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Molecular electronics and reconfigurable logic

机译:分子电子学和可重构逻辑

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This paper describes a reprogrammable architecture based on regular matrices of fine-grain dynamically reconfigurable cells based on double-gate carbon nanotube field effect transistors (DG-CNTFET) exhibiting ambivalence (p-type or n-type behaviour depending on the back-gate voltage). Using available models, reconfigurable cells have been simulated and performance metrics quantified at 4 GHz operation. A function mapping method suitable for this matrix structure has been devised, and various interconnect topologies have been analysed, slowing average mapping success rates to 4×4 cell matrices of above 80% for 8-node function graphs. This gives insight into the way data functionality could be coded into the architecture based on such reconfigurable cells for on-the-fly and partial reprogrammability.
机译:本文描述了一种基于规则矩阵的可重编程架构,该规则矩阵基于双栅极碳纳米管场效应晶体管(DG-CNTFET)表现出矛盾性(取决于背栅电压的p型或n型行为)的细粒度动态可重构单元的规则矩阵)。使用可用的模型,已经对可重配置的小区进行了仿真,并在4 GHz操作下量化了性能指标。已经设计了适用于该矩阵结构的函数映射方法,并且已经分析了各种互连拓扑,从而将8节点函数图的平均映射成功率减至80%以上的4×4单元矩阵。这可以洞察基于这种可重新配置的单元将数据功能编码到体系结构中的方式,以实现动态和部分重编程能力。

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