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Design and analysis for noise suppression of DC/DC converter

机译:DC / DC转换器的噪声抑制设计与分析

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摘要

DC/DC converters are widely used to provide various power supply voltages required for many electronic components on a board. Though DC/DC converter is more efficient than the linear regulator is, however, the switching noise becomes larger with the increase of the switching frequency. In particular, ringing noises at the sharp rising edge of the switching waveform occurs by the effect of the parasitic inductance of trace pattern. Then, this noise spreads out to the whole circuit board, and generates electromagnetic interference (EMI), which often causes a malfunction of the other electronic systems. In this paper, the methods to accurately reproduce the switching waveforms and to reduce ringing noises were investigated. For this purpose, two evaluation boards were designed, and total equivalent model was constructed by taking into account the parasitic inductances of traces on a board. Then, frequency-domain analysis was executed to find anti-resonance peaks in impedance properties for the switching loop. Next, time-domain simulation was executed by considering parasitic inductances. Finally, the optimal condition to suppress the ringing noise and electromagnetic radiation was confirmed by adjusting the switching loop into the critical damping condition.
机译:DC / DC转换器广泛用于提供板上许多电子组件所需的各种电源电压。尽管DC / DC转换器比线性稳压器更有效,但是,随着开关频率的增加,开关噪声变得更大。特别是,走线图案的寄生电感会在开关波形的急剧上升沿产生振铃噪声。然后,这种噪声扩散到整个电路板,并产生电磁干扰(EMI),这通常会导致其他电子系统出现故障。本文研究了精确再现开关波形并减少振铃噪声的方法。为此,设计了两个评估板,并考虑了板上走线的寄生电感来构建总等效模型。然后,执行频域分析,以找到开关环路的阻抗特性中的反谐振峰。接下来,通过考虑寄生电感来执行时域仿真。最后,通过将开关环路调整为临界阻尼条件,确定了抑制振铃噪声和电磁辐射的最佳条件。

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