使用新的加法器公式部署布朗乘法器

A. Varshney, A. P, P. M, Poovendan R, S. Navaneethan
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引用次数: 0

摘要

对于所有应用程序来说,延迟和存储需求变得越来越重要。工业中最关键的因素之一是生产和消费之间的时间差。在任何部门的任何实际应用中都要考虑到这两个因素。VLSI技术的许多技术允许创建这样的软件。在创建布劳恩乘数时采用了两种方法。这个乘法器是使用CMOS和GDI技术的组合构建的。乘数采用并行前缀加法器。系统的速度可以通过使用布朗乘法器来提高。坦纳V-13是电子设计和分析工具,用于创建博朗乘数。互补金属氧化物半导体和掺锗铟电路都考虑了该倍增器的输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deployment of Braun Multiplier Using Novel Adder Formulations
Latency and storage requirements are becoming increasingly important for all applications. One of the most crucial factors in industry is the time lag between production and consumption. These two factors are taken into account for any practical use in any sector. VLSI technology's many techniques allow for the creation of such software. Two approaches were taken in the creation of the Braun multiplier. This multiplier is built using a combination of CMOS and GDI techniques. The multiplier employs the parallel prefix adders. The system's speed may be increased with the use of the Braun multiplier. Tanner V-13 is the Electronic Design and Analysis tool used to create the Braun multiplier. Both complementary metal-oxide semiconductor and germanium-doped indium circuits took this multiplier's output into account.
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