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Design, manufacturing and characterization of printed circuit board embedded inductors for power applications

机译:用于电源应用的印刷电路板嵌入式电感器的设计,制造和表征

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The Printed-Circuit-Board (PCB) technology is attractive for power electronic systems as it offers a low manufacturing cost for mass production. Power inductors are large and complex to manufacture, because they usually are custom components which must be wound individually. Inductors based on PCB technology can reduce the complexity and cost while using a wasted space (the thickness of said PCB). In this paper, a procedure to design such inductors is summarized, with a focus on inductors intended to be implemented in converters in the 100-1000 W range. The main contribution of this paper is the description of the manufacturing process : the inductors use PCB to host their magnetic core while their winding is made by patterning the PCB copper layers and using copper vias. In addition, new experimental results are presented : the prototypes are electrically characterized, and the results are discussed to present the advantages and drawbacks of this technology, as well as the remaining open questions.
机译:印刷电路板(PCB)技术对电力电子系统具有吸引力,因为它为批量生产提供了低制造成本。功率电感器很大且制造复杂,因为它们通常是定制组件,必须单独缠绕。基于PCB技术的电感器可以在浪费空间(所述PCB的厚度)的同时降低复杂度和成本。在本文中,总结了设计此类电感器的过程,重点是打算在100-1000 W范围内的转换器中实现的电感器。本文的主要贡献在于对制造过程的描述:电感器使用PCB来容纳其磁芯,而其绕组则是通过对PCB铜层进行构图并使用铜过孔来实现的。此外,还提出了新的实验结果:对原型进行了电气特性分析,并对结果进行了讨论,以展示该技术的优缺点,以及尚待解决的问题。

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