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High speed low power 64-bit comparator designed using current comparison based domino logic

机译:高速低功耗64位比较器使用基于电流比较的Domino逻辑设计

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The rapid growth in CMOS technology with the shrinking device size towards 22 nm has allowed for placement of billions of transistors on a single microprocessor chip. To achieve very high system performance, domino logic styles are widely employed in high performance VLSI chips together with aggressive technology scaling. Comparators are widely used in central processing units (CPUs) and microcontrollers (MCUs). In this paper, a 64 bit comparator circuit is proposed which has a lower leakage and higher noise immunity without dramatic speed degradation compared to high speed domino logic, leakage current replica keeper domino logic and diode footed domino logic. This circuit is based on comparison of mirrored current of the pull up network (PUN) with its worst case leakage current. Current comparison based domino technique reduces the parasitic capacitance on the dynamic node using a small keeper transistor, which reduces the contention current, power consumption and also the delay of the circuit. Simulation results of 64 bit comparator designed using a 22nm high performance predictive technology model demonstrate 51% power reduction compared to a standard domino circuits for 64 bit comparator.
机译:CMOS技术的快速增长具有朝向22nm的收缩装置尺寸,使得在单个微处理器芯片上放置数十亿晶体管。为实现非常高的系统性能,Domino逻辑风格广泛用于高性能VLSI芯片以及积极的技术缩放。比较器广泛用于中央处理单元(CPU)和微控制器(MCU)。在本文中,提出了64位比较器电路,其泄漏较低,噪声抗扰度较低,与高速Domino逻辑相比,漏电流副本保持器Domino逻辑和二极管脚Domino逻辑相比,漏光较高,抗噪声抗扰度较低。该电路基于上拉网(PUD)的镜像电流比较其最坏情况漏电流。基于电流比较的Domino技术使用小型保持晶体管降低动态节点上的寄生电容,这降低了竞争电流,功耗以及电路的延迟。使用22nm高性能预测技术模型设计64位比较器的仿真结果表明,与64位比较器的标准Domino电路相比,减少了51%的功率降低。

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