IRIS publication 728452
Novel 3 Port Characterisation and De-Embedding For High Performance On-Silicon K-A Band Balun
RIS format for Endnote and similar
TY - - Other - O'Sullivan, JA, McCarthy, KG, Murphy, PJ - 2006 - June - Novel 3 Port Characterisation and De-Embedding For High Performance On-Silicon K-A Band Balun - Validated - 1 - () - A novel 3 port de-embedding technique is presented. The method is used to accurately characterise the performance of an on-silicon multilayer balun. Three de-embedding structures have been fabricated along with the balun itself. From 25 to 40 GHz the de-embedded balun achieves phase and magnitude imbalances of less than 5 degrees and 1 dB, respectively. Excellent correspondence between the measured balun parameters and EM simulation results is observed after de-embedding is applied.. - 269 - 272 DA - 2006/06 ER -
BIBTeX format for JabRef and similar
@misc{V728452, = {Other}, = {O'Sullivan, JA and McCarthy, KG and Murphy, PJ }, = {2006}, = {June}, = {Novel 3 Port Characterisation and De-Embedding For High Performance On-Silicon K-A Band Balun}, = {Validated}, = {1}, = {()}, = {{A novel 3 port de-embedding technique is presented. The method is used to accurately characterise the performance of an on-silicon multilayer balun. Three de-embedding structures have been fabricated along with the balun itself. From 25 to 40 GHz the de-embedded balun achieves phase and magnitude imbalances of less than 5 degrees and 1 dB, respectively. Excellent correspondence between the measured balun parameters and EM simulation results is observed after de-embedding is applied..}}, pages = {269--272}, source = {IRIS} }
Data as stored in IRIS
OTHER_PUB_TYPE | Other | ||
AUTHORS | O'Sullivan, JA, McCarthy, KG, Murphy, PJ | ||
YEAR | 2006 | ||
MONTH | June | ||
TITLE | Novel 3 Port Characterisation and De-Embedding For High Performance On-Silicon K-A Band Balun | ||
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STATUS | Validated | ||
PEER_REVIEW | 1 | ||
TIMES_CITED | () | ||
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ABSTRACT | A novel 3 port de-embedding technique is presented. The method is used to accurately characterise the performance of an on-silicon multilayer balun. Three de-embedding structures have been fabricated along with the balun itself. From 25 to 40 GHz the de-embedded balun achieves phase and magnitude imbalances of less than 5 degrees and 1 dB, respectively. Excellent correspondence between the measured balun parameters and EM simulation results is observed after de-embedding is applied.. | ||
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START_PAGE | 269 | ||
END_PAGE | 272 | ||
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