Responsive image
博碩士論文 etd-0701100-121640 詳細資訊
Title page for etd-0701100-121640
論文名稱
Title
時域最小平方法萃取等效電路模型之研究
Equivalent Model Extracting by the Least-square Estimation Method in Time Domain Measurement
系所名稱
Department
畢業學年期
Year, semester
語文別
Language
學位類別
Degree
頁數
Number of pages
47
研究生
Author
指導教授
Advisor
召集委員
Convenor
口試委員
Advisory Committee
口試日期
Date of Exam
2000-06-26
繳交日期
Date of Submission
2000-07-01
關鍵字
Keywords
互連、模型、時域反射
Model, TDR, Least-square
統計
Statistics
本論文已被瀏覽 5784 次,被下載 3128
The thesis/dissertation has been browsed 5784 times, has been downloaded 3128 times.
中文摘要
本論文研究目的在利用時域反射儀量測並配合最小平方法來最佳化互連元件之等效電路模型。探討高速數位系統中步階上升源的效應及如何利用時域反射儀來做量測;接著由兩種積分公式逐步推導萃取互連元件等效電感及電容值的方法,藉以計算實際待測物之互連元件參數,同時可以利用特性阻抗及相關公式建立待測物的等效電路模型。論文最後以量測各種互連元件為目標,特別著重於低溫共燒陶瓷之螺旋電感器,並以Tektronix IPA510及PSpice模擬軟體對實際元件的分析結果,來確認所發展方法之正確性。
Abstract
Equivalent model extracting by the least-square estimation method and optimation in time domain measurement.It discuss at the effect of step soure rising and how to use TDR measurements in high speed digital system.It can determine characteristic impedances of DUT,compute accurate models for inductance and capacitance,and predict interconnect component more accurately.
目次 Table of Contents
謝辭 Ⅰ
論文提要 Ⅱ
目錄 Ⅲ
圖表目錄 Ⅳ
第一章 緒論 1
第二章 時域反射儀理論基礎 4
2-1 時域反射儀 4
2-1-1 集總與分配電路 6
2-1-2 上升時間及傳播時間 8
2-1-3 步階源上升時間效應 8
2-2 阻抗的計算 10
2-2-1 多重反射 12
2-2-2 計算實際阻抗波形 13
2-2-3 計算電感、電容值 13
2-3 半作圖法決定待測物電感及電容值 14
2-3-1 量測模型 15
2-3-2 量測的條件 16
2-3-3 半作圖法決定電容、電感值 16
第三章 最佳化技術與實踐 22
3-1 最佳化技術 22
3-2 快速傅立葉轉換 22
3-2-1 快速傅立葉轉換法之實踐 23
3-3 最小平方法簡介 27
3-3-1 最小平方法理論說明 28
3-3-2 最小平方法程式說明 31
3-4 最佳化方法及步驟 32
3-5 模擬與量測 35
3-5-1 時域反射儀量測環境 35
3-5-2 待測物特性與說明 36
3-5-3 模擬與量測結果 38
第四章 結論 43
參考文獻 44
參考文獻 References
[1]H.B. Bakoglu, Circuits, Interconnections, and Packaging for VLSI, Addison Wesley Publishing Company, USA, 1990.
[2]謝金明,“高速數位電路設計暨雜訊防制技術”,惠普科技,1997.
[3]M.D. Tilden,“Measuring Controlled-Impedance Boards with TDR,”Printed Circuit Fabrication, February 1992.
[4]“TDR Theory,”Hewlett-Packard Application Note 1304-2,November 1998.
[5]C. Mattei , and A.P. Agrawal, “Electrical characterization of BGA packages,” Electronic Component Technology Conference, pp. 1087-1093, 1997.
[6]C.C. Huang, F. Wong, and D. Kim, “Electrical performance of PBGA as compared to MQFP in high frequency applications, “ IEPS Conference,, pp. 417-428, 1995.
[7]A.Fraser and T. Strouth, “High-speed digital IC package characterization using microwave probing and fixturing techniques, “ Technical Reports, Cascade Microtech and Giga Test Labs, USA.
[8]J.M. Jong, L.A. Hayden, and V.K. Tripathi, “Time domain characterization of coupled interconnects and discontinuities,” IEEE Int. Microwave Symposium, pp. 1129-1132, 1994.
[9]H.You, C.S. Yeh, and B. Gadepally, “A new parameter extraction technique for developing equivalent circuit models of coupled interconnects,” IEPS Conference, pp. 398-405, 1995.
[10]S. Pannala, C. Nguyen, and M. Swaminathan , “Extraction of electrical parameters of high density connectors using time domain measurements,” Electronic Components Technology Conference, pp. 936-941, 1997.
[11]R. Pintelon and L. Van Biesen,“Identification of transfer functions with time delay and its application to cable fault location,”IEEE Transactions Instrumentation Measurement Vol.39, pp.479-484,June 1990.
[12]“HP 54753A and HP 54754A TDR Plug-in Modules Service Guide,”Hewlett-Packard
[13]“Measuring Parasitic Capacitance and Inductance Using TDR,” Hewlett-Packard Journal April 1996.
