GB/T 27526-2011 English PDF
Basic dataStandard ID: GB/T 27526-2011 (GB/T27526-2011)Description (Translated English): PROFIBUS profile for process control devices Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: N10 Classification of International Standard: 25.040 Word Count Estimation: 274,232 Date of Issue: 2011-11-21 Date of Implementation: 2012-03-01 Quoted Standard: GB/T 19892.1-2005; GB/T 20540.5-2006; GB/T 20540.6-2006; GB/Z 25105.1-2010; IEC 60751-2008; IEC 61784-1-2007; ANSI TIA/EIA 485A-1998; PNO/TC3-04-0006; PNO/TC3-05-0002A; PNO/TC3-99-0019; PNO/TC3-04-0007A Regulation (derived from): Announcement of Newly Approved National Standards No. 18 of 2011 Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China Summary: This standard provides for the operation, commissioning, maintenance and diagnostics of basic equipment set of parameters, and the realization by the user groups and device manufacturers coherence mechanisms defined parameters. This standard applies to process control (eg: chemical, food, water/wastewater treatment, power plants and basic industries) used in the transmitter, valve, binary, equipment and other devices. This standard specifies the PROFIBUS process control equipment line rules into two categories: A class and B class. Class A Line regulation describes the simple device of common parameters, its scope is limited to the operational phase of the basic functions. The basic set consists of a measurement value status of process variables (for example: temperature, pressure and level), label (TAG) Name and engineering units, B class line regulation range is used for process control equipment, which is a Class A Line regulation defined extensions and covers used to identify, commissioning, maintenance and diagnostics of more complex applications. Parameters and see the relationship between different types of parameters are defined and conformance statement (see 5. 7). GB/T 27526-2011: PROFIBUS profile for process control devices---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.PROFIBUS profile for process control devices ICS 25.040 N10 National Standards of People's Republic of China PROFIBUS process control device profiles Issued on. 2011-11-21 2012-03-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released Table of ContentsPreface Ⅺ Introduction Ⅻ 1 Scope 1 2 Normative references 1 3 Terms and definitions, abbreviations, conventions 2 3.1 Terms and definitions 2 3.2 Abbreviations 4 3.3 Conventions 5 4 Process Control Equipment 6 consistency profiles 6 5 General requirements 6 5.1 Technical Overview 5.2 Standard parameters and object 11 5.3 Status of process variables and diagnostics 51 5.4 Parameter handling 76 Version 5.5 Device identification and compatibility 89 5.6 parameter encoding 95 5.7 Declaration of Conformity 117 6 Bank Regulation to PROFIBUS DP mapping 118 Target 118 6.1 6.2 Technical Overview 118 6.3 communication profile 130 6.4 Ident_Number automatically adapt 141 6.5 profiles define specific communication 153 6.6 GSD file name 154 6.7 GSD file 154 6.8 Declaration of Conformity 155 7 single device data transmitter 156 7.1 Additional parameters Parameter Description of the physical block 156 7.2 Analog Input Function Block 156 7.3 accumulator function block 163 7.4 Conversion block 170 7.5 Declaration of Conformity 206 8 discrete input device data list 207 8.1 physical block parameter description 207 additional parameters 8.2 Discrete Input Function Block 207 8.3 Conversion block 211 8.4 Declaration of Conformity 212 9 Discrete output device data sheet 213 9.1 physical block parameter description 213 additional parameters 9.2 Discrete Output function block 213 9.3 Conversion block 220 9.4 Declaration of Conformity 225 10 actuator device data sheet 225 10.1 physical block parameter description 225 additional parameters 10.2 Analog Output function block 225 10.3 conversion block 234 Download the order parameter 246 10.4 10.5 Declaration of Conformity 246 11 Analytical Instruments device data sheet 247 11.1 model using function blocks analytical instruments field device 247 11.2 additional physical parameters block 248 11.3 Analysis of conversion block 249 11.4 conversion conversion block 252 11.5 Conversion control block 255 11.6 