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Fractional Order Sinusoidal Oscillator Using only a Single Operational Trans-resistance Amplifier

机译:仅使用单个操作跨电极放大器的分数正弦振荡器

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In this paper a fractional order sinusoidal oscillator (FSO) implemented with two fractional capacitors (FC), four resistors and a single operational trans-resistance amplifier (OTRA) has been presented. The characteristic equation of proposed fractional order oscillator has been derived using nodal analysis and the expressions for frequency of oscillation, condition of oscillation and phase difference between the output voltages are obtained. In one special case, when α = β = 1.0, the circuit behaves as a classical single resistance controlled sinusoidal oscillator (SRCO) in which the frequency of oscillation and the condition of oscillation can be varied through separate resistors. These properties are retained even when the value of α and β lie in the range of 0 < α, β < 1. Since the input terminals of OTRA are at virtually ground, the proposed oscillator circuit is also insensitive to parasitic input capacitances and input resistances. The workability of proposed structure has been verified with PSPICE simulation results using a single OTRA (constructed with CMOS transistors using TMSC 0.18 μm technology) and fractional capacitors realized using the method proposed by Valsa and Dovrak and Friedl.
机译:在本文中,已经介绍了用两个分数电容器(Fc),四个电阻器和单个操作跨电放大器(OTRA)实现的分数阶正弦振荡器(FSO)。所提出的分数阶振荡器的特性方程已经使用节点分析导出,并且振荡频率的表达式,获得了输出电压之间的振荡条件和相位差。在一个特殊情况下,当α=β= 1.0时,电路表现为经典的单电阻控制正弦振荡器(SRCO),其中振荡频率和振荡条件可以通过单独的电阻来改变。即使α和β的值位于0 <α,β<1的范围内,这些性质也被保留在0 <α<1的范围内。由于OTRA的输入端子在几乎接地,所提出的振荡器电路也对寄生输入电容和输入电阻不敏感。使用单个OTRA(使用TMSC0.18μm技术构造的CMOS晶体管构造)和使用Valsa和Dovrak和Friedl提出的方法实现的PSPICE模拟结果已经使用PSPICE模拟结果验证了所提出的结构的可加工性。

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