DocumentCode
854016
Title
On deembedding of port discontinuities in full-wave CAD models of multiport circuits
Author
Okhmatovski, Vladimir I. ; Morsey, Jason ; Cangellaris, Andreas C.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Illinois, Urbana, IL, USA
Volume
51
Issue
12
fYear
2003
Firstpage
2355
Lastpage
2365
Abstract
A systematic numerical methodology is proposed for the accurate deembedding of multiport discontinuities in full-wave numerical models of multiconductor microwave and millimeter-wave passive structures and high-speed digital interconnects. The discussed methodology is based on the earlier-proposed short-open calibration (SOC) procedure. The latter being a numerical analog of the experimental transmission-thru-reflection technique provides a consistent removal of the feed networks of the device-under-test over a wide range of frequencies. The treatment of multiport topologies is achieved through the continuation of the original scalar SOC method into the vector space. The new vector SOC method is easily combined with integral-equation-based method-of-moments electromagnetic-field solvers and allows for substantial flexibility in the choice of excitation mechanisms. Such commonly used method-of-moments driving schemes as ports locally backed up by a vertical conducting wall, ungrounded-internal differential ports, and via-mounted ports can be accurately deembedded within the framework of the vector SOC. Several numerical experiments are provided to validate the proposed multiport deembedding methodology and demonstrate its application.
Keywords
circuit CAD; integral equations; method of moments; microwave circuits; multiport networks; deembedding; electromagnetic-field; excitation mechanisms; full-wave CAD models; high-speed digital interconnects; integral-equation-based method; method of moments; millimeter-wave passive structures; multiconductor microwave; multiport circuits; multiport discontinuities; short-open calibration; transmission-thru-reflection technique; vector space; Calibration; Feeds; Frequency; Integrated circuit interconnections; Microwave devices; Microwave theory and techniques; Millimeter wave circuits; Millimeter wave technology; Moment methods; Numerical models;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2003.820159
Filename
1256767
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