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Karnaugh Maps of Logical Systems and Applications in Digital Circuit Design

机译:逻辑系统的Karnaugh地图和数字电路设计中的应用

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This paper extends the concept of Karnaugh map from a logical function to a logical system, thereby allowing both the state transition graph and state transition matrix of a logical system, as well as a digital circuit, to be constructed directly. It is found that the Karnaugh map of a logical system is actually a two-dimensional state transition table or, equivalently, a table-like state transition graph and is also a grid-type state transition matrix. For constructing the state transition graph and state transition matrix of a logical system, the computational complexities of the methods based on the proposed Karnaugh map are exponentially lower than those of the existing methods. The Karnaugh maps of logical systems are then used in the analysis and design of clocked sequential circuits and in the simplification of multioutput gate circuits. Some illustrative examples and simulations are presented to demonstrate the results and their applications.
机译:本文将Karnaugh地图的概念从逻辑功能扩展到逻辑系统,从而允许直接构建逻辑系统的状态转换图和状态转换矩阵,以及数字电路。发现逻辑系统的卡诺映射实际上是一个二维状态转换表,等效地,表样状态转换图,也是网格型状态转换矩阵。为了构建逻辑系统的状态转换图和状态转换矩阵,基于所提出的Karnaugh地图的方法的计算复杂性是指数级性低于现有方法的方法。然后用于逻辑系统的Karnaugh地图在时钟顺序电路的分析和设计中,并简化了多输出栅极电路。提出了一些说明性的示例和仿真以证明结果及其应用。

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