Limits conversion block 262 11.7 --- binary conversion block alarm alert status 265 More than 11.8-point sampling block 269 11.9 log archiving function blocks --- 272 11.10 Declaration of Conformity 275 Common function set more than 12 variable device 275 13 Identification and Maintenance Functions (IM) 276 13.1 Overview 276 13.2 Parameter Description 277 13.3 Declaration of Conformity 281 References 282 Figure 1 in a layered architecture ISO /OSI model of the Bank Regulation (rough frame) integration Ⅻ Figure 2 Bank gauge structure 5 Figure 3 PROFIBUSPA standard text structure 6 Figure 4 device model 7 Diagram 5, block parameters between 7 and directory Figure 6 device grouping variables/parameters 8 FIG. 7 by reference to the channel number conversion block 9 Reference Figure 8 channels of 10 Consistency layer structure of FIG. 9 in parameter 10 Figure 10 The parameter structure 36 11 references the directory structure and block 38 Parameters 12 Table 39 Numerical flow and concentrate status application 13 61 Timing Diagram Figure 14 MAN Model 72 Figure 15 simulation timing diagram 73 Parameter handling state Figure 16 single buffer device 88 Parameter handling state Figure more than 17 of the buffer device 88 Figure 18 PROFIBUS Integration Technology 89 Up 19 devices and device drivers between/backward compatibility interpretation 90 Compatibility Rule 20 device drivers and equipment 94 Version 21 shows an example of processing information 95 22 applications to justice in row cycles/acyclic data transmission map 119 Figure 23 a PB, a FB, TB to a two slot map 120 Figure 24 a PB, a FB, TB to map multiple three slots 121 Figure 25 a PB, a plurality of FB, a plurality of grooves mapped to several TB 121 26 a PB, map two FB, three TB and a link object 122 Figure 27 a FB loop parameter mapping input data frame 122 More than 28 FB loop parameter map to the input frame data, maps output data frame 123 Relationship between block parameters and device management directories between FIG. 29, 124 Parameter Overview Figure 30 Analog Input Function Block 156 Simulation, model and condition of FIG. 31 a block diagram of the analog input function block 156 Diagram 32 AIFB parameters 157 33 patterns and health conditions generate 157 34 analog input function block state machine 158 35 illustrates the use of the analog input function block parameters 161 36 calibration parameters Description 163 Parameter Overview Figure 37 accumulator function block 164 38 accumulator function block diagram block 164 39 accumulator state machine function block 165 FIG. 40 defined measurement device 171 Figure 41 temperature conversion function blocks 172 Figure 42 Pressure Transducer Block 181 Figure 43 Sensor Calibration 182 Figure 44 Pressure Transducer Block function. Pressure 182 45 pressure transducer blocks Function. Flow 183 Figure 46 Pressure Transducer Block Function. Level 183 Figure 47 Flow. 184 square root function Figure 48 function blocks 189 level converter 49 level calibration transfer function 189 Figure 50 linearization function diagram 190 Application example Figure 51. Radar Level 190 Figure 52 Application example. Hydraulic Level 190 Figure 53 Application example. Capacitive Level 191 54 a functional block diagram flow conversion block 196 Parameter 55 discrete input function block 207 Simulation, mode and status 56 discrete input function block diagram block 207 FIG. 57 is generated pattern generation and health conditions of 208 58 state of the discrete input function block 208 machine Parameter 59 discrete output function block 213 summary Figure 60 Simulation Discrete Output function block mode and condition of FIG. 214 Conditions Figure 61 pattern generation and generated 214 status Figure 62 Status Discrete Output function block 215 machine Parameter 63 Analog Output function block 225 summary Mode Figure 64 Analog Output function block diagram and simulation 226 Parameter graph 65 analog output function block 226 FIG. 66 is generated pattern generation and health conditions of 227 Figure 67 Analog Output state machine function block 227 Block diagram analysis equipment 68 247 Chart 69 Conversion parameter analysis block 250 Figure 70 controls the conversion block, block transform conversion, analysis