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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >Design, Optimization of RF Spiral Inductors Using Scalable Compact and Accurate Models
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Design, Optimization of RF Spiral Inductors Using Scalable Compact and Accurate Models

机译:使用可扩展的紧凑和精确模型设计,优化RF螺旋电感器

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摘要

This paper presents a practical and structured approach to the design and optimization of RF spiral inductors. The accuracy of proposed modified accurate distributed and scalable compact lumped models are quantitatively compared with experimental results. Based on the new scalable compact lumped model, a quality factor optimization engine is verified. The inductors under study include single/double layer inductors, metallization shunted as well as octagonal shaped inductors. Experimental results suggest that the new modified accurate distributed model is more accurate than existing models for predicting spiral inductor performance to even beyond resonance frequencies. In addition, using a self developed optimization engine, the new scalable compact model is sufficiently accurate in determining the optimum inductor geometry. Consequently, a web-based program (SISOP) is developed to provide RF designers total solution to spiral inductor design, optimization and integration of spiral inductor model into their lump circuit simulators.
机译:本文提出了一种实用且结构化的方法来设计和优化RF螺旋电感器。将提出的改进的精确分布和可扩展紧凑集总模型的准确性与实验结果进行定量比较。基于新的可伸缩紧凑集总模型,验证了质量因子优化引擎。在研究中的电感器包括单层/双层电感器,金属化并联以及八边形电感器。实验结果表明,新的改进的精确分布模型比现有模型更准确,可以预测螺旋电感器的性能甚至超过谐振频率。此外,使用自行开发的优化引擎,新的可扩展紧凑型模型在确定最佳电感器几何形状方面足够准确。因此,开发了一个基于Web的程序(SISOP),以为RF设计人员提供螺​​旋电感器设计,优化以及将螺旋电感器模型集成到其集总电路仿真器中的整体解决方案。

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