Changes for page 17 LX3V/5V/5S comparsion
Last modified by Jim on 2025/02/11 11:34
Summary
-
Page properties (3 modified, 0 added, 0 removed)
Details
- Page properties
-
- Title
-
... ... @@ -1,1 +1,1 @@ 1 - 17LX3V/5V/5Scomparsion1 +03 Difference between 3V, 5V and 5S - Parent
-
... ... @@ -1,1 +1,1 @@ 1 -PLC Editor2.WebHome 1 +PLC Editor2.1 User manual.WebHome - Content
-
... ... @@ -1,47 +1,48 @@ 1 -= **1 Basic difference s** =1 += **1 Basic difference between 5S and 5V** = 2 2 3 -| =(% scope="row" %)Functions|=5V|=5S|=3V4 -| =Running Mode|(% colspan="3" %)Cyclic scan /Interrupt5 -| =Power supply|(% colspan="3" %)A:AC 220V;D:DC 24V6 -| =Output type|MT:Transistor|MT:Transistor;MR:Relay|MT:Transistor;MR:Relay7 -| =I/O|1212;1412;1616;2416;2424;3624;|0806;1208;1212;1412;3 +|Functions|5V|5S|3V 4 +|Running Mode|(% colspan="3" %)Cyclic scan /Interrupt 5 +|Power supply|(% colspan="3" %)A:AC 220V;D:DC 24V 6 +|Output type|MT:Transistor|MT:Transistor;MR:Relay|MT:Transistor;MR:Relay 7 +|I/O|1212;1412;1616;2416;2424;3624;|0806;1208;1212;1412; 8 8 1616;2416;2424;3624;|0806;1208;1212;1412; 9 9 1616;2416;2424;3624; 10 -| =Programming|(% colspan="3" %)Ladder11 -| =Type of instruction| | |12 -| =Execute Time|Basic 0.01-0.03μs|Basic 0.03-0.08μs|Basic 0.06μs/Applied instruction:1-10us13 -| =Program Capacity|(% colspan="2" %)512KB|16k14 -| =High Speed Pulse Output|≤1412MT and smaller: 4*200KHz;10 +|Programming|(% colspan="3" %)Ladder 11 +|Type of instruction| | | 12 +|Execute Time|Basic 0.01-0.03μs|Basic 0.03-0.08μs|Basic 0.06μs/Applied instruction:1-10us 13 +|Program Capacity|(% colspan="2" %)512KB|16k 14 +|High Speed Pulse Output|≤1412MT and smaller: 4*200KHz; 15 15 ≥1616MT and bigger: 8*200KHz。|MT/MR2H: 2* 200KHz; 16 16 MT4H: 4* 200KHz。|MT/2H: 2*100KHZ, or 4H: 4*100, single: 200kHZ 17 -| =High speed counter Interrupt|(% colspan="2" %)100 channels|21channels18 -| =Timer Interrupt|(% colspan="2" %)100 channels,Support 0.1ms Interrupt|95 channels19 -| =X Interrupt|X0-X7 Rising & Falling|X0-X5 Rising & Falling|X0-X5 Rising & Falling20 -| =**High speed counter Single Phase**|**≤1412 and smaller: 4*150KHz17 +|High speed counter Interrupt|(% colspan="2" %)100 channels|21channels 18 +|Timer Interrupt|(% colspan="2" %)100 channels,Support 0.1ms Interrupt|95 channels 19 +|X Interrupt|X0-X7 Rising & Falling|X0-X5 Rising & Falling|X0-X5 Rising & Falling 20 +|**High speed counter Single Phase**|**≤1412 and smaller: 4*150KHz 21 21 ≥1616 and bigger: 8*150KHz**|**≤1412 and smaller: 2*150KHz;4*10KHz 22 22 ≥1616 and bigger: 6*150KHz**|**2*200KHz; 4*10KHz** 23 -| =**High speed counter AB phase**|**≤1412 and smaller: 4*100KHz23 +|**High speed counter AB phase**|**≤1412 and smaller: 4*100KHz 24 24 ≥1616 and bigger: 8*100KHz**|**≤1412 and smaller: 1*100KHz+2*10KHz 25 25 ≥1616 and bigger: 3*100KHz**|**2*100KHz** 26 -| =Storage Type|(% colspan="3" %)FLASH27 -| =Serial Communication|(((26 +|Storage Type|(% colspan="3" %)FLASH 27 +|Serial Communication|((( 28 28 COM1: RS422、RS485;COM2: RS485 29 29 )))|1208 and smaller: COM1: RS422;COM2: RS485; 30 30 1212 and bigger: COM1: RS422、RS485;COM2:RS485|1208 and smaller: COM1: RS422;COM2: RS485; 31 31 1212 and bigger: