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    BS ISO 26428-19-2012 Digital cinema (D-cinema) distribution master Serial digital interface signal formatting for additional frame rates level AFR2 and level AFR4《数字影院发行母带 用于AFR2级和.pdf

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    BS ISO 26428-19-2012 Digital cinema (D-cinema) distribution master Serial digital interface signal formatting for additional frame rates level AFR2 and level AFR4《数字影院发行母带 用于AFR2级和.pdf

    1、raising standards worldwideNO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAWBSI Standards PublicationBS ISO 26428-19:2011Digital cinema (D-cinema) distribution masterPart 19: Serial digital interface signal formatting for additional frame rates level AFR2 and level AFR4BS ISO 26

    2、428-19:2011 BRITISH STANDARDNational forewordThis British Standard is the UK implementation of ISO 26428-19:2011.The UK participation in its preparation was entrusted to T e c h n i c a l C o m m i t t e e C P W / 3 6 , C i n e m a t o g r a p h y .A list of organizations represented on this committ

    3、ee can be obtained on request to its secretary.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2012Published by BSI Standards Limited 2012ISBN 978 0 580 73772 5 ICS 35.040; 3

    4、7.060.99 Compliance with a British Standard cannot confer immunity from legal obligations.This British Standard was published under the authority of the Standards Policy and Strategy Committee on 29 February 2012.Amendments issued since publicationDate T e x t a f f e c t e dBS ISO 26428-19:2011Refe

    5、rence numberISO 26428-19:2011(E)ISO 2011INTERNATIONAL STANDARD ISO26428-19First edition2011-12-15Digital cinema (D-cinema) distribution master Part 19: Serial digital interface signal formatting for additional frame rates level AFR2 and level AFR4 Souche de la distribution du cinma numrique (cinma D

    6、) Partie 19: Formatage du signal de linterface numrique de srie pour les cadences de prise de vue supplmentaire de niveaux AFR2 et AFR4 BS ISO 26428-19:2011ISO 26428-19:2011(E) COPYRIGHT PROTECTED DOCUMENT ISO 2011 All rights reserved. Unless otherwise specified, no part of this publication may be r

    7、eproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either ISO at the address below or ISOs member body in the country of the requester. ISO copyright office Case postale 56 CH-1211 Geneva 20 Tel. + 41

    8、22 749 01 11 Fax + 41 22 749 09 47 E-mail copyrightiso.org Web www.iso.org Published in Switzerland ii ISO 2011 All rights reservedBS ISO 26428-19:2011 ISO 26428-19:2011(E) ISO 2011 All rights reserved iiiForeword ISO (the International Organization for Standardization) is a worldwide federation of

    9、national standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Each member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. Inte

    10、rnational organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. International Standards are drafted in accordance with th

    11、e rules given in the ISO/IEC Directives, Part 2. The main task of technical committees is to prepare International Standards. Draft International Standards adopted by the technical committees are circulated to the member bodies for voting. Publication as an International Standard requires approval b

    12、y at least 75 % of the member bodies casting a vote. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. ISO 26428-19 was prepared by the Society of Moti

    13、on Picture and Television Engineers (as SMPTE 428-19-2010) and was adopted, under a special “fast-track procedure”, by Technical Committee ISO/TC 36, Cinematography, in parallel with its approval by the ISO member bodies. ISO 26428 consists of the following parts, under the general title Digital cin

    14、ema (D-cinema) distribution master: Part 1: Image characteristics equivalent to SMPTE 428-1 Part 2: Audio characteristics equivalent to SMPTE 428-2 Part 3: Audio channel mapping and channel labeling equivalent to SMPTE 428-3 Part 7: Subtitle equivalent to SMPTE 428-7 Part 9: Image pixel structure le

    15、vel 3 Serial digital interface signal formatting equivalent to SMPTE 428-9 Part 11: Additional frame rates equivalent to SMPTE 428-11 Part 19: Serial digital interface signal formatting for additional frame rates level AFR2 and level AFR4 equivalent to SMPTE 428-19 BS ISO 26428-19:2011 ISO 26428-19:

    16、2011(E) iv ISO 2011 All rights reservedIntroduction This part of ISO 26428 comprises SMPTE 428-19-2010 and Annex ZZ (which provides equivalences between ISO standards and SMPTE standards referenced in the text). Copyright 2010 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue

    17、, White Plains, NY 10601 (914) 761-1100 Approved August 9, 2010 Table of Contents Page Foreword 2 Intellectual Property . 2 1 Scope 3 2 Conformance Notation . . 3 3 Normative References . . 3 4 SDI Image Data Format Constraints . 4 5 Virtual Interface Data Format . . 5 Annex A Progressive Segmented