and collaboration between the conversion block Analog Input Function Block Example 253 71 control parameter hierarchy conversion block 255 72 control transfer state block diagram --- COMMAND parameter 259 Figure 73 Hierarchy alarm information 265 74 alarm parameter structure conversion block 266 Figure 75 multi-point sampling block 269 Figure 76 Status Log function block parameters 273 --- COMMAND Table 1 describes the view object 14 Table 2 bit string (Bit String) to a string octet (Octet String) map 14 Table 3 enumeration encoding 15 Table 4 table of the elements (Block) structure 15 Parameters Table 5 (Block) description of the structure 16 Table 6 Physical block. Block_Object, Class 16 and Parent_Class coding Table 7 blocks. Block_Object, Class 17 and Parent_Class coding Table 8 conversion block. Block_Object, Class 18 and Parent_Class coding Table 9 encoding profiles 19 Table 10 Value status - Floating Point (Value Status-Floating Point) 19 table element structure Table 11 Value Status - Discrete (Value Status-Discrete) structural elements Table 19 Table 12 Status value - parameter discrete (Value Status-Discrete) description of the structure 20 TABLE 13 elements scaling (Scaling) Table 20 Structure TABLE 14 elements Mode (Mode) Table 20 Structure TABLE 15 elements floating point alarm (Alarm Float) Table 21 Structure Parameters Table 16 floating-point alarm (Alarm Float) description of the structure 21 Table 17 alarm summary (Alarm Summary) element table structure 21 Table 18 coded alarm summary (Alarm Summary) structure of each 22-bit Table 19 alarm summary (Alarm Summary) configuration bit stream coding 22 Parameters (Alarm Summary) Table 20 Structure of alarm summary description 22 TABLE 21 elements function block chaining (FBLinkage) Table 23 Structure Table 22 Simulation - floating point elements (Simulation-Floating Point) 23 table structure Table 23 Simulation - floating point parameters (Simulation-Floating Point) description of the structure 23 Table 24 Simulation - Discrete element (Simulation-Discrete) Table 24 Structure Table 25 element results (Result) Table 24 Structure Parameters (Result) Table 26 describes the results of structure 24 Table 27 element measurement range (Measurement Range) Table 24 Structure TABLE 28 elements of binary messages (Binary Message) Table 25 Structure Parameters Table 29 binary messages (Binary Message) description of the structure 25 Table 30 Sample selection element (SampleSelection) Table 26 Structure Parameters Table 31 Sample Select (SampleSelection) description of the structure 26 Table 32 log (Log book) structural elements Table 26 Parameters Table 33 log (Log book) description of the structure 26 TABLE 34 elements precomputed (Precalculation) Table 27 Structure Parameters Table 35 precomputed (Precalculation) description of the structure 27 Table 36 Sequence Control (Sequential Control) element table structure 28 Table 37 Sequence Control (Sequential Control) parameter description of the structure 28 Elements Table 38 Batch (Batch) Table 28 Structure Parameters Table 39 Batch (Batch) description of the structure 29 Table 40 element characteristics (Feature) Table 29 Structure Table 41 support feature (Supported) encoding 29 Table 42 feature is enabled (Enabled) encoding 30 Table 43 conversion element diagnostic event (Diag_Event_Switch) Table 30 Structure Table 44 conversion element diagnostic event (Diag_Event_Switch) description of the structure 31 Table 45 diagnostic status link (Diag_Status_Link) 32-bit encoded byte Parameters Table 46 Parameter Description 32 standard Table 47 standard parameters Parameter Properties 35 Table 48 standard parameters view objects 35 Table 49 loading sequence table 39 Parameter Description Table 50 Table 41 processing parameters Parameter property sheet processing parameters in Table 51 44 Parameters Table 52 describes the physical block 44 Table 53 Physical Properties parameter block 48 Table View object physical blocks 54 49 Table 55 Access Protection 50 Table 56 linked object Parameter Description 51 Table 57 Status (Status) 51-byte encoding Table 58 Invalid status values \u200b\u200b53 Table 59 reserved status values \u200b\u200b53 Table 60 bad - sensor failure, over-limit (BAD-sensor failure, low