COM1: RS422、RS485;COM2: RS485 32 -|=BD board support|yes|yes|yes 33 -|=Communication BD board|(% colspan="2" %)support LX5V-2RS485-BD and LX5V-ETH-BD|RS485 BD support, 3vp supports ethernet bd board 34 -|=Expansion Module|(% colspan="2" %)yes √ (1212 and bigger can support)|yes √ (1212 and bigger can support) 35 -|=Electronic CAM|√(2 sheets for switch)|√(2 sheets for switch)|N/A 36 -|=S-type CAM|√|√|N/A 37 -|=N:N Comm|√|√|N/A 38 -|=Linear Interpolation|√|√|N/A 39 -|=Circular Interpolation|√|√|N/A 40 -|=sub-rotine|√|√|N/A 32 +|BD board support|yes|yes|yes 33 +|Communication BD board|(% colspan="2" %)inbuilt ethernet port series, RS485 BD board in developing |RS485 BD support, 3vp supports ethernet bd board 34 +|Expansion Module|(% colspan="2" %)yes √ (1212 and bigger can support)|yes √ (1212 and bigger can support) 35 +|Electronic CAM|√(2 sheets for switch)|√(2 sheets for switch)|N/A 36 +|S-type CAM|√|√|N/A 37 +|N:N Comm|√|√|N/A 38 +|Linear Interpolation|√|√|N/A 39 +|Circular Interpolation|√|√|N/A 40 +|sub-rotine|√|√|N/A 41 +| | | | 41 41 42 -= **2 Software difference between 5S vs5V** =43 += **2 Software interface difference between 5S and 5V** = 43 43 44 -== **High speed counter configuration** == 45 +== **2.1 High speed counter configuration** == 45 45 46 46 **5V as below** 47 47 ... ... @@ -55,21 +55,23 @@ 55 55 56 56 = **3** **Functions that 3V has but 5V does not** = 57 57 58 -== **BD board** == 59 +== **3.1 BD board** == 59 59 60 -LX5V does not support LX3V-2RS485-BD61 +LX5V does not support RS485 BD 61 61 62 -LX5V does not support LX3V-ETH-BD63 +LX5V does not support Ethernet BD 63 63 64 - ==**AnalogBD boardexpansion address**==65 +LX5V does not support CAN BD 65 65 67 +== **3.2 Analog BD board expansion address** == 68 + 66 66 Provides the function of analog board BD to modify parameters such as filtering. For specific functions, please refer to the BD board manual. 67 67 68 -== **PLDID** == 71 +== **3.3 PLDID** == 69 69 70 70 Program label function, when the label of the program corresponds to the label of the PLC, the ladder diagram can be uploaded and downloaded. Clearing the memory does not clear this tag either. It is mainly to limit the ladder diagram used by PLC. 71 71 72 -== **Instructions** == 75 +== **3.4 Instructions** == 73 73 74 74 (1) NOP instruction (null instruction) 75 75 ... ... @@ -93,55 +93,61 @@ 93 93 94 94 (11) CPAVL instruction(communication BD configuration) 95 95 96 -== **Unsupported special register function (M8000, D8000)** == 99 +== **3.5 Unsupported special register function (M8000, D8000)** == 97 97 98 -=== **Clock related** === 101 +=== **3.5.1 Clock related** === 99 99 100 100 Clock function not supported by LX5V 101 101 102 -|=M8014|Oscillation clock with 1 minute clock period 103 -|=M8015|Clock stop and preset 104 -|=M8016|Stop time to read the display 105 -|=M8017|±30 seconds correction 106 -|=M8018|install and examine 107 -|=M8019|Real-time clock (RTC) error 105 +(% class="table-bordered" %) 106 +|M8014|Oscillation clock with 1 minute clock period 107 +|M8015|Clock stop and preset 108 +|M8016|Stop time to read the display 109 +|M8017|±30 seconds correction 110 +|M8018|install and