    18、Frame System (Normative) . 8 Annex B Bilbliography (Informative) . . 9 Annex C Document Roadmap (Informative) . 10 Page 1 of 10 pages SMPTE ST 428-19:2010 SMPTE STANDARD D-Cinema Distribution Master Additional Frame Rates Level AFR2 and Level AFR4 Serial Digital Interface Signal Formatting ISO 2011

    19、All rights reserved 1BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 2 of 10 pages Foreword SMPTE (the Society of Motion Picture and Television Engineers) is an internationally-recognized standards developing organization. Headquartered and incorporated in the United States of Am

    20、erica, SMPTE has members in over 80 countries on six continents. SMPTEs Engineering Documents, including Standards, Recommended Practices and Engineering Guidelines, are prepared by SMPTEs Technology Committees. Participation in these Committees is open to all with a bona fide interest in their work

    21、. SMPTE cooperates closely with other standards-developing organizations, including ISO, IEC and ITU. SMPTE Engineering Documents are drafted in accordance with the rules given in Part XIII of its Administrative practices. SMPTE ST 428-19 was prepared by Technology Committee 21DC Intellectual Proper

    22、ty At the time of publication no notice had been received by SMPTE claiming patent rights essential to the implementation of this Standard. However, attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. SMPTE shall not be held responsib

    23、le for identifying any or all such patent rights. ISO 2011 All rights reserved2BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 3 of 10 pages 1 Scope This standard defines the formatting and constraints of the DCDM SMPTE 428-11 AFR Level 2 and AFRLevel 4 image Pixel Structure for

    24、transmission over the 1.485 Gb/s dual link serial digital interfaceSMPTE 372M or 3 Gb/s interface SMPTE 424M. The Serial Digital Interface (SDI) container parametersfor DCDM AFR Level 2 and AFR Level 4 are given in Table 1. Table 1 SDI container pixel array AFR level Systemnomenclature X Y Zsamples

    25、per activeline(S/AL) Lines percontainer (AL/F) Framerate (Hz) Interfacesampling frequency fs(MHz) X Y Zsample periods pertotal line(S/TL) Interfacetotal linesper frame 2 2048 x 1080/25/P 2048 1080 25 74.25 2640 1125 4 2048 x 1080/30/P 2048 1080 30 74.25 2200 1125 2 Conformance Notation Normative tex

    26、t is text that describes elements of the design that are indispensable or contains theconformance language keywords: “shall“, “should“, or “may“. Informative text is text that is potentiallyhelpful to the user, but not indispensable, and can be removed, changed, or added editorially withoutaffecting

    27、 interoperability. Informative text does not contain any conformance keywords. All text in this document is, by default, normative, except: the Introduction, any section explicitly labeledas “Informative“ or individual paragraphs that start with “Note:” The keywords “shall“ and “shall not“ indicate

    28、requirements strictly to be followed in order to conform tothe document and from which no deviation is permitted. The keywords, “should“ and “should not“ indicate that, among several possibilities, one is recommendedas particularly suitable, without mentioning or excluding others; or that a certain

    29、course of action ispreferred but not necessarily required; or that (in the negative form) a certain possibility or course ofaction is deprecated but not prohibited. The keywords “may“ and “need not“ indicate courses of action permissible within the limits of thedocument. The keyword “reserved” indic

    30、ates a provision that is not defined at this time, shall not be used, and maybe defined in the future. The keyword “forbidden” indicates “reserved” and in addition indicates that theprovision will never be defined in the future. A conformant implementation according to this document is one that incl

    31、udes all mandatory provisions(“shall“) and, if implemented, all recommended provisions (“should“) as described. A conformantimplementation need not implement optional provisions (“may“) and need not implement them asdescribed. 3 Normative References The following standards contain provisions which,

    32、through reference in this text, constitute provisions ofthis standard. At the time of publication, the editions indicated were valid. All standards are subject torevision, and parties to agreements based on this standard are encouraged to investigate the possibilityof applying the most recent editio

    33、n of the standards indicated below. ISO 2011 All rights reserved 3BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 4 of 10 pages SMPTE 428-1 2006, D-Cinema Distribution Master (DCDM) Image Characteristics SMPTE 428-11-2009, Additional Frame Rates for D-Cinema 4 SDI Image Data Form

    34、at Constraints 4.1 The serial digital container is a fixed container size with a 2048 x 1080 pixel array. See Figure 1. 4.2 Within the serial digital container not all pixels will form the image as defined by SMPTE 428-11.Pixels not forming the image shall be called padding pixels and have a value o

    35、f 010h. 4.3 The center of the DCDM Image pixel array shall correspond to the center of the SDI container. SDI ContainerImage Containercentre, Active imagecentre2048 HorizontalPixels1080 VerticalPixelsPixel number 0.0DCDM AFR Level 2 and AFR Level 4 pixel structure- (May fill the container)Padding Pi

