ANSI INCITS 263-1995 Information Technology - Fibre Distributed Data Interface (FDDI) - Token Ring Twisted Pair Physical Layer Medium Dependent (TP-PMD).pdf
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1、 ANSI INCITS 263-1995 (S2010) (formerly INCITS 263-1995 (R2005) American National Standard for Information Technology Fibre Distributed Data Interface (FDDI) Token Ring Twisted Pair Physical Layer Medium Dependent (TP-PMD) ANSI INCITS 263-1995 (S2010) PDF disclaimer This PDF file may contain embedde
2、d typefaces. In accordance with Adobes licensing policy, this file may be printed or viewed but shall not be edited unless the typefaces which are embedded are licensed to and installed on the computer performing the editing. In downloading this file, parties accept therein the responsibility of not
3、 infringing Adobes licensing policy. The ISO Central Secretariat accepts no liability in this area. Adobe is a trademark of Adobe Systems Incorporated. Details of the software products used to create this PDF file can be found in the General Info relative to the file; the PDF-creation parameters wer
4、e optimized for printing. Every care has been taken to ensure that the file is suitable for use by ISO member bodies. In the unlikely event that a problem relating to it is found, please inform the Central Secretariat at the address given below. Adopted by INCITS (InterNational Committee for Informa
5、tion Technology Standards) as an American National Standard. Date of ANSI Approval: 7/7/2010 Published by American National Standards Institute, 25 West 43rd Street, New York, New York 10036 Copyright 2010 by Information Technology Industry Council (ITI). All rights reserved. These materials are sub
6、ject to copyright claims of International Standardization Organization (ISO), International Electrotechnical Commission (IEC), American National Standards Institute (ANSI), and Information Technology Industry Council (ITI). Not for resale. No part of this publication may be reproduced in any form, i
7、ncluding an electronic retrieval system, without the prior written permission of ITI. All requests pertaining to this standard should be submitted to ITI, 1250 Eye Street NW, Washington, DC 20005. Printed in the United States of America ii ITIC 2010 All rights reserved iForeword.iii1 Scope 12 Normat
8、ive references .23 Definitions34 Conventions and abbreviations .54.1 Conventions54.2 Abbreviations65 General description 75.1 Ring overview .75.2 Environment .96 Services .116.1 TP-PMD-to-PHY services 116.2 TP-PMD-to-SMT services147 Media independent operations 167.1 Transmit function 177.2 Receive
9、function .208 Media interface connector specifications.238.1 Media interface connectors .248.2 Testing recommendations .278.3 Station labeling .278.4 Isolation requirements.279 Media signal interface.289.1 Active Output Interface289.2 Active Input Interface specifications 3110 Interface signals .331
10、0.1 Receiver .3310.2 Transmitter .3611 Cable plant interface specification 3611.1 Cable plant specification .3611.2 Crossover function 3811.3 Connectors, cords, and cross-connect equipment.38Tables1 UTP-MIC contact assignments242 STP-MIC contact assignments 263 Twisted Pair Active Output Interface c
11、haracteristics 314 Signal_Detect summary .35Figures1 FDDI links and connections 7ContentsPageii2 FDDI topology example 83 FDDI representative distribution environment example 104 Dual attachment TP-PMD services125 TP-PMD functions 166 Encoder state diagram197 Decoder state diagram218 Example of a UT
12、P-MIC receptacle 249 Example of a UTP-MIC plug2510 Example of a STP-MIC receptacle 2611 Example of a STP-MIC plug2612 Active output interface overshoot 2913 Inductance measurement technique3014 Active output interface duty cycle distortion.3115 Differential input signals .3216 Common mode rejection
13、.3317 Signal_Detect assertion threshold.3418 Signal_Detect threshold and timing.3519 Mask of permitted cable plant reference insertion loss and reference crosstalk attenuation 37AnnexesA Test procedures .39B Electrical interface considerations.48C Example of system jitter allocation 50D Labeling con
14、siderations 52E Alternative cable plant usage54F Impedance and insertion loss deviation.55G Stream cipher scrambling function 56H Equipment cabling in a structured cabling context .64I Common mode cable termination65J Twisted Pair Active Output Interface template .67K Bibliography .68PageiiiThe Fibr
15、e Distributed Data Interface (FDDI) is intended for use in a high-performance general purpose multi-station network and is designed forefficient operation with a peak data rate of 100 Mbit/s. It uses a TokenRing architecture with optical fibre as the primary transmission medium.FDDI provides for hun
16、dreds of stations operating over an extent of tens ofkilometers.The FDDI Token ring twisted pair physical layer medium dependent (TP-PMD) standard specifies the lower sublayer of the Physical Layer for FDDIfor operation on twisted pair cables. As such it specifies the power levelsand characteristics
17、 of the transmitter and receiver, and the interface signalrequirements including jitter. TP-PMD also specifies the connector details,the requirements of conforming FDDI cable plants, and the permissible biterror rates. TP-PMD is designed to operate with one twisted pair in eachdirection.TP-PMD is on
18、e of a set of American National Standard alternative PMDsbeing developed, or already developed, for FDDI. This set includes theoriginal PMD for multimode fibre, the Single Mode Fibre PMD (SMF-PMD),and the Low Cost Fibre PMD (LCF-PMD).The set of FDDI standards, when completed, will include the follow
19、ingstandards:a) A FDDI PART: Token ring physical layer protocol (PHY), which speci-fies the upper sublayer of the physical layer for the FDDI, including thedata encode/decode, framing and clocking, as well as the elasticitybuffer, smoothing, and repeat filter functions;b) A FDDI PART: Token ring med
20、ia access control (MAC),which speci-fies the lower sublayer of the data link layer for FDDI, including theaccess to the medium, addressing, data checking, and data framing;c) A FDDI PART: Token ring station management (SMT), which speci-fies the local portion of the system management application pro
21、cess forFDDI, including the control required for proper operation of a station inan FDDI ring.American National Standards for FDDI MAC (ANSI X3.139-1987), FDDIPHY (ANSI X3.148-1988), and FDDI PMD (ANSI X3.166-1990) have beenapproved and published. In addition, FDDI standards are being processedas In
22、ternational Standards by standards committee ISO/IEC JTC 1/SC 25.International standards for FDDI PHY, FDDI MAC, and FDDI PMD (ISO9314-1:1989, 9314-2:1989 and ISO/IEC 9314-3:1990, respectively) havealso been published.An extension to the basic FDDI is now in the X3 approval process. Thestandard FDDI
23、 HRC, commonly known as FDDI-II, will extend the capabili-ty of FDDI to handle isochronous data streams at a multiplicity of datarates. A standard for an enhancement to MAC is in process. This standard will bereferred to as FDDI MAC-2 when it is necessary to distinguish it from theapproved FDDI MAC
24、standard ANSI X3.139-1988. Changes to be consid-ered for this update of the FDDI MAC standard include those identified infootnotes in the published standard on MAC as areas that the standardsForeword (This foreword is not part of American National Standard X3.263-1995.)ivcommittee intended to change
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