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A new approach for using the pathological mirror elements in the ideal representation of active devices

机译:在理想的有源设备中使用病理镜面元件的新方法

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This paper is adopting a new approach to investigate the capabilities of pathological mirror elements in the ideal representation of active building-blocks and shows that the voltage mirror (VM) and current mirror (CM) are the basic pathological elements. The descriptions for the floating mirror elements in the nodal admittance matrix (NAM), using infinity-variables, are derived. The descriptions for nullator and norator using infinity-variables in the NAM are shown to represent special cases from the derived descriptions of the floating VM and the CM, respectively. Hence, new representations for the nullator and norator in terms of the floating VM and CM, respectively, are obtained. A systematic procedure for the derivation of pathological configurations to ideally represent various analog signal-processing properties featured by active building-blocks is presented. This systematic approach became plausible by virtue of the versatility offered by the NAM descriptions of floating mirror elements. Novel pathological configurations ideally describing most popular signal-processing properties that involve differential or multiple single-ended signals; like conversion between differential and single-ended voltages, differential voltage conveying, current differencing, differential current conveying, and inverting current replication; are derived systematically using this procedure. The resulting pathological configurations are shown to be constructed mainly using mirror elements and hence the capabilities of the mirrors as basic pathological elements are further demonstrated. Pathological representations for some active building-blocks, using the derived pathological sections, are presented as application examples.
机译:本文采用一种新方法来研究病理性镜像元素在活动构建块的理想表示中的功能,并表明电压镜像(VM)和电流镜像(CM)是基本病理元素。推导了使用无穷大变量的节点导纳矩阵(NAM)中的浮动反射镜元素的描述。 NAM中使用无穷大变量的归零器和归零器的描述显示为分别表示从浮动VM和CM派生的描述中的特殊情况。因此,获得分别针对浮动VM和CM的无效器和无效器的新表示。提出了一种病理过程推导的系统化程序,以理想地表示以活动构件为特征的各种模拟信号处理特性。由于NAM浮动反射镜元件描述提供的多功能性,这种系统的方法变得可行。新颖的病理学配置理想地描述了涉及差分或多个单端信号的最流行的信号处理特性;例如差分电压和单端电压之间的转换,差分电压传输,电流差,差分电流传输和反相电流复制;使用此过程系统地导出。所显示的病理构造显示主要使用反射镜元件构成,因此进一步证明了反射镜作为基本病理元件的功能。使用派生的病理学部分,介绍了一些活动构件的病理学表示,作为应用实例。

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