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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effect of spatial distribution of dissipated power on modeling of SMR BAW resonators at high power levels
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Effect of spatial distribution of dissipated power on modeling of SMR BAW resonators at high power levels

机译:耗散功率的空间分布对高功率水平SMR BAW谐振器建模的影响

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The modeling of bulk acoustic wave resonators at elevated power levels has been improved by taking the spatial distribution of the dominating loss mechanisms into account. The spatial distribution of the dissipated power enables more accurate modeling of the temperature increase caused by the applied power. Thus, it is also possible to more accurately model the frequency shifts of the resonators' impedance curves resulting from the temperature increase caused by the applied power. Simulation and measurement results for the temperatures and impedances of the resonators with different layerstacks at high power loads are presented. The simulation and measurement results are in good agreement, confirming the presented modeling approach. Furthermore, the de-embedding procedure used to obtain vectorial scattering parameters of the resonators during high power loads, the according measurement setup, and the procedure for measuring absolute temperatures by infrared thermography are discussed.
机译:通过考虑主要损耗机制的空间分布,改进了高功率级体声波谐振器的建模。耗散功率的空间分布使得可以更准确地建模由施加的功率引起的温度升高。因此,还可以更准确地对由施加功率引起的温度升高导致的谐振器阻抗曲线的频率偏移建模。给出了在高功率负载下具有不同叠层的谐振器的温度和阻抗的仿真和测量结果。仿真和测量结果吻合良好,证实了所提出的建模方法。此外,还讨论了用于获得高功率负载时谐振器的矢量散射参数的去嵌入过程,相应的测量设置以及通过红外热像仪测量绝对温度的过程。

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