limited) 54 Table 61 bad - sensor failure, over-limit (BAD-sensor failure, high limited) 54 Table 62 good (non-cascade) - active warning alarm, over limit (GOOD (Non-Cascade) -active advisory alarm, lowlimited) 54 Table 63 good (non-cascade) - active warning alarm, over limit (GOOD (Non-Cascade) -active advisory alarm, high limited) 55 Table 64 good (non-cascade) - effective emergency alarm, over limit (GOOD (Non-Cascade) -active critical alarm, low limited) 55 Table 65 good (non-cascade) - effective emergency alarm, over limit (GOOD (Non-Cascade) -active critical alarm, high limited) 55 Table 66 good (non-cascade) - update event (GOOD (Non-Cascade) -update event) 55 Table 67 priority condition value 55 Table 68 is defined status values \u200b\u200b57 Table 69 physical block encoding parameters DIAGNOSIS 59 Table 70 parameters DIAGNOSIS bit string encoding 60 Table 71 Availability PCS/DCS values \u200b\u200bin 61 Table 72 for maintenance purposes of interpretation 62 Table 73 gauge type and result of the health 63 Table 74 process gauge impact on the situation of 63 Table 75 NAMURNE107 predetermined condition coded 63 Table 76 in the condition as well (GOOD) when functional check/update event (Limit Checks/Update Events) encoding 64 Table 77 has concentrated coded status details 64 Table 78 describes 66 has concentrated condition of details Table 79 Status Priority 68 Table 80 Health and Diagnostics Enabling concentrated conditions 69 The relationship between the physical block table 81 and function blocks 69 Table 82 Enable concentrated condition, the physical coding block parameters DIAGNOSIS 70 Table 83 fail-safe mechanism for input function block assigned status 74 Table 84 Use of health status concentrated Totalizer function block is calculated 74 Parameters Table 85 Parameter Description handle 77 Table 86 Parameter attributes Parameter Handling 78 Availability depends on the processing status table 87 (PTA_STATUS) process value processing 78 Function definition table 88 process parameters 79 Parameter handling buffer status table 89 supports a single mechanism of the device Table 79 Parameter handling state table 90 multi-buffer support mechanism of the device Table 83 Table 91 Ident_Number Parameter Description 90 Parameter Description Table 92 device parameters 92 Table 93 Parameter Description Device driver parameters 92 Table 94 Effect of Rule 93 of the device version parameter Example 93 Table 95 set Dev_Rev Table 96 Unit Code 95 Table 97 material code 116 Table 98 exist Conformance Statement 117 Conformance Statement Table 99 Device Management 118 Table 118 Declaration of Conformity 100 Conformance Statement Table 101 profiles characteristic 118 Table Parameter Properties 102 device management 124 103 unit table (Slot1, Index0) data type 125 Table 104 composite list of directory entries (Slot1 fixed; Index1; the first one and the first two directory entries) 125 Table 105 composite list of directory entries (Slot1 fixed; Index1; 3rd and 4th directory entries) 125 Table 106 Composite directory entries (Slot1 fixed; Index1; 5th and 6th directory entries) 126 Table 107 Composite directory entries (Slot1 fixed; Index1; 7th and 8th directory entries) 126 Header (Slot1; Index0) Table 108 127 Table 109 composite list of directory entries (Slot1; Index1) 127 Table 110 Composite directory entries (Slot1; Index1) 127 Header table 111 (Slot1; Index0) 127 Table 112 composite list of directory entries (Slot1; Index1) 127 Table 113 Composite directory entries (Slot1; Index2, new parameters) 128 Table 114 seventh and eighth complex directory entries 128 Header table 115 (Slot1; Index0) 128 Table 116 composite list of directory entries (Slot1; Index1) 128 Table 117 Composite directory entries (Slot1; Index2, new parameters) 128 Table 118 7,8,9 composite directory entries 129 Header (Slot1; Index0) Table 119 129 Table 120 composite list of directory entries (Slot1; Index1) 129 Composite list of directory entries table 121 with optional 129 Begin_LO Composite table directory entries Section 122 of 5,6,7 directory entries (Slot1; Index2, new parameters) 129 Table 9, 10 composite 123 directory entries 130 Table 11 Compound 124 of 130 directory entries Table 125 DPV1 response code 130 Table 126 