examine 111 +|M8019|Real-time clock (RTC) error 108 108 109 -=== **High-speed counter ring counting function** === 113 +=== **3.5.2 High-speed counter ring counting function** === 110 110 111 -|=M8099|High-speed ring counter count start 112 -|=M8099|Ring count configuration 115 +(% class="table-bordered" %) 116 +|M8099|High-speed ring counter count start 117 +|M8099|Ring count configuration 113 113 114 -=== **X0~~X5 pulse capture function** === 119 +=== **3.5.3 X0~~X5 pulse capture function** === 115 115 116 -|=M8170|X000 pulse capture 117 -|=M8171|X001 pulse capture 118 -|=M8172|X002 pulse capture 119 -|=M8173|X003 pulse capture 120 -|=M8174|X004 pulse capture 121 -|=M8175|X005 pulse capture 121 +(% class="table-bordered" %) 122 +|M8170|X000 pulse capture 123 +|M8171|X001 pulse capture 124 +|M8172|X002 pulse capture 125 +|M8173|X003 pulse capture 126 +|M8174|X004 pulse capture 127 +|M8175|X005 pulse capture 122 122 123 -= **4 3V and5Vincompatiblefunctions** =129 += **4. 5V function under development** = 124 124 125 -(% class="wikigeneratedid" %) 126 -**(These can be automatically converted in the future)** 131 +N:N communication protocol 127 127 128 - == **Generalregister**==133 +Interpolation instructions (G90G01, G90G02, G90G03, G91G01, G91G02, G91G03) 129 129 135 += **5. 3V and 5V incompatible functions (These can be automatically converted in the future)** = 136 + 137 +== **5.1 General register** == 138 + 130 130 (% class="table-bordered" %) 131 -| =(% scope="row" %)**register**|=**LX3V**|=**LX5V**|=**Remarks**132 -| =Input|X0~~X377|X0~~X1777|133 -| =Output|Y0~~Y377|Y0~~Y1777|134 -| =Auxiliary|M0~~M3071|M0~~M7999|135 -| =Status|S0~~S999|S0~~S4095|136 -| =Timer|T0~~T255|T0~~T511|137 -| =counter|C0~~C199|C0~~C255|138 -| =Double word counter|C200~~C219|LC0~~LC99|Non-power-down save139 -| =Double word counter|C220~~C234|LC100~~LC255|Power-down save140 -| =High-speed counter|C235~~C255|HSC0~~HSC7|Check the high-speed input function141 -| =Data Register|D0~~D7999|D0~~D7999 (R0~~R29999)|142 -| =Pointer P|P0~~P127|P0~~P4095|143 -| =Instruction I|I0~~I8xx|None|144 -| =constant|K, H, E|K, H, E|140 +|**register**|**LX3V**|**LX5V**|**Remarks** 141 +|Input|X0~~X377|X0~~X1777| 142 +|Output|Y0~~Y377|Y0~~Y1777| 143 +|Auxiliary|M0~~M3071|M0~~M7999| 144 +|Status|S0~~S999|S0~~S4095| 145 +|Timer|T0~~T255|T0~~T511| 146 +|counter|C0~~C199|C0~~C255| 147 +|Double word counter|C200~~C219|LC0~~LC99|Non-power-down save 148 +|Double word counter|C220~~C234|LC100~~LC255|Power-down save 149 +|High-speed counter|C235~~C255|HSC0~~HSC7|Check the high-speed input function 150 +|Data Register|D0~~D7999|D0~~D7999 (R0~~R29999)| 151 +|Pointer P|P0~~P127|P0~~P4095| 152 +|Instruction I|I0~~I8xx|None| 153 +|constant|K, H, E|K, H, E| 145 145 146 146 **Incompatible part** 147 147 ... ... @@ -155,13 +155,10 @@ 155 155 156 156 5. Pointer I is cancelled in LX5V, please check the programming mode for details. 