SIST EN IEC 61784-1-19:2023
(Main)Industrial networks - Profiles - Part 1-19: Fieldbus profiles - Communication Profile Family 19 (IEC 61784-1-19:2023)
Industrial networks - Profiles - Part 1-19: Fieldbus profiles - Communication Profile Family 19 (IEC 61784-1-19:2023)
IEC 61784-1 (all parts) defines several Communication Profile Families (CPF). Each CPF specifies a set of protocol specific communication profiles (CPs) based primarily on the IEC 61158 series, to be used in the design of devices involved in communications in factory manufacturing and process control.
This document defines a common terminology for all CPFs and conventions to be used in the specification of the CPs. It also provides a conformance statement and an overview of the structure and contents of the CPFs in IEC 61784-1 (all parts).
Industrielle Kommunikationsnetze - Profile - Teil 1-19: Feldbusprofile - Kommunikationsprofilfamilie (CPF) 19 (IEC 61784-1-19:2023)
Réseaux industriels - Profils - Partie 1-19: Profils de bus de terrain - Famille de profils de communication 19 (IEC 61784-1-19:2023)
L’IEC 61784-1-19:2023 définit la famille de profils de communication 19 (CPF 19). La CPF 19 spécifie un ensemble de profils de communication spécifiques à un protocole (CP) basés sur la série IEC 61158 (type 24 et type 27) et d’autres normes, à utiliser pour la conception des dispositifs impliqués dans les communications dans la fabrication en usine et la commande de processus.
NOTE 1 Tous les CP sont fondés sur des normes, des projets de normes ou des Normes internationales publiées par l’IEC, ou bien sur des normes ou des Normes internationales établies par d’autres organismes de normalisation, ou encore sur des processus de normes ouvertes.
NOTE 2 Certains CP de la CPF 19 sont spécifiés dans l’IEC 61784-2-19.
Chaque CP sélectionne un sous-ensemble de services et de protocoles approprié, cohérent et compatible, à partir de l’ensemble du jeu pertinent défini et modélisé dans la série IEC 61158. Le profil décrit également, pour le sous-ensemble sélectionné de services et de protocoles, toute contrainte possible ou nécessaire au niveau des valeurs des paramètres.
Industrijska omrežja - Profili - 1-19. del: Profili procesnih vodil - Komunikacijski profil skupine 19 (IEC 61784-1-19:2023)
Ta del standarda IEC 61784-1 določa družino komunikacijskih profilov 19 (CPF 19). Družina komunikacijskih profilov 19 določa sklop komunikacijskih profilov (CP), specifičnih za protokol, na osnovi skupine standardov IEC 61158 (tip 24 in tip 27) in drugih standardov, za uporabo pri oblikovanju naprav, vključenih v postopkih komunikacije v tovarniški proizvodnji in kontroli procesa.
OPOMBA 1: Vsi komunikacijski profili temeljijo na standardih ali osnutkih standardov ali mednarodnih standardih, ki jih je objavila komisija IEC, oziroma na standardih ali mednarodnih standardih, ki so jih določili drugi organi za standarde ali procesi odprtih standardov.
OPOMBA 2: Nekateri komunikacijski profili iz družine komunikacijskih profilov 19 so določeni v standardu IEC 61784-2-19.
Vsak komunikacijski profil izbere skladno in združljivo podskupino opravil ter protokolov iz ustreznega sklopa, ki je definiran in modeliran v skupini standardov IEC 61158. Za izbrane podskupine opravil in protokolov profil opisuje tudi morebitne potrebne ali nujne omejitve vrednosti parametrov.
General Information
- Status
- Published
- Publication Date
- 09-Oct-2023
- Technical Committee
- MOV - Measuring equipment for electromagnetic quantities
- Current Stage
- 6060 - National Implementation/Publication (Adopted Project)
- Start Date
- 04-Jul-2023
- Due Date
- 08-Sep-2023
- Completion Date
- 10-Oct-2023
Relations
- Effective Date
- 18-Apr-2023
Overview
EN IEC 61784-1-19:2023 is a CLC/CENELEC adoption of IEC 61784-1-19:2023 that defines the Communication Profile Family (CPF) 19 for industrial fieldbus profiles. It establishes a common terminology, conventions and a conformance statement for CPF 19 and gives the structure and contents of the communication profiles (CPs) used in factory automation and process control. CPF 19 focuses on MECHATROLINK variants (for example, MECHATROLINK-II, M‑III, and Σ‑LINK II) and references the IEC 61158 fieldbus specifications for physical, data‑link and application layer selections.
Key topics and technical requirements
- Common terminology and conventions for all CPFs to ensure consistent profile specification and interoperability.
- Conformance statement and structure rules defining how Communication Profiles (CPs) are specified and how compliance is declared.
- Profile definitions (CPs) that cover:
- Physical layer (PhL) selections - permitted media and layer options.
- Data‑link layer (DLL) - service sets and protocol selections for master, slave and monitor roles.
- Application layer (AL) - class selection, attributes and services for device functions.
- Profile tables and mappings listing PhL/DLL/AL choices, role‑specific service and attribute selections (master C1/C2, slave AP, monitors, EventManager/FDC classes).
- Normative references to IEC 61158 parts, IEC 61784-1-0 (general concepts), Ethernet (ISO/IEC/IEEE 8802-3) and other standards used by CPF 19.
- European implementation notes: the EN version was approved by CENELEC in April 2023 and partially supersedes EN IEC 61784-1:2019.
Applications
- Designing and implementing industrial networks for motion control, robotics, machine tools and factory automation where MECHATROLINK profiles are used.
- Specifying device behaviour for interoperability between controllers, drives, I/O and HMIs within CPF 19 families.
- Creating test plans and certification criteria for products claiming compliance with MECHATROLINK variants.
- Integrating CPF 19 fieldbus links with Ethernet or serial media according to defined PhL/DLL/AL selections.
Who should use this standard
- Device and system manufacturers (motion controllers, servo drives, I/O vendors).
- System integrators and machine builders implementing MECHATROLINK networks.
- Test laboratories and certification bodies verifying conformance.
- Standards teams and product managers ensuring multi‑vendor interoperability in industrial process control.
Related standards (select)
- IEC 61158 series (Fieldbus specifications)
- IEC 61784-1-0 (General concepts and terminology)
- ISO/IEC/IEEE 8802-3 (Ethernet)
- TIA‑485‑A (electrical characteristics for multipoint systems)
Keywords: EN IEC 61784-1-19:2023, CPF 19, MECHATROLINK, fieldbus profiles, industrial networks, IEC 61158, communication profile family, factory automation, conformance.
