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Current Controlled Instrumentation Amplifiers Based on Current Controlled Conveyors

机译:基于电流控制输送机的电流受控仪表放大器

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Background: In this paper, two enhanced current controlled instrumentation amplifiers are proposed. These circuits, which have no passive elements, use second-generation current controlled conveyors, as basic building blocks, and a grounded active resistance. Materials & Methods: The instrumentation amplifiers are positively affected by certain features of the current controlled conveyor, such as: simple structure, high frequency functioning, low supply voltage and low power dissipation. The proposed structures do not require matched resistors to reach a high common mode rejection ratio. They have wide bandwidth that remains unaffected by a current controlled differential gain. Results: Moreover, they offer high input impedance and low offset, which are a desirable features for instrumentation amplifiers. Accordingly, the proposed amplifiers are suitable for integrated circuit implementation in the medical field. The instrumentation amplifiers characteristics are confirmed through PSPICE simulation in order to sustain the theoretical results. Conclusion: A comparison with the structures presented in the literature was undertaken to highlight the benefits of our circuits.
机译:背景:在本文中,提出了两个增强的电流受控仪表放大器。这些电路没有无源元件,使用第二代电流控制输送机,作为基本构造块,以及接地的主动电阻。材料和方法:仪表放大器受电流控制输送机的某些特征的积极影响,例如:结构简单,高频功能,低电源电压和低功耗。所提出的结构不需要匹配的电阻来达到高共模抑制比。它们具有宽带宽,仍然不受当前控制的差异增益的影响。结果:此外,它们提供高输入阻抗和低偏移,这是仪表放大器的理想特征。因此,所提出的放大器适用于医学领域的集成电路实现。通过PSPICE仿真确认仪表放大器特性,以维持理论结果。结论:对文献中提出的结构进行了比较,突出了电​​路的益处。

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