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On the Integration of Behavioral Component Descriptions in the Full-wave Transmission-line Modeling Method

机译:关于全波传输线建模方法行为分量描述的集成

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The simulation of complex digital systems incorporating ICs, lumped components, and field phenomena is a necessary activity for many applications. Predicting the practical behavior of systems based upon just the schematical circuit diagrams (which indicate topology) fails to include the consequences of field effects (which require geometrical information), which given the ever increasing frequencies of modern digital systems, are of paramount importance. On the other hand, comprehensive simulation of IC packages using full-wave models is prohibitively computationally expensive and time consuming to complete. Embedding behavioral level descriptions of complex electronic components within a full-wave field solver circumvents these problems, and forms the subject of this paper. The Transmission-Line Modeling (TLM) method is used as the full-wave solver, and two behavioral models, "macro" and "IBIS", are embedded into the TLM to model the sources and loads presented by complex ICs. The two methods of representing the IC behavior are then illustrated and compared with a canonical test structure.
机译:包含IC,集成组件和现场现象的复杂数字系统的仿真是许多应用的必要活动。基于仅仅基于示意性电路图(表示拓扑)的实际行为无法包括现场效应(需要几何信息)的后果,这对现代数字系统的频率不断增长了重要性。另一方面,使用全波模型的IC封装的全面模拟是昂贵的,耗时且耗时耗时。在全波场求解器内嵌入复杂电子元件的行为水平描述避免这些问题,并形成本文的主题。传输线建模(TLM)方法用作全波解算器,两个行为模型,“宏”和“ibis”,嵌入到TLM中以模拟由复杂IC表示的源和负载。然后将代表IC行为的两种方法与规范测试结构进行了比较。

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