DocumentCode
1428209
Title
Attenuation-Measurement Technique With a Small Mismatch Uncertainty Using Phase Characteristics of Multiple Reflected Signals
Author
Widarta, Anton ; Endo, Michiyuki ; Kawakami, Tomoteru
Author_Institution
Nat. Inst. of Adv. Ind. Sci. & Technol., Nat. Metrol. Inst. of Japan, Tsukuba, Japan
Volume
60
Issue
7
fYear
2011
fDate
7/1/2011 12:00:00 AM
Firstpage
2715
Lastpage
2719
Abstract
An accurate radio-frequency and microwave attenuation-measurement technique with a small mismatch uncertainty for continuous-frequency application has been developed by shifting the phase characteristics of the multiple reflected signals. A loss-measurement system in four different phase networks is set for this purpose by introducing two low-reflective lines (airlines) where the phase-shift values are already known. From substitution-loss measurements carried out for variable attenuators as devices under test, the attenuation is simply obtained, which is unrelated to the source and load reflection coefficients of ΓG and ΓL, respectively. Experimental measurements on a 10-dB step attenuator performed with a 40-mm length of airlines at almost continuous frequencies from 12.3 to 14.1 GHz are demonstrated and show a good agreement with measurements where the test ports are impedance-matched.
Keywords
attenuation measurement; impedance matching; measurement uncertainty; microwaves; waveguide attenuators; continuous frequency application; frequency 12.3 GHz to 14.1 GHz; impedance matching; loss measurement system; low reflective lines; microwave attenuation measurement technique; mismatch uncertainty; multiple reflected signals; phase characteristics; phase shift value; radio frequency attenuation measurement technique; step attenuator; Attenuation; Attenuation measurement; Attenuators; Frequency measurement; Loss measurement; Radio frequency; Uncertainty; Attenuation; attenuation measurement; microwave attenuators; microwave measurements; standards;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2010.2101193
Filename
5688455
Link To Document