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3 edition of Study of high-speed interconnects using a FDTD scheme found in the catalog.

Study of high-speed interconnects using a FDTD scheme

Xidong Wu

Study of high-speed interconnects using a FDTD scheme

  • 308 Want to read
  • 13 Currently reading

Published by National Library of Canada in Ottawa .
Written in English


Edition Notes

Thesis (M.Sc.) -- University of Toronto, 1996.

SeriesCanadian theses = -- Thèses canadiennes
The Physical Object
FormatMicroform
Pagination1 microfiche : negative. --
ID Numbers
Open LibraryOL21342178M
ISBN 100612193039

G. Kim, E. Arvas, V. Demir, and A. Z. Elsherbeni, "A Novel Nonuniform Subgridding Scheme for FDTD using an Optimal Interpolation Technique," Progress In. Citation: Linares-Aranda M, Torres-Torres R, González-Díaz O () An Alternative Modeling Methodology for Interconnects used in High-Speed CMOS Integrated Circuits. J Electr Eng Electron Technol doi: /Author: Mnico Linares-Ar, Reydezel Torres-Torres, Oscar Gonzlez-Daz. finite-difference time-domain (FDTD) method has been successfully applied to many electromagnetic scat- tering problems including radar cross section (RCS), antennas, microwave circuits, and EMC, among others. The reader is referred to [l] and [2] for information on. FDTD. Common-mode radiation from cables attached to printedCited by:


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Study of high-speed interconnects using a FDTD scheme by Xidong Wu Download PDF EPUB FB2

The book provides accurate FDTD models for on-chip interconnects, covering most recent advancements in materials and design. Furthermore, depending on the geometry and physical configurations, different electrical equivalent models for CNT and GNR based interconnects are presented.

Based on the. negligible effects of interconnects, such as ringing, signal delay, distortion, reflections, and crosstalk. In this review paper, various high-speed interconnect effects are briefly discussed. In addition, recent advances in transmission line macromodeling techniques are presented.

Also, simulation of high-speed interconnects using. Finite-difference time-domain or Yee's method (named after the Chinese American applied mathematician Kane S.

Yee, born ) is a numerical analysis technique used for modeling computational electrodynamics (finding approximate solutions to the associated system of differential equations).Since it is a time-domain method, FDTD solutions can cover a wide. Schuster, S.

Iranzo, P. Regli and W. Fichtner, Ground and Power Plane Termination Effects in FDTD Simulations of High-Speed Via Interconnect Structures, 2nd IEEE Workshop on Signal Propagation on Interconnects, Travemiinde, Germany, MayAuthor: C.

Schuster, W. Fichtner. In SeptemberAllen's major publication, Computational Electrodynamics: The Finite-Difference Time-Domain Method, was ranked as the 7th most-cited book in physics, according to a Google Scholar (GS) search conducted by the University of Rochester's Institute of Optics (see Most-cited physics books).

computer using FDTD–SPICE is dictated by the number and size of the cells in the FDTD partition. Therefore, it isV essential to keep the number of FDTD cells at a minimum. This can be done by using nonuniform or multigrid FDTD methods. Examples The FDTD–SPICE analysis approach is illustrated on a few Silicon IC examples.

A new method for finite-difference analysis of high-speed interconnects with frequency-dependent parameters is presented. A set of differential equations are derived based on the equivalent. A hybrid 2D ADI-FDTD subgriding scheme for modeling on-chip interconnects Article in IEEE Transactions on Advanced Packaging 24(4).

Nonlinear Full Wave Time Domain Solutions Using FDTD_SPICE for High Speed Digital and RF Slide #1 SPICE or other time domain simulators. Often Slide #2 At today’s high frequencies, a variety of new problems h as cropped up in the analysis of structures such as PCBs, MCMs, packages, and by: 7.

High Speed Digital Design discusses the major factors to consider in designing a high speed digital system and how design concepts affect the functionality of the system as a whole. It will help you understand why signals act so differently on a high speed digital system, identify the various problems that may occur in the design, and research solutions to minimize their impact Cited by: 8.

MODELING AND SIMULATION OF HIGH SPEED INTERCONNECTS by BARIBRATA BISWAS A dissertation submitted to the Graduate Faculty of North Carolina State University in partial ful llment of the requirements for the Degree of Master of Study of high-speed interconnects using a FDTD scheme book Department of Electrical and Computer Engineering Raleigh, NC APPROVED BY: n M.

