ANSI INCITS TR 35-2004 INCITS Technical Report for Information Technology Fibre Channel Methodologies for Jitter and Signal Quality Specification (FC-MJSQ).pdf
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1、INCITS Technical Reportfor Information Technology Fibre Channel Methodologies for Jitter andSignal Quality Specification(FC-MJSQ)INCITS TR-35-2004INCITS TR-35-2004-iiINCITS TR-35-2004INCITS Technical Reportfor Information Technology Fibre Channel Methodologies for Jitter andSignal Quality Specificat
2、ion(FC-MJSQ)AbstractThis technical report enhances the jitter and signal specifications found in the Fibre Channel Physical layer standards and in the technical report Methodologies for Jitter Specification (MJS). It provides extended definitions and test methodologies to enable more effective execu
3、tion of specifications relating to the phase timing features of high speed serial signals. A generalization of jitter concepts to include events that occur at other than the nominal receiver detection threshold provides a stronger coupling between the jitter measured in a signal and the errors produ
4、ced by the receiver of the signal. The meth-odologies described use a structured approach to describe the tests that recognize the contributions from test fixtures, instrumentation and calibration schemes to the reported values. Although this report uses 1.0625 GBd for some examples it is intended t
5、o be fully applicable to speeds well in excess of the exist-ing 4.25 GBd jitter specifications in FC-PI-n.Published byAmerican National Standards Institute25 West 43rd Street, New York, New York 10036Copyright 2004 by Information Technology Industry Council (ITI)All rights reserved.No part of this p
6、ublication 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 SeriesThis Technical Report is one in a series produced by the International Committeefor Informat
7、ion 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 devoted to it, INCITS from time to time pro
8、duces 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 underdevelopment. In other cases, they derive fro
9、m 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 requirements.These Technical Reports, thus, pr
10、ovide 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 INCITS is also similarto that for a draft stand
11、ard.PatentStatementCAUTION: 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 publisherhave undertaken a patent search in order to i
12、dentify 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 have been made. No further patent search is
13、conducted 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.iContentsPageForeword .xviIntroduction .xxi1 Scope 12 References 22.1 General . 22.
14、2 Approved references . 22.3 References under development 32.4 Informative references 33 Definitions and conventions 53.1 Overview . 53.2 Conventions 53.3 Keywords 53.4 Acronyms 63.5 Definitions . 74 Background for MJSQ . 144.1 Overview . 144.2 Relationship to SONET and receiver tolerance requiremen
15、ts 144.3 Relationship to earlier FC standards . 154.4 Traditional measurement methodology risks 165 Jitter overview . 185.1 Serial transmissions 185.2 Jitter output context . 185.3 Jitter tolerance context 195.4 Jitter assumptions summary . 195.5 FC-0 and MJS(-1) interface overview . 205.6 Fibre cha
16、nnel physical architecture 216 Jitter fundamentals 256.1 Purpose of addressing all important signal levels . 256.2 Essential properties of signals 256.2.1 Introduction . 256.2.2 Signal amplitude vs. signal level . 256.2.3 Time, timing reference and jitter timing reference . 266.2.4 Considerations wh
17、en using hardware basedjitter timing references . 266.2.5 Jitter and noise relationship 266.2.6 Rising edges and falling edges 26iiPage6.3 Number of events per bit-period . 286.4 Statistical distribution at a specific signal level . 296.5 Basic relationships within statistical jitter distributions 2
18、96.5.1 Overview . 296.5.2 Description of mathematical model . 326.5.3 Relationship between jitter and BER for random jitter distributions . 336.5.4 Effects of changing the standard deviation for Gaussian PDFs . 356.5.5 Common mistakes relating to statistical properties of measurements . 356.5.6 Addi
19、tion of deterministic jitter 366.6 Jitter eye mask methodology for signal quality specification 396.7 Signal measurements vs. jitter eye mask signal quality specifications . 416.8 Jitter timing reference at different signal levels during data acquisition 426.9 Example of a 2-dimensional jitter measu
20、rement . 426.10 Jitter timing reference frequency response requirements . 436.10.1 Overview . 436.10.2 Performance specification for a hardware implementation of a Golden PLL 496.11 Jitter frequency concepts 526.12 Jitter output measurement methodologies 536.12.1 Time domain 536.12.2 Frequency domai
21、n . 536.13 Effects of varying jitter distributions on BER . 536.14 Methodology for jitter and signal quality specification for “processed” signals . 546.14.1 Background . 546.14.2 Link components that contain compensation properties (equalization) 546.14.2.1 Compensation. 546.14.2.2 Transmitter comp
22、ensation 556.14.2.3 Interconnect compensation. 566.14.2.4 Receiver compensation 566.15 Determination of compliance 576.16 Extremely stressful data patterns and scrambling 587 Jitter causes and jitter distribution 597.1 Jitter contribution elements . 597.2 Jitter distribution 607.2.1 Basic types - bo
23、unded and unbounded, correlated and uncorrelated 607.2.2 Unbounded (definition, concept, quantitative description) 607.2.3 Bounded (definition, concept, quantitative description) 60iiiPage7.2.3.1 Overview . 607.2.3.2 Duty cycle distortion (correlated) 617.2.3.3 Data dependent (correlated) . 617.2.3.
24、3.1 Overview . 617.2.3.3.2 Dispersion induced jitter 617.2.3.3.3 Reflection induced jitter. 627.2.3.3.4 Baseline wander induced jitter 627.2.3.3.5 High probability DDJ . 627.2.3.3.6 Low probability DDJ 627.2.3.4 Uncorrelated DJ . 627.2.3.4.1 Overview . 627.2.3.4.2 Power supply noise . 627.2.3.4.3 Cr
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