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    BS ISO IEC 15434-2006 Information technology - Automatic identification and data capture techniques - Syntax for high-capacity ADC media《信息技术 自动识别和数据收集技术 高容量自动数据收集(ADC)媒介用句法》.pdf

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    BS ISO IEC 15434-2006 Information technology - Automatic identification and data capture techniques - Syntax for high-capacity ADC media《信息技术 自动识别和数据收集技术 高容量自动数据收集(ADC)媒介用句法》.pdf

    1、 g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58identification and data capture techniques Syntax for high-capacity ADC mediaICS 35.040Information

    2、technology Automatic BRITISH STANDARDBS ISO/IEC 15434:2006BS ISO/IEC 15434:2006This British Standard was published under the authority of the Standards Policy and Strategy Committee on 29 December 2006 BSI 2006ISBN 0 580 49857 3Amendments issued since publicationAmd. No. Date CommentsThis publicatio

    3、n does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application.Compliance with a British Standard cannot confer immunity from legal obligations.National forewordThis British Standard was published by BSI. It is the UK implementation of ISO

    4、/IEC 15434:2006. It supersedes BS ISO/IEC 15434:2005 which is withdrawn.The UK participation in its preparation was entrusted to Technical Committee IST/34, Automatic identification and data capture techniques.A list of organizations represented on IST/34 can be obtained on request to its secretary.

    5、Reference numberISO/IEC 15434:2006(E)INTERNATIONAL STANDARD ISO/IEC15434Third edition2006-10-01Information technology Automatic identification and data capture techniques Syntax for high-capacity ADC media Technologies de linformation Techniques didentification et captage automatique des donnes Synt

    6、axe pour supports de CAD haute capacit BS ISO/IEC 15434:2006ii iiiContents Page Foreword iv Introduction v 1 Scope 1 2 Normative references 1 3 Terms, definitions and documentation notation conventions2 3.1 Terms and definitions .2 3.2 Documentation notation conventions .2 4 Message format2 4.1 Mess

    7、age Envelope.3 4.1.1 Message Header.3 4.1.2 Message Trailer4 4.2 Format Envelope4 4.2.1 Format Header4 4.2.2 Format Header “00” - Reserved format .6 4.2.3 Format Header “01” - Transportation 6 4.2.4 Format Header “02” - Complete EDI message / transaction .6 4.2.5 Format Header “03” - Structured data

    8、 using ASC X12 segments 6 4.2.6 Format Header “04” - Structured data using UN/EDIFACT segments .7 4.2.7 Format Header “05” - Data using GS1 Application Identifiers7 4.2.8 Format Header “06” - Data using ASC MH 10 Data Identifiers7 4.2.9 Format Header “07” - Free form text data .8 4.2.10 Format Heade

    9、r “08” - Structured data using CII syntax rules 8 4.2.11 Format Header “09” - Binary data8 4.2.12 Format Header (“10”- “11”) - Reserved formats.8 4.2.13 Format Header “12” - Data using Text Element Identifiers .9 4.2.14 Format Header (“13”-“99”) - Reserved formats9 4.2.15 Format Trailer.9 4.3 Data f

    10、ormat .9 4.3.1 Format “00” (Reserved) 9 4.3.2 Format “01” Carrier sortation and tracking (Transportation) .10 4.3.3 Format “02” (Complete EDI message / transaction) 12 4.3.4 Format “03” (Structured data using ASC X12 segments) .12 4.3.5 Format “04” (Structured data using UN/EDIFACT segments) 12 4.3.

    11、6 Format “05” (Using GS1 Application Identifiers) .13 4.3.7 Format “06” (Using ASC MH 10 Data Identifiers) .13 4.3.8 Format “07” (Free form text format) 13 4.3.9 Format “08” (Structured data using CII syntax rules)13 4.3.10 Format “09” (Binary data) .13 4.3.11 Format “10”-“11” (Reserved)14 4.3.12 Fo

    12、rmat “12” (Using Text Element Identifiers).14 4.3.13 Format “13”-“99” (Reserved)14 5 Maintenance .14 Annex A (normative) Subset of ISO 646 (Table of hexadecimal and decimal values) .16 Bibliography 17 BS ISO/IEC 15434:2006iv Foreword ISO (the International Organization for Standardization) and IEC (

    13、the International Electrotechnical Commission) form the specialized system for worldwide standardization. National bodies that are members of ISO or IEC participate in the development of International Standards through technical committees established by the respective organization to deal with part