Cycle parameters identified 133 Configuration string table 127 function blocks 133 Multivariable device identification table 128 format structure 135 Table over 129 equipment variable coding identification format 135 Definition table 130 FB code 135 Variable format table identifies more than 131 equipment modules 135 Table 132 User_Prm_Data 137 definitions of DPV1_Enable Table 133 profiles specific Prm_Structure 137 The mapping table 134 DIAGNOSIS Diagnosis-RES-PDU service data structure 138 Table 135 Status appearance/disappearance 139 Parameter value table 140 of 136 Initiate Additional features 137 MSCY1S table used 142 Table 138 modified MSCY1S state transitions 143 Table 139 profiles specific Ident_Number classification 153 Table 140 communication capabilities Declaration of Conformity 155 The conditions and results of calculation of the actual pattern table 141 158 The conditions and results output parameter condition table 142 calculated 158 Table 143 analog input function block Parameter Description 159 Table parameter attributes 144 analog input function block 161 View object table 145 analog input function block 162 The conditions and results of calculation of the actual pattern table 146 165 Standard condition table 147 TOTAL Parameter Calculation conditions and results 166 Parameters Table 148 accumulator function block description 167 Parameter property sheet 149 accumulator function block 169 150 accumulator table view object function blocks 170 Block temperature conversion table 151 Universal Parameter Description 173 Parameters Table 152 thermocouple temperature conversion device description block 175 Table 153 RTD temperature conversion device block Parameter Description 175 Table 154 optical pyrometer temperature conversion device block Parameter Description 176 Parameter property sheet 155 general parameters of temperature transducer block 177 156 thermocouple device attribute table parameters Additional parameters 178 Thermal resistance parameter attribute table 157 additional device parameters 178 Table 158 Parameter attributes optical pyrometer Additional equipment parameters 179 View object temperature conversion table 159 block 179 Table 160 pressure transducer block Parameter Description 184 Table 161 pressure transducer block parameter attributes 186 View object table 162 pressure transducer block 188 Table 163 dynamic variable pressure equipment allocated 189 Table 164 Level transducer block Parameter Description 191 Table parameters property 165 level converter block 193 View object table 166 Level Transducer Block 195 Table 167 flow converter device block parameter overview 197 Parameters Table 168 flow converter block description 198 Parameter attribute table 169 flow converter block 200 Table View object 170 flow converter block 203 Flow conversion table 171 block View_3 object 204 Category Table 172 flow converter block 205 173 dynamic variables allocation table 206 Conformance Statement Table 174 transmitter assembly 206 The conditions and results of calculation of the actual pattern table 175 208 The conditions and results Table 176 Status output parameter calculation 209 Parameters Table 177 discrete input function block description 209 Parameter property sheet 178 discrete input function block 210 Table View object 179 discrete input function block 211 Table 180 discrete input transducer block Parameter Description 211 Table 181 discrete parameters input into block 212 properties Table View object 182 Discrete Input Transducer Block 212 Conformance Statement Table 183 discrete input module 213 The conditions and results of calculation of the actual pattern table 184 215 The conditions and results Table 185 Status output parameter calculation 216 The conditions and results table 186 cascade process condition calculation 216 Parameters Table 187 Discrete Output function block description 217 188 Discrete Output attribute table parameters of the function block 218 Table View object 189 Discrete Output function block 218 Table parameters CHECK_BACK code 190 discrete output FB 219 Table 191 Discrete valve control transducer block Parameter Descriptio......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 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