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Characterization and modeling for mu...
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Zhang, Jianmin.
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Characterization and modeling for multi-gigabit signaling.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Characterization and modeling for multi-gigabit signaling./
作者:
Zhang, Jianmin.
面頁冊數:
145 p.
附註:
Adviser: James L. Drewniak.
Contained By:
Dissertation Abstracts International68-05B.
標題:
Engineering, Electronics and Electrical. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3263222
ISBN:
9780549017288
Characterization and modeling for multi-gigabit signaling.
Zhang, Jianmin.
Characterization and modeling for multi-gigabit signaling.
- 145 p.
Adviser: James L. Drewniak.
Thesis (Ph.D.)--University of Missouri - Rolla, 2007.
This dissertation discusses four topics relevant to signal integrity and high-speed interconnects characterization and modeling. The first topic deals with the 1st order Debye representation and Lorentz representation for substrate dielectric materials of printed circuit boards and their applications in full-wave modeling. Genetic algorithms have been developed for extracting the lst order Debye parameters and Lorentz parameters directly from measured scattering parameters.
ISBN: 9780549017288Subjects--Topical Terms:
626636
Engineering, Electronics and Electrical.
Characterization and modeling for multi-gigabit signaling.
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520
$a
The second topic proposes an effective method for de-embedding coupled differential transmission lines by using single-ended TRL calibration patterns. Pattern design and de-embedding formulation are detailed in this paper. This method has been successfully implemented in de-embedding coupled differential pairs up to 20 GHz.
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$a
The third topic proposes an efficient approach for obtaining frequency-dependent causal RLGC(f) models directly from measured scattering parameters for transmission lines. Closed form expressions of the causal RLGC(f) models for both single-ended and coupled differential transmission lines are derived. Algorithms for acquiring the model parameters have been developed. This approach has been successfully applied in single-ended transmission lines and a coupled differential pair for causal RLGC(f) model development up to 20 GHz.
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$a
The last section of this dissertation proposes a method to obtain layered medium properties based on dielectric attenuation constant of transmission lines. The proposed method has been successfully used to characterize layered media up to 20 GHz using a 2nd order Debye representation.
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