\begin{document}$ {f}_{\rm{m}} $\end{document}, the series resonance frequency \begin{document}$ {f}_{\rm{s}} $\end{document}, and the resonance frequency \begin{document}$ {f}_{\rm{r}} $\end{document} are obtained and discussed. On this basis, the influence of driving voltage, bias magnetic field, and the quality factor (Q value) on ME antenna impedance characteristics are experimentally explored. Finally, the reactance components of both 1-1 type of and 2-1 type of ME antenna are collected by referring to the actual working frequency \begin{document}$ {f}_{\rm{d}} $\end{document}. Experimental results prove that the resonant ME antennas are basically pure resistive vibrators, while an ME antenna with high Q value normally fails to support high driving field because of the low resistance (< 100 Ω) and the strong nonlinearity. Thus, the field radiation capability in 2-1 type of ME antenna is higher than that in 1-1 typed one. This work provides the ideas for choosing Q value and further optimizing a magnetoelectric antenna based on the understanding of its impedance characteristics."> - 必威体育下载

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    Song Kai-Xin, Min Shu-Gang, Gao Jun-Qi, Zhang Shuang-Jie, Mao Zhi-Neng, Shen Ying, Chu Zhao-Qiang
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    • Abstract views:4583
    • PDF Downloads:156
    • Cited By:0
    Publishing process
    • Received Date:30 March 2022
    • Accepted Date:19 May 2022
    • Available Online:08 December 2022
    • Published Online:24 December 2022

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