线性频率控制的电子可控正交正弦振荡器设计

W. Jaikla, P. Suwanjan, A. Chaichana, R. Sotner
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引用次数: 1

摘要

本文介绍了一种产生两个相位差为90°的输出电压的正弦振荡器的设计。设计过程从功能框图到使用市售ic的拟议振荡器开始。所提出的振荡器由三个ota、一个电压求和电路、一个接地电阻和两个接地电容器组成。所产生的正弦波形的频率由电子和线性控制,而不干扰系统的振荡条件。利用这一特性,所提出的振荡器被用来产生调频信号。在调整产生的频率时,正交电压波形的幅值相等。通过Pspice仿真和实验验证了所提电路的性能。采用现有集成电路LM13700和AD830的宏模型进行仿真。仿真和实验结果证实了理论的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Electronically Controllable Quadrature Sinusoidal Oscillator with Linear Control of Frequency
In this paper, the design of sinusoidal oscillator which generates two output voltages with 90° degree phase difference is presented. The design procedure is started from the function block diagram to proposed oscillator using commercially available ICs. The proposed oscillator is constructed from three OTAs, one voltage summing circuit, one grounded resistor and two grounded capacitors. The frequency of the generated sinusoidal waveform is electronically and linearly controlled without disturbing the condition for oscillating of the system. With this feature, the proposed oscillator is used to generates the frequency modulation (FM) signal. The magnitude of the quadrature voltage waveform is equal during adjusting the generated frequency. A Pspice simulation and experiment are done to verify the performance of the proposed circuit. The macro models of available ICs, LM13700 and AD830 are employed for simulation. The simulation and experimental results confirm theory well as expected.
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