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REDESIGN THE 4:2 COMPRESSOR FOR PARTIAL PRODUCT REDUCTION

机译:重新设计4:2压缩机以减少部分产品

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摘要

In this paper, we attempt to redesign the 4:2 compressors.Since its inception by Weinberger in 1981[1], this concept of compressor has been used in most digital multiplications and multi operand operation scheme. The original of 4:2 compressor has been build using the full adder unit. Hence this compressor is no improvement compare using Wallace tree or other tree structure. Early 90’s some designer has modified the 4:2 compressor in order to reduce the critical path. As a result, a worse case to cross a level of 4:2 compressor is 3 XOR [4]. While in this paper, we have redesign 4:2 compressor based on modification of 4:2 compressor [2, 3, 4]. This design has been simulated using Quartus II software to verify the circuit. As a result, total transistor used in our compressor is less 4 than the modified 4:2 compressor and less 2 transistor than the original 4:2 compressor. In term of speed, the critical path of Carry Out signal is same as the original 4:2 compressor. Our compressor is 0.05% faster than modified 4:2 compressor.
机译:在本文中,我们尝试重新设计4:2压缩器。自1981年Weinberger提出[1]以来,这种压缩器的概念已用于大多数数字乘法和多操作数运算方案中。原始的4:2压缩器已使用完整的加法器单元构建。因此,与使用华莱士树或其他树结构相比,该压缩器没有任何改进。 90年代初期,一些设计师修改了4:2压缩器以减少关键路径。结果,越过4:2压缩器级别的最坏情况是3 XOR [4]。在本文中,我们基于4:2压缩器的修改[2,3,4]重新设计了4:2压缩器。使用Quartus II软件对该设计进行了仿真,以验证电路。结果,我们的压缩机中使用的总晶体管比修改后的4:2压缩机少4个,比原始4:2压缩机少2个晶体管。在速度方面,执行信号的关键路径与原始4:2压缩机相同。我们的压缩机比改良的4:2压缩机快0.05%。

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