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Data-Dependent Operation Speed-Up Through Automatically Inserted Signal Transition Detectors for Ultralow Voltage Logic Circuits

机译:通过自动插入的信号转换检测器加快超低电压逻辑电路的数据相关操作速度

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摘要

With the advent of mobile electronics requiring ever more computing power from a limited energy supply, there is a need for efficient systems capable of maximizing this ratio. Architectural enhancements must therefore be designed to enable high performance, all the while maintaining the power advantage. The technique proposed in this paper allows the acceleration of combinatorial circuits beyond the performance generally achievable by conventional synthesis and timing closure, by exploiting the data-dependent delay variations inherent in such circuits. Through the automatic insertion of transition detectors within the target circuit, the progress of operations underway can be monitored and prematurely completed, thereby increasing the operation speed from the worst toward the average case. In addition, a synthesis flow is proposed to increase the proportion of fast paths, thereby increasing the technique's impact. The proposed technique was applied automatically to a series of benchmark circuits, and the synthesis results show it to achieve good performance, with an average increase of 29% over conventional synthesis, for an average energy increase of overall.
机译:随着移动电子的出现,需要有限的能量供应来提供越来越多的计算能力,因此需要一种能够最大化该比率的高效系统。因此,必须设计架构上的增强功能以​​实现高性能,同时又要保持功耗优势。本文提出的技术可以通过利用组合电路固有的数据相关延迟变化,使组合电路的加速超出常规合成和时序收敛通常可实现的性能。通过在目标电路中自动插入过渡检测器,可以监视正在进行的操作进度并提前完成,从而将操作速度从最坏的情况提高到正常的情况。另外,提出了一种合成流程来增加快速路径的比例,从而增加该技术的影响。所提出的技术自动应用于一系列基准电路,合成结果表明,该技术实现了良好的性能,与常规合成相比平均提高了29%,总体上平均能量增加。

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