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研究生:詹益豪
論文名稱:激突分析和週期性激突識別的實現
論文名稱(外文):Jitter Analysis and Implementation of Periodic Jitter Identification
指導教授:陳竹一
學位類別:碩士
校院名稱:中華大學
系所名稱:電機工程學系碩士班
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2003
畢業學年度:91
語文別:中文
中文關鍵詞:激突分析週期性激突激突分解
外文關鍵詞:jitter analysisperiodic jitterjitter decomposition
相關次數:
  • 被引用被引用:0
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  • 下載下載:0
  • 收藏至我的研究室書目清單書目收藏:0
我們提出Jitter在時域上的分解方法,藉著長條圖尾部曲線的擬合,我們可以分解Jitter為兩部分 : 隨機性和決定性Jitter,並且,估量它們對電路的影響。我們也用累計時分析去找出Periodic Jitter的症狀,提供了有效的觀察點,可以對時序電路快速的分析,去消除設計不良所產生的Jitter。

In this thesis, we present a time-domain jitter separation method to estimate the random and deterministic jitter components. And, we structure a periodic jitter model to generate the periodic jitter clock. Then, using accumulated time analysis to determine the presence of periodic jitter and analyze the frequency of periodic jitter.

摘要 I
Abstract II
誌謝 III
目錄 IV
圖目錄 VI
第一章 簡介 1
第二章 Jitter的定義和量測方法 3
2-1 Jitter的定義 3
2-1-1 由量測上分類 3
2-1-2 由分析方法和來源分類 5
2-2 Jitter的量測方法 5
2-2-1 Eye Diagram 6
2-2-2 Eye Diagram和Bit Error Rate的關係 7
2-2-3 Bit Error Rate 7
2-2-4 計算範例 9
第三章 Jitter長條圖的尾部曲線擬合 11
3-1 統計雜訊的消除 12
3-2 Tail search 13
3-3 Tail fitting 14
3-4 擬合結果 14
第四章 Jitter的累計時分析 18
4-1 Periodic Jitter的介紹和影響 18
4-2 累計時分析 19
4-3 模擬環境 21
4-4 結果分析 25
4-4-1 PJ=1MHz分析結果 25
4-4-2 PJ=10MHz分析結果 27
第五章 結論 29
參考資料 30

[1] Yi Cai, B. Laquai and K. Luehman, “Jitter testing for gigabit serial communication transceivers,” IEEE Design & Test of Computers, Vol. 19, Issue: 1, Jan.-Feb. 2002, pp. 66-74.
[2] J. Wilstrup, “A method of serial data jitter analysis using one-shot time interval measurements,” ITC Proceeding, 1998, pp. 819-823.
[3] M. P. Li, J. Wilstrup, R. Jessen and D. Petrich, “A New Method for Jitter Decomposition Through Its Distribution Tail Fitting,” ITC Proceeding, 1999, pp. 788-794.
[4] Jie Sun, M. Li and Jan Wilstrup, “A Demonstration of Deterministic Jitter Deconvolution,” IEEE Instrumentation and Measurement Technology Conference, vol. 1, 2002, pp. 293-298.
[5] M. P. Li and J. B. Wilstrup, “On the Accuracy of Jitter Separation From Bit Error Rate Function,” ITC Proceeding, 2002, pp. 710-716.
[6] Y. Takasaki, Digital transmission design and jitter analysis, Artech House, Inc., 1991.
[7] P. R. Trischitta and E. L. Varma, Jitter in digital transmission systems, Artech House, Inc., 1992.
[8] Yiqin Chen, S. Koneru, E. Lee and R. Geiger, “Simulation of Random Jitter in Ring Oscillators with SPICE,” Proceedings of the 40th Midwest Symposium on Circuits and Systems, 1997.
[9] J. A. McNeill, “Jitter in Ring Oscillators,” IEEE Journal of Solid-State Circuits, Vol. 32, June 1997, pp. 870-879.
[10] N. Barton, D. Ozis, T. Fiez and K. Mayaram, “The Effect of Supply and Substrate Noise on Jitter in Ring Oscillators,” IEEE 2002 Custom Integrated Circuits Conference, 2002, pp. 505-508.
[11] N. Barton, D. Ozis, T. Fiez and K. Mayaram, “Analysis of Jitter in Ring Oscillators Due to Deterministic Noise,” IEEE International Symposium on Circuits and Systems, Vol. 4, 2002, pp. 393-396.
[12] A. Hajimiri and T. H. Lee, “A General Theory of Phase Noise in Electrical Oscillators,” IEEE Journal of Solid-State Circuit, Vol. 33, No. 2, Feb. 1998, pp. 179-194.
[13] A. Hajimiri, S. Limotyrakis and T. H. Lee, “Jitter and Phase Noise in Ring Oscillators,” IEEE Journal of Solid-State Circuits, Vol. 34, No. 6, June 1999, pp. 790-804.
[14] B. Razavi, “A Study of Phase Noise in CMOS Oscillators,” IEEE Journal of Solid-State Circuits, Vol. 31, No. 3, March 1996, pp. 331-343.
[15] F. Herzel and B. Razavi, “A Study of Oscillator Jitter Due to Supply and Substrate Noise,” IEEE Transactions on Circuits and Systems Ⅱ: Analog and Digital Processing, Vol. 46, No. 1, Jan. 1999, pp. 56-62.

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