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Broad Frequency-band Characterizations of Electromagnetic Energy Propagation in Planar Thin-film Transmission Lines

机译:平面薄膜传输线中电磁能量传播的宽带特性

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Thin-film transmission lines are experimentally characterized in the frequency range from 10 MHz to 110 GHz. Scattering (S-) parameters for several test lines are measured. Then, two important transmission line parameters (i.e., the propagation constant and characteristic impedance) are determined in the measured frequency range. The resonances, which are inevitable in a practical experimental environment, are carefully eliminated by de-embedding parasitic effects and by determining the frequency-variant dielectric permittivity based on the Debye model. Based on the experimental work, we showed that the conventional skin-effect model may not be accurate for highfrequencies. Further, the 3-dimensional (3D) numerical field solver does not reflect the radiation loss at high-frequency. Finally, in the millimeter (mm)-wave region, all the three loss mechanisms due to the skin-effect, dielectric polarization, and electromagnetic radiation have to be taken into account.
机译:薄膜传输线的实验特性是在10 MHz至110 GHz的频率范围内。测量了几条测试线的散射(S-)参数。然后,在测得的频率范围内确定两个重要的传输线参数(即,传播常数和特性阻抗)。通过消除嵌入的寄生效应并根据Debye模型确定频率变化的介电常数,可以仔细消除在实际实验环境中不可避免的共振。根据实验工作,我们表明传统的皮肤效果模型对于高频而言可能并不准确。此外,三维(3D)数值场求解器无法反映高频下的辐射损耗。最后,在毫米波区域,必须考虑归因于集肤效应,介电极化和电磁辐射的所有三种损耗机制。

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