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A Design-Oriented Framework to Determine the Parasitic Parameters of High Frequency Magnetics in Switching Power Supplies using Finite Element Analysis Techniques

机译:面向设计的框架,使用有限元分析技术确定开关电源中高频电磁的寄生参数

摘要

Magnetic components, such as inductors and transformers, have important effects on the efficiency and performance of switching power supplies; their parasitic properties directly impact the high frequency properties which can cause lot-to-lot variation or unanticipated and non-ideal operation. They are also amongst the most problematic components to design, often requiring numerous design-prototype-test interactions. The electrostatic and electromagnetic analysis of wound components has become more important recently to predict their performance and frequency behavior.Accurate prediction and design of winding parasitic parameters of leakage inductance and winding capacitance for high frequency inductors and transformers in switching power supplies is fundamental to improve performance, lower cost, and speed time to market. This thesis presents a methodology and process to obtain accurate prediction of the inter- and intra-winding capacitances of high frequency magnetic components. Application examples considered are a single-winding choke, a coupled inductor filter, and a multi-winding transformer. Analytical approach for determination of parasitic capacitances in high frequency magnetic components will be covered also. Comparison of the FEA results using JMAG with experimental and empirical formula results show good agreement, supporting the method as a model-based design tool with the potential to significantly reduce the design-prototype-test cycle commonly needed with sophisticated magnetic designs.
机译:电感器和变压器等磁性部件对开关电源的效率和性能有重要影响;它们的寄生特性直接影响高频特性,而高频特性可能会导致批次间的差异或无法预期和不理想的操作。它们也是设计中最成问题的组件之一,通常需要大量的设计-原型-测试交互。缠绕组件的静电和电磁分析最近对于预测它们的性能和频率行为变得越来越重要。开关电源中高频电感器和变压器的漏电感和绕组电容的绕组寄生参数的准确预测和设计对于提高性能至关重要。 ,降低成本并加快产品上市时间。本文提出了一种方法和过程,以获得对高频磁性元件的绕组间和绕组内电容的准确预测。考虑的应用示例为单绕组扼流圈,耦合电感滤波器和多绕组变压器。确定高频磁性元件中寄生电容的分析方法也将介绍。使用JMAG进行的FEA结果与实验和经验公式结果的比较显示出很好的一致性,支持该方法作为基于模型的设计工具,具有显着减少复杂磁性设计通常所需的设计-原型-测试周期的潜力。

著录项

  • 作者

    Shadmand Mohammad;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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