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首页> 外文期刊>Circuits, systems, and signal processing >Single Flip-Flop Driving Circuit for Glitch-Free NAND-Based Digitally Controlled Delay-Lines
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Single Flip-Flop Driving Circuit for Glitch-Free NAND-Based Digitally Controlled Delay-Lines

机译:用于无故障基于NAND的数字控制延迟线的单触发器驱动电路

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摘要

NAND-based digitally controlled delay-lines (DCDLs) are employed in several applications owing to their excellent linearity, good resolution and easy standard cell design. A glitch-free DCDL behavior is often a strict requirement [e.g. spread-spectrum clock generators (SSCG) and digitally controlled oscillators]. Existing glitch-free NAND-based DCDL topologies either require two flip-flops for each DCDL delay-element (DE) or present a very long settling time which limits the maximum working frequency. This paper proposes a novel glitch-free NAND-based DCDL that joins the advantages of previously proposed topologies: uses only a single flip-flop for each DE (reducing area and power) and has relaxed timing requirements (allowing easy integration in applications like SSCG). In the paper, the glitch-free operation of the proposed circuit is firstly demonstrated theoretically and then verified experimentally, with the help of an SSCG built using proposed DCDL and implemented in 28 nm CMOS. Simulation results show that proposed DCDL results in a more that 30 % reduction of the power dissipation and a > 20 % reduction in area occupation with respect to double flip-flop DCDL, without any timing constraints penalty.
机译:基于NAND的数字控制延迟线(DCDL)具有出色的线性度,良好的分辨率和简单的标准单元设计,因而被用于多种应用中。无毛刺的DCDL行为通常是严格的要求[例如,扩频时钟发生器(SSCG)和数控振荡器]。现有的无干扰的基于NAND的DCDL拓扑要么为每个DCDL延迟元素(DE)要求两个触发器,要么存在很长的建立时间,这限制了最大工作频率。本文提出了一种新颖的无故障基于NAND的DCDL,该DCDL结合了先前提出的拓扑的优点:每个DE仅使用一个触发器(减小面积和功耗),并且对时序的要求宽松(允许在SSCG等应用中轻松集成) )。在本文中,首先借助所提出的DCDL构建并在28 nm CMOS中实现的SSCG,从理论上证明了所提出电路的无毛刺操作,然后进行了实验验证。仿真结果表明,与双触发器DCDL相比,提出的DCDL可使功耗降低30%以上,面积占用减少> 20%,而不会受到任何时序约束的影响。

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