Frequently Asked Questions
SIST EN IEC 61784-1-19:2023 is a standard published by the Slovenian Institute for Standardization (SIST). Its full title is "Industrial networks - Profiles - Part 1-19: Fieldbus profiles - Communication Profile Family 19 (IEC 61784-1-19:2023)". This standard covers: IEC 61784-1 (all parts) defines several Communication Profile Families (CPF). Each CPF specifies a set of protocol specific communication profiles (CPs) based primarily on the IEC 61158 series, to be used in the design of devices involved in communications in factory manufacturing and process control. This document defines a common terminology for all CPFs and conventions to be used in the specification of the CPs. It also provides a conformance statement and an overview of the structure and contents of the CPFs in IEC 61784-1 (all parts).
IEC 61784-1 (all parts) defines several Communication Profile Families (CPF). Each CPF specifies a set of protocol specific communication profiles (CPs) based primarily on the IEC 61158 series, to be used in the design of devices involved in communications in factory manufacturing and process control. This document defines a common terminology for all CPFs and conventions to be used in the specification of the CPs. It also provides a conformance statement and an overview of the structure and contents of the CPFs in IEC 61784-1 (all parts).
SIST EN IEC 61784-1-19:2023 is classified under the following ICS (International Classification for Standards) categories: 25.040.40 - Industrial process measurement and control; 35.100.05 - Multilayer applications. The ICS classification helps identify the subject area and facilitates finding related standards.
SIST EN IEC 61784-1-19:2023 has the following relationships with other standards: It is inter standard links to SIST EN IEC 61784-1:2019. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.
You can purchase SIST EN IEC 61784-1-19:2023 directly from iTeh Standards. The document is available in PDF format and is delivered instantly after payment. Add the standard to your cart and complete the secure checkout process. iTeh Standards is an authorized distributor of SIST standards.
Standards Content (Sample)
SLOVENSKI STANDARD
01-november-2023
Nadomešča:
SIST EN IEC 61784-1:2019
Industrijska omrežja - Profili - 1-19. del: Profili procesnih vodil - Komunikacijski
profil skupine 19 (IEC 61784-1-19:2023)
Industrial networks - Profiles - Part 1-19: Fieldbus profiles - Communication Profile
Family 19 (IEC 61784-1-19:2023)
Industrielle Kommunikationsnetze - Profile - Teil 1-19: Feldbusprofile -
Kommunikationsprofilfamilie (CPF) 19 (IEC 61784-1-19:2023)
Réseaux industriels - Profils - Partie 1-19: Profils de bus de terrain - Famille de profils de
communication 19 (IEC 61784-1-19:2023)
Ta slovenski standard je istoveten z: EN IEC 61784-1-19:2023
ICS:
25.040.40 Merjenje in krmiljenje Industrial process
industrijskih postopkov measurement and control
35.100.05 Večslojne uporabniške Multilayer applications
rešitve
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.
EUROPEAN STANDARD EN IEC 61784-1-19
NORME EUROPÉENNE
EUROPÄISCHE NORM May 2023
ICS 35.100.20; 35.240.50 Supersedes EN IEC 61784-1:2019 (partially)
English Version
Industrial networks - Profiles - Part 1-19: Fieldbus profiles -
Communication Profile Family 19
(IEC 61784-1-19:2023)
Réseaux industriels - Profils - Partie 1-19: Profils de bus de Industrielle Kommunikationsnetze - Profile - Teil 1-19:
terrain - Famille de profils de communication 19 Feldbusprofile - Kommunikationsprofilfamilie (CPF) 19
(IEC 61784-1-19:2023) (IEC 61784-1-19:2023)
This European Standard was approved by CENELEC on 2023-04-28. 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 any alteration.
Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC
Management Centre or to any CENELEC member.
This European Standard exists in three official versions (English, French, German). A version in any other language made by translation
under the responsibility of a CENELEC member into its own language and notified to the CEN-CENELEC Management Centre has the
same status as the official versions.
CENELEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic,
Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the
Netherlands, Norway, Poland, Portugal, Republic of North Macedonia, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland,
Türkiye and the United Kingdom.
European Committee for Electrotechnical Standardization
Comité Européen de Normalisation Electrotechnique
Europäisches Komitee für Elektrotechnische Normung
CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 Brussels
© 2023 CENELEC All rights of exploitation in any form and by any means reserved worldwide for CENELEC Members.
Ref. No. EN IEC 61784-1-19:2023 E
European foreword
The text of document 65C/1207/FDIS, future edition 1 of IEC 61784-1-19, prepared by SC 65C
"Industrial networks" of IEC/TC 65 "Industrial-process measurement, control and automation" was
submitted to the IEC-CENELEC parallel vote and approved by CENELEC as EN IEC 61784-1-
19:2023.
The following dates are fixed:
• latest date by which the document has to be implemented at national (dop) 2024-01-28
level by publication of an identical national standard or by endorsement
• latest date by which the national standards conflicting with the (dow) 2026-04-28
document have to be withdrawn
This document, together with other parts of the same series, partially supersedes EN IEC 61784-
1:2019 and all of its amendments and corrigenda (if any).
Attention is drawn to the possibility that some of the elements of this document may be the subject of
patent rights. CENELEC shall not be held responsible for identifying any or all such patent rights.
Any feedback and questions on this document should be directed to the users’ national committee. A
complete listing of these bodies can be found on the CENELEC website.
Endorsement notice
The text of the International Standard IEC 61784-1-19:2023 was approved by CENELEC as a
European Standard without any modification.
In the official version, for Bibliography, the following notes have to be added for the standard indicated:
IEC 60793 (series) NOTE Approved as EN IEC 60793 (series)
IEC 61158-1 NOTE Approved as EN IEC 61158-1
IEC 61158-3 (series) NOTE Approved as EN 61158-3 (series)
IEC 61158-4 (series) NOTE Approved as EN 61158-4 (series)
IEC 61158-5 (series) NOTE Approved as EN 61158-5 (series)
IEC 61158-6 (series) NOTE Approved as EN 61158-6 (series)
IEC 61784-1 (series) NOTE Approved as EN IEC 61784-1 (series)
IEC 61784-2 (series) NOTE Approved as EN IEC 61784-2 (series)
IEC 61784-2-19 NOTE Approved as EN IEC 61784-2-19
Annex ZA
(normative)
Normative references to international publications
with their corresponding European publications
The following documents are referred to in the text in such a way that some or all of their content
constitutes requirements 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.
NOTE 1 Where an International Publication has been modified by common modifications, indicated by (mod), the
relevant EN/HD applies.
NOTE 2 Up-to-date information on the latest versions of the European Standards listed in this annex is available
here: www.cencenelec.eu.
