基于cccii的全电流可控AM/FM调制器和正交正弦振荡器

M. Siripruchyanun, P. Koseeyaporn, J. Koseeyaporn, P. Wardkein
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引用次数: 4

摘要

本文介绍了一种基于非线性电流传送带的正弦振荡器、调幅和调频信号发生器。该电路的频率和幅值可由偏置电流控制。当输入电流作为信息信号施加到第一个和第二个CCCII+s(电流控制电流输送机)时,网络作为调频信号发生器。相反,通过将这些信息信号应用于第三CCCII+获得调幅信号。此外,该网络同时产生两个相位为90/spl度/不同的信号,从而产生正交正弦信号。该电路由三个CCCII+s和两个接地电容器组成,其中没有任何外部电阻,因此该电路适用于IC架构。给出了PSPICE仿真结果。给出的结果与理论预测一致,其中功耗约为2.4 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully current controllable AM/FM modulator and quadrature sinusoidal oscillator based on CCCIIs
In this article, a sinusoidal oscillator, AM and FM signal generator based on translinear current conveyors is introduced. The frequency and amplitude of the proposed circuit can be controlled by the bias currents. When an input current is applied as an information signal to the first and the second CCCII+s (Current Controlled Current Conveyors), the network functions as an FM signal generator. Contrarily, an AM signal is obtained by employing such information signals applied to the third CCCII+. In addition, this network simultaneously produces two signals that are 90/spl deg/ different in phase resulting in quadrature sinusoidal signals. This circuit consists of three CCCII+s and two grounded capacitors where, without any external resistors, this circuit is then suitable for IC architecture. The PSPICE simulation results are depicted. The given results agree well with the theoretical anticipation where the power consumption is approximately 2.4 mW.
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