Steer. You can write a book review and share your experiences. Other readers will always be interested in your opinion of the books you've read. Whether you've loved the book or not, if you give your honest and detailed thoughts then people will find new books that are right for them.

In UDSM technology, on-chip interconnect wires form a complex geometry and introduces wire and coupling parasitics. The coupling parasitics (M,C C) introduce crosstalk noise which may lead to critical delays/logic malfunctions. This paper analyzes the dependency of crosstalk noise and delay on coupling parasitics for simultaneously switching inputs using Cited by: 5.

The proposed model is developed for an MWCNT interconnect line, which is positioned over a ground plane at a distance h and placed above a dielectric medium with dielectric constant cross-sectional view is shown in Fig.

1(a). The coupling parasitics between the two MWCNT interconnects is shown in Fig. 1(b), where s represents the spacing between the interconnect Cited by: Serial Journal Articles: [91] S.

Sun and D. Jiao, "First-Principles Based Multiphysics Modeling and Simulation of On-Chip Cu-Graphene Hybrid Nano-Interconnects in Comparison with Simplified Model Based Analysis," IEEE Journal on Multiscale and Multiphysics Computational Techniques, accepted for publication, In this study, an IC-package interconnect based on differential transmission lines is characterized, because such interconnects have been widely adopted in recent high-speed packages.

Through a full-wave simulation of differential transmission lines, the results for S parameters with four ports and a single-ended configuration are extracted. Stanford Libraries' official online search tool for books, media, journals, databases, government documents and more.

Modeling and Simulation of High Speed Digital Circuits and Interconnects Mohammad S. Sharawi Computer and Software Engineering, Philadelphia University Amman {Jordan [email protected] Abstract| Careful design, modeling and simulation of modern high speed circuits is a vital issue in today’s elec-tronic industry.

The length, width, and thickness of copper line (ε r =, σ=×10 7 S/m) are3, and 5 μm, d between the interconnect line and the ground plane is μm-thick low loss dielectric substrate (ε r =, σ=×10 −4 S/m).The region above the interconnect lines is filled with air (ε r =, σ=).Voltage source excited is modeled at nodes 1 and 2 of the Cited by: 4.

The near-field characteristics of the ideal electric dipole are analyzed in this paper. A practical ultrafast band antenna near field FDTD is made and the near field distribution of the antenna is studied by numerical simulation. The calculation results show that the FDTD method is used for the analysis of feasibility and reliability of the near-field communication : Yan Feng Liu, Bing Wei.

The implementation of a variable mesh FDTD (VM-FDTD) algorithm allows a natural and efficient parallel porting, guaranteeing the possibility of managing large memory requirements. In the VM technique, in fact, the discretization is performed in a way so that each grid cell has only one adjacent grid cell for each one of its six faces.

The commonly used full-wave commercial simulators include Ansoft HFSS and CST Microwave Studio, which are based on finite element method (FEM) [11, 12] and finite integral technique, respectively.

Other full-wave algorithm includes the finite-difference time-domain (FDTD) method [13] and the transmission line matrix method (TLM) [14].

characterization and design of high-speed analog interconnects [23] and circuits [24], -parameter characterization is used in this study. Frequency-domain -parameter characterization is carried out by launching waves from both ends of a signal line and measuring the reflected () and transmitted () network parameters.

This thesis, written by Weiting Cai, and entitled Numerical Calculation of Diffraction Coefficients from Building Edges Using FDTD Method, having been approved in respect to style and intellectual content, is referred to you for judgment. We have read this thesis and recommend that it be approved.

DNubbarao V. Wunnava Dr. Kazimierz Siwiak. Analysis and Estimation of Delay Model in On-chip VLSI Interconnects using Gamma Distribution Function, in Book Review of Business & Technology Research (RBTR), vol.

11, no.1, pp.NIT Hamirpur & MTMI, USA. Review of Business & Technology Research (RBTR) ISSN Book Chapter: Rajeevan Chandel and M. Girish Kumar. Some aspects of modeling of dense high speed TL interconnects for printed boards Dr.

Andrei Koptioug, Prof. Hjalmar Hesselbom Project JEPP, Dept. of Information Technology and Media, Mid- Sweden University, Akademigatan 1, SE 25 Östersund In this paper we present some results of the ongoing research aimed at studying the limitationsAuthor: Andrei Koptioug, Hjalmar Hesselbom.

Generic approach to overcome the low-frequency breakdown in electromagnetic computations by moment methods / A.J. Lapovok, N.L. Sudov and O.V. Grimalski --Crosstalk simulation of high speed interconnects by an efficient finite difference method / Y.

