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首页> 外文期刊>Journal of Electrical and Computer Engineering >New Current-Mode Integrated Ternary Min/Max Circuits without Constant Independent Current Sources
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New Current-Mode Integrated Ternary Min/Max Circuits without Constant Independent Current Sources

机译:没有恒定独立电流源的新型电流模式集成三进制最小/最大电路

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摘要

Novel designs of current-mode Ternary minimum (AND) and maximum (OR) are proposed in this paper based on Carbon NanoTube Field Effect Transistors (CNTFET). First, these Ternary operators are designed separately. Then, they are combined together in order to generate both outputs concurrently in an integrated design. This integration results in the elimination of common parts when both functions are required at the same time. The third proposed current-mode integrated circuit generates both ternary operators with the usage of only 30 transistors. The new designs are composed of three main parts: (1) the part which converts current to voltage; (2) threshold detectors; and (3) the parallel paths through which the output current flows. Unlike the previously presented structure, there is no need for any constant current source within the new designs. This elimination leads to less static power dissipation. The second proposed current-mode segregated Ternary minimum operates 43% faster and consumes 40% less power in comparison with a previously presented structure.
机译:本文基于碳纳米管场效应晶体管(CNTFET),提出了电流模式三进制最小值(AND)和最大值(OR)的新颖设计。首先,这些三元运算符是分开设计的。然后,将它们组合在一起,以便在集成设计中同时生成两个输出。当同时需要两个功能时,这种集成可消除公共零件。提出的第三种电流模式集成电路仅使用30个晶体管即可生成两个三元运算符。新设计包括三个主要部分:(1)将电流转换为电压的部分; (2)阈值检测器; (3)输出电流流经的平行路径。与先前介绍的结构不同,新设计中不需要任何恒定电流源。这种消除导致较少的静态功耗。与先前提出的结构相比,第二个提出的电流模式隔离三进制最小值运行速度快43%,功耗降低40%。

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