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Piecewise Nonlinear Approach to the Implementation of Nonlinear Current Transfer Functions

机译:实现非线性电流传递函数的分段非线性方法

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摘要

A piecewise nonlinear approach to the nonlinear circuit design has been proposed in this paper. It is to approximate a target nonlinear transfer function by a particular combination of selected nonlinear pieces. The pieces can be produced by one or more analog blocks involving nonlinear devices. This approach can be applied to design nonlinear circuits to implement various current transfer functions. By controlling the operation modes of the transistor pair in a simple current mirror, one can modulate the current transfer function in a radical or fine-tuning manner. It is thus possible for the same current mirror to generate very different nonlinear pieces in different sections of its input range. In order that the control is done automatically by the input current, or in other words, the operation of the transistors is made to be input-current-dependent in a controlled manner, a series structure of two transistors has been proposed to be incorporated in the current mirror. The dependency can be made different by placing the structure in different places of the current mirror and/or by making the two transistors complementary or not, which makes the variations of the nonlinear function. Several current mirrors have been designed. Each of them consists of a very small number of transistors and performs a defined nonlinear current transfer function. The circuits have been simulated with HSPICE to validate the functions. The successful results have been obtained and are presented in the paper.
机译:本文提出了一种用于非线性电路设计的分段非线性方法。通过选定的非线性部分的特定组合来近似目标非线性传递函数。这些零件可以由一个或多个涉及非线性器件的模拟模块生产。该方法可用于设计非线性电路以实现各种电流传递函数。通过在简单的电流镜中控制晶体管对的工作模式,就可以以彻底或微调的方式调制电流传递函数。因此,同一个电流镜可能会在其输入范围的不同部分中生成非常不同的非线性片段。为了通过输入电流自动进行控制,或者换句话说,使晶体管的操作以受控的方式取决于输入电流,已经提出将两个晶体管的串联结构并入其中。当前镜像。通过将结构放置在电流镜的不同位置和/或通过使两个晶体管互补或不互补,可以使依赖性不同,这使得非线性函数发生变化。已经设计了几种电流镜。它们每个都由极少数的晶体管组成,并执行定义的非线性电流传递函数。已使用HSPICE对电路进行了仿真,以验证功能。已获得成功的结果,并在本文中进行介绍。

著录项

  • 作者

    Wang Chunyan;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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