基于精确元件模型和电磁仿真的LTCC设计技术

V. Napijalo, T. Young, J. Costello, K. Conway, D. Kearney, D. Humphrey, B. Verner
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引用次数: 3

摘要

本文介绍了TDK采用的LTCC设计方法。该方法的主要目的是减少移动通信前端模块的样本迭代次数。该方法的主要内容包括:提取精确的构件模型,在模型中加入自动布局生成工具,并将布局与EM模拟器连接以进行最终分析。所讨论的元件模型包括等效电路、电磁生成数据库和神经网络模型。高达18GHz的型号已经生产并通过测量验证。研究了制造工艺公差的影响,并将其纳入模型中。讨论了不必要的耦合机制,并首次给出了表面衬垫与嵌入式元件之间耦合水平的例子。给出了GSM/DCS天线交换模块的预测和测量结果。预测响应与实测响应之间的一致性非常好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An LTCC Design Technique Based on Accurate Component Models and EM Simulations
This paper describes the LTCC design methodology adopted by TDK. The main aim of the new method is to reduce the number of sample iterations for mobile communication front-end modules. The main elements of the method include, extracting accurate component models, incorporating into the models an automated layout generation facility and linking the layout to an EM simulator for final analysis. The component models discussed include equivalent circuits, EM generated databases and neural network models. Models up to 18GHz have been produced and verified by measurements. The influence of manufacturing process tolerances have been studied and incorporated into the models. Unwanted coupling mechanisms are discussed and examples of the coupling levels between surface pads and embedded components are presented for the first time. The predicted and measured results of a GSM/DCS antenna switch module are presented. The agreement between the predicted response and the measured response is excellent.
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