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Theoretical and experimental research on the current-mode RC oscillators

机译:电流模式RC振荡器的理论和实验研究

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This paper proposes an application of the current using its advantages in harmonic signals generation. Using current-conveyors in harmonic oscillators building, the frequency band of active device is well valorised, comparing with the situation of operational amplifiers using. The author chooses from all RC oscillators the oscillator with Wien network, as one of the most used net for RC oscillators with voltage operating mode. Both variable elements haven't any ground contact so, in working conditions, some issues regarding the screening and driving of these elements will emerge. To solve this problem we propose a RC sinusoidal oscillator circuit, made with current conveyors of second generation (CCII), of which selective network is characterised by a transfer function Wien type. This net is different of standard one, having the both capacitors for frequency adjustment ground connected. It was used current-conveyors of second generation PA 630 Phototronix, where with a structure of current amplifier with differential out comes and a selective network were made.
机译:本文提出了利用电流在谐波信号产生中的优势的应用。与使用运算放大器的情况相比,在谐波振荡器建筑中使用电流传输器,可以很好地调整有源器件的频带。作者从所有RC振荡器中选择带有Wien网络的振荡器,将其作为具有电压工作模式的RC振荡器最常用的网络之一。这两个可变元件都没有地面接触,因此,在工作条件下,将会出现有关这些元件的筛选和驱动的一些问题。为了解决这个问题,我们提出了一种由第二代电流传送器(CCII)制成的RC正弦振荡器电路,其选择性网络的特征在于传递函数为Wien型。该网络与标准网络不同,两个频率调整电容器都接地。它被用于第二代PA 630 Phototronix的电流传送器,在那里带有差动输出的电流放大器的结构形成了一个选择性网络。

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