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Self-dual diamond-graph CMOS H-bridge logic family

机译:自我双钻石图CMOS H-Bridge Logic系列

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The self-dual graph is a beautiful topic in graph theory. Based on DeMorgan's theorem, all CMOS circuits are series-parallel graphs. Thus self-dual graphs are few in CMOS circuits. The paper reveals a self-dual diamond-graph CMOS H-bridge circuit family, and then displays the characteristics and properties of the self-dual graphs on CMOS circuits. A basic diamond graph makes an H-bridge on the circuit. A complementary H-bridge which exists separately in p-tree or n-tree can construct various series or parallel forms for different functions. Because of the structure duality, all self-dual graph CMOS circuits can produce symmetric AOI and OAI functions, and the number of AOI and OAI functions is equal. For example, if a self-dual graph CMOS circuit can build AOI422 function, the circuit must also can make OAI422 function. Thus the self-dual graph CMOS circuits can realize symmetric function generators. Due to the above features, the self-dual graph CMOS circuits are suitable for intelligent signal processing and configurable computing.
机译:自我双图是图论中的一个美好主题。基于Demorgan的定理,所有CMOS电路都是平行的图形。因此,自二元图是CMOS电路中的少量。本文揭示了一种自我双钻石图CMOS H桥电路系列,然后显示CMOS电路上的自二元图的特性和性质。基本钻石图在电路上制作H桥。在P树或N树中单独存在的互补H桥可以构建不同功能的各种系列或并行形式。由于结构二元性,所有自二种图形CMOS电路都可以产生对称AOI和OAI函数,并且AOI和OAI函数的数量相等。例如,如果自行双图CMOS电路可以构建AOI422功能,则电路也必须使OAI422功能。因此,自二元图CMOS电路可以实现对称函数发生器。由于上述特征,自双图CMOS电路适用于智能信号处理和可配置的计算。

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