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Modeling and Evaluation of Carbon-Nanotube-Based Integrated Power Inductor for On-Chip Switching Power Converters

机译:片上开关功率转换器的基于碳纳米管的集成功率电感器的建模和评估

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This paper presents a nanotechnology-based high-power-density and low-power-loss on-chip power inductor for dc–dc switching power converters. This power inductor utilizes a composite of bundled multiwalled (concentric) carbon nanotubes (BMWCNTs) and Fe (iron) in order to achieve high performance in a small size. Titanium (Ti) is then added as a coating material on the BMWCNT-based power inductor. The BMWCNT-based power inductor with a single layer and three turns occupies an area of $hbox{200} muhbox{m} times hbox{200} muhbox{m}$. It exhibits an inductance of 206 nH, a quality factor of 427 at 20 MHz, and a dc rated current of 100 mA. The power inductor size and the performance characteristics are competitive with state-of-the-art power inductors. The design, analysis, modeling, and simulation results of the BMWCNT-based power inductor are presented and compared with state-of-the-art conventional power inductors from the literature.
机译:本文提出了一种基于纳米技术的用于DC-DC开关电源转换器的高功率密度和低功耗损耗的片上功率电感器。该功率电感器利用捆绑的多壁(同心)碳纳米管(BMWCNT)和铁(铁)的复合材料来实现小尺寸的高性能。然后将钛(Ti)作为涂层材料添加到基于BMWCNT的功率电感器上。基于BMWCNT的单层三匝功率电感器的面积为$ hbox {200} muhbox {m}乘以hbox {200} muhbox {m} $。它的电感为206 nH,在20 MHz时的品质因数为427,直流额定电流为100 mA。功率电感器的尺寸和性能特性与最新的功率电感器竞争。介绍了基于BMWCNT的功率电感器的设计,分析,建模和仿真结果,并将其与文献中最新的传统功率电感器进行了比较。

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