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首页> 外文期刊>Journal of Low Power Electronics >Investigation and Optimization of Spiral Inductor Design for On-Chip Buck Converter
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Investigation and Optimization of Spiral Inductor Design for On-Chip Buck Converter

机译:片上降压转换器螺旋电感设计的调查与优化

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This paper introduces the design of a square shape spiral inductor to replace the floating inductor in a buck converter (switching voltage regulator). A feasibility study of the on-chip implementation of the spiral inductor for the integration of the buck converter is presented. Thepaper also investigates the impacts of the electrostatic and electromagnetic interference within the spiral inductor structure. Inductor is the primary bottleneck of the on-chip implementation of a switching regulator. Since inductors require large chip area and exhibit various parasitic issues,inductors are normally implemented off-chip or fabricated as part of the package. The paper focuses on the on-chip implementation of the spiral inductor and the effects of capacitive and inductive coupling noises inside the spiral inductor. For next generation on-chip voltage regulator, asolution to minimize these coupling noises due to the parasitic effects that are prominent at high frequency are presented. The simulation results are verified using ANSYS Q3D simulator. The skin effect related parasitic problem is also investigated. In addition, a comparative analysis ofthe performance of Copper (Cu), Aluminum (Al), and Carbon Nanotube (CNT) based spiral inductors is performed.
机译:本文介绍了一种方形螺旋电感的设计,以取代buck变换器(开关电压调节器)中的浮动电感。提出了一种用于buck变换器集成的螺旋电感片上实现的可行性研究。本文还研究了螺旋电感结构中静电和电磁干扰的影响。电感是开关稳压器片上实现的主要瓶颈。由于电感器需要较大的芯片面积,并表现出各种寄生问题,电感器通常在芯片外实现或作为封装的一部分制造。本文主要研究螺旋电感的片上实现,以及螺旋电感内部电容和电感耦合噪声的影响。对于下一代片上电压调节器,提出了一种解决方案,以尽量减少这些耦合噪声,因为寄生效应在高频时非常显著。利用ANSYS Q3D模拟器对仿真结果进行了验证。皮肤效应相关的寄生虫问题也进行了调查。此外,还对基于铜(Cu)、铝(Al)和碳纳米管(CNT)的螺旋电感的性能进行了比较分析。

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