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Analysis of FinFET-Based Adiabatic Circuits for the Design of Arithmetic Structures

机译:基于FinFET的绝热电路分析算术结构设计

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This paper presents the adiabatic logic called 2N-N-2P, which can operate with less number of transistors and high energy efficiency than the existing circuit styles. It is a dual rail logic operated by four-phase power clock (PC). The 2N-N-2P adiabatic logic is capable of operating through a wide range of frequency from 100 MHz to 1 GHz. Relentless scaling of MOSFETs towards lower technology nodes results in short channel effects in addition to increasing higher leakage current issues. In this scenario, FinFET advantageously replaces MOSFET with its unique features of the elimination of the short channel effects encountered by the MOSFETs with its gate structure that wraps around the channel completely. It incurs that the lower energy consumption and the feasibility of designing energy recovery circuits using FinFETs are analyzed in this paper. Comparatively, the energy efficiency of FinFET-based 2N-N-2P against the 2N2N2P and Positive Feedback Adiabatic Logic (PFAL) are analyzed. Simulation results also validate the robustness and efficiency of 2N-N-2P adiabatic logic circuit under process parameter variations of FinFET technology. Complex adiabatic adders and multipliers taken as bench mark circuits have been designed using 32-nm FinFET technology node and the results validate the enhanced energy efficiency characteristics of 2N-N2P over 2N2N2P and PFAL designs.
机译:本文介绍了称为2N-N-2P的绝热逻辑,其晶体管数量少于现有电路样式。它是由四相电源时钟(PC)操作的双轨逻辑。 2N-N-2P绝热逻辑能够通过100 MHz至1 GHz的宽范围频率操作。除了增加更高的泄漏电流问题之外,MOSFET对较低技术节点的无情缩放导致短频道效果。在这种情况下,FinFET有利地将MOSFET替换为消除MOSFET遇到的短信效果的独特特征,其栅极结构完全缠绕在通道周围。本文分析了使用FINFET进行较低的能量消耗和设计能量回收电路的可行性。相比之下,分析了对2N2N2P和阳性反馈绝热逻辑(PFAL)的基于FinFET的2N-N-2P的能量效率。仿真结果还验证了在FinFET技术过程参数变体下的2N-N-2P绝热逻辑电路的鲁棒性和效率。通过32-NM FinFET技术节点设计了作为台式标记电路的复杂绝热添加剂和乘法器,结果验证了2N-N2P和PFAL设计的增强能效特性。

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