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Asynchronous design by conversion: converting synchronous circuits into asynchronous ones

机译:转换的异步设计:将同步电路转换为异步

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A novel methodology and algorithm for the design of large low-power asynchronous systems are described. The system is synthesized by a commercial tool as a synchronous circuit, and subsequently converted into an asynchronous one. The conversion algorithm consists of extracting input and output sets, replacing the storage elements, identifying fork and join sets, and constructing request and acknowledge networks. A DLAP (doubly latched asynchronous pipeline) architecture is employed. The resulting asynchronous circuit can adapt its effective operating frequency to the supply voltage, facilitating flexible and efficient power management. The algorithm has been validated on several circuits.
机译:描述了一种新的低功耗异步系统设计方法和算法。该系统由商业工具作为同步电路合成,随后将其转换成异步。转换算法包括提取输入和输出集,替换存储元素,识别叉子和加入集,以及构建请求和确认网络。使用DLAP(双锁定异步管道)架构。由此产生的异步电路可以使其有效的工作频率适应电源电压,促进灵活高效的电源管理。算法已在多个电路上验证。

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