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1、raising standards worldwideNO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAWBSI Standards PublicationField device tool (FDT) interfacespecification Part 303-1: Communication profile integration IEC 61784 CP 3/1 and CP 3/2BS EN 62453-303-1:2009National forewordThis British Standa

2、rd is the UK implementation of EN 62453-303-1:2009. It isidentical to IEC 62453-303-1:2009.The UK participation in its preparation was entrusted to Technical CommitteeAMT/7, Industrial communications: process measurement and control, including fieldbus.A list of organizations represented on this com

3、mittee can be obtained onrequest to its secretary.This publication does not purport to include all the necessary provisions of acontract. Users are responsible for its correct application. BSI 2010ISBN 978 0 580 62562 6ICS 25.040.40; 35.100.05; 35.110Compliance with a British Standard cannot confer

4、immunity fromlegal obligations.This British Standard was published under the authority of the StandardsPolicy and Strategy Committee on 31 January 2010Amendments issued since publicationAmd. No. Date Text affectedBRITISH STANDARDBS EN 62453-303-1:2009EUROPEAN STANDARD EN 62453-303-1 NORME EUROPENNE

5、EUROPISCHE NORM October 2009 CENELEC European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung Central Secretariat: Avenue Marnix 17, B - 1000 Brussels 2009 CENELEC - All rights of exploitation in any form

6、 and by any means reserved worldwide for CENELEC members. Ref. No. EN 62453-303-1:2009 E ICS 25.040.40; 35.100.05; 35.110 English version Field device tool (FDT) interface specification - Part 303-1: Communication profile integration - IEC 61784 CP 3/1 and CP 3/2 (IEC 62453-303-1:2009) Spcification

7、des interfaces des outils des dispositifs de terrain (FDT) - Partie 303-1: Intgration des profils de communication - CEI 61784 CP 3/1 et CP 3/2 (CEI 62453-303-1:2009) Field Device Tool (FDT)-Schnittstellenspezifikation - Teil 303-1: Integration von Kommunikationsprofilen - Kommunikationsprofile (CP)

8、 3/1 und 3/2 nach IEC 61784 (IEC 62453-303-1:2009) This European Standard was approved by CENELEC on 2009-08-01. CENELEC members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without an

9、y alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the Central Secretariat or to any CENELEC member. This European Standard exists in three official versions (English, French, German). A version in any other language mad

10、e by translation under the responsibility of a CENELEC member into its own language and notified to the Central Secretariat has the same status as the official versions. CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Cyprus, the Czech Republic, Denmark, E

11、stonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and the United Kingdom. BS EN 62453-303-1:2009EN 62453-303-1:2009 - 2 - Foreword The te

12、xt of document 65E/127/FDIS, future edition 1 of IEC 62453-303-1, prepared by SC 65E, Devices and integration in enterprise systems, of IEC TC 65, Industrial-process measurement, control and automation, was submitted to the IEC-CENELEC parallel vote and was approved by CENELEC as EN 62453-303-1 on 2

13、009-08-01. Each part of the EN 62453-3xy series is intended to be read in conjunction with EN 62453-2. The following dates were fixed: latest date by which the EN has to be implemented at national level by publication of an identical national standard or by endorsement (dop) 2010-05-01 latest date b

14、y which the national standards conflicting with the EN have to be withdrawn (dow) 2012-08-01 Annex ZA has been added by CENELEC. _ Endorsement notice The text of the International Standard IEC 62453-303-1:2009 was approved by CENELEC as a European Standard without any modification. In the official v

15、ersion, for Bibliography, the following notes have to be added for the standards indicated: 5 IEC 61158-6 NOTE Harmonized as EN 61158-6:2004 (not modified). 7 IEC 61158-5 NOTE Harmonized as EN 61158-5:2004 (not modified). _ BS EN 62453-303-1:2009- 3 - EN 62453-303-1:2009 Annex ZA (normative) Normati

16、ve references to international publications with their corresponding European publications The following 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 doc

17、ument (including any amendments) applies. NOTE When an international publication has been modified by common modifications, indicated by (mod), the relevant EN/HD applies. Publication Year Title EN/HD Year IEC 61131-3 2003 Programmable controllers - Part 3: Programming languages EN 61131-3 2003 IEC

18、61158 Series Industrial communication networks - Fieldbus specifications EN 61158 Series IEC 61158-2 1)Industrial communication networks - Fieldbus specifications - Part 2: Physical layer specification and service definition EN 61158-2 20082)IEC 61158-3-3 1)Industrial communication networks - Fieldb

19、us specifications - Part 3-3: Data-link layer service definition - Type 3 elements EN 61158-3-3 20082)IEC 61158-4-3 1)Industrial communication networks - Fieldbus specifications - Part 4-3: Data-link layer protocol specification - Type 3 elements EN 61158-4-3 20082)IEC 61158-5-3 1)Industrial communi

