BS EN 61158-6-24:2014
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Industrial communication networks. Fieldbus specifications – Application layer protocol specification. Type-24 Elements
Published By | Publication Date | Number of Pages |
BSI | 2014 | 126 |
IEC 61158-6-24:2014 defines the protocol provided to define the wire-representation of the service primitives defined in IEC 61158-5-24, and define the externally visible behaviour associated with their transfer. This standard specifies the protocol of the Type 24 fieldbus Application Layer, in conformance with the OSI Basic Reference Model (ISO/IEC 7498-1) and the OSI application layer structure (ISO/IEC 9545).
PDF Catalog
PDF Pages | PDF Title |
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4 | Foreword Endorsement notice |
5 | Annex ZA (normative) Normative references to international publications with their corresponding European publications |
6 | English CONTENTS |
9 | INTRODUCTION |
10 | 1 Scope 1.1 General 1.2 Specifications |
11 | 1.3 Conformance 2 Normative references 3 Terms, definitions, abbreviations, symbols and conventions 3.1 Referenced terms and definitions |
13 | 3.2 Additional terms and definitions |
18 | 3.3 Abbreviations and symbols |
19 | 3.4 Conventions |
20 | Tables TableĀ 1 ā State transition descriptions TableĀ 2 ā Description of state machine elements |
21 | 4 Abstract syntax 4.1 Basic Data types TableĀ 3 ā Conventions used in state machines |
23 | 4.2 FAL PDU types |
24 | Figures FigureĀ 1 ā Tree structure of APDU types |
35 | 4.3 Detailed definitions of _FDCService-PDUs |
54 | 4.4 Device profile 5 Transfer syntax 5.1 Concepts |
55 | 5.2 Encode rules FigureĀ 2 ā Encode of Integer subtypes |
56 | FigureĀ 3 ā Example of transfer of INTEGER value FigureĀ 4 ā Encode of Unsigned subtypes |
57 | FigureĀ 5 ā Float32 type encode FigureĀ 6 ā Float64 type encode |
58 | FigureĀ 7 ā Bit field definition example with named bits |
59 | FigureĀ 8 ā Bit field definition example with field size |
60 | 6 Structure of FAL protocol state machine FigureĀ 9 ā SEQUENCE type encode |
62 | FigureĀ 10 ā Structure of FAL protocol state machines TableĀ 4 ā Mapping for Protocol State Machines |
63 | 7 AP-context state machine (APC SM) 7.1 Overview |
64 | 7.2 State descriptions FigureĀ 11 ā Statechart diagram of APCSM TableĀ 5 ā State descriptions of APC SM |
65 | 7.3 Triggering events 7.4 Action descriptions at state transitions TableĀ 6 ā Trigger event descriptions of APC SM TableĀ 7 ā Transitions of APC SM |
66 | 8 FAL service protocol machines (FSPM) 8.1 Overview 8.2 Field Deice Control Protocol Machine (FDC PM) |
67 | TableĀ 8 ā FDC protocol mode |
68 | FigureĀ 12 ā Example communication cycle of FDC master AP |
69 | FigureĀ 13 ā Example communication cycle of FDC slave AP |
70 | FigureĀ 14 ā Synchronous command communication in sync state |
71 | FigureĀ 15 ā Asynchronous command communication in sync state |
72 | FigureĀ 16 ā Asynchronous command communication in async state |
73 | FigureĀ 17 ā Event-driven communication |
74 | FigureĀ 18 ā Statechart diagram of FDCPM-M TableĀ 9 ā State descriptions of FDCPM-M |