Publication Year Title EN/HD Year
IEC 61158 series Industrial communication networks - EN IEC 61158 series
Fieldbus specifications
IEC 61158-2 2023 Industrial communication networks - EN IEC 61158-2 2023
Fieldbus specifications - Part 2: Physical
layer specification and service definition
IEC 61158-3-24 2023 Industrial communication networks - EN IEC 61158-3-24 2023
Fieldbus specifications - Part 3-24: Data-
link layer service definition - Type 24
elements
IEC 61158-4-24 2023 Industrial communication networks - EN IEC 61158-4-24 2023
Fieldbus specifications - Part 4-24: Data-
link layer protocol specification - Type 24
elements
IEC 61158-5-24 2023 Industrial communication networks - EN IEC 61158-5-24 2023
Fieldbus specifications - Part 5-24:
Application layer service definition - Type
24 elements
IEC 61158-5-27 2023 Industrial communication networks - EN IEC 61158-5-27 2023
Fieldbus specifications - Part 5-27:
Application layer service definition - Type
27 elements
IEC 61158-6-24 2023 Industrial communication networks - EN IEC 61158-6-24 2023
Fieldbus specifications - Part 6-24:
Application layer protocol specification -
Type 24 elements
IEC 61158-6-27 2023 Industrial communication networks - EN IEC 61158-6-27 2023
Fieldbus Specifications Part 6-27:
Application layer protocol specification -
Type 27 elements
IEC 61784-1-0 2023 Industrial networks - Profiles - Part 1-0: EN IEC 61784-1-0 2023
Fieldbus profiles - General concepts and
terminology
ISO/IEC/IEEE 8802-3 - Telecommunications and exchange - -
between information technology systems -
Requirements for local and metropolitan
area networks - Part 3: Standard for
Ethernet
TIA-485-A 1998 Electrical Characteristics of Generators - -
and Receivers for Use in Balanced Digital
Multipoint Systems
IEC 61784-1-19 ®
Edition 1.0 2023-03
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
Industrial networks – Profiles –
Part 1-19: Fieldbus profiles – Communication Profile Family 19
Réseaux industriels – Profils –
Partie 1-19: Profils de bus de terrain – Famille de profils de communication 19
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
INTERNATIONALE
ICS 35.100.20; 35.240.50 ISBN 978-2-8322-6618-2
– 2 – IEC 61784-1-19:2023 © IEC 2023
CONTENTS
FOREWORD . 5
INTRODUCTION . 7
1 Scope . 8
2 Normative references . 8
3 Terms, definitions, abbreviated terms, symbols, and conventions . 9
3.1 Terms and definitions . 9
3.2 Abbreviations and symbols . 9
3.2.1 Common abbreviations and symbols . 9
3.2.2 Other abbreviations and symbols . 9
3.3 Conventions . 9
4 CPF 19 (MECHATROLINK). 9
4.1 General overview . 9
4.2 CP 19/1 (MECHATROLINK-II) . 10
4.2.1 Physical layer selection . 10
4.2.2 Data-link layer . 12
4.2.3 Application layer . 23
4.3 CP 19/2 (M-III) . 29
4.3.1 Physical layer . 29
4.3.2 Data-link layer . 30
4.3.3 Application layer . 40
4.4 CP 19/3 (Σ-LINK II) . 44
4.4.1 Physical layer selection . 44
4.4.2 Data-link layer . 46
4.4.3 Application layer . 57
Bibliography . 63
Table 1 – CPF 19: overview of profile sets (CP19/1 and CP19/2) . 10
Table 2 – CPF 19: Overview of profile sets (CP19/3 and CP19/4) . 10
Table 3 – CP 19/1 profile: PhL selection . 11
Table 4 – CP 19/1: DLL service selection . 12
Table 5 – DLL service selection for C1 master of CP 19/1 . 14
Table 6 – DLL service selection for C2 master of CP 19/1 . 15
Table 7 – DLL service selection for slave of CP 19/1 . 16
Table 8 – CP 19/1: DLL protocol selection . 16
Table 9 – DLL protocol selection for C1 master of CP 19/1 . 19
Table 10 – DLL protocol selection for C2 master of CP 19/1 . 20
Table 11 – DLL protocol selection for slave of CP 19/1 . 21
Table 12 – CP 19/1: AL service selection . 23
Table 13 – Class selection for C1 master of CP 19/1 . 24
Table 14 – Master class attribute selection for C1 master of CP 19/1 . 24
Table 15 – Master class service selection . 24
Table 16 – FDCMaster-AR class attribute selection for C1 master of CP 19/1 . 24
Table 17 – FDCMaster-AR class service selection . 25
Table 18 – Class selection for C2 master of CP 19/1 . 25
IEC 61784-1-19:2023 © IEC 2023 – 3 –
Table 19 – Monitor class attribute selection for C2 master of CP 19/1 . 25
Table 20 – Monitor class service selection . 26
Table 21 – FDCMonitor-AR class attribute selection for C2 master of CP 19/1 . 26
Table 22 – FDCMonitor-AR class service selection . 26
Table 23 – Class selection for slave AP of CP 19/1 . 27
Table 24 – Slave class attribute selection for slave AP of CP 19/1 . 27
Table 25 – Slave class service selection . 27
Table 26 – FDCSlave-AR class attribute selection for slave AP of CP 19/1 . 28
Table 27 – FDCSlave-AR class service selection . 28
Table 28 – CP 19/1: AL protocol selection . 29
Table 29 – CP 19/2: DLL service selection . 30
Table 30 – DLL service selection for C1 master of CP 19/2 . 31
Table 31 – DLL service selection for C2 master of CP 19/2 . 32
Table 32 – DLL service selection for slave of CP 19/2 . 33
Table 33 – CP 19/2: DLL protocol selection . 33
Table 34 – DLL protocol selection for C1 master of CP 19/2 . 35
Table 35 – DLL protocol selection for C2 master of CP 19/2 . 37
Table 36 – DLL protocol selection for slave of CP 19/2 . 38
Table 37 – CP 19/2: AL service selection . 40
Table 38 – Class selection for C1 master of CP 19/2 . 41
Table 39 – EventManager class attribute selection for C1 master of CP 19/2 . 41
Table 40 – EventManager class service selection . 41
Table 41 – Class selection for C2 master of CP 19/2 . 42
Table 42 – EventManager class attribute selection for C2 master of CP 19/2 . 42
Table 43 – EventManager class service selection . 42
Table 44 – Class selection for slave AP of CP 19/2 . 43
Table 45 – EventManager class attribute selection for slave AP of CP 19/2 . 43
Table 46 – EventManager class service selection . 43
Table 47 – CP 19/2: AL protocol selection . 44
Table 48 – CP 19/3 profile: PhL selection . 44
Table 49 – CP 19/3: DLL service selection . 46
Table 50 – DLL service selection for C1 master of CP 19/3 . 48
Table 51 – DLL service selection for C2 master of CP 19/3 . 49
Table 52 – DLL service selection for slave of CP 19/3 . 50
Table 53 – CP 19/3: DLL protocol selection . 50
Table 54 – DLL protocol selection for C1 master of CP 19/3 . 52
Table 55 – DLL protocol selection for C2 master of CP 19/3 . 54
Table 56 – DLL protocol selection for slave of CP 19/3 . 55
Table 57 – CP 19/3: AL service selection . 57
Table 58 – Class selection for C1 master of CP 19/3 . 58
Table 59 – Master class attribute selection for C1 master of CP 19/3 . 58
Table 60 – Master class service selection . 58
Table 61 – FDCMaster-AR class attribute selection for C1 master of CP 19/3 . 59
– 4 – IEC 61784-1-19:2023 © IEC 2023
Table 62 – FDCMaster-AR class service selection . 59
Table 63 – Class selection for C2 master of CP 19/3 . 59
Table 64 – Monitor class attribute selection for C2 master of CP 19/3 . 59
Table 65 – Monitor class service selection . 60
Table 66 – FDCMonitor-AR class attribute selection for C2 master of CP 19/3 . 60
Table 67 – FDCMonitor-AR class service selection . 60
Table 68 – Class selection for slave AP of CP 19/3 . 60
Table 69 – Slave class attribute selection for slave AP of CP 19/3 . 61
Table 70 – Slave class service selection . 61
