DocumentCode
824286
Title
Merits of PM noise measurement over noise figure: a study at microwave frequencies
Author
Hati, Archita ; Howe, David A. ; Walls, Fred L. ; Walker, DavidK
Author_Institution
Nat. Inst. of Stand. & Technol., Boulder, CO
Volume
53
Issue
10
fYear
2006
fDate
10/1/2006 12:00:00 AM
Firstpage
1889
Lastpage
1894
Abstract
This paper primarily addresses the usefulness of phase-modulation (PM) noise measurements versus noise figure (NF) measurements in characterizing the merit of an amplifier. The residual broadband (white PM) noise is used as the basis for estimating the NF of an amplifier. We have observed experimentally that many amplifiers show an increase in the broadband noise of 1 to 5 dB as the signal level through the amplifier increases. This effect is linked to input power through the amplifier´s nonlinear intermodulation distortion. Consequently, this effect is reduced as linearity is increased. We further conclude that, although NF is sometimes used as a selection criteria for an amplifier for low-level signal, NF yields no information about potentially important close-to-carrier 1/f noise of an amplifier nor broadband noise in the presence of a high-level signal, but a PM noise measurements does. We also have verified experimentally that the single-sideband PM noise floor of an amplifier due to thermal noise is -177 dBc/Hz, relative to a carrier input power of 0 dBm
Keywords
amplifiers; noise measurement; phase modulation; thermal noise; white noise; 1 to 5 dB; PM noise measurement; amplifier nonlinear intermodulation distortion; carrier input power; close-to-carrier 1/f noise; microwave frequencies; noise figure measurements; phase-modulation noise measurements; residual broadband noise; selection criteria; single-sideband PM noise floor; thermal noise; white PM noise; Broadband amplifiers; Intermodulation distortion; Low-noise amplifiers; Microwave frequencies; Noise figure; Noise level; Noise measurement; Phase measurement; Power amplifiers; White noise;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2006.121
Filename
4012873
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