20、cation networks - Fieldbus specifications - Part 5-3: Application layer service definition - Type 3 elements EN 61158-5-3 20082)IEC 61158-6-3 1)Industrial communication networks - Fieldbus specifications - Part 6-3: Application layer protocol specification - Type 3 elements EN 61158-6-3 20082)IEC 61

21、784-1 1)Industrial communication networks - Profiles - Part 1: Fieldbus profiles EN 61784-1 20082)IEC 62453-1 2009 Field device tool (FDT) interface specification - Part 1: Overview and guidance EN 62453-1 2009 IEC 62453-2 2009 Field device tool (FDT) interface specification - Part 2: Concepts and d

22、etailed description EN 62453-2 2009 1)Undated reference. 2)Valid edition at date of issue. BS EN 62453-303-1:2009 2 62453-303-1 IEC:2009(E) CONTENTS INTRODUCTION.7 1 Scope.8 2 Normative references .8 3 Terms, definitions, symbols, abbreviated terms and conventions 9 3.1 Terms and definitions 9 3.2 S

23、ymbols and abbreviated terms.9 3.3 Conventions 9 3.3.1 Data type names and references to data types 9 3.3.2 Vocabulary for requirements9 3.3.3 Use of UML .9 4 Bus category 10 5 Access to instance and device data10 5.1 Process Channel objects provided by DTM10 5.2 DTM services to access instance and

24、device data .10 6 Protocol specific behavior.10 6.1 PROFIBUS device model 10 6.2 Configuration and parameterization of PROFIBUS devices11 6.2.1 General .11 6.2.2 Monolithic DTM for a modular PROFIBUS device 12 6.2.3 Modular DTM for a modular PROFIBUS device12 6.3 Support for DPV0 configuration .13 6

25、.4 PROFIBUS slaves operating without a cyclic PROFIBUS master.13 6.5 PROFIBUS-related information of a slave DTM .13 6.5.1 General .13 6.5.2 Bus Master Configuration Part (BMCP)14 7 Protocol specific usage of general data types.24 8 Protocol specific common data types26 9 Network management data typ

26、es26 9.1 General .26 9.1.1 Configuration.26 9.1.2 Process Channel .27 9.1.3 Parameterization .27 9.2 Master-bus parameter set28 9.3 Slave bus parameter set28 9.4 Module and channel data 29 9.5 GSD information32 9.5.1 General .32 9.5.2 GSD for gateway devices 32 10 Communication data types .33 10.1 G

27、eneral .33 10.2 Error information provided by Communication Channel .33 10.3 DPV0 communication 33 10.4 DPV1 communication 40 11 Channel parameter data types43 BS EN 62453-303-1:200962453-303-1 IEC:2009(E) 3 12 Device identification .46 12.1 General .46 12.2 Protocol specific handling of the data ty

28、pe STRING.46 12.3 Common device type identification data types .46 12.4 Topology scan data types51 12.5 Scan identification data types52 12.6 Device type identification data types provided by DTM .54 12.7 Identification information in GUI 57 13 ProfiSafe 57 13.1 Motivation .57 13.2 General parameter

29、 handling 57 13.3 ProfiSafe individual device parameter .58 Bibliography60 Figure 1 Part 303-1 of the IEC 62453 series 7 Figure 2 FDT PROFIBUS device model11 Figure 3 Example for IO data within datagrams30 Figure 4 F-Parameter and individual device parameter 58 Figure 5 Data structure of ProfiSafe i

30、ndividual device parameters59 Table 1 Protocol identifiers 10 Table 2 Physical layer identifiers10 Table 3 BMPC Part1 General configuration.15 Table 4 BMPC Part2 Parameter data 15 Table 5 BMPC Part3 Configuration data16 Table 6 Part 4: Address table and slave user parameters 17 Table 7 Part 4: Exten

31、ded Prm data 17 Table 8 Complete BMCP18 Table 9 Protocol specific usage of general data types24 Table 10 Bus parameter set for master device .28 Table 11 Bus parameter set for slave device29 Table 12 Signal channels within the data frame .31 Table 13 Simple DPV0 communication data types34 Table 14 S

32、tructured DPV0Communication data types 34 Table 15 Availability of services for Master Class1 (C1).39 Table 16 Availability of services for Master Class2 (C2).39 Table 17 Simple DPV1 communication data types40 Table 18 Structured DPV1 communication data types 41 Table 19 Mapping of DPV1 data types t

33、o FDT data types.43 Table 20 Simple ChannelParameter data types44 Table 21 Structured ChannelParameter data types 45 Table 22 Identification data types with Profibus DP specific mapping.47 Table 23 Identification data types with Profibus I RS 485 (ANSI TIA/EIA RS-485-A); optional RS 485-IS; plastic

