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Magnetoelectric Sensors With Directly Integrated Charge Sensitive Readout Circuit—Improved Field Sensitivity and Signal-to-Noise Ratio

机译:具有直接集成的电荷敏感读出电路的磁电传感器-改善了场灵敏度和信噪比

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The large magnetoelectric (ME) coupling in the ME laminates makes them attractive for ultrasensitive room temperature magnetic sensors. Here ,we investigate the field sensitivity and signal-to-noise ratio (SNR) of ME laminates, consisting of magnetostrictive and piezoelectric layers (Metglas and piezopolymer PVDF were used as the model system), which are directly integrated with a low noise readout circuit. Both the theoretical analysis and experimental results show that increasing the number of piezoelectric layers can improve the SNR, especially at low frequencies. We also introduce a figure of merit to measure the overall influence of the piezolayer properties on the SNR and show that the newly developed piezoelectric single crystals of PMN-PT and PZN-PT have the promise to achieve a very high SNR and consequently ultra-high sensitivity room temperature magnetic sensors. The results show that the ME coefficients used in early ME composites development works may not be relevant to the SNR. The results also show that enhancing the magnetostrictive coefficient, for example, by employing the flux concentration effect, can lead to enhanced SNR.
机译:ME层压板中的大型磁电(ME)耦合使其成为超灵敏室温磁传感器的诱人之处。在这里,我们研究了由磁致伸缩层和压电层(使用Metglas和压电聚合物PVDF作为模型系统)构成的ME层压板的场灵敏度和信噪比(SNR),该层直接与低噪声读出电路集成。理论分析和实验结果均表明,增加压电层数可以改善SNR,尤其是在低频情况下。我们还介绍了一个品质因数,用于测量压电层特性对SNR的总体影响,并表明新开发的PMN-PT和PZN-PT压电单晶有望实现非常高的SNR,因此具有超高的信噪比。灵敏度室温磁传感器。结果表明,早期ME复合材料开发工作中使用的ME系数可能与SNR不相关。结果还表明,例如通过利用磁通量集中效应来提高磁致伸缩系数可以导致SNR的提高。

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