Table 71 – FDCSlave-AR class attribute selection for slave AP of CP 19/3 . 61
Table 72 – FDCSlave-AR class service selection . 61
Table 73 – CP 19/3: AL protocol selection . 62
IEC 61784-1-19:2023 © IEC 2023 – 5 –
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
INDUSTRIAL NETWORKS –
PROFILES –
Part 1-19: Fieldbus profiles –
Communication Profile Family 19
FOREWORD
1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardization comprising
all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international
co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and
in addition to other activities, IEC publishes International Standards, Technical Specifications, Technical Reports,
Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC Publication(s)”). Their
preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with
may participate in this preparatory work. International, governmental and non-governmental organizations liaising
with the IEC also participate in this preparation. IEC collaborates closely with the International Organization for
Standardization (ISO) in accordance with conditions determined by agreement between the two organizations.
2) The formal decisions or agreements of IEC on technical matters express, as nearly as possible, an international
consensus of opinion on the relevant subjects since each technical committee has representation from all
interested IEC National Committees.
3) IEC Publications have the form of recommendations for international use and are accepted by IEC National
Committees in that sense. While all reasonable efforts are made to ensure that the technical content of IEC
Publications is accurate, IEC cannot be held responsible for the way in which they are used or for any
misinterpretation by any end user.
4) In order to promote international uniformity, IEC National Committees undertake to apply IEC Publications
transparently to the maximum extent possible in their national and regional publications. Any divergence between
any IEC Publication and the corresponding national or regional publication shall be clearly indicated in the latter.
5) IEC itself does not provide any attestation of conformity. Independent certification bodies provide conformity
assessment services and, in some areas, access to IEC marks of conformity. IEC is not responsible for any
services carried out by independent certification bodies.
6) All users should ensure that they have the latest edition of this publication.
7) No liability shall attach to IEC or its directors, employees, servants or agents including individual experts and
members of its technical committees and IEC National Committees for any personal injury, property damage or
other damage of any nature whatsoever, whether direct or indirect, or for costs (including legal fees) and
expenses arising out of the publication, use of, or reliance upon, this IEC Publication or any other IEC
Publications.
8) Attention is drawn to the Normative references cited in this publication. Use of the referenced publications is
indispensable for the correct application of this publication.
9) Attention is drawn to the possibility that some of the elements of this IEC Publication may be the subject of patent
rights. IEC shall not be held responsible for identifying any or all such patent rights.
Attention is drawn to the fact that the use of some of the associated protocol types is restricted
by their intellectual-property-right holders. In all cases, the commitment to limited release of
intellectual-property-rights made by the holders of those rights permits a layer protocol type to
be used with other layer protocols of the same type, or in other type combinations explicitly
authorized by their respective intellectual property right holders.
NOTE Combinations of protocol types are specified in the IEC 61784-1 series and the IEC 61784-2 series.
IEC 61784-1-19 has been prepared by subcommittee 65C: Industrial networks, of IEC technical
committee 65: Industrial-process measurement, control and automation. It is an International
Standard.
This first edition, together with the other parts of the same series, cancels and replaces the fifth
edition of IEC 61784-1 published in 2019. This first edition constitutes a technical revision.
– 6 – IEC 61784-1-19:2023 © IEC 2023
This edition includes the following significant technical changes with respect to
IEC 61784-1:2019:
• split of the original IEC 61784-1 into several subparts, one subpart for the material of a
generic nature, and one subpart for each Communication Profile Family specified in the
original document;
• addition of profile CP 19/3;
• update of selection tables for CPF 19.
The text of this International Standard is based on the following documents:
Draft Report on voting
65C/1207/FDIS 65C/1236/RVD
Full information on the voting for its approval can be found in the report on voting indicated in
the above table.
The language used for the development of this International Standard is English.
This document was drafted in accordance with ISO/IEC Directives, Part 2, and developed in
accordance with ISO/IEC Directives, Part 1 and ISO/IEC Directives, IEC Supplement, available
at www.iec.ch/members_experts/refdocs. The main document types developed by IEC are
described in greater detail at www.iec.ch/publications.
A list of all parts of the IEC 61784-1 series, published under the general title Industrial networks
– Profiles – Part 1: Fieldbus profiles, can be found on the IEC website.
The committee has decided that the contents of this document will remain unchanged until the
stability date indicated on the IEC website under webstore.iec.ch in the data related to the
specific document. At this date, the document will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
IEC 61784-1-19:2023 © IEC 2023 – 7 –
INTRODUCTION
The IEC 61784-1 series provides a set of Communication Profiles (CP) in the sense of
ISO/IEC TR 10000-1. These answer the need of identifying the protocol families co-existing
within the IEC 61158 series, as a result of the international harmonization of fieldbus
technologies available on the market. More specifically, these profiles help to correctly state
the compliance with the IEC 61158 series, and to avoid the spreading of divergent
implementations, which would limit its use, clearness and understanding. Additional profiles to
address specific market concerns, such as functional safety or information security, can be
addressed by future parts of the IEC 61784-1 series.
The IEC 61784-1 series contains several Communication Profile Families (CPF), which specify
one or more communication profiles. Such profiles identify, in a strict sense, protocol subsets
of the IEC 61158 series via protocol specific communication profiles. They do not define device
profiles that specify communication profiles together with application functions needed to
answer the need of a specific application ("application profiles").
It is agreed that these latter classes of profiles would facilitate the use of the IEC 61158 series
of standards; the profiles defined in the IEC 61784-1 series are a necessary step to achieve
that task.