34、fiber; glass multi mode fiber or glass single mode fiber; PCF fiber 3.1.3 CP 3/2 Communication profile of CPF3, featuring synchronous transmission; manchester coded and bus powered (MBP); optional intrinsically safe (MBP-IS) and lower power (MBP-LP) 3.2 Symbols and abbreviated terms For the purposes

35、 of this document, the symbols and abbreviations given in IEC 624531, IEC 624532 and the following apply. BIM Bus Interface Module BMCP Bus Master Configuration Part GSD General Station Description 3.3 Conventions 3.3.1 Data type names and references to data types The conventions for naming and refe

36、rencing of data types are explained in IEC 62453-2, Clause A.1 3.3.2 Vocabulary for requirements The following expressions are used when specifying requirements. Usage of “shall” or “mandatory” No exceptions allowed. Usage of “should” or “recommended” Strong recommendation. It may make sense in spec

37、ial exceptional cases to differ from the described behaviour. Usage of “can or “optional Function or behaviour may be provided, depending on defined conditions. 3.3.3 Use of UML Figures in this document are using the UML notation as defined in Annex A of IEC 624531. BS EN 62453-303-1:2009 10 62453-3

38、03-1 IEC:2009(E) 4 Bus category CP 3/1 and CP 3/2 protocols are identified in the protocolId element of the structured data type fdt:BusCategory by the following unique identifiers (Table 1): Table 1 Protocol identifiers Identifier value ProtocolId name Description 036D1497-387B-11D4-86E1-00E0987270

39、B9 Profibus DP/V0 Support of Profibus DP V0 protocol 036D1499-387B-11D4-86E1-00E0987270B9 Profibus DP/V1 Support of Profibus DP V1 protocol CP 3/1 AND CP 3/2 protocols are using the following unique identifiers in physicalLayer members within PhysicalLayer data type (Table 2): Table 2 Physical layer

40、 identifiers Identifier value Description 036D1590-387B-11D4-86E1-00E0987270B9 IEC 61158-2 (Profibus PA) 036D1591-387B-11D4-86E1-00E0987270B9 RS485 036D1592-387B-11D4-86E1-00E0987270B9 Fiber 036D1593-387B-11D4-86E1-00E0987270B9 Ethernet 5 Access to instance and device data 5.1 Process Channel object

41、s provided by DTM The minimum set of provided data should be: Process values modelled as channel objects including the ranges and scaling 5.2 DTM services to access instance and device data The services InstanceDataInformation and DeviceDataInformation shall provide access to at least all parameters

42、 of the Physical Block and the status and Out value of the Function Blocks shall be exposed. According to IEC 62453-2, at least one set of semantic information (one per supported fieldbus protocol) shall be provided for each accessible data object, using the SemanticInformation general data type. Th

43、e corresponding data type applicationDomain shall have a value defined for Profibus and the data type semanticId shall have an appropriate value, as specified in Table 9. 6 Protocol specific behavior 6.1 PROFIBUS device model FDT extends the PROFIBUS device model by using Process Channels for descri

44、ption of I/O values (see Figure 2). BS EN 62453-303-1:200962453-303-1 IEC:2009(E) 11 Figure 2 FDT PROFIBUS device model 6.2 Configuration and parameterization of PROFIBUS devices 6.2.1 General In a GSD-based configuration tool the user defines the configuration and sets the appropriate parameters fo

45、r the modules. The configuration tool creates the configuration string and the parameter string that are used to set up the slave properly. With FDT the configuration and parameterization of the devices is no longer executed only by a central component; it moved partly into the DTMs. A DTM is respon

46、sible for providing configuration and parameterization information for the cyclic master that puts the PROFIBUS slaves in operation. A DTM is used to adjust a field device to its specific application. Within PROFIBUS, there are three different aspects of adjustment: parameterization: usr prm data (u

47、sed in the PROFIBUS service SET_PRM for setting up the cyclic communication and the specific behavior of the device); IEC 1128/09 BS EN 62453-303-1:2009 12 62453-303-1 IEC:2009(E) application parameterization: application specific parameters (transmitted via acyclic read/write PROFIBUS services); co

48、nfiguration: configuration data (used in the PROFIBUS service CHK_CFG for definition of the format and length of the input/output data that are transmitted within cyclic communication). The application parameterization transmitted via acyclic communication is not in the scope of this document. Withi

49、n this document the term parameterization represents communication parameterization (SET_PRM). 6.2.2 Monolithic DTM for a modular PROFIBUS device A monolithic DTM is one single DTM that represents the complete device with its Bus Interface Module (BIM) and its I/O modules. In general, such a DTM offers a configuration dialog (presentation object) that allows definition of the used BIM and modules. The config

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