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Application of Embedded Edge Terminations to Reduce the Edge Radiation and Noise in High-Speed Printed Circuit Boards

机译:嵌入式边缘终端的应用降低高速印刷电路板边缘辐射和噪声

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With the increase in the core frequencies of devices and reduction of edge rates of the drivers, it is becoming very important to limit the noise and radiation from printed circuit boards (PCBs). In order to meet the regulatory radiation limits of the FCC and other agencies worldwide, a stringent "design for electromagnetic compatibility" approach is necessary. A major source of noise in high-speed PCBs is the power plane resonances, which are excited by the multiple reflections of radial waves from edges of circuit boards. This noise due to the radial waves is also a major contributor to the edge radiation from PCBs. This paper reports further results on a technique to suppress the power plane resonance's using a magnetically lossy material embedded between the power and ground planes of a circuit board. In this paper we present the effect of this lossy material on the edge radiation from the PCB. We also present further measurements showing the reduction of power distribution noise by the application of this material as an edge terminator. The material used here to edge-terminate the PCB is a high resistivity material, which depends on its characteristic magnetic loss to dampen the radial waves. The near-field measurement technique is used on a single layer circuit board to show the reduction of edge radiation from the board. Time domain measurements with a sampling scope show a reduction in the power distribution noise when pulses are reflected from the edges of a board with edge terminations.
机译:随着装置的核心频率的增加和驱动器的边缘速率的降低,限制印刷电路板(PCB)的噪声和辐射变得非常重要。为了满足全球FCC和其他机构的监管辐射限制,需要严格的“电磁兼容设计”方法。高速PCB中的主要噪声来源是电源平面谐振,其由电路板边缘的径向波的多次反射激发。由于径向波引起的这种噪声也是来自PCB的边缘辐射的主要贡献者。本文在使用嵌入电路板的电源和接地平面之间的磁性有损材料,进一步报告了一种抑制电力平面谐振的技术的进一步报告。在本文中,我们呈现了这种有损材料对来自PCB边缘辐射的影响。我们还提供了进一步的测量,示出了通过将该材料作为边缘终止器的应用来减少配电噪声。这里使用的材料以边缘终止PCB是高电阻率材料,这取决于其特征磁力损失以抑制径向波。近场测量技术用于单层电路板上,以显示来自电路板的边缘辐射的减小。当脉冲从带有边缘终端的板的边缘反射时,具有采样范围的时域测量显示了配电噪声的降低。

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