A Low Power Current-Mode Flash ADC with Spin Hall Effect based Multi-Threshold Comparator

Zhezhi He, Deliang Fan
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引用次数: 17

Abstract

Current-mode Analog-to-Digital Converter (ADC) has drawn many attentions due to its high operating speed, power and ground noise immunity, and etc. However, 2n -- 1 comparators are required in traditional n-bit current-mode ADC design, leading to inevitable high power consumption and large chip area. In this work, we propose a low power and compact current mode Multi-Threshold Comparator (MTC) based on giant Spin Hall Effect (SHE). The two threshold currents of the proposed SHE-MTC are 200μA and 250μA with 1ns switching time, respectively. The proposed current-mode hybrid spin-CMOS flash ADC based on SHE-MTC reduces the number of comparators almost by half (2n-1), thus correspondingly reducing the required current mirror branches, total power consumption and chip area. Moreover, due to the non-volatility of SHE-MTC, the front-end analog circuits can be switched off when it is not required to further increase power efficiency. The device dynamics of SHE-MTC is simulated using a numerical device model based on Landau-Lifshitz-Gilbert (LLG) equation with Spin-Transfer Torque (STT) term and SHE term. The device-circuit co-simulation in SPICE (45nm CMOS technology) have shown that the average power dissipation of proposed ADC is 1.9mW, operating at 500MS/s with 1.2 V power supply. The INL and DNL are in the range of 0.23LSB and 0.32LSB, respectively.
基于自旋霍尔效应的多阈值比较器的低功耗电流模式Flash ADC
电流型模数转换器(ADC)因其工作速度快、功率大、抗地噪声强等优点而受到广泛关注。然而,在传统的n位电流模式ADC设计中,需要2n—1比较器,导致不可避免的高功耗和大芯片面积。在这项工作中,我们提出了一种基于巨自旋霍尔效应的低功耗、紧凑的电流模式多阈值比较器(MTC)。该SHE-MTC的两个阈值电流分别为200μA和250μA,开关时间为1ns。本文提出的基于SHE-MTC的电流模式混合自旋cmos闪存ADC将比较器的数量减少了近一半(2n-1),从而相应减少了所需的电流镜像支路、总功耗和芯片面积。此外,由于SHE-MTC的非易失性,可以在不需要时关闭前端模拟电路,以进一步提高功率效率。采用基于Landau-Lifshitz-Gilbert (LLG)方程的自旋传递转矩(STT)项和SHE项的数值器件模型,对SHE- mtc的器件动力学进行了仿真。在SPICE (45nm CMOS技术)中进行的器件电路联合仿真表明,该ADC的平均功耗为1.9mW,工作速度为500MS/s,电源为1.2 V。INL和DNL分别为0.23LSB和0.32LSB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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