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Multipermeability Inductors for Increasing the Inductance and Improving the Efficiency of High-Frequency DC/DC Converters

机译:用于提高电感量和提高高频DC / DC转换器效率的多磁导电感器

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Distributed air-gap inductors such as iron powder chip inductors and low-temperature cofired ceramic (LTCC) inductors have the advantage of low-fringing effect loss. However, the flux density nonuniformly distributes in the magnetic cores, which results in the magnetic material closer to the conductor becoming saturated while the magnetic material further away from the conductor is still not fully utilized. This paper proposes a multipermeability distributed air-gap inductor structure to increase inductance without the necessity of increasing the inductor volume. The best discrete permeability value is investigated. Based on the best discrete permeability value, inductance as well as the inductance density trends is calculated by varying the number of permeability layers under the condition that thickness for each layer is constant. Also, the inductance variations versus the number of permeability layers are also obtained under the condition that the inductor thickness is constant. A three-permeability inductor and a single-permeability inductor are fabricated to evaluate the proposed method. The measured results show that the three-permeability inductor has a much higher inductance than the single-permeability inductor for the entire load range. Both inductors are tested in a 5-V input, 3-V output dc/dc converter to compare their performances. The results show that the three-permeability inductor can further improve the efficiency of high-frequency dc/dc converters.
机译:分布式气隙电感器(例如铁粉片电感器和低温共烧陶瓷(LTCC)电感器)具有低条纹效应损耗的优点。但是,磁通密度不均匀地分布在磁芯中,这导致靠近导体的磁性材料变得饱和,而远离导体的磁性材料仍未被充分利用。本文提出了一种多磁导分布的气隙电感器结构,以增加电感,而无需增加电感器体积。研究了最佳离散磁导率值。根据最佳离散磁导率值,在每层厚度恒定的情况下,通过改变磁导率层的数量,可以计算出电感以及电感密度趋势。同样,在电感器厚度恒定的条件下,也可以获得相对于导磁层数的电感器变化。制作了三磁导率电感和单磁导率电感来评估该方法。测量结果表明,在整个负载范围内,三磁导电感器的电感比单磁导电感器高得多。两种电感均在5V输入,3V输出dc / dc转换器中进行了测试,以比较它们的性能。结果表明,三磁导电感器可以进一步提高高频dc / dc转换器的效率。

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