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Analysis, Design and Modelling of Two Fully- Integrated Transformers with Segmental Magnetic Shunt for LLC Resonant Converters

机译:用于LLC谐振转换器的带分段磁路的两个全集成变压器的分析,设计和建模

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摘要

To achieve a precise, high leakage inductance for an integrated magnetic transformer, a magnetic shunt (based on low- permeability materials) is usually added to the planar transformer. However, high-performance low-permeability power materials are not readily available in the market. Therefore, two new topologies for shunt-inserted planar transformer are proposed in this paper. In the proposed topologies, the magnetic shunts are based on high-permeability materials like ferrite, which is widely available, and use multiple small gaps to approximate a low-permeability material as an alternative to a low-permeability magnetic shunt. The analysis, design and modelling of the proposed planar transformers are presented in detail. It is shown that the magnetizing inductance can be controlled by vertical air gaps and the leakage inductance value can be controlled by the thickness of the shunt. Hence, the desirable leakage inductance and magnetizing inductance values for the integrated transformer can be obtained for use in LLC resonant converters. The theoretical analyses are verified by finite element analysis (FEA) and the AC resistance for the proposed topologies is discussed.
机译:为了为集成磁变压器实现精确的高漏感,通常将磁分流器(基于低磁导率材料)添加到平面变压器中。但是,高性能低磁导率功率材料在市场上并不容易获得。因此,本文提出了两种用于并联插入式平面变压器的新拓扑。在所提出的拓扑中,磁分流器基于诸如铁氧体的高磁导率材料,这种磁导率可广泛使用,并使用多个小间隙来近似低磁导率的材料,以替代低磁导率的磁分流器。详细介绍了所提出的平面变压器的分析,设计和建模。结果表明,励磁电感可以通过垂直气隙来控制,漏电感值可以通过分流器的厚度来控制。因此,可获得用于LLC谐振转换器的集成变压器的理想漏感和励磁电感值。通过有限元分析(FEA)验证了理论分析,并讨论了所提出拓扑的交流电阻。

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