It is also important to clarify that interoperability – defined as the ability of two or more network
systems to exchange information and to make mutual use of the information that has been
exchanged (see ISO/IEC TR 10000-1) – can be directly achieved on the same link only for those
devices complying with the same communication profile.
Profiles contained in the IEC 61784-1 series are constructed of references to IEC 61158-2 and
the IEC 61158-3, IEC 61158-4, IEC 61158-5 and IEC 61158-6 series, and other IS, TS or
worldwide-accepted standards, as appropriate . Each profile is required to reference at least
one part of the IEC 61158 series in addition to IEC 61158-1.
Two or more Profiles, which are related to a common family, are specified within a
"Communication Profile Family" (CPF).
___________
International Standardised Profiles may contain normative references to specifications other than International
Standards; see ISO/IEC JTC 1 N 4047: The Normative Referencing of Specifications other than International
Standards in JTC 1 International Standardized Profiles – Guidelines for ISP Submitters.
– 8 – IEC 61784-1-19:2023 © IEC 2023
INDUSTRIAL NETWORKS –
PROFILES –
Part 1-19: Fieldbus profiles –
Communication Profile Family 19
1 Scope
This part of IEC 61784-1 defines Communication Profile Family 19 (CPF 19). CPF 19 specifies
a set of protocol specific communication profiles (CPs) based on the IEC 61158 series (Type 24
and Type 27) and other standards, to be used in the design of devices involved in
communications in factory manufacturing and process control.
NOTE 1 All CPs are based on standards or draft standards or International Standards published by the IEC or on
standards or International Standards established by other standards bodies or open standards processes.
NOTE 2 Some CPs of CPF 19 are specified in IEC 61784-2-19.
Each CP selects an appropriate consistent and compatible subset of services and protocols
from the relevant set that is defined and modelled in the IEC 61158 series. For the selected
subset of services and protocols, the profile also describes any possible or necessary
constraints in parameter values.
2 Normative references
The following documents are referred to in the text in such a way that some or all of their content
constitutes requirements 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.
NOTE All parts of the IEC 61158 series, as well as the IEC 61784-1 series and the IEC 61784-2 series are
maintained simultaneously. Cross-references to these documents within the text therefore refer to the editions as
dated in this list of normative references.
IEC 61158 (all parts), Industrial communication networks – Fieldbus specifications
IEC 61158-2:2023, Industrial communication networks – Fieldbus specifications – Part 2:
Physical layer specification and service definition
IEC 61158-3-24:2023, Industrial communication networks – Fieldbus specifications – Part 3-24:
Data-link layer service definition – Type 24 elements
IEC 61158-4-24:2023, Industrial communication networks – Fieldbus specifications – Part 4-24:
Data-link layer protocol specification – Type 24 elements
IEC 61158-5-24:2023, Industrial communication networks – Fieldbus specifications – Part 5-24:
Application layer service definition – Type 24 elements
IEC 61158-5-27:2023, Industrial communication networks – Fieldbus specifications – Part 5-27:
Application layer service definition – Type 27 elements
IEC 61158-6-24:2023, Industrial communication networks – Fieldbus specifications – Part 6-24:
Application layer protocol specification – Type 24 elements
IEC 61784-1-19:2023 © IEC 2023 – 9 –
IEC 61158-6-27:2023, Industrial communication networks – Fieldbus specifications – Part 6-27:
Application layer protocol specification – Type 27 elements
IEC 61784-1-0:2023, Industrial networks – Profiles – Part 1-0: Fieldbus profiles – General
concepts and terminology
ISO/IEC/IEEE 8802-3, Telecommunications and exchange between information technology
systems – Requirements for local and metropolitan area networks – Part 3: Standard for
Ethernet
TIA-485-A:1998, Electrical Characteristics of Generators and Receivers for Use in Balanced
Digital Multipoint Systems
3 Terms, definitions, abbreviated terms, symbols, and conventions
3.1 Terms and definitions
For the purposes of this document, all terms and definitions provided in the IEC 61158 series
and IEC 61784-1-0 apply.
ISO and IEC maintain terminological databases for use in standardization at the following
addresses:
• IEC Electropedia: available at https://www.electropedia.org/
• ISO Online browsing platform: available at https://www.iso.org/obp
3.2 Abbreviations and symbols
3.2.1 Common abbreviations and symbols
For the purposes of this document, all abbreviations and symbols defined in the IEC 61158
series and IEC 61784-1-0 apply.
CP communication profile
CPF communication profile family
MAU medium attachment unit
3.2.2 Other abbreviations and symbols
RS 485 MAU according to TIA-485-A
3.3 Conventions
For the purposes of this document, the conventions defined in IEC 61784-1-0 apply.
4 CPF 19 (MECHATROLINK )
4.1 General overview
Communication Profile Family 19 defines communication profiles (CPs) based on IEC 61158-2
type 24, IEC 61158-3-24, IEC 61158-4-24, IEC 61158-5-24 and IEC 61158-6-24, and on other
standards. (See Table 1 and Table 2.)
___________
MECHATROLINK™ is a trade name of YASKAWA ELECTRIC CORPORATION. This information is given for the
convenience of users of this document and does not constitute an endorsement by IEC of the trade names holder
or any of its products. Compliance with this profile does not require use of the trade names. Use of the trade
name MECHATROLINK requires permission of the trade name holder.
– 10 – IEC 61784-1-19:2023 © IEC 2023
The CPF 19 (MECHATROLINK) consists of four distinct protocol sets, known generically (for
ΙΙ
historical reasons) as MECHATROLINK- (M-II) for CP 19/1, MECHATROLINK-ΙΙΙ (M-III) for
CP 19/2, ∑-LINK II for CP19/3, and MECHATROLINK-4 (M-4) for CP 19/4, which mainly differ
by their physical layers.
• Profile 19/1 (M-II): based on TIA-485-A PhL, which operates at 10 Mbit/s,
• Profile 19/2 (M-III): based on ISO/IEC/IEEE 8802-3 (Ethernet) PhL, which operates at
100 Mbit/s,
• Profile 19/3 (Σ-LINK II): based on TIA-485-A PhL, which operates at up to 32 Mbit/s;
• Profile 19/4 (M-4): based on ISO/IEC/IEEE 8802-3 (Ethernet) PhL, which operates at
100 Mbit/s.
Each CP is classified into more detailed profiles, based on another aspect of application process
(AP) type or a sort of device type. Each AP types in a same CP play different roles in a same
network as C1 master, C2 master and slave. Such detailed profiles are described in each
subclause if needed.
