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Additional circuits for current-mode frequency discriminators

机译:电流模式频率鉴别器的附加电路

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The concept of current-mode frequency discriminators based on the Butterworth low-pass approximation and realized by cascading network sections was introduced in a previous paper. However, these circuits were limited to odd order because of the effects of parasitic capacitance which restricted the usefulness of even order realizations at higher frequencies. Odd order realizations needed only two types of current-mode circuits, and compensation could be employed for the parasitic capacitances. In this paper, additional circuits are devised so that the previous results can be extended to realizations of even order current-mode frequency discriminators based on the Butterworth approximation and to odd order approximations using the inverse Chebyshev approximation. As with the odd order realizations given previously, only two types of current-mode circuits are needed in the realization of a particular frequency discriminator, and parasitic capacitances can be taken into account. The circuits are simulated using non-ideal models for the current conveyors, and the results are compared with laboratory data. The effects of parasitic elements and departures of circuit characteristics from ideal are discussed.
机译:在前一篇论文中引入了基于Butterworth低通近似和通过级联网络部分实现的基于Butterworth低通近似的电流模式频率鉴别器的概念。然而,由于寄生电容的影响,这些电路仅限于奇数,这限制了甚至在较高频率下的顺序实现的有用性。奇数订单实现只需要两种类型的电流模式电路,并且可以用于寄生电容的补偿。在本文中,设计了附加电路,使得先前的结果可以基于Butterworth近似和使用逆骨干近似的奇数级近似来扩展到偶数顺序电流模式频率鉴别器的实现。与先前给出的奇数订单实现一样,在实现特定频率鉴别器的情况下只需要两种类型的电流模式电路,并且可以考虑寄生电容。使用用于电流输送机的非理想模型进行模拟电路,并将结果与​​实验室数据进行比较。讨论了寄生元件的影响和从理想的电路特性的偏离。

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