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Design of a variable gain and phase amplifier using double resonance and current conveyor circuits

机译:使用双谐振和电流输送电路设计可变增益和相位放大器

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Some radiofrequency applications require control of magnitude and phase of narrowband signals, such as beamforming networks for antenna arrays. An amplifier capable of varying magnitude and phase of a signal through control signals can be called a variable gain and phase amplifier (VGPA). In this paper a VGPA circuit is proposed which utilizes two double resonance circuits, each one with a voltage variable capacitor to produce magnitude and phase variations. To avoid excessive reflections at the output port, and to establish high impedance in certain parts of the circuit, two current conveyor circuits connected as voltage follower are used. Analysis of each stage as well as design methodology is presented. A design example is carried out and graphics for the properties of gain and phase are obtained using simulation tools. Although control of these characteristics is not independent, the advantage is that it can be done by a single circuit.
机译:一些射频应用需要控制窄带信号的幅度和相位,例如用于天线阵列的波束形成网络。能够通过控制信号改变信号的幅度和相位的放大器可以称为可变增益和相位放大器(VGPA)。在本文中,提出了一种VGPA电路,其利用两个双谐振电路,每个双谐振电路,每个具有电压可变电容器来产生幅度和相位变化。为了避免输出端口处的过度反射,并且在电路的某些部件中建立高阻抗,使用连接为电压跟随器的两个电流输送电路。提出了对每个阶段的分析以及设计方法。执行设计示例,使用仿真工具获得增益和相位属性的图形。虽然对这些特性的控制不是独立的,但优点是它可以通过单个电路来完成。

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