[14]“Differential Time-Domain Reflectometry Module for a Digital Oscilloscope and Communications Analyzer,” Hewlett-Packard Journal December 1996.
[15]H.W. Johnson, M.Graham, “High-Speed Digital Design, A Handbook of Black Magic”Prentice Hall, 1993.
[16]L.A. Hayden, V.K. Tripathi,“Characterization and modeling of multiple line interconnections from TDR measurements,”IEEE Transactions on Microwave Theory and Techniques, vol.42,September 1994,pp.1737-1743
[17]J.-M. Jong, B. Janko ,V.K Tripathi,“Time-Domain Charac- terization and Circuit Modeling of a Multilayer Ceramic Package,”IEEE Transactions on CPMT Part B, Vol. 19,No. 1 ,February 1996,pp.48-55
[18]C.-W. Hsue, T.-W. Pan,“Reconstruction of Nonuniform Transmission Lines from Time-Domain Reflectometry,”IEEE Transactions on Microwave Theory and Techniques, vol.45, No.1,January 1997,pp.32-38
[19]“PCB Interconnect Characterization from TDR Measurements,”TDA Systems Application Note PCBD-0699,1999.
[20]“Z-profile Algorithm,”Tektronix Technical Brief,1993.
[21]J. –M. Jong, B. Janko, V.K. Tripathi,“Equivalent Circuit Modeling of Interconnects from Time Domain Measurements,”IEEE Transactions on CPMT, vol.16, No.1, February 1993, pp.119-126
[22]“TDR Tools in Modeling Interconnects and Packages,”Tektronix Application Note,1993.
[23]“LTCC-M: An Enabling Technology for High Performance Multilayer RF System, ”Microwave Journal July 1999, pp.64-72
[24]Kwang Lim Choi, Na, and Madhavan Swaminathan,“Characterization of Embedded Passives Using Macromodels in LTCC Technology,”IEEE Transactions on Components, Packaging, and Manufacturing Technology Part B.vol.21, No.3, August 1998, pp.258-268
[25]Nanju Na, Kwang Lim Choi and Madhavan Swaminathan,“Characterization of embedded resistors for high frequency wireless applications,”RAWCON’98 Proceedings IEEE 1998.
[26]Anisha Sood, Kwang Lim Choi, Anand Haridass, Nanju Na and Madhavan Swaminathan,“Modeling AND MIXED SIGNAL SIMULATION OF EMBEDDED PASSIVE COMPONENTS IN HIGH PERFORMANCE PACKAGES,”1998 International Conference on Multichip Modules and High Density Packaging pp.506-511
[27]A.M. Nicolson,“Forming the fast Fourier transform of a step response in time-domain metrology,”Electronic Letter, vol.9, pp.317-318, July 1973.
[28]W.L. Gans and N.S. Nahman“Continuous and discrete Fourier transform of step-like waveforms,”IEEE Transactions Instrumentation and Measurement, vol. IM-31, pp. 97-101, June 1982.
[29]J. Waldmeyer,“Fast Fourier transform step-like functions: The synthesis of three apparently different methods,”IEEE Transactions Instrumentation Measurement, vol. IM-29, pp. 36-39, March 1980.
[30]George D. Cormack, Darren A. Blair, and James N. McMullin,“Enhanced Spectral Resolution FFT for Step-like Signals,”IEEE Transactions on Instrumentation and Measurement, vol.40 , No.1, February 1991, pp.34-36
[31]鄭明哲,“工程數值方法,”全華科技圖書股份有限公司
[32]Curtis F. Gerald and Patrick O. Wheatley,“Applied Numerical Analysis,”台北圖書有限公司, 1984.
[33]K.M. Fidanboylu, S.M. Riad and A. Elshabini-Riad,“An enhanced time-domain approach for dielectric characterization using stripline geometry,”IEEE Transactions on Instrumentation and Measurement, vol.41, pp132-136, 1992.
[34]P.A. Kok and D. De Zutter,“Least square estimation of the equivalent circuit parameters of a via-hole from a TDR reflectogram, including on-board rise time and delay estimation,”IEEE Transactions on Composites, Hybrid, and Manufacturing Technology, vol.40, pp292-299, 1993.
[35]W.D. Becker, P.H. Hams and R. Mittra,“Time-domain electromagnetic analysis of interconnects in computer chip package,”IEEE Transactions on Microwave Theory and Techniques, vol.40, pp.2155-2163, 1993.
[36]UMRAN S. INAN and AZIZ S.INAN,“ENGINEERING Electromagnetics,”歐亞書局
電子全文 Fulltext
本電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。
論文使用權限 Thesis access permission:校內立即公開,校外一年後公開 off campus withheld
開放時間 Available:
校內 Campus: 已公開 available
校外 Off-campus: 已公開 available


紙本論文 Printed copies
紙本論文的公開資訊在102學年度以後相對較為完整。如果需要查詢101學年度以前的紙本論文公開資訊,請聯繫圖資處紙本論文服務櫃台。如有不便之處敬請見諒。
開放時間 available 已公開 available

QR Code