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首页> 外文期刊>IEEE Transactions on Advanced Packaging >Extension of an Efficient Moment-Methods-Based Full-Wave Layered Interconnect Simulator to Finite-Width Expansion Functions
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Extension of an Efficient Moment-Methods-Based Full-Wave Layered Interconnect Simulator to Finite-Width Expansion Functions

机译:基于有效矩方法的全波分层互连模拟器扩展到有限宽度扩展函数

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摘要

A computationally efficient full-wave tool, which can correctly model the high frequency effects in advanced 3-D packaging designs, e.g., crosstalk, signal distortion, etc., is highly desirable for the design iteration process. A prototype full-wave layered interconnect simulator, which employs a filamentary approximation, was previously developed to model stripline circuits. It demonstrated the promise of new analytical techniques used to accelerate the method-of-moments-based full-wave simulator. Recently, a series of extensions has been made to enhance the prototype simulator. One key extension that is discussed in this paper is the incorporation of rectangular-based finite-width expansion functions into the simulator, which allows the simulator to handle more practical cases. Furthermore, this extension provides the technical foundation required to model bends, steps, and other interconnect features in the future. Some critical issues, which were not properly addressed in the prototype simulator, are also addressed in this paper. They are the branch point contribution to the reaction element and the exact solution for an angular canonical function. A computationally efficient expression for the computation of the semi-infinite integral is also included. This enhanced simulator is validated by comparing it with results produced by Agilent Momentum, and great improvements in matrix fill times are demonstrated.
机译:对于设计迭代过程,非常需要一种计算效率高的全波工具,该工具可以正确地模拟高级3-D封装设计中的高频效应,例如串扰,信号失真等。先前已开发出采用丝状近似的原型全波分层互连模拟器,以对带状线电路进行建模。它展示了用于加速基于矩量法的全波模拟器的新分析技术的前景。最近,已经进行了一系列扩展以增强原型模拟器。本文讨论的一个关键扩展是将基于矩形的有限宽度扩展函数合并到模拟器中,从而使模拟器能够处理更多实际情况。此外,此扩展提供了将来对折弯,台阶和其他互连特征进行建模所需的技术基础。本文还解决了一些关键问题,这些问题在原型仿真器中未得到适当解决。它们是反应元素的分支点贡献,是角函数的精确解。还包括用于计算半无限积分的计算有效表达式。通过与Agilent Momentum产生的结果进行比较,验证了此增强型模拟器,并证明了基质填充时间的显着改善。

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