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NiZn)电感器的核心能量电容

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中文摘要

在高频(3-30 MHz)应用中,NiZn磁芯因其低磁导率和介电常数被广泛使用。传统基于理想导体假设的电容模型在NiZn磁芯中不再适用。本文提出了一种通用的核心能量电容模型,用于精确描述高频下的寄生参数特性。

English Abstract

In the high-frequency (3–30 MHz) range, NiZn cores are commonly used. They have much lower permeability and permittivity than materials typically used at lower frequencies, including MnZn ferrites. Previously used capacitance models rely on the perfect electrical conductor assumption. They are not applicable when NiZn cores are used. We propose a general core energy capacitance model found by solv...
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SunView 深度解读

随着阳光电源组串式逆变器及储能PCS向高功率密度和高频化方向演进,磁性元件的寄生参数对EMI及效率的影响日益显著。该研究提出的NiZn磁芯电容模型,有助于优化高频变换器中的磁性元件设计,减少寄生振荡,提升系统电磁兼容性(EMC)表现。建议研发团队在开发下一代高频化户用光伏逆变器及小型化储能模块时,引入该模型进行磁性元件的仿真优化,以提升产品在高频工作条件下的可靠性与转换效率。