The optimum Booth radix for low power integer multipliers

H. Saleh, B. Mohammad, E. Swartzlander
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引用次数: 3

Abstract

This paper investigates the optimum Booth integer multiplier for low power applications. Booth radix-4, radix-8 and radix-16 were compared for area, speed and power using standard-cell ASIC design flow and 28nm CMOS technology. All of the investigated designs were implemented in RTL, fully verified and then synthesized using 28nm standard-cell libraries which have low leakage slow cells, regular leakage average-speed cells and high-leakage fast-speed cells. The area, speed and power were compared to determine the best choice for low power designs. Among the three investigated designs, the Booth radix-4 was the best choice, it had the lowest area, power and fastest execution speed among the 3-choices. It is worthy of note that radix-8 had lower leakage power and overall power among the three designs when implemented using LVT cells. So for power sensitive and high-speed applications radix-8 could be a better choice with overhead of about 18% area and 3% slower.
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低功率整数乘法器的最佳布斯基数
本文研究了低功耗应用的最佳布斯整数乘法器。采用标准单元ASIC设计流程和28nm CMOS技术,对基数4、基数8和基数16的面积、速度和功耗进行了比较。所有设计都在RTL中实现,充分验证并使用28nm标准细胞库进行合成,该标准细胞库包括低泄漏慢速细胞,常规泄漏平均速度细胞和高泄漏快速细胞。对面积、速度和功率进行比较,以确定低功耗设计的最佳选择。在三个被调查的设计中,Booth基数-4是最佳选择,它在三个选择中具有最小的面积,功耗和最快的执行速度。值得注意的是,当使用LVT单元实现时,radix-8在三种设计中具有较低的泄漏功率和总功率。因此,对于功率敏感和高速应用程序,基数-8可能是更好的选择,开销约为18%的面积,速度慢3%。
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