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FPCNA

机译:FPCNA

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摘要

Carbon nanotubes (CNTs), with their unique electronic properties, are promising materials for building nanoscale circuits. In this paper, we present a new CNT-based FPGA architecture known as FPCNA. We define novel CNT and nanoswitch based components and characterize these components considering nano-specific process variations, including the variation caused by the random mixture of metallic and semiconducting CNTs. To evaluate the architecture, we develop a variation-aware physical-design flow which can handle both Gaussian and non-Gaussian random variables using variation-aware placement and routing. When FPCNA is evaluated with this CAD flow, we see a 2.67× performance gain over a baseline CMOS FPGA at the same technology node (at a 95% performance yield). In addition, FPCNA offers a 4.5× footprint reduction compared to the baseline FPGA. These results demonstrate the potential of using CNTs and nanoswitches to build high performance FPGA circuits.
机译:碳纳米管(CNT)具有独特的电子特性,是建筑纳米级电路的有希望的材料。在本文中,我们提出了一种新的基于CNT的FPGA架构,称为FPCNA。我们定义了基于新型CNT和纳米开关的组件,并考虑了考虑纳米特异性过程变化的这些组分,包括由金属和半导体CNT的随机混合物引起的变化。为了评估架构,我们开发了一种变体感知物理设计流,可以使用变体感知放置和路由来处理高斯和非高斯随机变量。使用此CAD流程评估FPCNA时,我们在相同技术节点(以95%的性能产量为95%)的基线CMOS FPGA上看到2.67×性能增益。此外,与基线FPGA相比,FPCNA提供了4.5倍的占地面积。这些结果证明了使用CNT和纳米开关来构建高性能FPGA电路的可能性。

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