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Influence of the interaction between antenna currents and return currents on the coupling between digital interfaces and on-board antennas

机译:天线电流和返回电流之间的相互作用对数字接口和车载天线之间耦合的影响

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Due to the integration of wireless modules and on-board antennas at printed circuit board (PCB) level, design engineers are faced with even more difficult challenges to avoid intra-system electromagnetic interference issues. When starting to design a printed circuit board, the first rule is to partition the printed circuit board such that noisy components are placed physically far away from sensitive components. This rule relies on the phenomenon that at moderately high frequencies, return currents tend to stay in proximity of and close to their signal currents. Unfortunately, on-board antennas most often induce antenna currents which are distributed over a large part of the PCB's power/ground planes. As a result, significant interference might even happen with circuits which are placed physically far away from the antenna's location. During the whole design process, the engineer has to make sure that the overlap area between the antenna currents and the return currents paths of the critical circuits is as minimal as possible. This is achieved by properly placing circuits, keeping track of the antenna current distribution, and by avoiding all return path discontinuities. “Intuitive” solutions as putting a slot around the critical circuits might actually lead to higher electromagnetic interference levels. Hence, full-wave simulations which allow for visualizing all current distributions and their interactions, are an important asset in aiding the design process. The simulation process becomes a key element in a judicial component placement to minimize the interaction between antenna currents and return currents in PCB designs.
机译:由于无线模块和印刷电路板(PCB)级别的板载天线的集成,设计工程师面临着避免系统内电磁干扰问题的更加艰巨的挑战。开始设计印刷电路板时,第一个规则是对印刷电路板进行分区,以使嘈杂的组件在物理上远离敏感组件。该规则基于以下现象:在中等高频下,返回电流趋于保持在其信号电流附近或附近。不幸的是,车载天线通常会感应天线电流,该电流分布在PCB电源/接地平面的很大一部分上。结果,物理上远离天线位置放置的电路甚至可能发生严重干扰。在整个设计过程中,工程师必须确保天线电流和关键电路的返回电流路径之间的重叠区域尽可能小。这可以通过正确放置电路,跟踪天线电流分布以及避免所有返回路径不连续来实现。 “直觉”的解决方案是在关键电路周围放置一个插槽,实际上可能会导致更高的电磁干扰水平。因此,允许可视化所有当前分布及其相互作用的全波模拟是帮助设计过程的重要资产。仿真过程成为司法组件放置中的关键元素,以最小化PCB设计中天线电流和返回电流之间的相互作用。

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