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Investigation of new integration and interconnect techniques for three dimensional microwave and millimeter wave integrated circuits.

机译:对三维微波和毫米波集成电路的新集成和互连技术的研究。

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摘要

This thesis presents new concept and technology of hybrid integration and interconnects for the applications in microwave and millimeter wave integrated circuits. Guided-wave characteristics of the new hybrid or composite structure, which is surface-mounted on a relatively thin dielectric substrate, are studied numerically and experimentally. It is demonstrated that this type of transmission line can preserve low-loss and almost non-radiating advantages of the conventional NRD (Non-Radiative Dielectric)-guide. New integration and interconnects approach utilizes co-layered arrangement of the two dissimilar structures, which allows the NRD-guide in direct contact with (or surface-mounted on) the planar circuits. Two basic building block schemes are presented that involve microstrip line and coplanar waveguide (CPW) with the NRD-guide. Principal modes generated in the hybrid planar/NRD-guide structure are modeled. Results for transmission and return loss are presented for different transitions. Key technique for suppressing spurious modes is presented with experiments and analysis results. It is simple and very effective in rejecting the spurious modes for performance enhancement of hybrid planar/NRD-guide integrated circuits. Practical examples in the design of millimeter-wave planar/NRD-guide filter are exploited to evaluate features of the proposed technique that yields expected good results. It is found through analysis and experiments that the rejection to all the spurious modes (including TE and LSE modes) can be better than −35 dB for a single microstrip-to-NRD-guide transition over a broadband frequency of interest. General spurious mode-suppressing techniques have also been presented and investigated. For the performance enhanced integrated microstrip-to-surface-mounted NRD-guide transition (NRD-guide surface-mounted on the top of a relatively thin planar substrate), the return loss is better than −20 dB over the frequency band of interest from 27.5 to 28.5 GHz. The worst spurious modes excited in this case are TE20 and LSE40 modes but they are all suppressed to be better than −35 dB over the frequency range. For the performance enhanced integrated CPW-to-surface-mounted NRD-guide transition, all potential spurious modes related to CPW-to-NRD-guide transitions may be suppressed with a simple scheme that involves an integrated mode suppressor. The rejection to all of the spurious modes (including TE and LSE modes) is better than −50 dB for a single transition over a broadband frequency of interest. To facilitate the implementation of the mode suppressor, a compact spurious mode suppressing technique for the design of hybrid planar/NRD-guide integrated transition is then presented and analyzed. A very effective but rather simple scheme of ribbon interconnect is also proposed for co-layer multi-chip module (MCM) of microwave and millimeter-wave circuits.
机译:本文提出了在微波和毫米波集成电路中应用的混合集成和互连的新概念和新技术。对新型混合或复合结构的导波特性进行了数值和实验研究,该结构表面安装在相对较薄的电介质基板上。已经证明,这种类型的传输线可以保持传统NRD(非辐射介电)波导的低损耗和几乎无辐射的优势。新的集成和互连方法利用了两个不同结构的共层布置,这使得NRD导向器可以直接与平面电路接触(或表面安装在平面电路上)。提出了两种基本的构建模块方案,其中包括带有NRD波导的微带线和共面波导(CPW)。对在混合平面/ NRD导向结构中生成的主要模式进行建模。给出了针对不同过渡的传输和回波损耗结果。通过实验和分析结果,提出了抑制杂散模式的关键技术。它在拒绝杂散模式以提高混合平面/ NRD波导集成电路性能方面既简单又非常有效。利用毫米波平面/ NRD波导滤波器设计中的实际示例来评估所提出技术的特性,这些特性会产生预期的良好结果。通过分析和实验发现,对于感兴趣的宽带频率上的单个微带到NRD波导过渡,对所有杂散模式(包括TE和LSE模式)的抑制性能均优于-35 dB。一般的杂散模式抑制技术也已经提出并进行了研究。对于性能增强的集成微带到表面安装的NRD波导过渡(NRD波导表面安装在相对薄的平面基板顶部),在感兴趣的频带上,回波损耗优于-20 dB。 27.5至28.5 GHz。在这种情况下,最坏的寄生模式是TE 20 和LSE 40 模式,但在整个频率范围内,它们均被抑制为优于-35 dB。对于性能增强的集成CPW到表面安装NRD波导过渡,可以使用涉及集成模式抑制器的简单方案抑制与CPW到NRD波导过渡有关的所有潜在寄生模式。对于所有感兴趣的宽带频率上的单个跃迁,对所有杂散模式(包括TE和LSE模式)的抑制优于-50 dB。为了方便模式抑制器的实现,提出并分析了一种用于混合平面/ NRD波导集成过渡设计的紧凑型寄生模式抑制技术。还提出了一种非常有效但相当简单的带状互连方案,用于微波和毫米波电路的共层多芯片模块(MCM)。

著录项

  • 作者

    Tang, Jinbang.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:44:59

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