Title :
Complete Pure-Mode Balanced Measurement System
Author :
Dunsmore, Joel ; Anderson, Keith ; Blackham, David
Author_Institution :
Agilent Technol., Santa Rosa
Abstract :
Previously, the first author has shown that the nonlinear behavior (e.g. gain compression or TOI) of some balanced amplifiers can be accurately measured using single-ended measurements: amplifiers that have a balanced stage before a non-linear stage; other amplifiers require true-mode drive to give correct differential and common-mode results. This paper describes, for the first time, a complete solution to the problem of true-mode measurements. The system and method included in this makes use of a dual-source VNA to produce either pure-differential or pure-common-mode drives in both the forward and reverse direction. A method for correcting drive signal errors due to mismatch between the VNA and the device under test is introduced, as well as a method to provide full balanced error correction to all terms. It´s remarkable that small modifications to a standard single-ended 4-port calibration provides all the required error terms.
Keywords :
S-parameters; differential amplifiers; differential analysers; microwave measurement; differential amplifiers; differential analyzers; dual source VNA; microwave measurements; nonlinear circuits; pure mode balanced measurement system; scattering parameters measurement; Calibration; Circuit testing; Differential amplifiers; Error correction; Forward error correction; Gain measurement; Microwave devices; Microwave measurements; System testing; Time measurement; Microwave measurements; differential amplifiers; differential analyzers; nonlinear circuits; scattering parameters measurement;
Conference_Titel :
Microwave Symposium, 2007. IEEE/MTT-S International
Conference_Location :
Honolulu, HI
Print_ISBN :
1-4244-0688-9
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2007.380534