利用参考平面上的平面数字间槽结构降低多层pcb中的电磁干扰

L. K. Baghel, Seyit Ahmet Sis, Fatih Üstüner, Sumanth S Kumar
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引用次数: 2

摘要

在混合信号电路中,为了保护模拟信号的完整性,必须仔细隔离敏感的模拟信号和有噪声的数字信号的返回电流。为了解决这个问题,一种常见的方法是利用数字和模拟电路之间的参考平面上的插槽。然而,这样创建的插槽导致通过这些插槽的信号的返回电流路径不连续,从而导致无意的辐射并导致不必要的电磁干扰(EMI)。在这方面,我们提出了平面数字间槽结构,用于多层pcb的参考平面,以提供低阻抗路径的返回电流。数字间结构减轻了返回电流路径的不连续,从而减少了非故意辐射。除此之外,还获得了辐射发射与传输响应之间的关系,使设计人员能够调整槽参数,以最小化信号频率处的辐射。在Ansys HFSS中对不同尺寸平面数字间槽结构的pcb进行了仿真,发现数字长度越长,对EMI的抑制效果越好,特别是在高频下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EMI Reduction in Multilayer PCBs Using Planar Interdigital Slot Structures on the Reference Planes
In mixed-signal circuits, the return currents of sensitive analog and noisy digital signals must be carefully isolated in order to protect the integrity of the analog signals. To address this issue, a common approach is to utilize slots on the reference plane between digital and analog circuits. However, the slots so created cause the discontinuity in the return current path for a signal passing over these slots which causes unintentional radiation and results in unwanted electromagnetic interference (EMI). In this regard, we propose the planar interdigital slot structures for use in reference planes of multilayer PCBs in order to provide a low impedance path for return current. The interdigital structure alleviates the return current path discontinuity and hence reduces the unintentional radiation. In addition to this, a relationship between radiated emission and transmission response is obtained, allowing the designer to tune the slot parameters to minimize radiation at the signal frequency. PCBs with different size planar interdigital slot structures are simulated in Ansys HFSS and is found that the longer digit length corresponds to better EMI reduction, especially at higher frequencies.
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