157 157 158 -== **Programming method** == 167 +== **5.2 Programming method** == 159 159 160 -=== **Subroutine** === 169 +=== **5.2.1 Subroutine (For details, please refer to LX5V Programming Manual Chapter 1.4-Subroutine Branch)** === 161 161 162 -(% class="wikigeneratedid" %) 163 -**(For details, please refer to LX5V Programming Manual Chapter 1.4-Subroutine Branch)** 164 - 165 165 **Use of LX3V subroutines** 166 166 [[image:1652684087594-147.png]] 167 167 ... ... @@ -175,11 +175,8 @@ 175 175 176 176 [[image:1652684829740-769.png]] 177 177 178 -=== **Interrupt** === 184 +=== **5.2.2 Interrupt (For details, please refer to LX5V Programming Manual Chapter 1.4-Branch)** === 179 179 180 -(% class="wikigeneratedid" %) 181 -**(For details, please refer to LX5V Programming Manual Chapter 1.4-Branch)** 182 - 183 183 **LX3V interrupt** 184 184 185 185 The interrupt program is under FEND and returns with IRET. The meaning of the specific interrupt is distinguished by the pointer I number.(Refer to EI/DI instruction in 3V) ... ... @@ -198,9 +198,9 @@ 198 198 199 199 [[image:1652685809566-630.png]] 200 200 201 -=== **Instructions** === 204 +=== **5.2.3 Instructions** === 202 202 203 -**OUT instruction**206 +**OUT command** 204 204 205 205 Double word counter[[image:file:///C:\Users\ANNAXU~~1\AppData\Local\Temp\ksohtml14432\wps28.png]] 206 206 ... ... @@ -266,9 +266,9 @@ 266 266 267 267 [[image:1652689626279-240.png]] 268 268 269 -= ** 5High-speed input function** =272 += **6. High-speed input function** = 270 270 271 -== **Use on LX3V** == 274 +== **6.1 Use on LX3V** == 272 272 273 273 Find the high-speed input counter you need to use according to the following table: 274 274 ... ... @@ -280,7 +280,7 @@ 280 280 281 281 [[image:1652690126303-800.png]] 282 282 283 -== **Use on LX5V** == 286 +== **6.2 Use on LX5V** == 284 284 285 285 According to channel, select the HSC register to use: 286 286 ... ... @@ -294,10 +294,11 @@ 294 294 295 295 [[image:1652692388207-617.png]] 296 296 297 -== **Difference between high-speed counters on LX5V and LX3V** == 300 +== **6.3 Difference between high-speed counters on LX5V and LX3V** == 298 298 299 299 LX3V updates the count value when the OUT instruction is executed, which is affected by the scan cycle. 300 300 304 + 301 301 LX5V is updated in the 100us interrupt, not affected by the scan cycle, and provides the REF instruction to refresh the current high-speed counter value immediately. 302 302 303 303 LX5V single-phase high-speed counter supports filtering function, configurable 0~~17us. ... ... @@ -304,20 +304,20 @@ 304 304 305 305 LX5V high-speed input counter will update the input frequency in the special soft element (SD) every 100us. 306 306 307 -= ** 6High-speed output function** =311 += **7. High-speed output function** = 308 308 309 309 **High-speed pulse commands are the same in the use of commands.** 310 310 311 311 (% class="table-bordered" %) 312 -| =(%scope="row" %)|=LX3V|=LX5V313 -| =DRVI|√|√314 -| =DRVA|√|√315 -| =PLSR|√|√316 -| =PLSV|√|√317 -| =PLSY|√|√318 -| =DVIT|√|√319 -| =ZRN|√|√320 -| =PLSR2|√|√316 +| |LX3V|LX5V 317 +|DRVI|√|√ 318 +|DRVA|√|√ 319 +|PLSR|√|√ 320 +|PLSV|√|√ 321 +|PLSY|√|√ 322 +|DVIT|√|√ 323 +|ZRN|√|√ 324 +|PLSR2|√|√ 321 321 322 322 **High-speed pulse command difference.