首页> 外文会议>Electromagnetic Compatibility, 1990. Symposium Record., 1990 IEEE International Symposium on >The effect of the intrinsic impedances of logic families on the predicted radiated emissions from printed circuit boards
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The effect of the intrinsic impedances of logic families on the predicted radiated emissions from printed circuit boards

机译:逻辑族的本征阻抗对印刷电路板预计的辐射发射的影响

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摘要

Analysis results on modeling the effect that source and load impedances have upon the predicted emissions from printed circuit boards are presented. It is shown that, while controlling circuit geometries is important, knowing what effect the impedances of the signal source and the load will have upon the radiated emissions and being able to control those effects are also important. It is demonstrated that these two factors can change the predicted emissions quite dramatically. In the case of short tracelengths, emissions can be controlled through circuit geometry quite acceptably, the distance to the ground plane being the circuit board geometric variable that gives the most control. Unfortunately, when the tracelengths approach a quarter wavelength of one of the higher harmonics of the fundamental frequency, circuit board geometry does not have as much of an effect. At longer tracelengths, one must consider controlling the source and load impedance in order to reduce unwanted emissions. In addition, when only real resistive loads and sources are considered, the emissions from the circuit may actually be 10-15 dB higher than was presumed.
机译:给出了对源阻抗和负载阻抗对印刷电路板的预期发射的影响进行建模的分析结果。结果表明,尽管控制电路的几何形状很重要,但了解信号源和负载的阻抗对辐射的发射将产生什么影响并能够控制这些影响也很重要。结果表明,这两个因素可以极大地改变预测的排放量。在短走线的情况下,可以通过电路几何形状完全可接受地控制发射,到接地平面的距离是控制最多的电路板几何形状变量。不幸的是,当走线长度接近基频的高次谐波之一的四分之一波长时,电路板的几何形状不会产生太大的影响。对于较长的走线,必须考虑控制源阻抗和负载阻抗,以减少不必要的发射。此外,仅考虑实际的电阻性负载和源时,电路的发射实际上可能比假定的要高10-15 dB。

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