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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Universal Set of CMOS Gates for the Synthesis of Multiple Valued Logic Digital Circuits
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Universal Set of CMOS Gates for the Synthesis of Multiple Valued Logic Digital Circuits

机译:通用的CMOS门集合,用于合成多值逻辑数字电路

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The design of Multiple Valued Logic (MVL) digital circuits is performed by increasing the representation domain from the two level (N=2) switching algebra to N > 2 levels. Universal sets of MVL CMOS gates allow the synthesis and implementation of any MVL digital circuit. The main drawback of this approach is the lack of existing integrated circuits that implement the universal set of MVL gates. This paper deals with: 1) the design and implementation of a universal set of IC gates, CMOS 0.35 µm technology, that carry out extended AND operators: eAND1, eAND2, eAND3, Successor (SUC), and Maximum (MAX) operators to perform synthesis of any MVL digital circuits; and 2) the synthesis of an MVL multiplexer and latch memory circuits, based on the IC MVL gates, to illustrate the utilization of the proposed IC MVL gates for quaternary MVL. Implemented circuits demonstrate correct functionality of the implemented gates and feasibility of the MVL combinatorial and memory circuit design. The proposed gates allow designing MVL digital circuit taking advantage of the knowledge coming from the binary circuits. By using a methodology based on the boolean algebra, digital circuits designers can take advantage of it to decrease the design learn curve.
机译:多值逻辑(MVL)数字电路的设计是通过将表示域从两级(N = 2)交换代数增加到N> 2级来完成的。通用的MVL CMOS门组允许任何MVL数字电路的合成和实现。这种方法的主要缺点是缺少实现通用MVL门集的现有集成电路。本文讨论以下内容:1)设计和实现通用IC门,CMOS 0.35 µm技术,该门执行扩展的AND运算符:eAND1,eAND2,eAND3,后继(SUC)和最大(MAX)运算符以执行任何MVL数字电路的综合; 2)基于IC MVL门对MVL多路复用器和锁存存储器电路进行综合,以说明所提出的IC MVL门用于四元MVL的情况。已实现的电路演示了已实现的门的正确功能以及MVL组合和存储电路设计的可行性。所提出的门允许利用来自二进制电路的知识来设计MVL数字电路。通过使用基于布尔代数的方法,数字电路设计人员可以利用它来减少设计学习曲线。

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