    14、icular fields of technical activity. ISO and IEC technical committees collaborate in fields of mutual interest. Other international organizations, governmental and non-governmental, in liaison with ISO and IEC, also take part in the work. In the field of information technology, ISO and IEC have esta

    15、blished a joint technical committee, ISO/IEC JTC 1. International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2. The main task of the joint technical committee is to prepare International Standards. Draft International Standards adopted by the joint techn

    16、ical committee are circulated to national bodies for voting. Publication as an International Standard requires approval by at least 75 % of the national 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 an

    17、d IEC shall not be held responsible for identifying any or all such patent rights. ISO/IEC 15434 was prepared by Joint Technical Committee ISO/IEC JTC 1, Information technology, Subcommittee SC 31, Automatic identification and data capture techniques. This third edition cancels and replaces the seco

    18、nd edition (ISO/IEC 15434:2005), which has been technically revised. BS ISO/IEC 15434:2006vIntroduction This International Standard defines the manner in which data is transferred to high-capacity automatic data capture (ADC) media from a suppliers information system and the manner in which data is

    19、transferred to the recipients information system. This International Standard does not define the internal data storage format for specific high-capacity ADC media. This International Standard does not specify the application of data structures provided by a specific data syntax format. The applicat

    20、ion of the data structure is specified by industry conventions. Users of ADC technologies benefit by being able to receive data in a standard form and by being able to provide data in a standard form. Static ADC technologies such as bar code symbologies, magnetic stripe, optical character recognitio

    21、n, surface acoustical wave (SAW) and Weigand effect typically encode a single field of data. Most applications of these technologies involve the encoding of a single field of data by the supplier of the medium and the subsequent decoding of the data field by the recipient. Encoding single fields of

    22、data permits the supplier to perform the encodation from a single field within the suppliers information system. Decoding single fields of data permits the recipient to input this data into a single field in the recipients information system, in lieu of key entry. High-capacity ADC technologies, suc

    23、h as two-dimensional symbols, RFID transponders, contact memories and smart cards, encode multiple fields of data. These multiple fields are usually parsed by the recipients information system and then mapped to specific fields of data in the recipients information system. This International Standar

    24、d defines the syntax for high-capacity ADC media, so as to enable ADC users to utilize a single mapping utility, regardless of which high-capacity ADC medium is employed. BS ISO/IEC 15434:2006blank1Information technology Automatic identification and data capture techniques Syntax for high-capacity A

    25、DC media 1 Scope This International Standard specifies a transfer structure, syntax, and coding of messages and data formats when using high-capacity ADC media between trading partners (specifically between suppliers and recipients) and, where applicable, in support of carrier applications, such as

    26、bills of lading, and carrier sortation and tracking. The data encoded according to this International Standard include data which may be used in the shipping, receiving and inventory of transport units; data which may be contained within supporting documentation, in paper or electronic form, related

    27、 to unit loads or transport packages; data which may be used in the sortation and tracking of transport units. This International Standard describes the ISO 646 syntax for automatic data capture. This International Standard is not the controlling specification for data structures (e.g. CII) referenc

    28、ed in this International Standard. This International Standard does not supersede or replace any applicable safety or regulatory marking or labelling requirements. This International Standard is to be applied in addition to any other mandated labelling requirements. 2 Normative references The follow

    29、ing referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO/IEC 646, Information technology ISO 7-bit coded charact

    30、er set for information interchange ISO/IEC 19762 (all parts), Information technology Automatic identification and data capture (AIDC) techniques Harmonized vocabulary ANS MH10.8.2, ASC MH 10 Data Identifiers and Application Identifiers ANS MH10.8.3, ASC MH 10 Syntax for high capacity ADC media ANS X

    31、12, Electronic Data Interchange CII Syntax Rule (Vers 3.00), CII Syntax Rule Specifications (3.00) (Electronic Data Interchange Japan) GS1 General Specification, GS1 ATA Common Support Data Dictionary (CSDD), Air Transport Association BS ISO/IEC 15434:20062 3 Terms, definitions and documentation not

    32、ation conventions 3.1 Terms and definitions For the purposes of this document, the terms and definitions given in ISO/IEC 19762 (all parts) apply. 3.2 Documentation notation conventions This International Standard uses the following typographical conventions in message examples. a) BOLD, ALL CAPITAL

    33、S Text that must be entered exactly as it appears. (In this International Standard, FS, GS, US, RS, EOTare used to represent non-printable special characters. The ISO 646 representation of special characters used in this International Standard can be found in Annex A.) b) italic, lower case Variable

