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Integrated multi-mode oscillators and filters for multi-band radios using liquid crystalline polymer-based packaging technology.

机译:使用基于液晶聚合物的封装技术的集成多模振荡器和滤波器,用于多频段无线电。

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摘要

The objective of the proposed research is to develop novel, fully-packaged voltage controlled oscillators (VCOs), concurrent oscillators, and multi-mode filters using Liquid Crystalline Polymer (LCP) dielectric material that are directly applicable to simultaneous multi-band radio communication. Integrated wireless devices of the near-future will serve more diverse range of applications (computing, voice/video/data communication) and hence, will require more functionality. This research is focused on providing cost-effective and area-efficient solutions for multi-band/multi-mode oscillators and filters using system-on-package (SOP) design methodology. Silicon-based integrated circuits (ICs) provide an economical method of miniaturizing modules and hence, are attractive for multi-band applications. However, fully monolithic solutions are limited, by its high substrate losses, and marginal quality factors (Qs) of the passives, to low profile applications. Furthermore, the VCOs made on conventional packaging technologies are not very cost-effective. This thesis is directed towards developing highly optimized VCOs and filters using LCP substrate for use in multi-mode radio systems. The thesis investigates and characterizes lumped passive components on new LCP based technology feasible for VCO and filter design. The dissertation then investigates design techniques for optimizing both power consumption and the phase noise of the VCOs to be employed in commercial wireless systems. This work then investigates the temperature performance of LCP-based VCOs satisfying military standards. Another aspect of the thesis is the development of dual-band (multi-mode) oscillators. The approach is to employ existing multi-band theories to demonstrate one of the first prototypes of the oscillator. Finally, the design of multi-mode, lumped-element type filters was investigated.
机译:拟议研究的目的是使用液晶聚合物(LCP)电介质材料开发新颖的,完全封装的压控振荡器(VCO),并发振荡器和多模式滤波器,这些材料可直接用于同时进行的多频段无线电通信。不久的将来,集成无线设备将服务于更多种类的应用程序(计算,语音/视频/数据通信),因此将需要更多功能。这项研究的重点是使用系统级封装(SOP)设计方法为多频带/多模式振荡器和滤波器提供具有成本效益和面积效益的解决方案。基于硅的集成电路(IC)提供了一种使模块小型化的经济方法,因此,对于多频带应用很有吸引力。然而,由于其高衬底损耗和无源器件的边际品质因数(Qs),全单芯片解决方案受到了薄型应用的限制。此外,使用常规包装技术制成的VCO性价比不高。本文旨在使用LCP基板开发高度优化的VCO和滤波器,以用于多模无线电系统。本文研究和表征了基于LCP的新技术的集总无源元件,该技术可用于VCO和滤波器设计。然后,论文研究了用于优化商用无线系统中要使用的VCO的功耗和相位噪声的设计技术。然后,这项工作研究了满足军事标准的基于LCP的VCO的温度性能。本文的另一个方面是双频带(多模式)振荡器的发展。该方法是利用现有的多频带理论来演示振荡器的首批原型之一。最后,研究了多模式,集总元件型滤波器的设计。

著录项

  • 作者

    Bavisi, Amit.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.; Engineering Packaging.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 290 p.
  • 总页数 290
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;包装工程;
  • 关键词

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