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On the realization of current transfer function using voltage amplifiers

机译:使用电压放大器实现电流传递功能

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摘要

Current transfer function is a feature of current-mode filters. Current-mode filters have so far been realized principally using current amplifiers and current conveyors. Some current-mode filter architecture using operational amplifiers have also been reported. In this article it is shown that by using the principles of transposed network and nullor model for the active device, a current transfer function can be realized in a very simple way using a voltage amplifier, i.e. operational amplifier (OA). The key concept is the knowledge that each ideal (i.e. infinite gain) controlled source is exactly equivalent to a nullor. Thus, a voltage-mode filter implemented using an ideal three terminal (output, input and ground) OA can be very easily converted to a current-mode filter using the same OA. The principle has been illustrated by considering single-OA- and multi-OA-based second-order voltage-mode filters. SPICE simulation results are provided to validate the theoretical concept.
机译:电流传递功能是电流模式滤波器的功能。到目前为止,主要使用电流放大器和电流传送器来实现电流模式滤波器。也已经报道了一些使用运算放大器的电流模式滤波器架构。在本文中表明,通过使用有源设备的转置网络和零或模型原理,可以使用电压放大器(即运算放大器(OA))以非常简单的方式实现电流传递函数。关键概念是这样的知识:每个理想的(即无限增益)受控源都完全等于零值。因此,使用理想的三端(输出,输入和接地)OA实现的电压模式滤波器可以很容易地转换为使用同一OA的电流模式滤波器。通过考虑基于单OA和基于多OA的二阶电压模式滤波器来说明该原理。提供SPICE仿真结果以验证理论概念。

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