** 323 323 ... ... @@ -330,16 +330,16 @@ 330 330 2. Comparison of bit devices 331 331 332 332 (% class="table-bordered" %) 333 -| =(% scope="row" %)**3V**|=**Description**|=**5V**|=**Description**334 -| =M8145|Y000 pulse output stop|SM898|Y000 pulse output stop335 -| =M8146|Y001 Pulse output stop|SM958|Y001 Pulse output stop336 -| =M8152|Y002 pulse output stop|SM1018|Y002 pulse output stop337 -| =M8153|Y003 Pulse output stop|SM1078|Y003 Pulse output stop338 -| =M8147|Y000 monitoring during pulse output|SM880|Y000 monitoring during pulse output339 -| =M8148|Y001 Monitoring during pulse output|SM940|Y001 Monitoring during pulse output340 -| =M8149|Y002 Monitoring during pulse output|SM1000|Y002 Monitoring during pulse output341 -| =M8150|Y003 Monitoring during pulse output|SM1060|Y003 Monitoring during pulse output342 -| =(% rowspan="4" %)(((337 +|**3V**|**Description**|**5V**|**Description** 338 +|M8145|Y000 pulse output stop|SM898|Y000 pulse output stop 339 +|M8146|Y001 Pulse output stop|SM958|Y001 Pulse output stop 340 +|M8152|Y002 pulse output stop|SM1018|Y002 pulse output stop 341 +|M8153|Y003 Pulse output stop|SM1078|Y003 Pulse output stop 342 +|M8147|Y000 monitoring during pulse output|SM880|Y000 monitoring during pulse output 343 +|M8148|Y001 Monitoring during pulse output|SM940|Y001 Monitoring during pulse output 344 +|M8149|Y002 Monitoring during pulse output|SM1000|Y002 Monitoring during pulse output 345 +|M8150|Y003 Monitoring during pulse output|SM1060|Y003 Monitoring during pulse output 346 +|(% rowspan="4" %)((( 343 343 344 344 345 345 ... ... @@ -349,35 +349,35 @@ 349 349 350 350 Some instructions (PLSR, etc.) instruction execution completed (Y0-Y3) 351 351 )))|SM882|Y0 pulse sending completed 352 -| =SM942|Y1 pulse sending completed353 -| =SM1002|Y2 pulse transmission completed354 -| =SM1062|Y3 pulse transmission completed355 -| =M8134|Y0's thousandth control bit|SM897|Y0's thousandth control bit356 -| =M8135|(((356 +|SM942|Y1 pulse sending completed 357 +|SM1002|Y2 pulse transmission completed 358 +|SM1062|Y3 pulse transmission completed 359 +|M8134|Y0's thousandth control bit|SM897|Y0's thousandth control bit 360 +|M8135|((( 357 357 The acceleration and deceleration time between each axis of Y1's thousandth control position positioning command is separated 358 358 )))|((( 359 359 SM957 360 360 )))|Y1 Perimeter control bit 361 -| =M8136|Y2 Perimeter control bit|SM1017|Y2 Perimeter control bit362 -| =M8137|Y3 Perimeter control bit|SM1077|Y3 Perimeter control bit365 +|M8136|Y2 Perimeter control bit|SM1017|Y2 Perimeter control bit 366 +|M8137|Y3 Perimeter control bit|SM1077|Y3 Perimeter control bit 363 363 364 364 3. Comparison of word devices 365 365 366 366 (% class="table-bordered" %) 367 -| =(% scope="row" %)**3V**|=**Description**|=**5V**|=**Description**368 -| =D8104|Y0 acceleration and deceleration time (open M8135)|SD902/SD962|Y0 acceleration/deceleration time369 -| =D8105|Y1 acceleration and deceleration time (open M8135)|SD1022/SD1082|Y1 acceleration/deceleration time370 -| =D8106|Y2 acceleration and deceleration time (open M8135)|SD1142/SD1202|Y2 acceleration/deceleration time371 -| =D8107|Y3 acceleration and deceleration time (open M8135)|SD1262/SD1322|Y3 acceleration/deceleration time372 -| =D8140|Y000 Current position low|SD880|Y000 Current