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A MATLAB-Based Method for Designing High-Gain Resonant Transimpedance Amplifiers

机译:基于MATLAB的高增益谐振跨阻放大器设计方法

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摘要

In this paper, we propose a novel efficient method for the design of high-gain resonant transimpedance amplifiers (TIAs) using MATLAB. The procedure provides the designer with an effective tool, useful to explore the effects of different device parameter combinations in complex network topologies used in several application fields. We applied this method to improve the detection capability of a previously designed chlorophyll-A (Chl-A) sensor, in order to assess the seawater quality. By exploiting the interesting bandpass behavior exhibited by a T feedback network, we were able to redesign the resonant TIA stage of a low-cost lock-in amplifier working at 1 kHz, easily increasing the gain by a factor of 100, and reaching an overall gain of 216 dB while reducing the detectivity to almost 500 fA. Moreover, the proposed analysis provides the optimal circuit parameter values for a wide working frequency range without further numerical optimization, giving an interesting perspective of its potential use in those telecommunication applications where high sensitivity is required.
机译:在本文中,我们提出了一种使用MATLAB设计高增益谐振跨阻放大器(TIA)的新颖有效方法。该程序为设计人员提供了一种有效的工具,可用于探索多个应用领域中使用的复杂网络拓扑中不同设备参数组合的影响。为了评估海水质量,我们应用了这种方法来提高以前设计的叶绿素-A(Chl-A)传感器的检测能力。通过利用T反馈网络表现出的有趣的带通行为,我们能够重新设计工作在1 kHz的低成本锁定放大器的谐振TIA级,轻松将增益提高100倍,并达到整体增益为216 dB,同时将检波率降至近500 fA。此外,所提出的分析提供了在宽工作频率范围内的最佳电路参数值,而无需进一步的数值优化,从而给出了其在需要高灵敏度的电信应用中的潜在用途的有趣观点。

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