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A novel variable inductor-based VCO design with 17% frequency tuning range for IEEE 802.11ad applications.

机译:一种新颖的基于可变电感的VCO设计,具有17%的频率调谐范围,适用于IEEE 802.11ad应用。

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摘要

This thesis focuses on the design and analysis of a novel variable inductor (VID) based VCO solution to the frequency tuning range (TR) limitation of the IEEE 802.11ad compliant radio systems. The IEEE 802.11ad standard has drawn strong attention from the industry as the next generation affordable multi-gigabit speed wireless communication standard. Prepared for the global market, IEEE 802.11ad compliant systems are required to cover a broad 8 GHz TR centered on 60 GHz. This wide TR at V band imposes significant challenge to the VCO design in radio transceivers, and makes the TR of the integrated VCO a major bottleneck to the successful commercialization of many IEEE 802.11ad compliant radio systems today.;As an effort to solve the current TR problem for the IEEE 802.11ad compliant radio systems, 2 VCOs designs based on this novel VID-based solution and a conventional Colpitts-Clapp VCO design are presented in this thesis report. The novel VCOs integrate a VID into the differential Colpitts configuration to create a feasible solution to the aforementioned TR problem. The VID in the VCO tank eliminates the base node varactors and their fixed parasitic capacitance that degrades TR in conventional VCO designs, while the differential Colpitts configuration provides advantageous performance at mm-wave frequencies and high output power for real-world applications. Also, a fundamental 30 GHz Colpitts-Clapp VCO was developed in conjunction with the other 2 VCOs for comparison purposes.;One of the 2 VID-based VCO designs is a fundamental 30 GHz VID-based Colpitts VCO that covers 17% TR for proof of concept to the novel topology. Another is an IEEE 802.11ad compliant 60 GHz VCO chain consists of the 30 GHz VID-based Colpitts VCO and a frequency doubler covering 17% TR with 3 dBm output power and -115.7 dBc/Hz phase noise at 10 MHz offset. The conventional Colpitts-Clapp VCO is used to compare with the other 2 VID-based VCOs. As the measurement results indicate, this VID-based VCO topology provides a viable solution to overcome the TR bottleneck in the current IEEE 802.11ad compliant VCO development. All 3 VCOs are fabricated using a 130 nm SiGe BiCMOS process.
机译:本文致力于基于新颖可变电感(VID)的VCO解决方案的设计和分析,以解决IEEE 802.11ad兼容无线电系统的频率调谐范围(TR)限制。作为下一代负担得起的数千兆位速度无线通信标准,IEEE 802.11ad标准引起了业界的广泛关注。为面向全球市场做好准备,需要符合IEEE 802.11ad的系统才能覆盖以60 GHz为中心的8 GHz TR。 V波段的宽TR对无线电收发器中的VCO设计提出了严峻的挑战,并使集成VCO的TR成为当今许多IEEE 802.11ad兼容无线电系统成功商业化的主要瓶颈。本文报告中介绍了符合IEEE 802.11ad无线电系统的TR问题,基于这种新颖的基于VID的解决方案的2个VCO设计和传统的Colpitts-Clapp VCO设计。新型VCO将VID集成到差分Colpitts配置中,从而为上述TR问题创建了可行的解决方案。 VCO储罐中的VID消除了基节点变容二极管及其固定的寄生电容,从而降低了传统VCO设计中的TR,而差分Colpitts配置在毫米波频率下提供了优越的性能,并为实际应用提供了高输出功率。此外,为了进行比较,还与其他2个VCO一起开发了基本的30 GHz Colpitts-Clapp VCO; 2个基于VID的VCO设计之一是基于30 GHz VID的基本Colpitts VCO,覆盖了17%的TR以作验证。新颖拓扑的概念。另一个是符合IEEE 802.11ad的60 GHz VCO链,由30 GHz基于VID的Colpitts VCO和倍频器组成,覆盖17%TR,输出功率为3 dBm,偏移为10 MHz时的相位噪声为-115.7 dBc / Hz。使用传统的Colpitts-Clapp VCO与其他两个基于VID的VCO进行比较。如测量结果所示,这种基于VID的VCO拓扑提供了一种可行的解决方案,可以克服当前符合IEEE 802.11ad的VCO开发中的TR瓶颈。所有3个VCO均使用130 nm SiGe BiCMOS工艺制造。

著录项

  • 作者

    Meng, Yin Fei.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2014
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:40

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