    34、 Parameters. The user must supply an appropriate value. In some cases default values are recommended in this International Standard. 4 Message format This clause defines how data shall be transferred from a High Capacity ADC Media reading device to the users application software. To allow multiple d

    35、ata Formats to be contained within a data stream, a two level structure of enveloping is employed. The outermost layer of the message is a Message Envelope that defines the beginning and end of the message. Within the Message Envelope are one or more Format Envelopes that contain the data (see Figur

    36、e 1). Multiple formats in a single message should only be employed with bi-lateral agreements of the trading partners. The Message Envelope shall consist of a Message Header, one or more Format Envelope(s), and a Message Trailer (when required). Each Format Envelope within the Message Envelope shall

    37、 consist of a Format Header, data, formatted according to the rules defined for that Format, and a Format Trailer (when required). BS ISO/IEC 15434:20063Figure 1 Enveloping Structure Note: Annex A shows the decimal and hexadecimal values of ASCII characters used in this International Standard. 4.1 M

    38、essage Envelope The Message Envelope defines the start and end of the data contained within the data stream, and provides the following functions: indication that the message contained within this media is formatted in compliance with the rules of this International Standard; indicates the character

    39、 which has been defined to separate Formats within this Message; provides a unique character to indicate the end of the Message. The structure within a data stream is as follows: a Message, containing one or more Formats; a Format, containing one or more Segments; a Segment, containing one or more D

    40、ata Elements; a Data Element (Field), potentially containing one or more Sub-elements (Sub-fields). 4.1.1 Message Header The Message Header consists of two parts: the three character Compliance Indicator, and the Format Trailer Character. The complete Message Header1)is: )RS1) An artificial “space”

    41、character has been added between the “” and “)” characters so as to not be misinterpreted as the alphabetic character “D”. BS ISO/IEC 15434:20064 4.1.1.1 Compliance Indicator The Compliance Indicator shall be the first three characters in the Message Header. The Compliance Indicator shall be ) (left

    42、 bracket, right parenthesis, and greater than). See Annex A for a table of ASCII decimal and hexadecimal values used in this International Standard. 4.1.1.2 Format Trailer Character The Format Trailer Character shall be the fourth character in the Message Header. The Format Trailer Character shall b

    43、e the non-printable ASCII character “RS” (see Annex A). The Format Trailer Character is used throughout the message to indicate the end of a data Format envelope (see 4.2.15). 4.1.2 Message Trailer The Message Trailer identifies the end of the message within the data stream. The Message Trailer shal

    44、l be the End Of Transaction character, “EOT” (see Annex A). The Message Trailer character shall not be used elsewhere in the message except in Format “09” (binary data) where the “EOT” character may appear. The Message Trailer shall not be used with Formats “02” (Complete EDI message / transaction)

    45、and “08” (Structured data using CII Syntax Rules). 4.2 Format Envelope The Format Envelope defines the start and end of data in a given Format and provides the following functions: identifies the data Format used within the envelope; defines the character(s) used to separate the Segments, Data Eleme

    46、nts (Fields), and Sub-elements (Sub-fields) within this data Format; indicates any applicable date, release, or control information. 4.2.1 Format Header A Format Header shall consist of two parts: a Format Indicator (a two-digit numeric identifier which identifies the rules governing the Format); va

    47、riable data (if any) which defines the separators used and version and release, date, or control information of the applicable standards. Table 1 lists the Format Indicators and variable data associated with the Format Header. BS ISO/IEC 15434:20065Table 1 Format header table Showing associated sepa

    48、rators Format Indicator Variable Header Data Format Trailer Format Description 00 Reserved for future use 01 GSvv RSTransportation 02 Complete EDI message / transaction 03 vvvrrrFSGSUSRSStructured data using ANSI ASC X12 Segments 04 vvvrrrFSGSUSRSStructured data using UN/EDIFACT Segments 05 GSRSData

    49、 using GS1 Application Identifiers 06 GSRSData using ASC MH 10 Data Identifiers2)07 RSFree form text 08 vvvvrrnn Structured data using CII Syntax Rules 09 GSttt.t GSccc.c GSnnn.n GSRSBinary data (file type) (compression technique) (number of bytes) 10-11 Reserved for future use 12 GSRSStructured data following Text Element Identifier rules 12-99 Reserved for future use Note 1: vv represents the two-digit version of Format “01” being used Note 2: RSrepresents the Forma


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