Table 1 – CPF 19: overview of profile sets (CP19/1 and CP19/2)
Profile 19/1 (M-II) Profile 19/2 (M-III)
Layer
C1 master C2 master Slave C1 master C2 master Slave
Application IEC 61158-5-24, IEC 61158-6-24 IEC 61158-5-24, IEC 61158-6-24
Data link IEC 61158-3-24, IEC 61158-4-24 IEC 61158-3-24, IEC 61158-4-24
Physical IEC 61158-2 IEC 61158-2
ISO/IEC/IEEE 8802-3
Table 2 – CPF 19: Overview of profile sets (CP19/3 and CP19/4)
Profile 19/3(∑-LINK II) Profile 19/4(M-4)-
Layer
C1 master C2 master Slave C1 master Slave
Application IEC 61158-5-24, IEC 61158-6-24 IEC 61158-5-27, IEC 61158-6-27
Data link IEC 61158-3-24, IEC 61158-4-24 —
Physical IEC 61158-2 IEC 61158-2
ISO/IEC/IEEE 8802-3
4.2 CP 19/1 (MECHATROLINK-II)
4.2.1 Physical layer selection
Table 3 specifies the PhL selection within IEC 61158-2 for this profile.
IEC 61784-1-19:2023 © IEC 2023 – 11 –
Table 3 – CP 19/1 profile: PhL selection
Clause Header Presence Constraints
1 Scope YES —
2 Normative reference Partial Used if needed
3 Terms and definitions — —
3.1 Common terms and definitions Partial Used when applicable
3.2 – 3.10 — NO —
3.11 Type 24: terms and definitions YES —
Next — NO —
subclauses
4 Symbols and abbreviated terms — —
4.1 Symbols — —
4.1.1 – 4.1.9 — NO —
4.1.10 Type 24: symbols YES —
Next — NO —
subclauses
4.2 Abbreviated terms — —
4.2.1 – 4.2.9 — NO —
4.2.10 Type 24: abbreviations YES —
Next — NO —
subclauses
5 DLL-PhL interface — —
5.1 General Partial Used when applicable
5.2 – 5.10 — NO —
5.11 Type 24: Required Service YES —
Next
— NO —
subclauses
6 Systems management – PhL interface — —
6.1 General Partial Used when applicable
6.2 – 6.8 — NO —
6.9 Type 24: Systems management – PhL YES —
interface
Next — NO —
subclauses
7 – 8 — NO —
9 Medium dependent sublayer (MDS) — —
9.1 General Partial Used when applicable
9.2 – 9.11 — NO —
9.12 Type 24: MDS Twisted-pair wire YES —
Next — NO —
subclauses
10 MDS – MAU interface — —
10.1 General Partial Used when applicable
10.2 – 10.7 — NO —
10.8 Type 24: MDS – MAU interface: Twisted- YES —
pair wire medium
Next — NO —
subclauses
– 12 – IEC 61784-1-19:2023 © IEC 2023
Clause Header Presence Constraints
11 – 32 — NO —
33 Type 24: Medium attachment unit: twisted- YES
pair wire medium
Next clauses — NO —
Annex A – R — NO —
Annex S Type 24: Connector specification — —
S.1 Overview Partial Used when applicable
S.2 Type 24-1 connector YES —
S.3 Type 24-2 connector NO —
S.4 Type 24-3 connector NO —
Annex T — NO —
Type 24: Media cable specifications and
Annex U — —
Network topologies
U.1 Type 24: MAU options: twisted-pair wire NO —
medium
Next annexes — NO —
4.2.2 Data-link layer
4.2.2.1 DLL service selection
4.2.2.1.1 Generic profile
Table 4 specifies the DLL service selection within IEC 61158-3-24 for this profile.
Table 4 – CP 19/1: DLL service selection
Clause Header Presence Constraints
1 Scope YES —
2 Normative references Partial Used as needed
Terms, definitions, symbols, abbreviations and
3 Partial Used when applicable
conventions
4 Data-link service and concepts — —
4.1 Overview YES —
4.2 DLS-user services — —
4.2.1 General YES —
4.2.2 Write data YES —
4.2.3 Read data YES —
4.2.4 Send data with acknowledge service (SDA) YES Option
4.2.5 Send data with no acknowledge service (SDN) NO —
4.2.6 Event YES —
4.2.7 Get status YES —
4.3 Overview of interactions YES —
Detailed specification of services and
4.4 — —
interactions
4.4.1 Write data YES —
4.4.2 Read data YES —
4.4.3 Send data with acknowledge YES Option
IEC 61784-1-19:2023 © IEC 2023 – 13 –
Clause Header Presence Constraints
4.4.4 Send data with no-acknowledge (SDN) NO —
4.4.5 Cyclic event YES —
5 DL-management service — —
5.1 Overview — —
5.1.1 General YES —
5.1.2 Reset YES —
5.1.3 Set value YES —
5.1.4 Get value YES —
5.1.5 Evaluate delay NO —
5.1.6 Set communication mode NO —
5.1.7 Start communication YES —
5.1.8 Clear error status YES —
5.1.9 DLM Event YES —
5.2 Overview of interactions YES —
Detailed specification of services and
5.3 — —
interactions
5.3.1 Reset YES —
5.3.2 Set value YES —
5.3.2.1 Function YES —
5.3.2.2 Types of parameters — —
5.3.2.2.1 General YES —
5.3.2.2.2 Var_ID Partial See 4.2.2.1.2 to 4.2.2.1.4
5.3.2.2.3 Val Partial See 4.2.2.1.2 to 4.2.2.1.4
5.3.2.2.4 Result YES —
5.3.3 Get value — —
5.3.3.1 Function YES —
5.3.3.2 Types of parameters YES —
5.3.3.2.1 General YES —
5.3.3.2.2 Var_ID Partial See 4.2.2.1.2 to 4.2.2.1.4
5.3.3.2.3 Val Partial See 4.2.2.1.2 to 4.2.2.1.4
5.3.3.2.4 Result YES —
5.3.4 Evaluate delay NO —
5.3.5 Set communication mode NO —
5.3.6 Start communication YES —
5.3.7 Clear error YES —
5.3.8 DLM error event YES —
– 14 – IEC 61784-1-19:2023 © IEC 2023
4.2.2.1.2 Detail for C1 master
Table 5 specifies DLL service selection within IEC 61158-3-24 for C1 master of CP 19/1.
