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A systematic design procedure for square-root-domain circuits based on the signal flow graph approach

机译:基于信号流图的平方根域电路系统设计程序

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A new systematic design procedure for square-root-domain (/spl radic/x-domain) circuits, which is based on the signal flow graph (SFG) synthesis approach, is introduced in this paper. The SFG of the prototype system is modified, using a proposed set of operators, in such a way that /spl radic/x-domain building blocks could be used for the corresponding implementations. For this purpose, new /spl radic/x-domain integrator circuits have been proposed which were constructed from new current-mode geometric-mean and multiplier/divider circuits. The main advantages of the proposed circuits are the accuracy due to immunity to the body effect, low circuit complexity and potential for low-voltage operation. As an example, a fifth-order Chebyshev low-pass filter was designed using the proposed technique. Simulation results confirm the validity of the proposed design technique and the high performance of the proposed circuits.
机译:本文介绍了一种基于信号流图(SFG)综合方法的平方根域(/ spl radic / x域)电路系统设计方法。使用一组提议的运算符来修改原型系统的SFG,以使/ spl radic / x-domain构造块可以用于相应的实现。为此,已经提出了由新的电流模式几何均值电路和乘法器/除法器电路构成的新的/ spl radic / x域积分器电路。所提出的电路的主要优点是由于对人体效应的免疫力,较低的电路复杂性和低电压工作的潜力而导致的精度。例如,使用所提出的技术设计了五阶切比雪夫低通滤波器。仿真结果证实了所提出的设计技术的有效性和所提出的电路的高性能。

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