75 | TableĀ 10 ā Trigger event descriptions of FDCPM-M |
76 | TableĀ 11 ā Transitions of main SM of FDCPM-M |
77 | TableĀ 12 ā Transitions of submachine of FDCPM-M |
80 | FigureĀ 19 ā Statechart diagram of FDCPM-S TableĀ 13 ā State descriptions of FDCPM-S |
81 | TableĀ 14 ā Trigger event descriptions of FDCPM-S |
82 | TableĀ 15 ā Transitions of main SM of FDCPM-S |
84 | TableĀ 16 ā Transitions of submachine of FDCPM-S |
87 | FigureĀ 20 ā Statechart diagram of FDCPM-MN TableĀ 17 ā State descriptions of FDCPM-MN |
88 | TableĀ 18 ā Trigger event descriptions of FDCPM-MN TableĀ 19 ā Transitions of main SM of FDCPM-MN TableĀ 20 ā Transitions of submachine of FDCPM-MN |
91 | 8.3 Message Protocol Machine (MSGPM) FigureĀ 21 ā PDU transmission flow for user message |
92 | FigureĀ 22 ā PDU transmission flow for one-way message |
93 | FigureĀ 23 ā Statechart diagram of MSGPM-RQ TableĀ 21 ā State descriptions of MSGPM-RQ |
94 | TableĀ 22 ā Trigger event descriptions of MSGPM-RQ TableĀ 23 ā Transitions of MSGPM-RQ |
95 | FigureĀ 24 ā Statechart diagram of MSGPM-RS TableĀ 24 ā State descriptions of MSGPM-RS |
96 | TableĀ 25 ā Trigger event descriptions of MSGPM-RS TableĀ 26 ā Transitions of MSGPM-RS |
97 | 9 Application relationship protocol machine (ARPM) 9.1 General 9.2 ARPM for FDC ASE FigureĀ 25 ā Example of single transfer process |
98 | FigureĀ 26 ā Example of dual transfer process |
99 | FigureĀ 27 ā Statechart diagram of ARPM-FDCM TableĀ 27 ā State descriptions of ARPM-FDCM |
101 | TableĀ 28 ā Trigger event descriptions of ARPM-FDCM |
102 | TableĀ 29 ā Transitions of main SM of ARPM-FDCM TableĀ 30 ā Transitions of submachine of ARPM-FDCM |
104 | FigureĀ 28 ā Statechart diagram of ARPM-FDCS TableĀ 31 ā State descriptions of ARPM-FDCS |
106 | TableĀ 32 ā Trigger event descriptions of ARPM-FDCS |
107 | TableĀ 33 ā Transitions of main SM of ARPM-FDCS |
108 | TableĀ 34 ā Transitions of submachine of ARPM-FDCS |
109 | FigureĀ 29 ā Statechart diagram of ARPM-FDCMN |
110 | TableĀ 35 ā State descriptions of ARPM-FDCMN TableĀ 36 ā Trigger event descriptions of ARPM-FDCMN TableĀ 37 ā Transitions of main SM of ARPM-FDCMN |
111 | 9.3 ARPM for MSG ASE (ARPM-MSG) TableĀ 38 ā Transitions of submachine of ARPM-FDCMN |
112 | FigureĀ 30 ā Statechart diagram of ARPM-MSG TableĀ 39 ā State descriptions of ARPM-MSG TableĀ 40 ā Trigger event descriptions of ARPM-MSG |
113 | 10 DLL mapping protocol machine (DMPM) TableĀ 41 ā Transitions of ARPM-MSG |
114 | Annex A (informative) Device profile and FDC command sets TableĀ A.1 ā Example of registered device profiles TableĀ A.2 ā Example command list of the profile ā00āH |
115 | Annex B (normative) Virtual memory space and Device Information B.1 Overview FigureĀ B.1 ā Memory map of virtual memory space |
116 | B.2 Device Information B.2.1 Device identifier area structure B.2.2 Detail specifications of device IDs FigureĀ B.2 ā Memory map of device ID area |
117 | TableĀ B.1 ā Specifications of device IDs |
122 | Annex C (informative) Basic message function TableĀ C.1 ā Example of message command set |
123 | Bibliography |