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New modeling methods for bounded Gaussian jitter (BGJ)/noise (BGN) and their applications in jitter/noise estimation/testing

2009 International Test Conference, 2009
We propose a new method for modeling and quantifying bounded Gaussian jitter (BGJ), as well as bounded Gaussian noise (BGN). The validity and accuracy of the method are illustrated and verified both in theory and experiments. We then demonstrate the applications of this new method for jitter and noise estimation and testing, especially for total jitter
Masashi Shimanouchi   +2 more
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Nearly quantum noise limited timing jitter from miniature Er:Yb:glass lasers

CLEO/Europe. 2005 Conference on Lasers and Electro-Optics Europe, 2005., 2005
We report on nearly quantum-limited timing-jitter performance of two passively mode-locked Er:Yb:glass lasers with a repetition rate of 10 GHz. The relative timing jitter of both lasers was measured to be 190 fs (100 Hz-1.56 MHz) root mean square. The remaining cavity-length fluctuations are below 7.5 pm in the 6 Hz-8 kHz frequency range, indicating ...
A, Schlatter   +8 more
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Hybrid Adaptive Controller Improving The Jitter Noise

Journal of the Korean Institute of Illuminating and Electrical Installation Engineers, 2009
This paper proposes the new hybrid adaptive controller for fast response time and precision control of automation system which exist deadzone or non-linearity of system. The proposed system, which provides the improvement in terms of the control region in high speed and precision control, first used the fuzzy control method for fast response time and ...
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Low jitter ADPLL insensitive to power supply noise

2010 IEEE International Conference on Industrial Technology, 2010
In this paper an analytical method is presented for estimating the timing jitter of ADPLL due to power supply noise. It leads to the conclusion that jitter heavily depends on the power supply noise frequency and the loop gain. Based on the analytical method, a synthesizable ADPLL with good power supply noise rejection is fabricated in SMIC 0.13µm ...
Xiaoying Deng, Jun Yang, Jianhui Wu
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Amplifier noise jitter of two interacting solitons

Optics Communications, 1991
Abstract Amplifier noise induces fluctuations on the soliton's mean frequency and amplitude. When solitons are not interacting (i.e. widely separated), the fluctuations of the mean frequency and thus of the group velocity give rise to a jitter on the soliton arrival time.
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Extraction of timing jitter from phase noise

Proceedings of the 2003 International Symposium on Circuits and Systems, 2003. ISCAS '03., 2003
Random processes responsible for phase instability of periodic signals are generally nonstationary. The quantity measured in practice is the time-average of the instantaneous probabilistic spectral density of the signal subject to random phase variation.
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Phase noise and timing jitter in oscillators with colored-noise sources

IEEE Transactions on Circuits and Systems I: Fundamental Theory and Applications, 2002
Phase noise or timing jitter in oscillators is of major concern in wireless and optical communications, being a major contributor to the bit-error rate of communication systems, and creating synchronization problems in other clocked and sampled-data systems. This paper presents the theory and practical characterization of phase noise in oscillators due
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Phase Noise Integration Limits for Jitter Calculation

2022 IEEE International Symposium on Circuits and Systems (ISCAS), 2022
Yu Zhao, Behzad Razavi
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Just enough jitter for jet noise?

20th AIAA/CEAS Aeroacoustics Conference, 2014
Mengqi Zhang   +4 more
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