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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Layout-Level Synthesis of RF Inductors and Filters in LCP Substrates for Wi-Fi Applications
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Layout-Level Synthesis of RF Inductors and Filters in LCP Substrates for Wi-Fi Applications

机译:用于Wi-Fi应用的LCP基板中RF电感器和滤波器的布局级综合

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摘要

A fast and accurate layout-level synthesis and optimization technique for embedded passive RF components and circuits such as inductors and bandpass filters have been presented. The filters are composed of embedded inductors and capacitors in a multilayer liquid crystalline polymer substrate. The proposed approach is based on a combination of segmented lumped-circuit modeling, nonlinear mapping using polynomial functions, artificial neural network-based methods, and circuit-level optimization. Synthesis and optimization results of inductors for spiral/loop designs based on microstrip and stripline configuration are within 5percent of data obtained from electromagnetic (EM) simulations. For RF circuits, the methodology has been verified through synthesis of 2.4- and 5.5-GHz bandpass filters with and without transmission zeros. Scalability has been shown over a range of 2-3 and 4-6 GHz, respectively, with bandwidth variation of 0.5percent-3percent of center frequency. The synthesized models are within 3percent-5percent of EM simulation data.
机译:已经提出了一种用于嵌入式无源RF组件和电路(如电感器和带通滤波器)的快速,准确的布局级综合和优化技术。滤波器由多层液晶聚合物基板中的嵌入式电感器和电容器组成。所提出的方法是基于分段集总电路建模,使用多项式函数的非线性映射,基于人工神经网络的方法以及电路级优化的组合。基于微带和带状线配置的螺旋/回路设计电感器的综合和优化结果,在电磁(EM)仿真数据的百分之五以内。对于射频电路,该方法已通过合成具有和不具有传输零位的2.4 GHz和5.5 GHz带通滤波器进行了验证。可扩展性已分别显示在2-3 GHz和4-6 GHz范围内,带宽变化为中心频率的0.5%-3%。综合模型在EM仿真数据的3%到5%之内。

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