position low373 -| =D8141|Y000 current position high|SD881|Y000 current position high374 -| =D8142|Y001 Current position low|SD940|Y001 Current position low375 -| =D8143|Y001 Current position high|SD941|Y001 Current position high376 -| =D8150|Y002 current position low|SD1000|Y002 current position low377 -| =D8151|Y002 current position high|SD1001|Y002 current position high378 -| =D8152|Y003 Current position low|SD1060|Y003 Current position low379 -| =D8153|Y003 Current position high|SD1061|Y003 Current position high380 -| =(% rowspan="4" %)(((371 +|**3V**|**Description**|**5V**|**Description** 372 +|D8104|Y0 acceleration and deceleration time (open M8135)|SD902/SD962|Y0 acceleration/deceleration time 373 +|D8105|Y1 acceleration and deceleration time (open M8135)|SD1022/SD1082|Y1 acceleration/deceleration time 374 +|D8106|Y2 acceleration and deceleration time (open M8135)|SD1142/SD1202|Y2 acceleration/deceleration time 375 +|D8107|Y3 acceleration and deceleration time (open M8135)|SD1262/SD1322|Y3 acceleration/deceleration time 376 +|D8140|Y000 Current position low|SD880|Y000 Current position low 377 +|D8141|Y000 current position high|SD881|Y000 current position high 378 +|D8142|Y001 Current position low|SD940|Y001 Current position low 379 +|D8143|Y001 Current position high|SD941|Y001 Current position high 380 +|D8150|Y002 current position low|SD1000|Y002 current position low 381 +|D8151|Y002 current position high|SD1001|Y002 current position high 382 +|D8152|Y003 Current position low|SD1060|Y003 Current position low 383 +|D8153|Y003 Current position high|SD1061|Y003 Current position high 384 +|(% rowspan="4" %)((( 381 381 382 382 383 383 ... ... @@ -388,10 +388,10 @@ 388 388 389 389 Y0-Y3 Paranoid speed (single word) 390 390 )))|SD900, SD901|Y0 Paranoid speed (double word) 391 -| =SD960, SD961|Y1 Paranoid speed (double word)392 -| =SD1020, SD1021|Y2 Paranoid speed (double word)393 -| =SD1080, SD1081|Y3 Paranoid speed (double word)394 -| =(% rowspan="8" %)(((395 +|SD960, SD961|Y1 Paranoid speed (double word) 396 +|SD1020, SD1021|Y2 Paranoid speed (double word) 397 +|SD1080, SD1081|Y3 Paranoid speed (double word) 398 +|(% rowspan="8" %)((( 395 395 396 396 397 397 ... ... @@ -406,14 +406,14 @@ 406 406 407 407 Y0-Y3 maximum frequency (double word) 408 408 )))|SD898|Y0 Maximum speed low 409 -| =SD899|Y0 Highest speed410 -| =SD958|Y1 Maximum speed low411 -| =SD959|Y1 Highest speed412 -| =SD1018|Y2 Maximum speed low413 -| =SD1019|Y2 Highest speed414 -| =SD1078|Y3 Maximum speed low415 -| =SD1079|Y3 Highest speed416 -| =(% rowspan="4" %)(((413 +|SD899|Y0 Highest speed 414 +|SD958|Y1 Maximum speed low 415 +|SD959|Y1 Highest speed 416 +|SD1018|Y2 Maximum speed low 417 +|SD1019|Y2 Highest speed 418 +|SD1078|Y3 Maximum speed low 419 +|SD1079|Y3 Highest speed 420 +|(% rowspan="4" %)((( 417 417 418 418 419 419 ... ... @@ -423,9 +423,9 @@ 423 423 424 424 4-axis acceleration/deceleration time (when M8135 is not turned on) 425 425 )))|SD902/SD962|Y0 acceleration/deceleration time 426 -| =SD1022/SD1082|Y1 acceleration/deceleration time427 -| =SD1142/SD1202|Y2 acceleration/deceleration time428 -| =SD1262/SD1322|Y3 acceleration/deceleration