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FDTD modeling of EMI antennas

机译:EMI天线的FDTD建模

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摘要

The FDTD (finite-difference time-domain) method is used for modeling EMI antenna geometries to anticipate EMI problems in high-speed digital designs. FDTD is well-suited to modeling large-scale geometries such as cables that might be driven against PCB ground planes as a result of a noise voltage that appears at the connector. Three specific cases are addressed herein including a simple cable driven against a PCB ground, coupling between a high-speed digital and I/O line that drives a cable against the PCB, and the finite impedance of the PCB reference plane that results in an effective noise source that drives the PCB ground against the cable. The FDTD modeling is compared with measurements. Guidelines for coupling to I/O lines, and a keep-out distance around the board periphery for high-speed digital lines can then be developed.
机译:FDTD(有限差分时域)方法用于对EMI天线的几何形状进行建模,以预测高速数字设计中的EMI问题。 FDTD非常适合于对大型几何图形进行建模,例如由于连接器上出现噪声电压而可能在PCB接地板上驱动的电缆。本文讨论了三种具体情况,包括简单的电缆在PCB接地上驱动,高速数字和I / O线之间的耦合(将电缆驱动在PCB上)以及PCB参考平面的有限阻抗,从而有效地抑制了PCB接地。将PCB接地驱动到电缆的噪声源。将FDTD建模与测量结果进行比较。然后可以制定出与I / O线耦合的准则,以及高速数字线在电路板外围的保持距离。

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