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A novel implementation of high speed modified brent kung carry select adder

机译:高速修改的布伦特·肯特利携带选择加法器的新实现

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VLSI technology is an emerging field in the current technological scenario due to its advancements in fields of systems architecture, analog and digital logic and adders are the basic building blocks in digital integrated circuit based designs. The existing Ripple Carry Adder (RCA) has the most compact design but takes longer computation time. The time critical applications use Carry Look-ahead Adder (CLA) but they lead to increase in area. Carry Select Adder (CSLA) is a compromise between RCA and CLA in terms of area and delay. In this paper the logic operations involved in RCA based CSLA and Binary to Excess-1 Converter (BEC) based CSLA is analyzed to study the data dependence and to identify the redundant logic operations. The proposed design includes CSLA using parallel prefix adder. Parallel prefix adders are a tree structure based and are preferred to speed up the binary additions. Brent Kung (BK) adder is a parallel prefix adder which gives improved performance in terms of speed. A linear BK CSLA is designed and a modification is made in linear BK CSLA, by using BEC and BK with reduced delay. The designs are synthesized using Altera Quartus II Software.
机译:由于VLSI技术在系统架构,模拟和数字逻辑以及加法器是基于数字集成电路的设计中的基本组成部分方面的进步,因此它是当前技术场景中的新兴领域。现有的纹波进位加法器(RCA)具有最紧凑的设计,但需要更长的计算时间。时间紧迫的应用程序使用进位超前加法器(CLA),但它们会导致面积增加。进位选择加法器(CSLA)是RCA和CLA在面积和延迟方面的折衷方案。本文分析了基于RCA的CSLA和基于二进制至超额1转换器(BEC)的CSLA中涉及的逻辑运算,以研究数据依赖性并确定冗余逻辑运算。提出的设计包括使用并行前缀加法器的CSLA。并行前缀加法器是基于树结构的,因此可以加快二进制加法的速度。 Brent Kung(BK)加法器是并行前缀加法器,它在速度方面提供了改进的性能。通过使用延迟减小的BEC和BK,设计了线性BK CSLA,并对线性BK CSLA进行了修改。这些设计是使用Altera Quartus II软件进行综合的。

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