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Impact of PCB design on switching noise and EMI of synchronous DC-DC buck converter

机译:PCB设计对同步DC-DC降压转换器的开关噪声和EMI的影响

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Synchronous DC-DC buck converters operate under a few MHz but generate broadband noise up to GHz range due to its switching operation. The noise causes EMI problem through radiation and switching noise at the converter output from direct conduction. To control EMI and switching noise at the converter output, proper PCB design plays a critical role. This paper evaluates three types of GND plane layout and three types of high-voltage AC node layout for synchronous DC-DC buck converter test benches with 4-layer stack-up PCB. Transverse electromagnetic (TEM) cell measurement and time-domain measurement of switching noise at the converters output were performed for the evaluation. The source of EMI, switching noise and magnitude difference over layouts were analyzed by the impedance measurement on the test benches.
机译:同步DC-DC降压转换器的工作频率为几个MHz,但由于其开关操作,会产生高达GHz范围的宽带噪声。噪声通过辐射和直接传导在转换器输出端产生的开关噪声引起EMI问题。为了控制转换器输出端的EMI和开关噪声,正确的PCB设计至关重要。本文评估了具有4层PCB的同步DC-DC降压转换器测试台的三种类型的GND平面布局和三种类型的高压AC节点布局。进行了横向电磁(TEM)电池测量和转换器输出处开关噪声的时域测量,以进行评估。通过在测试台上进行阻抗测量,分析了EMI的来源,开关噪声和布局上的幅度差异。

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