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Synthesis of single/dual-rail mixed PTL/static logic for low-power applications

机译:适用于低功耗应用的单/双轨混合PTL /静态逻辑的综合

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We present single- and dual-rail mixed pass-transistor logic (PTL) synthesis method based on genetic search and compared the results with their conventional static CMOS counterparts synthesized using a commercial logic synthesis tool in terms of area, delay, and power in an experimental 0.1- and 0.13-/spl mu/m CMOS technologies as well as a 0.13-/spl mu/m floating-body partially depleted silicon-on-insulator (PDSOI) process. The proposed synthesis method first performs a search for possible matches between a logic structure and a set of predefined PTL/static logic gates using binary decision diagrams (BDDs). The unique contribution of our approach is the use of a genetic algorithm to determine the best mixture of PTL and static cells based on area and power. Our experimental results demonstrate that both single- and dual-rail mixed PTL circuits synthesized using the proposed mixed PTL/CMOS synthesis method outperforms their static counterparts in delay and power in bulk CMOS as well as silicon-on-insulator (SOI) CMOS technologies. The average power of single- and dual-rail mixed PTL/Static ISCAS'85 benchmark circuits using the proposed method in the 0.1-/spl mu/m bulk CMOS process are 73% and 50% better than their static counterparts with performance gains of 5% and 10%, respectively.
机译:我们提出了一种基于遗传搜索的单轨和双轨混合传输晶体管逻辑(PTL)合成方法,并将结果与​​使用商用逻辑合成工具合成的常规静态CMOS对应器件在面积,延迟和功耗方面进行了比较。实验性的0.1和0.13- / splμ/ m CMOS技术,以及0.13- / splμ/μm的浮体部分耗尽绝缘体上硅(PDSOI)工艺。提出的综合方法首先使用二进制决策图(BDD)对逻辑结构与一组预定义的PTL /静态逻辑门之间的可能匹配进行搜索。我们方法的独特贡献是使用遗传算法根据面积和功率确定PTL和静态细胞的最佳混合物。我们的实验结果表明,使用建议的混合PTL / CMOS合成方法合成的单轨和双轨混合PTL电路在整体CMOS以及绝缘体上硅(SOI)CMOS技术的延迟和功耗方面均优于其静态同类产品。在0.1- / spl mu / m块状CMOS工艺中,使用建议的方法,单轨和双轨混合PTL /静态ISCAS'85基准电路的平均功率分别比其静态同类产品的平均功率分别高73%和50%。分别为5%和10%。

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