ANSI INCITS TR-33-2003 INCITS Technical Report for Information Technology Fibre Channel Signal Modeling (FCSM)《信息技术的INCITS技术报告.光纤信道.信号模型(FCSM)》.pdf
《ANSI INCITS TR-33-2003 INCITS Technical Report for Information Technology Fibre Channel Signal Modeling (FCSM)《信息技术的INCITS技术报告.光纤信道.信号模型(FCSM)》.pdf》由会员分享,可在线阅读,更多相关《ANSI INCITS TR-33-2003 INCITS Technical Report for Information Technology Fibre Channel Signal Modeling (FCSM)《信息技术的INCITS技术报告.光纤信道.信号模型(FCSM)》.pdf(90页珍藏版)》请在麦多课文档分享上搜索。
1、Developed byINCITS TR-33-2003INCITS Technical Reportfor Information Technology Fibre Channel Signal Modeling (FCSM)Copyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-INCITS TR-33-20
2、03INCITS Technical ReportInformation Technology Fibre Channel Signal Modeling (FCSM)SecretariatInformation Technology Industry CouncilABSTRACTThis technical report is intended to establish a common methodology so that signals in FC systems may bemodeled and simulated accurately and consistently. It
3、establishes the requirements for the exchange ofperformance information between components suppliers and system simulators. It defines the acceptablemethods for extracting the electrical and performance attributes of the constituent parts of the FC copperand optical interface. It establishes a commo
4、n methodology for simulating the FC physical environment. Itis intended to be used in conjunction with the requirements within the following documents: FC PhysicalInterface (FC-PI; T11/1235-D), FC Physical Interface-2 (FC-PI-2; T11/1506-D), and FC 10 Gigabit (10GFC;T11/1413-D).Copyright American Nat
5、ional Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Published byAmerican National Standards Institute25 West 43rd Street, New York, New York 10036Copyright 2003 by Information Technology Industry Council
6、(ITI)All rights reserved.No part of this publication may be reproduced in anyform, in an electronic retrieval system or otherwise, without prior written permission of the publisher.Printed in the United States of AmericaINCITS Technical Report Series This Technical Report is one in a series produced
7、 by the International Committeefor Information Technology Standards (INCITS). The secretariat for INCITS is heldby the Information Technology Industry Council (ITI), 1250 Eye Street, NW, Suite200, Washington, DC 2005.As a by-product of the standards development process and the resources ofknowledge
8、devoted to it, INCITS from time to time produces Technical Reports.Such Technical Reports are not standards, nor are they intended to be used assuch.INCITS Technical Reports are produced in some cases to disseminate thetechnical and logical concepts reflected in standards already published or underd
9、evelopment. In other cases, they derive from studies in areas where it is foundpremature to develop a standard due to a still changing technology, orinappropriate to develop a rigorous standard due to the existence of a number ofviable options, the choice of which depends on the users particular req
10、uirements.These Technical Reports, thus, provide guidelines, the use of which can result ingreater consistency and coherence of information processing systems.When the draft Technical Report is completed, the Technical Committee approvalprocess is the same as for a draft standard. Processing by INCI
11、TS is also similarto that for a draft standard.Patent StatementCAUTION: The developers of this Technical Report have requested that holdersof patents that may be required for the implementation of the standard, disclosesuch patents to the publisher. However, neither the developers nor the publisherh
12、ave undertaken a patent search in order to identify which, if any, patents mayapply to this Technical Report. As of the date of publication of this Technical Report and following calls for theidentification of patents that may be required for the implementation of theTechnical Report, no such claims
13、 have been made. No further patent search isconducted by the developer or the publisher in respect to any Technical Report itprocesses. No representation is made or implied that licenses are not required toavoid infringement in the use of this Technical Report.Copyright American National Standards I
14、nstitute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Table of Contents1 Scope .12 References .22.1 General .22.2 Approved references .22.3 References under development 22.4 Informative references 32.4.1 Electrical 32.4.2 O
15、ptical .32.5 Resources bibliography .33 Definitions, acronyms, symbols, abbreviations, keywords, and conventions .53.1 Definitions .53.2 Symbols, abbreviations, and acronyms 143.2.1 Symbols 143.2.2 Acronyms and other abbreviations 163.3 Keywords 173.4 Conventions 174 General .194.1 Overview .194.2 S
16、ignal path architectures for modeling 194.2.1 Transmitter-receiver connection 194.2.2 Copper transmitter-receiver connection 194.2.3 Optical transmitter-receiver connection .204.3 Relationship between FCSM and bit errors 214.4 FCSM and scaling .214.5 Range of validity of models and simulations .224.
17、6 Signal modeling purposes .224.6.1 Overview .224.6.2 Physical components and signals .234.6.2.1 Relationship between physical and modeling terminology 234.6.2.2 Elemental components 234.6.2.3 Composite components .244.6.2.4 Systems .244.6.2.5 Signals and measurement points 254.6.2.6 Modeling run le
18、ngth dependent transmitter signals .274.6.2.7 Interactions between signals on different signal lines 284.6.3 Data patterns .284.6.4 Viewpoints .284.7 Application to measurement 304.8 Relationship between elemental component models, composite component models, model-ele-ments, and simulation 314.9 Sp
19、ecification of the simulation and the simulation environment 334.10 Specification of signals at interoperability points .334.11 Transmitter signals, interconnect, and receivers that contain compensation properties (equaliza-tion) 334.11.1 Compensation .334.11.2 Transmitter compensation .344.11.3 Int
20、erconnect compensation .354.11.4 Receiver compensation .354.12 Approaches to creating component models 364.12.1 Create the model from samples of physical components .36Copyright American National Standards Institute Provided by IHS under license with ANSINot for ResaleNo reproduction or networking p
21、ermitted without license from IHS-,-,-Table of Contents4.12.1.1 Behavioral extraction from a linear component .364.12.1.2 Fitted circuit parameters 364.12.1.3 SPICE device model 364.12.2 Creating the model from design information .364.13 Practical considerations for creating models .374.14 Relations
22、hip between constituents of the modeling environment .384.15 Relationship between signal specifications in standards and modeling 394.16 Accuracy and model validation considerations .394.17 Component model validation/correlation methods 404.17.1 Overview .404.17.2 Range of validity 404.17.3 Method 1
23、 (simultaneous creation and validation) 414.17.4 Method 2 (validation of extracted parameters for elemental components) .414.18 Signal timing reference in simulations .414.19 Tools .424.19.1 Overview .424.19.2 Simulation tools .424.19.3 Parameter extraction tools 434.19.4 Model creation tools 435 Mo
24、del-element descriptions 445.1 Overview .445.2 Circuit description 445.3 Behavioral description - linear parameters 445.4 Behavioral description - RLGC matrix (Maxwell matrix) 465.4.1 Overview .465.4.2 RLGC matrices for general construction .465.4.3 An 11 conductor example .475.5 Behavioral descript
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