    36、xels- Set to 010hPadding Pixels- Set to 010hCenterofthecontainerANDcenteroftheimageFigure 1 Serial digital container 4.4 The DCDM AFR Level 2 and AFR Level 4 pixel image structure shall employ X, Y, Zcoding asdefined in DCDM image pixel structure format, SMPTE 428-1. 4.5 X Y Z code values shall be c

    37、ontained within the range of FEFh O10h. Values that may exist inthe source signal, beyond these defined limits shall be clipped. 4.6 Code values FFOh FFFhand 000h 00Fhare prohibited in the payload. ISO 2011 All rights reserved4BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 5 of

    38、10 pages 5 Virtual Interface Data Format There shall be 3 data channels, X, Y, Z each with identical data structures. 5.1 The data format at the virtual interface of each channel shall consist of synchronizing signals (EAVand SAV), the serial digital interface container, horizontal blanking and vert

    39、ical blanking. See Figures 1and 2. 5.2 The horizontal blanking area does not contain image pixels and shall be set to the padding pixelvalue of 010h. Figure 2 Data Format Interface horizontal line Notes 1 Horizontal axis not to scale. 2 A line of SDI container extends from the first word of EAV thro

    40、ugh the last word of container data. 3 The number of samples of the SDI container data (sample number o through p in Figure 2) is 2048. Thatis, the letter o denotes sample number 0 and the letter p denotes sample number 2047 in the SDI container. 4 The number of reference clock periods per second eq

    41、uals the interface sampling frequency Table 2 Values for SDI container array structure AFR level fps Sample numbering Durations in reference clockperiods (T) a b c d e k l m N o p A B C 2 25 2048 2049 2050 2051 2052 2636 2637 2638 2639 0 2047 2048 584 26404 30 2048 2049 2050 2051 2052 2196 2197 2198

    42、 2199 0 2047 2048 144 2200 5.3 SAV (start of active video) and EAV (end of active video) digital synchronizing sequences shalldefine synchronization across the serial digital interface. Figures 1, 2 and 3 show the relationship of theSAV and EAV sequences to SDI container data. SDI CONTAINER DATA HOR

    43、IZONTAL BLANKING CODEWORDS EAV SAVSample Numbering Digital DataStream Durations in ReferenceClock Periods (T) duration in ref. clock periods 4T 4T (EAV)A (2048T) kl mn o p ab c de pa bc dC B . . ISO 2011 All rights reserved 5BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 6 of 10

    44、 pages 5.4 An SAV or EAV sequence shall comprise four consecutive code words: a code word of all ones, acode word of all zeros, another code word of all zeros, and a code word including F (frame), V (vertical),H (horizontal), P3, P2, P1, and P0 (parity) bits. An SAV sequence shall be identified by h

    45、aving H = 0;EAV shall have H = 1 (Tables 3 and 4 show details of the coding). 5.5 Interface line numbers: The interface shall have 1125 total number of lines, 1 thru 1125 inclusive. The vertical blanking area shall consist of lines 1 though 41 inclusive and lines 1122 through 1125 inclusive. The ver

    46、tical blanking area does not contain image pixels and shall be set to the padding pixel value of010h. The SDI Image container shall be 1080 lines, starting at line 42 (top of container) through 1121 (bottomof the container) inclusive. 5.6 In a progressive system, the EAV and SAV of all lines shall h

    47、ave F = 0; The EAV and the SAV of lines 1 through 41 inclusive and lines 1122 through 1125 inclusive shall have V = 1; The EAV and SAV of lines 42 through 1121 inclusive shall have V = 0. 5.7 In a PsF system: The EAV and SAV of lines 1 through 563 inclusive shall have F = 0. The EAV and SAV of lines

    48、 564through 1125 inclusive shall have F = 1; The EAV and SAV of lines 1 through 20, lines 561 through 583, and lines 1124 and 1125 shall have V= 1; The EAV and the SAV of lines 21 through 560 and lines 584 through 1123 shall have V = 0. Figure 3 Digital levels and timing X,Y,Z010h(16) FEFh(4079) EAV

    49、SAVEAVa e k o Sample instants a e ISO 2011 All rights reserved6BS ISO 26428-19:2011 ISO 26428-19:2011(E) SMPTE ST 428-19:2010 Page 7 of 10 pages Table 3 Timing reference codes1Bit number 11(MSB) 10 9 8 7 6 5 4 3 2 1 0(LSB) Word Value 0 FFFh (4095) 1 1 1 1 1 1 1 1 1 1 1 1 1 000h (0) 0 0 0 0 0 0 0 0 0 0 0 0 2 000h (0) 0 0 0 0 0 0 0 0 0 0 0 0 3 1 F V H P3 P2 P1 P0 0 0


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