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The propagation of signals along a three-layered region: microstrip

机译:信号沿着三层区域传播:微带

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摘要

The tangential components of the electric field on the air-substrate surface of a three-layered region such as microstrip are determined for the case when the source is a unit electric dipole on that surface. This is done by integrating the rigorous Hankel transforms subject to the condition k/sup 2//sub 0/> mod k/sup 2//sub 1/ mod mod k/sup 2//sub 2/ mod , where k/sub 0/ is the wavenumber of air, k/sub 1/ of the substrate, and k/sub 2/ of the conductor. It is found that the field consists of lateral-wave terms and direct-wave terms with different wavenumbers and phase velocities with each term consisting of two components. These terms determine the coupling between vertical currents in connections from the air surface to the conducting plane. It is concluded that distortion of signals as they propagate along the surface of microstrip is not due to dispersion in the ordinary sense that the permittivities of the air or the substrate are frequency-dependent; rather it is due to the fact that each signal separates into two parts, the one traveling in the air, the other in the dielectric with different phase velocities. If the permittivity of the substrate is frequency-dependent, the part of the signal traveling in it will suffer dispersion; the lateral-wave part in the air will not.
机译:当源是该表面上的单位电偶极子时,可以确定三层区域(如微带)的空气基质表面上电场的切向分量。这是通过在条件k / sup 2 // sub 0 /> mod k / sup 2 // sub 1 / mod mod k / sup 2 // sub 2 / mod下对严格的Hankel变换进行积分来完成的,其中k / sub 0 /是空气的波数,基板的k / sub 1 /和导体的k / sub 2 /。发现该场由具有不同波数和相速度的侧波项和直达波项组成,每个项由两个分量组成。这些术语确定了从空气表面到导电平面的连接中的垂直电流之间的耦合。可以得出结论,信号在微带表面传播时的失真不是由于通常意义上的分散所致,即空气或基质的介电常数与频率有关;而是由于每个信号都分成两部分,一个在空中传播,另一个在电介质中以不同的相位速度传播。如果基片的介电常数与频率有关,则在其中传播的信号部分将受到色散的影响。空气中的侧波部分不会。

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