Xiao, E.P. Lee and K.H. Lee --Transient simulation of high speed interconnects using coupled. SinceAllen has pioneered basic theoretical approaches and engineering applications of finite-difference time-domain (FDTD) computational electromagnetics. He coined the FDTD acronym in a IEEE paper, and in was the first person to be named a Fellow of IEEE in the FDTD area.

This study extends the work described in our previous paper where we first reported the self-imaging phenomenon created by the 3D propagation of light through periodic nanohole arrays on plasmonic substrates over distances of tens of microns above the plasmonic nanohole array.

16 Here we present a detailed study dealing with their critical parameters, Cited by: 7. In the present chapter, after SOLNET and MLD are reviewed, their applications to optical interconnects within computers [1,], solar cells [4,], and cancer therapy [4,10,13] are presented with some proof-of-concepts demonstrated by the finite difference time domain (FDTD) method and preliminary by: 1.

Novel field robots and robotic exoskeletons: design, integration, and applications. Pinhas Ben-Tzvi. As natural and man-made disasters occur, from earthquakes, tornados, and hurricanes to chemical spills and nuclear meltdowns, there is a need for field robotic systems that are able to respond in these hazardous and dangerous environments.

New advanced modeling methods for simulating the electromagnetic properties of complex three-dimensional electronic systems. Based on the author's extensive research, this book sets forth tested and proven electromagnetic modeling and simulation methods for analyzing signal and power integrity as well as electromagnetic interference in large complex electronic.

Design and Modeling of High Speed Global On-Chip Interconnects by Guoqing Chen Submitted in Partial Fulflllment of the Requirements for the Degree Doctor of Philosophy Supervised by Professor Eby G.

Friedman Department of Electrical and Computer Engineering The College School of Engineering and Applied Sciences University of Rochester. Matrix Sparsification Using FWT Applications of the FWT Formulation Circuit Parameters Integral Equations and Wavelet Expansion Numerical Results Intervallic Coifman Wavelets Intervallic Scalets Intervallic Wavelets on [0, 1] Lifting Scheme Price: $ Software - FIDELITY FDTD-Based EM Simulator Source: Mentor Graphics, formerly Zeland Software, Inc.

FIDELITY is a FDTD (Finite-Difference Time-Domain) based Full-3D EM Simulator for modeling microwave circuits, components, and antenna, wireless/RF antennas, EMC and EMI structures, and other high-speed and high-frequency circuitry.

Primer to use Lumerical FDTD Solutions on SHARCNET Lumerical FDTD Solution is a high-performance single and multi-processor software for analyzing micro/nanoscale optical devices. The basic algorithm is based on Finite Difference Time Domain (FDTD) methods which can calculate the electromagnetic wave propagation in dielectric and metallic.

Modeling and Analysis of Crosstalk between Difierential Lines in High-speed Interconnects F. Xiao and Y. Kami University of Electro-Communications, Japan Abstract| The crosstalk between a single-ended line and a difierential pair, and between dif-ferential pairs are investigated in this paper.

First, the telegrapher’s equations for Cited by: Prof. Rekanos’ List of Publications Publications in Book Chapters [B.5] I.T. Rekanos, "Microwave imaging based on differential formulations of the direct scattering problem.

Techniques in the frequency and the time domain," Microwave Non Destructive Evaluation and Imaging, Ed.: M. High-speed VCSEL photonics for optical interconnects (Conference Presentation) Fumio Koyama ; Xiaodong Gu D.D.S.

Proc. SPIEOptical Interconnects XIX, Q (4 March ); doi: / future generation architectures and circuits for high-speed i/o links adissertation submittedtothefacultyofthegraduateschool oftheuniversityofminnesota.

Samir M. El-Ghazaly is a Distinguished Professor in the Department of Electrical Engineering at the University of Arkansas. He has completed two detail assignments at the U.S. National Science Foundation (NSF): From August to Augusthe served as the Director of the Division of Electrical, Communications and Cyber Systems at NSF.The paper has presented a strategy for modelling interconnects in high-speed circuits and systems.

The strategy comprises two main parts. The first involves tuning an initial approximate resonant niodel to measured data using a standard tuning technique.

The result of this process is an accurate transmission-line model but one which may.H. Chan and P. Mazumder, “A Systolic Architecture for High-Speed Hyper-graph Partitioning Using a Genetic Algorithm”, Book Chapter in “Progress in Evolutionary Computation”, Vol.Springer- Verlag, Heildelberg,pp.

D. Reviewed Archival Conference Publications.