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Precise measurements of dissipation factor in microwave printed circuit boards

机译:精确测量微波印刷电路板中的损耗因子

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A precise method for separating the dissipation factors associated with conductor losses and dielectric losses of printed circuit boards through a wide range of microwave frequencies is presented. This method accomplishes separation by utilizing the difference in dependence of the two losses on the dimensions of triplate-line resonators composed of printed circuit boards. To efficiently separate these two losses, a parameter which is a function of only the dimensions of the triplate-line resonator is used. Effective conductivity and the anisotropy of the conductivity in the industrial copper foil utilized for cladding is measured against surface roughness by using this method. At 10 GHz the measured effective conductivities of electrodeposited copper foil and oxygen-free rolled copper foil are about one-third and one-half that of DC conductivity, respectively. Experimentally, the anisotropic characteristics of oxygen-free rolled copper foil was clearly demonstrated.
机译:提出了一种通过广泛的微波频率来分离与印刷电路板的导体损耗和介电损耗相关的耗散因子的精确方法。该方法通过利用取决于印刷电路板的三行谐振器的尺寸的两个损耗之间的差异来实现分离。为了有效地分离这两个损耗,使用仅取决于三板线谐振器的尺寸的函数的参数。通过使用该方法,测量了用于包覆的工业用铜箔中的有效电导率和导电率的各向异性相对于表面粗糙度。在10 GHz时,测得的电沉积铜箔和无氧轧制铜箔的有效电导率分别约为直流电导率的三分之一和二分之一。通过实验,清楚地证明了无氧压延铜箔的各向异性特征。

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