DocumentCode :
1686616
Title :
Measuring clock jitter at 100 GHz from PM noise measurements
Author :
Howe, D.A.
Author_Institution :
National Inst. of Stand. & Technol., Boulder, CO, USA
fYear :
2002
Abstract :
"Jitter" is the noise modulation due to random time shifts on an otherwise ideal, or perfectly on-time, signal transition. This paper presents ways of calculating timing jitter using phase-modulation (PM) and amplitude-modulation (AM) noise measurements of high-speed digital clocks. A 100 GHz case is used for illustration and based on actual measurements. In the absence of ultra-high speed jitter analyzers, spectrum analysis is an alternate noise measurement for timing jitter. A summary table is provided for mapping the results of these measurements in the Fourier frequency domain to jitter in the /spl tau/ domain for various random (specifically, power-law) noise types, spurs, vibration, and power-supply ripple. In general, one cannot unambiguously map back, that is, translate from jitter measurements to phase noise. Measurements of phase noise are typically much more sensitive to phase (or time) fluctuations than a jitter analyzer.
Keywords :
Fourier transforms; amplitude modulation; clocks; electric noise measurement; phase modulation; phase noise; spectral analysis; timing jitter; /spl tau/ domain; 100 GHz; Fourier frequency domain; amplitude-modulation noise measurements; clock jitter measurement; high-speed digital clocks; jitter analyzer; noise modulation; phase noise measurement; phase-modulation noise measurements; random time shifts; signal transition; spectrum analysis; timing jitter; Clocks; Fluctuations; Frequency domain analysis; Frequency measurement; Noise measurement; Phase measurement; Phase noise; Time measurement; Timing jitter; Vibration measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
ARFTG Conference Digest, Spring 2002. 59th
Conference_Location :
Seattle, WA
Print_ISBN :
0-7803-7143-7
Type :
conf
DOI :
10.1109/ARFTGS.2002.1214675
Filename :
1214675
Link To Document :
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