Table 5 – DLL service selection for C1 master of CP 19/1
Clause Header Presence Constraints
5.3.2.2.2 Var_ID — —
5.3.2.2.2.1 General — —
5.3.2.2.2.2 MA YES —
5.3.2.2.2.3 Nmax_slaves YES —
5.3.2.2.2.4 Cyc_sel YES —
5.3.2.2.2.5 Nmax_dly_cnt NO —
5.3.2.2.2.6 IO_sz YES —
5.3.2.2.2.7 Pkt_sz YES Option
5.3.2.2.2.8 Nmax_retry YES —
5.3.2.2.2.9 Tcycle YES —
5.3.2.2.2.10 Tslot YES —
5.3.2.2.2.11 Tunit NO —
5.3.2.2.2.12 Tidly NO —
5.3.2.2.2.13 Tc2_dly NO —
5.3.2.2.2.14 IO_Map NO —
5.3.2.2.2.15 Line_code NO —
5.3.2.2.2.16 Baud_rate NO —
5.3.2.2.2.17 Tlatch NO —
5.3.2.2.2.18 Tcc_mul NO —
5.3.2.2.2.19 Tcc_pos NO —
5.3.2.2.3 Val Partial See Note
5.3.3.2.4 Result Partial See Note
NOTE Same as 5.3.2.2.2.1 to 5.3.2.2.2.19 in this table.
IEC 61784-1-19:2023 © IEC 2023 – 15 –
4.2.2.1.3 Detail for C2 master
Table 6 specifies DLL service selection within IEC 61158-3-24 for C2 master of CP 19/1.
Table 6 – DLL service selection for C2 master of CP 19/1
Clause Header Presence Constraints
5.3.2.2.2 Var_ID — —
5.3.2.2.2.1 General — —
5.3.2.2.2.2 MA YES —
5.3.2.2.2.3 Nmax_slaves YES —
5.3.2.2.2.4 Cyc_sel YES —
5.3.2.2.2.5 Nmax_dly_cnt NO —
5.3.2.2.2.6 IO_sz YES —
5.3.2.2.2.7 Pkt_sz YES Option
5.3.2.2.2.8 Nmax_retry YES —
5.3.2.2.2.9 Tcycle YES —
5.3.2.2.2.10 Tslot YES —
5.3.2.2.2.11 Tunit NO —
5.3.2.2.2.12 Tidly NO —
5.3.2.2.2.13 Tc2_dly NO —
5.3.2.2.2.14 IO_Map NO —
5.3.2.2.2.15 Line_code NO —
5.3.2.2.2.16 Baud_rate NO —
5.3.2.2.2.17 Tlatch NO —
5.3.2.2.2.18 Tcc_mul NO —
5.3.2.2.2.19 Tcc_pos NO —
5.3.2.2.3 Val Partial See Note
5.3.3.2.4 Result Partial See Note
NOTE Same as 5.3.2.2.2.1 to 5.3.2.2.2.19 in this table.
– 16 – IEC 61784-1-19:2023 © IEC 2023
4.2.2.1.4 Detail for slave
Table 7 specifies DLL service selection within IEC 61158-3-24 for slave of CP 19/1.
Table 7 – DLL service selection for slave of CP 19/1
Clause Header Presence Constraints
5.3.2.2.2 Var_ID — —
5.3.2.2.2.1 General — —
5.3.2.2.2.2 MA YES —
5.3.2.2.2.3 Nmax_slaves NO —
5.3.2.2.2.4 Cyc_sel NO —
5.3.2.2.2.5 Nmax_dly_cnt NO —
5.3.2.2.2.6 IO_sz YES —
5.3.2.2.2.7 Pkt_sz YES Option
5.3.2.2.2.8 Nmax_retry YES —
5.3.2.2.2.9 Tcycle YES —
5.3.2.2.2.10 Tslot NO —
5.3.2.2.2.11 Tunit NO —
5.3.2.2.2.12 Tidly NO —
5.3.2.2.2.13 Tc2_dly NO —
5.3.2.2.2.14 IO_Map NO —
5.3.2.2.2.15 Line_code NO —
5.3.2.2.2.16 Baud_rate NO —
5.3.2.2.2.17 Tlatch NO —
5.3.2.2.2.18 Tcc_mul NO —
5.3.2.2.2.19 Tcc_pos NO —
5.3.2.2.3 Val Partial See Note
5.3.3.2.4 Result Partial See Note
NOTE Same as 5.3.2.2.2.1 to 5.3.2.2.2.19 in this table.
4.2.2.2 DLL protocol selection
4.2.2.2.1 Generic profile
Table 8 specifies the DLL protocol selection within IEC 61158-4-24 for this profile.
Table 8 – CP 19/1: DLL protocol selection
Clause Header Presence Constraints
1 Scope YES —
2 Normative references Partial Used as needed
Terms, definitions, symbols, abbreviations
3 Partial Used when applicable
and conventions
4 Overview of DL-protocol — —
4.1 Characteristic feature of DL-protocol YES —
4.2 DL layer component YES —
4.3 Timing sequence — —
IEC 61784-1-19:2023 © IEC 2023 – 17 –
Clause Header Presence Constraints
4.3.1 Overview YES —
4.3.2 Cyclic transmission — —
4.3.2.1 Fixed-width time slot type YES —
4.3.2.2 Configurable time slot type NO —
Timing relationship between cyclic
4.3.2.3 YES —
communication and data processing
4.3.2.4 No time slot type NO —
Timing relationship between cyclic
4.3.2.5 transmission and data processing for no time NO —
slot type
4.3.3 Acyclic transmission mode NO —
4.4 Service ass
...
SIST EN IEC 61784-1-19:2023は、工業ネットワークに関連する重要な標準であり、その焦点はフィールドバスプロファイルにあります。この標準は、IEC 61784-1の一部として、通信プロファイルファミリー19(CPF19)に関する詳細な指針を提供しています。 この標準の範囲は、製造業やプロセス制御における通信デバイスの設計に用いられる通信プロファイルの仕様を規定することにあります。具体的には、通信プロファイルファミリーは、IEC 61158シリーズに基づいて設計されており、各プロファイルはプロトコルに特化した通信機能を提供します。このような規定は、異なるデバイス間の円滑な通信を実現するために不可欠です。 強みとしては、SIST EN IEC 61784-1-19:2023が提供する共通の用語集が挙げられます。これにより、さまざまな通信プロファイルに関する理解を深め、標準化されたコミュニケーション環境を醸成します。また、適合性声明が含まれていることで、導入に際しての基準を明確に示しており、利用者が求める品質を保つための重要な手段となっています。 さらに、この標準はCPFsの構造や内容の概要を提供しており、技術者やシステム設計者にとって非常に有用です。SIST EN IEC 61784-1-19:2023を基にした設計は、複数の機器間での相互運用性を促進し、効率的な製造プロセスを支えるための重要な基盤となるでしょう。このように、標準は現代の工業ネットワークにおける通信の標準化をサポートすることにおいて、非常に高い関連性を持っています。
Die Norm SIST EN IEC 61784-1-19:2023 ist ein bedeutendes Dokument im Bereich industrieller Netzwerke, das sich mit den Kommunikationsprofilen im Umfeld von Feldbus-Technologien beschäftigt. Der Anwendungsbereich dieser Norm umfasst die Definition verschiedener Kommunikationsprofil-Familien (CPF), die für die Entwicklung von Geräten in Fertigungs- und Prozesssteuerungssystemen von entscheidender Bedeutung sind. Ein herausragendes Merkmal dieser Norm ist die Bereitstellung einer einheitlichen Terminologie, die für alle CPF gilt. Diese Standardisierung von Begriffen und Konventionen erleichtert nicht nur die Kommunikation zwischen verschiedenen Akteuren, sondern trägt auch zur Konsistenz und Nachvollziehbarkeit der Spezifikationen bei. Die klaren Richtlinien zur Spezifikation der Kommunikationsprofile (CP) fördern die Interoperabilität und Effizienz in der Systemarchitektur. Ein weiterer Vorteil der SIST EN IEC 61784-1-19:2023 ist die detaillierte Übersicht über die Struktur und den Inhalt der Kommunikationsprofil-Familien in IEC 61784-1. Die Norm bietet eine umfassende Konformitätserklärung, die sicherstellt, dass die entwickelten Geräte den erforderlichen Standards entsprechen. Dies ist besonders relevant für Unternehmen, die sicherstellen möchten, dass ihre Produkte in einem zunehmend wettbewerbsorientierten Markt bestehen können. Insgesamt ist die SIST EN IEC 61784-1-19:2023 eine wertvolle Ressource für Entwickler und Ingenieure, die an der Gestaltung und Implementierung von Kommunikationsprotokollen für industrielle Anwendungen arbeiten. Ihre Relevanz wächst mit der zunehmenden Digitalisierung und Vernetzung von Produktionsprozessen, da sie eine solide Grundlage für die Integration und Standardisierung von Technologien bietet.
