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CSRR common-mode filtering structures in multilayer printed circuit boards

机译:多层印刷电路板中的CSRR共模滤波结构

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When complementary split ring resonator (CSRR) structures are used as common-mode (CM) filters in multilayer printed circuit board (PCB) environments, their effectiveness in filtering CM signals suffers as CM energy couples to the parallel plane waveguide which can be formed by the conducting layers below the CSRR layer. Via fences can largely prevent this coupling to allow some recovery of CM filtering effectiveness in addition to eliminating the signal integrity (SI) hazard introduced by the presence of excited parallel plane waveguide modes. Simulation and measurement results in initial investigations of filtering structures indicate CM filtering between 7 and 8 GHz and differential-mode (DM) transmission effective to 16 GHz. Simulations are provided showing that the via fences allow cascading for filtering at multiple frequencies or else to broaden filtering bandwidths. Next steps show simulations of CM filtering structures in differential links with effective DM transmission at higher frequencies.
机译:当在多层印刷电路板(PCB)环境中将互补裂环谐振器(CSRR)结构用作共模(CM)滤波器时,由于CM能量耦合至平行平面波导,其在CM信号滤波中的有效性会受到影响CSRR层下面的导电层。导通栅栏可以很大程度上防止这种耦合,从而除了消除由于存在激发的平行平面波导模式而引入的信号完整性(SI)危害外,还可以使CM滤波效率有所恢复。滤波结构的初步研究中的仿真和测量结果表明,CM滤波在7至8 GHz之间,差模(DM)传输有效至16 GHz。提供的仿真显示通孔围栏允许级联以在多个频率上进行滤波或加宽滤波带宽。下一步显示了在较高频率下有效DM传输的差分链路中CM滤波结构的仿真。

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