Qucs Frequency Domain Non-Linear Compact Modelling and Simulation of IC Spiral Inductors On Silicon

M. Brinson
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引用次数: 1

Abstract

SPICE AC circuit simulation is fundamentally a small signal network analysis of linear or non-linear circuits operating at specified DC bias conditions, where the circuit component values are assumed not to be functions of AC input signal frequency. In the case of RF circuit simulation this assumption can give rise to significant modelling errors. With the recent improvements in General Public License (GPL) circuit simulators this situation is changing, particularly through the introduction of Frequency Dependent Equation-Defined Device (FEDD) models, non-linear current/voltage static and dynamic Equation-Defined Device (EDD) models and user controlled swept signal frequency simulation employing Harmonic Balance steady state analysis. The main purpose of this paper is to introduce a number of novel modelling and circuit simulation techniques that allow, and enhance, the construction of compact device models with embedded behavioural components whose non-linear properties are functions of AC input signal frequency. To demonstrate these new modelling techniques a compact model for a 10 GHz band width spiral inductor integrated on silicon is introduced, its compact model presented, and finally its simulation performance compared with published measured device data.
硅基集成电路螺旋电感的频域非线性紧凑建模与仿真
SPICE交流电路仿真基本上是对在特定直流偏置条件下工作的线性或非线性电路的小信号网络分析,其中电路元件值假定不是交流输入信号频率的函数。在射频电路仿真的情况下,这种假设会引起显著的建模误差。随着通用公共许可(GPL)电路模拟器的改进,这种情况正在改变,特别是通过引入频率相关方程定义器件(FEDD)模型,非线性电流/电压静态和动态方程定义器件(EDD)模型以及采用谐波平衡稳态分析的用户控制扫频信号频率仿真。本文的主要目的是介绍一些新颖的建模和电路仿真技术,这些技术允许并增强具有嵌入式行为组件的紧凑设备模型的构建,其非线性特性是交流输入信号频率的函数。为了演示这些新的建模技术,介绍了一个集成在硅上的10ghz带宽螺旋电感的紧凑模型,给出了它的紧凑模型,最后将其仿真性能与已发表的测量器件数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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