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A Modified Implementation of Tristate Inverter Based Static Master-Slave Flip-Flop with Improved Power-Delay-Area Product

机译:基于Tristate逆变器的静态主从触发器,具有改进的动力延迟区域产品的改进实施

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The paper introduces novel architectures for implementation of fully static master-slave flip-flops for low power, high performance, and high density. Based on the proposed structure, traditional C2MOS latch (tristate inverter/clocked inverter) based flip-flop is implemented with fewer transistors. The modified C2MOS based flip-flop designs mC2MOSff1 and mC2MOSff2 are realized using only sixteen transistors each while the number of clocked transistors is also reduced in case of mC2MOSff1. Postlayout simulations indicate that mC2MOSff1 flip-flop shows 12.4% improvement in PDAP (power-delay-area product) when compared with transmission gate flip-flop (TGFF) at 16X capacitive load which is considered to be the best design alternative among the conventional master-slave flip-flops. To validate the correct behaviour of the proposed design, an eight bit asynchronous counter is designed to layout level. LVS and parasitic extraction were carried out on Calibre, whereas layouts were implemented using IC station (Mentor Graphics). HSPICE simulations were used to characterize the transient response of the flip-flop designs in a 180 nm/1.8 V CMOS technology. Simulations were also performed at 130 nm, 90 nm, and 65 nm to reveal the scalability of both the designs at modern process nodes.
机译:本文介绍了新颖的架构,用于实现完全静态主从触发器,用于低功耗,高性能和高密度。基于所提出的结构,使用较少的晶体管实现了基于C2MOS锁存器(三晶逆变器/时钟逆变器)的触发器。在MC2MOSFF1的情况下,仅使用十六个晶体管实现修改的C2MOS基触发器设计MC2MOSFF1和MC2MOSFF2。与在16倍电容负载的传输栅极触发器(TGFF)相比,MC2MOSFF1触发器显示MC2MOSFF1触发器显示PDAP(电源延迟区域产品)的改进12.4%,该电容负载被认为是传统主机中最佳设计替代方案-slave触发器。为了验证所提出的设计的正确行为,八位异步计数器旨在布局级别。 LVS和寄生提取在口径上进行,而使用IC站(导师图形)实施布局。 HSPICE模拟用于表征180nm / 1.8 V CMOS技术中触发器设计的瞬态响应。仿真也在130nm,90nm和65nm处进行,以揭示在现代过程节点处的设计的可扩展性。

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