在本文中,我们提出了对二进制搜索拓扑的改进,并在两种ADC设计中进行了演示。第一个是4位ADC,使用2个〜N-1个比较器(分N级排列),并且引入了N个时间交错的采样保持时间,以及比较器的流水线操作,从而增加了ADC吞吐速率。第二个是一个5位ADC,其中比较器的数量减少到N。由于我们采用了具有多个阈值的可重构比较器,因此划分了比较范围,因此有可能减少。由于准确的阈值电压的实现对ADC性能具有至关重要的影响,因此比较器采用了一种基于遗传算法优化的有效设计方法。在第一个ADC上执行的蒙特卡洛仿真显示,以1.5 GSps采样时,ADC消耗4.2 mW功率,提供3.67个有效位,因此品质因数(FOM)为219 fJ /转换步长。随着比较器数量的减少,第二个ADC消耗5 mW的功率,提供4.6个有效位,并且在相同采样速率下的FOM为138 fJ /转换步长。

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