DocumentCode
1192261
Title
A general noise de-embedding procedure for packaged two-port linear active devices
Author
Pucel, Robert A. ; Struble, Wayne ; Hallgren, Robert ; Rohde, Ulrich L.
Author_Institution
Raytheon Co., Lexington, MA, USA
Volume
40
Issue
11
fYear
1992
fDate
11/1/1992 12:00:00 AM
Firstpage
2013
Lastpage
2024
Abstract
A method based on the noise correlation technique and its applications is described. The package, which need not be reciprocal, may consist of an arbitrary interconnection of linear passive elements at thermal equilibrium. Only the terminal admittance properties of the package need be known. However, in certain special cases which lead to singular submatrices of the admittance matrix, the method is inapplicable. This situation can occur when elements such as isolators are part of the package. The necessary theoretical foundation and experimental techniques to enable workers not familiar with the field to assemble the software and laboratory setup for two-port noise de-embedding is provided. The automated noise measurement system used for data acquisition and the mathematical basis for it are described in some detail. The validity of the de-embedding approach is established with extensive experimental data obtained on three MESFETs and a pseudomorphic HEMT
Keywords
Schottky gate field effect transistors; automatic testing; correlation methods; equivalent circuits; high electron mobility transistors; matrix algebra; microwave measurement; semiconductor device models; semiconductor device noise; semiconductor device testing; solid-state microwave devices; MESFETs; admittance matrix; automated noise measurement system; isolators; linear active devices; noise correlation; noise de-embedding procedure; packaged two-port devices; pseudomorphic HEMT; singular submatrices; terminal admittance properties; Active noise reduction; Admittance; Broadband amplifiers; Circuit noise; FETs; Frequency measurement; Impedance measurement; Integrated circuit interconnections; Noise measurement; Packaging;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.168758
Filename
168758
Link To Document