High-frequency interconnect modeling for global signal networks

O. González-Díaz, M. Linares-Aranda, R. Torres‐Torres
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引用次数: 1

Abstract

In this work, a systematic analysis of the transmission line models used for high-frequency global interconnection lines is presented. As part of this analysis, two model implementations are carried out using: i) the technology parameters provided by the manufacturer, and ii) the scattering (Sij ) parameters associated with a transmission line. In order to serve as test vehicles, a chain of inverters and several ring oscillators with lines of width wi=2 µm and length li=1.0 to 3.0 mm were implemented using an Austriamiscrosystems 0.35 µm process technology and a power supply of 3.3 V. The simulation results using the equivalent model obtained from S-parameters show the lowest average error when they are compared with post layout simulations. In addition, the obtained results show that the total delay in a chain on three inverters is increased up to 120% and the operation frequency of ring oscillator is reduced up to 58.8% when long interconnections (li=3 mm) are used.
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全球信号网络的高频互连建模
在这项工作中,系统地分析了用于高频全球互连线路的传输线模型。作为分析的一部分,使用以下两种模型实现:i)制造商提供的技术参数和ii)与传输线相关的散射(Sij)参数。为了作为测试车辆,采用奥地利微系统0.35 μ m工艺技术和3.3 V电源,实现了一系列逆变器和几个环形振荡器,其线宽wi=2 μ m,长度li=1.0至3.0 mm。利用s参数等效模型的仿真结果与布局后仿真结果相比,平均误差最小。此外,研究结果表明,采用长互连(li=3 mm)时,三台逆变器的总延时提高了120%,环形振荡器的工作频率降低了58.8%。
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