time430 +|SD1022/SD1082|Y1 acceleration/deceleration time 431 +|SD1142/SD1202|Y2 acceleration/deceleration time 432 +|SD1262/SD1322|Y3 acceleration/deceleration time 429 429 430 430 4. New features of high-speed pulse instructions on LX5V 431 431 ... ... @@ -451,7 +451,7 @@ 451 451 452 452 ⑨Support direction reversal (can set the forward direction to low level) 453 453 454 -= ** 7Communication function** =458 += **8. Communication function** = 455 455 456 456 **~1. Communication parameter configuration** 457 457 ... ... @@ -462,27 +462,27 @@ 462 462 3V settings: 463 463 464 464 (% class="table-bordered" %) 465 -| =(% scope="row" %)**protocol**|=**D8126 value setting**466 -| =RS instruction (custom protocol)|00H467 -| =HMI monitoring protocol (PLC protocol)|01H468 -| =MODBUS-RTU slave|02H469 -| =MODBUS-ASCII slave|03H470 -| =N:N network communication protocol slave|04H471 -| =RS instruction (custom protocol)|10H472 -| =MODBUS-RTU master station|20H473 -| =MODBUS-ASCII master station|30H474 -| =N:N network communication protocol master station|40H469 +|**protocol**|**D8126 value setting** 470 +|RS instruction (custom protocol)|00H 471 +|HMI monitoring protocol (PLC protocol)|01H 472 +|MODBUS-RTU slave|02H 473 +|MODBUS-ASCII slave|03H 474 +|N:N network communication protocol slave|04H 475 +|RS instruction (custom protocol)|10H 476 +|MODBUS-RTU master station|20H 477 +|MODBUS-ASCII master station|30H 478 +|N:N network communication protocol master station|40H 475 475 476 476 5V settings: 477 477 478 478 (% class="table-bordered" %) 479 -| =(% scope="row" %)**SD2592 value setting**|=**Protocol**480 -| =0 H|Wecon Modbus slave481 -| =2 H|ModbusRTU slave482 -| =3 H|ModbusASCII slave483 -| =10 H|User-defined protocol484 -| =20 H|ModbusRTU master station485 -| =30 H|(((483 +|**SD2592 value setting**|**Protocol** 484 +|0 H|Wecon Modbus slave 485 +|2 H|ModbusRTU slave 486 +|3 H|ModbusASCII slave 487 +|10 H|User-defined protocol 488 +|20 H|ModbusRTU master station 489 +|30 H|((( 486 486 ModbusASCII master 487 487 488 488 ... ... @@ -499,31 +499,34 @@ 499 499 5V address: 500 500 501 501 (% class="table-bordered" %) 502 -| =(% scope="row" %)Port|=Occupy|=(% style="width:;" %)Address range|=(% style="width:;" %)(((506 +|Port|Occupy|(% style="width:240px" %)Address range|(% style="width:221px" %)((( 503 503 10 hex Register 504 -)))| =(((508 +)))|((( 505 505 Total reserved land Address size 506 506 ))) 507 -| =**Word address**| |(% style="width:240px" %) |(% style="width:221px" %) |508 -| =T0~~T511|512 WORD|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %)0|1536509 -| =C0~~C255|256 WORD|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024510 -| =LC0~~LC255|512 WORD|(% style="width:240px" %)0x0A00-0x0BFF|(% style="width:221px" %)2560|1024511 -| =HSC0~~HSC15|128 WORD|(% style="width:240px" %)0x0E00-0x0E1F|(% style="width:221px" %)3584|512512 -| =D0~~D7999|8000 WORD|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384513 -| =SD0~~SD4095|4096 WORD|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288514 -| =R0~~R30000|30000 WORD|(% style="width:240px" %)0x8000-0xF52F|(% style="width:221px" %)32768|30000515 -| =**Bit