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Conducted EMI Mitigation Schemes in Isolated Switching-Mode Power Supply Without the Need of a Y-Capacitor

机译:无需Y电容器的隔离式开关电源中的传导EMI缓解方案

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In order to construct a low-impedance loop for common-mode electromagnetic interference (EMI) signals, traditional method is to use Y-capacitors as filtering components. However, in the commonly used isolated ac-dc switching-mode power supplies (SMPS), the Y-capacitors branch also behaves as a terrible leakage current loop. For the safety of human beings, this leakage current is not allowed in commercial used equipment, such as chargers, medical instruments, etc. Therefore, certain works should be done to both acquire good EMI performance and satisfy the strict leakage current limitation. The goal of this paper is try to meet these two demands at the same time. In this paper, a novel non-Y-capacitor EMI design concept for SMPS is proposed for the first time. By getting rid of traditional EMI filtering component-the Y-capacitors, the leakage current can be eliminated entirely. Meanwhile, to face with EMI design challenge, optimized transformer architecture is presented. Analysis of the transformer architecture as well as the auxiliary winding has been carried out. Then, a novel topology suitable for non-Y-capacitors converter is proposed and the design procedure of the proposed topology is discussed in detail. The proposed concept is applied to several popular converter topologies. The experiment results demonstrated the effectiveness and feasibility of the proposed non-Y-capacitor design schemes.
机译:为了构建用于共模电磁干扰(EMI)信号的低阻抗环路,传统方法是使用Y电容器作为滤波组件。但是,在常用的隔离式AC-DC开关模式电源(SMPS)中,Y电容分支也表现出可怕的泄漏电流环路。为了人类的安全,在充电器,医疗仪器等商用设备中不允许使用这种泄漏电流。因此,必须进行某些工作以获取良好的EMI性能并满足严格的泄漏电流限制。本文的目的是试图同时满足这两个需求。本文首次提出了一种新颖的SMPS非Y电容器EMI设计概念。通过摆脱传统的EMI滤波元件-Y电容器,可以完全消除泄漏电流。同时,面对EMI设计的挑战,提出了优化的变压器架构。已经对变压器架构以及辅助绕组进行了分析。然后,提出了一种适用于非Y电容变换器的新型拓扑结构,并详细讨论了该拓扑结构的设计过程。提出的概念适用于几种流行的转换器拓扑。实验结果证明了所提出的非Y型电容器设计方案的有效性和可行性。

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