← 返回
基于分布式气隙与高热导率平面磁元件的3D氮化镓PoL转换器
A 3-D GaN-Based PoL Converters Based on the Planar Magnetic Component With Distributed Air Gap and High Thermal Conductivity
| 作者 | Longyang Yu · Wei Mu · Shenglei Zhao · Xiufeng Song · Yue Hao · Jincheng Zhang |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年10月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | GaN器件 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 氮化镓 负载点转换器 集成磁组件 合金粉芯 热性能 |
语言:
中文摘要
新兴的氮化镓器件具有更小的体积和更低的开关损耗,适用于点负载(PoL)转换器。然而,高频铁氧体材料的磁芯损耗密度已接近瓶颈,难以进一步减小磁芯截面积,导致平面电感成为多数PoL转换器中高度最高的元件。本文提出一种基于合金粉末磁芯集成磁元件的3D GaN PoL转换器,该磁元件具有分布式气隙、更低的磁芯损耗和更高的热导率,显著提升转换器的效率与散热性能。文章详细分析了磁元件的寄生参数、磁设计及热特性,并搭建了90 W、12–1.8 V的四相PoL转换器样机,对比采用铁氧体与合金磁芯的性能。实验结果表明,所提出的分布式气隙磁元件可有效降低寄生参数,实现更高效率与优异的热表现。
English Abstract
The emerging gallium nitride devices have smaller footprints and lower switching loss, which are promising candidates for point-of-load (PoL) converters. The reduction in the core loss density of high-frequency ferrite materials reaches a bottleneck, which, however, makes it difficult to further reduce the cross area of the magnetic core. The planar inductor becomes the highest component in many PoL converters. This article presents 3-D GaN-based PoL converters, which feature an integrated magnetic component using an alloy powder core. The novel integrated magnetic component has a distributed air gap, lower core loss, and higher thermal conductivity, improving efficiency and thermal performance for PoL converters. This article analyzes the parasitic, magnetic design, and thermal characteristics of magnetic components in detail. A 90 W, 12–1.8 V prototype of a four-phase PoL converter based on ferrite magnetic core and proposed magnetic component using alloy material is built, compared, and tested. The experimental results show that the 3-D PoL converter based on a proposed magnetic component with a distributed air gap can achieve lower parasitic parameters, higher efficiency, and excellent thermal performance compared with a ferrite magnetic core.
S
SunView 深度解读
该3D GaN PoL转换器技术对阳光电源多条产品线具有重要应用价值。在ST储能变流器中,分布式气隙平面磁元件可显著降低DC-DC变换级的体积与损耗,提升功率密度;合金粉末磁芯的高热导率特性可改善散热设计,延长系统寿命。在SG光伏逆变器的Boost升压电路中,该磁元件技术可减小电感体积,配合GaN器件实现更高开关频率。在车载OBC充电机领域,3D集成设计与低寄生参数特性可满足车规级小型化与高效率要求。建议重点关注合金粉末磁芯在高频(>500kHz)应用中的损耗特性与热管理方案,为下一代高功率密度产品提供技术储备。