address**| |(% style="width:240px" %) |(% style="width:221px" %) |516 -| =T0~~T511|512 bit|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %) |1536517 -| =C0~~C255|256 bit|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024518 -| =LC0~~LC255|256 bit|(% style="width:240px" %)0x0A00-0x0AFF|(% style="width:221px" %)2560|1024519 -| =HSC0~~HSC15|64 bit|(% style="width:240px" %)0x0E00-0x0E0F|(% style="width:221px" %)3584|512520 -| =M0~~M8000|8192bit|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384521 -| =SM0~~SM4095|4096bit|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288522 -| =Reserved| |(% style="width:240px" %)0x8000-0xBFFF|(% style="width:221px" %) |16383523 -| =S0~~S4095|4096bit|(% style="width:240px" %)0xC000-0xCFFF|(% style="width:221px" %)49152|8192524 -| =X0~~X1023|1024bit|(% style="width:240px" %)0xE000-0xE3FF|(% style="width:221px" %)57344|4096525 -| =Y0~~Y1023|1024bit|(% style="width:240px" %)0xF000-0xF3FF|(% style="width:221px" %)61440|4096511 +|**Word address**| |(% style="width:240px" %) |(% style="width:221px" %) | 512 +|T0~~T511|512 WORD|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %)0|1536 513 +|C0~~C255|256 WORD|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024 514 +|LC0~~LC255|512 WORD|(% style="width:240px" %)0x0A00-0x0BFF|(% style="width:221px" %)2560|1024 515 +|HSC0~~HSC15|128 WORD|(% style="width:240px" %)0x0E00-0x0E1F|(% style="width:221px" %)3584|512 516 +|D0~~D7999|8000 WORD|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384 517 +|SD0~~SD4095|4096 WORD|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288 518 +|R0~~R30000|30000 WORD|(% style="width:240px" %)0x8000-0xF52F|(% style="width:221px" %)32768|30000 519 +|**Bit address**| |(% style="width:240px" %) |(% style="width:221px" %) | 520 +|T0~~T511|512 bit|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %) |1536 521 +|C0~~C255|256 bit|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024 522 +|LC0~~LC255|256 bit|(% style="width:240px" %)0x0A00-0x0AFF|(% style="width:221px" %)2560|1024 523 +|HSC0~~HSC15|64 bit|(% style="width:240px" %)0x0E00-0x0E0F|(% style="width:221px" %)3584|512 524 +|M0~~M8000|8192bit|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384 525 +|SM0~~SM4095|4096bit|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288 526 +|Reserved| |(% style="width:240px" %)0x8000-0xBFFF|(% style="width:221px" %) |16383 527 +|S0~~S4095|4096bit|(% style="width:240px" %)0xC000-0xCFFF|(% style="width:221px" %)49152|8192 528 +|X0~~X1023|1024bit|(% style="width:240px" %)0xE000-0xE3FF|(% style="width:221px" %)57344|4096 529 +|Y0~~Y1023|1024bit|(% style="width:240px" %)0xF000-0xF3FF|(% style="width:221px" %)61440|4096 526 526 527 527 **5. LX5V added functions** 528 528 529 529 Modify serial communication parameters during RUN. For example, use PROTOCOL instruction to modify the protocol during run. The corresponding instruction description can also find the method of setting without instruction. For details, please refer to the relevant instructions of the instruction. Commands are PROTOCOL (set serial port protocol), PROTPARA (set serial port parameters), STATION (set station number) 534 + 535 + 536 +