La norme SIST EN IEC 61784-1-19:2023 s'inscrit dans le cadre des réseaux industriels et plus précisément des profils de Fieldbus, en se concentrant sur la Communication Profile Family 19. Elle élargit la portée de la norme IEC 61784-1 en définissant une terminologie commune qui facilite la compréhension et l'application des différents Communication Profiles (CP). Un des points forts de cette norme réside dans sa capacité à standardiser les profils de communication spécifiques, en se basant sur la série IEC 61158. Cela assure une compatibilité et une intégration efficaces des dispositifs de communication dans les environnements de fabrication et de contrôle des processus. La clarté apportée par cette norme permet également aux développeurs de concevoir des systèmes de communication qui répondent aux exigences de l'industrie moderne. De plus, la norme inclut un énoncé de conformité, ce qui est essentiel pour garantir que les dispositifs non seulement respectent les standards établis, mais fonctionnent également de manière interopérable dans divers systèmes. L’aperçu de la structure et du contenu des CPFs au sein de la norme IEC 61784-1 (dans toutes ses parties) propose une ressource invaluable pour les ingénieurs et professionnels du secteur, facilitant leur travail et leur permettant d’élaborer des solutions plus efficaces. En somme, la norme SIST EN IEC 61784-1-19:2023 représente un pivot stratégique dans l'harmonisation des communications industrielles grâce à ses éléments de standardisation, ses définitions claires et sa pertinence dans la conception des dispositifs. Son adoption est fortement recommandée pour les acteurs souhaitant se conformer aux normes actuelles et à venir dans le domaine des réseaux industriels.
The SIST EN IEC 61784-1-19:2023 standard presents a comprehensive framework for the development and deployment of communication profiles within industrial networks, specifically focusing on the Communication Profile Family 19. The standard's scope encapsulates the entirety of IEC 61784-1, which consists of multiple Communication Profile Families that detail specific communication protocols based on the IEC 61158 series. This comprehensive nature ensures that it caters to the diverse needs encountered in factory manufacturing and process control environments. One of the significant strengths of this standard is its establishment of a common terminology for all Communication Profile Families. This is crucial for ensuring a unified understanding and consistent application of the communication profiles (CPs) across various devices and systems. By providing a standardized lexicon, users can effectively communicate and implement the profiles without ambiguity, resulting in improved interoperability between different systems and manufacturers. Additionally, the inclusion of conformance statements within the document enhances its relevance, as it provides clear guidelines for compliance and validation of devices utilizing these communication profiles. This aspect is vital not only for manufacturers but also for end-users who require assurance that their systems will work seamlessly together in real-time industrial applications. The SIST EN IEC 61784-1-19:2023 standard also outlines the structure and contents of the Communication Profile Families, thus offering a systematic approach that can be easily followed during the design phase of devices. This structured overview paves the way for a more efficient development process, reducing potential integration issues that may arise from disparate communication practices. In summary, the SIST EN IEC 61784-1-19:2023 standard is a pivotal document within the field of industrial networks, bolstering the standardization of communication profiles. Its strengths lie in its comprehensive scope, establishment of common terminology, conformance definitions, and structured content, all of which contribute significantly to the facilitation of effective communication in industrial automation environments.
SIST EN IEC 61784-1-19:2023 표준 문서는 산업 네트워크와 관련된 중요한 내용을 다루고 있습니다. 이 표준은 통신 프로필 패밀리 19를 포함하여 다양한 필드버스 프로필을 정의하며, IEC 61158 시리즈에 기반한 프로토콜 특화 통신 프로필(CP)을 설계하는 데 필수적인 지침을 제공합니다. 표준의 범위는 IEC 61784-1의 모든 부분을 포괄하며, 이는 공장 제조 및 프로세스 제어에 참여하는 장치 간의 통신에 필요한 핵심 요소들로 구성됩니다. 이 표준의 강점 중 하나는 공통 용어 정의를 통해 여러 CPFs 간의 일관성을 확보하고, CP를 정의하는 과정에서 사용해야 하는 규칙과 관행을 명확히 하는 데 있습니다. 이는 산업 네트워크의 효율성을 높이고, 여러 제조업체와 시스템 통합자 간의 호환성을 촉진하는 데 중요한 역할을 합니다. 더불어, SIST EN IEC 61784-1-19:2023는 CPFs의 구조와 내용을 개괄적으로 설명하여 사용자들이 보다 쉽게 이해하고 적용할 수 있도록 돕습니다. 이 표준은 통신의 일관성을 보장할 뿐만 아니라, 맞춤형 솔루션의 개발을 위해 필요한 기반 자료를 제공합니다. 따라서 이 문서는 산업 네트워크 환경에서 필드버스 프로필을 효과적으로 활용하고자 하는 개발자 및 엔지니어에게 매우 중요한 참고 자료입니다. CPFs의 명확한 정의와 구성을 통해, 산업 분야 전반에서 통신의 통합성과 효율성을 제고할 수 있는 기틀을 마련하고 있습니다.










Questions, Comments and Discussion
Ask us and Technical Secretary will try to provide an answer. You can facilitate discussion about the standard in here.
Loading comments...