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Estimating Maximum Radiated Emissions From Printed Circuit Boards With an Attached Cable

机译:估算带有连接电缆的印刷电路板的最大辐射发射

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The common-mode current induced on cables attached to printed circuit boards can be a significant source of radiated emissions. Previous studies have shown that coupling from electric and magnetic field sources on circuit boards can be effectively modeled by placing equivalent voltage sources between the board and the cable. The amplitude of these equivalent sources can be estimated by using closed-form equations; however, estimates of the radiated emissions from these board-cable geometries have required full-wave simulations, and full-wave simulation results depend on the exact cable length and placement, which are not normally fixed during radiated emissions testing. This paper develops a closed-form equation to estimate the maximum radiated fields from a voltage source driving a board relative to an attached cable over a ground plane. This equation is evaluated for various cable and board geometries by comparing the calculated results to full-wave simulations. The maximum radiation calculated by using the closed-form expression generally predicts the peak full-wave simulation results within a few decibels for various board sizes and cable lengths.
机译:在连接到印刷电路板上的电缆上感应出的共模电流可能是辐射辐射的重要来源。先前的研究表明,通过在电路板和电缆之间放置等效电压源,可以有效地模拟电路板上电场和磁场源的耦合。这些等效源的幅度可以通过使用闭式方程来估算。但是,根据这些板式电缆的几何形状估算的辐射发射需要进行全波仿真,而全波仿真的结果取决于确切的电缆长度和位置,而在辐射发射测试中,电缆的长度和位置通常并不固定。本文提出了一个封闭形式的方程式,以估计驱动电路板的电压源相对于接地平面上连接的电缆的最大辐射场。通过将计算结果与全波仿真进行比较,可以针对各种电缆和板的几何形状评估该方程式。通过使用闭合形式的表达式计算出的最大辐射通常可预测各种板尺寸和电缆长度在几分贝之内的全波仿真峰值。

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