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A scattering parameter based method for the transient analysis of lossy, coupled, nonlinearly terminated transmission line systems in high-speed microelectronic circuits.

机译:基于散射参数的高速微电子电路中有损,耦合,非线性端接传输线系统瞬态分析的方法。

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摘要

The problem of accurate and efficient calculation of transient signal waveforms microelectronic circuits consisting of arbitrarily connected systems of multiple, coupled transmission lines and nonlinear devices such as transistors and diodes has been considered. Both non-dispersive and dispersive transmission lines can be handled. For the dispersive case, the dispersion is due to geometric or material nonuniformity as well as dielectric and conductor losses which may also exhibit frequency dependence.;A general approach has been formulated which enables the simulation of arbitrarily connected linear networks, described in the frequency domain in terms their scattering parameters, and nonlinear networks with models described in the time domain. The inverse fast Fourier transform is used to obtain the impulse response for the frequency-dependent networks, and subsequently combined with the nonlinear models using convolution techniques to carry out the simulation in the time domain in a time-marching fashion.;A technique has been developed that enables the reduction of large linear networks described in terms of scattering parameters into a smaller, compact description. This makes repeated simulations very economical in terms of computational time. In addition, the above procedure enables the simulation of transmission line systems with varying cross-section. The scattering parameters for the linear elements can be derived from a TEM or quasi-TEM field approximation for dominant TEM structures, a full-wave analysis for highly dispersive structures and discontinuities, or from measurements performed on the actual structures.;A Fortran program has been developed that can simulate arbitrarily connected lossless or lossy transmission line systems and standard SPICE2G.6 devices (such as bipolar, MOS, junction field effect transistors etc.) Several applications of the program showed that losses and nonuniformities in the cross-sectional dimensions of the transmission lines may add significantly to the degradation of the signals propagated. Therefore, the simulator developed here is an indispensible tool for the analysis of such circuits.
机译:已经考虑了准确有效地计算瞬态信号波形的问题,该电路由任意连接的多个耦合传输线系统和非线性器件(例如晶体管和二极管)组成的微电子电路。非分散和分散传输线均可处理。对于色散情况,色散是由于几何或材料的不均匀性以及介电损耗和导体损耗引起的,这些损耗也可能表现出频率依赖性。;已经制定了一种通用方法,可以模拟任意连接的线性网络,在频域中进行了描述就其散射参数而言,以及具有时域描述的模型的非线性网络。快速傅里叶逆变换用于获得频率相关网络的脉冲响应,然后使用卷积技术将其与非线性模型结合,以时域方式在时域中进行仿真。可以将以散射参数表示的大型线性网络减少为更小巧的描述。就计算时间而言,这使得重复模拟非​​常经济。另外,以上过程使得能够模拟具有变化的横截面的传输线系统。线性元素的散射参数可以从占主导地位的TEM结构的TEM或准TEM场近似,对高度分散的结构和不连续性的全波分析中得出,或者从对实际结构执行的测量中得出。可以模拟任意连接的无损或有损传输线系统和标准SPICE2G.6器件(例如双极,MOS,结型场效应晶体管等)的软件。该程序的一些应用表明,该器件的横截面尺寸存在损耗和不均匀性传输线可能会大大增加传播信号的质量。因此,此处开发的仿真器是分析此类电路必不可少的工具。

著录项

  • 作者

    Vakanas, Loizos Petrou.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:50

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