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Experimental design and evaluation of differential-skew dependence on differential-pair orientation

机译:基于差分对取向的差分偏斜的实验设计和评估

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An experiment was conducted to evaluate the dependence of differential skew on the differential-pair orientations relative to the filling yarn of the glass fabrics of a printed circuit board. The level of differential skew of a differential pair is evaluated by measuring the phase difference of the two traces that forms a differential pair. A test vehicle that contains several differently oriented differential pairs was designed and fabricated. For each direction, differential pairs of two different lengths were included to de-embed the effects of connectors and plated through holes. Experimental data show that differential pair with orientation around 45 degrees has the most serious skew between the two traces. The lower skew occurs when the orientation, relative to the fill direction, is below 10 degrees, and the differential skew grows as the orientation goes away from 10 degrees. It was obviously observed that a differential pair suffers most serious differential skew when its orientation is in the diagonal direction of the grids formed by the warp and filling yarns of a glass
机译:进行实验以评估相对于印刷电路板的玻璃织物的填充纱的差分对的取向的差分偏斜的依赖性。通过测量形成差分对的两条迹线的相位差,可以评估差分对的差分偏斜水平。设计并制造了一种包含多个方向不同的差分对的测试车辆。对于每个方向,都包括两个不同长度的差分对,以消除连接器和镀通孔的影响。实验数据表明,方向大约为45度的差分对在两条迹线之间具有最严重的偏斜。当相对于填充方向的方向低于10度时,会出现较低的偏斜,并且随着方向偏离10度,差异偏斜会增大。显而易见的是,当差分对的方向位于由玻璃经纱和纬纱形成的网格的对角线方向时,它们会遭受最严重的差分偏斜。

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