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Performance comparison review of Radix-based multiplier designs

机译:基于基于基于基于基于基于基于乘法机的比较综述

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This is a study of the relative performance comparison of Radix-based Booth Encoding multiplier. Multipliers included in the comparison are Radix-2 Booth Encoding multiplier, Radix-4 Booth Encoding multiplier, Radix-8 Booth Encoding multiplier, Radix-16 Booth Encoding multiplier and Radix-32 Booth Encoding multiplier. All these multiplier designs were modeled in Verilog HDL and synthesized based on TSMC 0.35-micron ASIC Design Kit standard cell library. The performance data was extracted after logic synthesis has been done by using Leonardo Spectrum for Area, Speed and Auto-Optimization modes. From the findings obtained, it is known that the gate level and delay synthesis performances of the Radix-4 Booth Encoding multiplier are reduced if it is compared to Radix-2 Booth Encoding multiplier design. Then, as the higher the number of Radix-based multiplier, both the gate level and the delay performances will increase due to the complexity of the partial products encoded. However, the largest area and longest timing delay can still be seen in Radix-2 Booth Encoding multiplier. The comparison of the 32-bit Radix-based Booth Encoding variants indicates that the Radix-4 Booth Encoding multiplier is the best multiplier in terms of high-speed applications and low area constraint.
机译:这是对基于基于基于基于基于基于频率的比较乘法器的研究。比较中的乘数是基数-2展位编码乘法器,基准-4展位编码乘法器,基准-8展位编码乘法器,基数-16展位编码乘法器和基数-32展位编码乘法器。所有这些乘法器设计都以Verilog HDL建模并基于TSMC 0.35微米ASIC设计套件标准单元库合成。通过使用Leonardo光谱进行面积,速度和自动优化模式,在逻辑合成之后提取性能数据。从所获得的发现,如果将RADIX-4展位编码乘数的栅极电平和延迟合成性能与编码乘法器设计进行比较。然后,基于基于基于基于基于基于基数的乘法器的数量越高,由于编码的部分产品的复杂性,栅极电平和延迟性能都会增加。然而,在Radix-2展位编码乘数中仍然可以看到最大的区域和最长的定时延迟。基于32位基数的展位编码变型的比较表明,在高速应用和低区域约束方面,编码乘数的基数-4展位编码乘数是最佳乘法器。

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