Changes for page 17 LX3V/5V/5S comparsion

Last modified by Jim on 2025/02/11 11:34

From version 11.1
edited by Leo Wei
on 2022/06/14 15:29
Change comment: There is no comment for this version
To version 33.1
edited by Devin Chen
on 2023/10/31 10:26
Change comment: There is no comment for this version

Summary

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Title
... ... @@ -1,1 +1,1 @@
1 -03 Difference between 3V, 5V and 5S
1 +17 LX3V/5V/5S comparsion
Parent
... ... @@ -1,1 +1,1 @@
1 -PLC Editor2.1 User manual.WebHome
1 +PLC Editor2.WebHome
Author
... ... @@ -1,1 +1,1 @@
1 -XWiki.admin
1 +XWiki.DevinChen
Content
... ... @@ -1,4 +1,4 @@
1 -= **1 Basic difference between 3V, 5V and 5S** =
1 += **1 Basic differences** =
2 2  
3 3  |=(% scope="row" %)Functions|=5V|=5S|=3V
4 4  |=Running Mode|(% colspan="3" %)Cyclic scan /Interrupt
... ... @@ -8,7 +8,6 @@
8 8  1616;2416;2424;3624;|0806;1208;1212;1412;
9 9  1616;2416;2424;3624;
10 10  |=Programming|(% colspan="3" %)Ladder
11 -|=Type of instruction| | |
12 12  |=Execute Time|Basic 0.01-0.03μs|Basic 0.03-0.08μs|Basic 0.06μs/Applied instruction:1-10us
13 13  |=Program Capacity|(% colspan="2" %)512KB|16k
14 14  |=High Speed Pulse Output|≤1412MT and smaller: 4*200KHz;
... ... @@ -19,10 +19,22 @@
19 19  |=X Interrupt|X0-X7 Rising & Falling|X0-X5 Rising & Falling|X0-X5 Rising & Falling
20 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 -≥1616 and bigger: 6*150KHz**|**2*200KHz; 4*10KHz**
21 +≥1616 and bigger: 6*150KHz**|(((
22 +**Hardware counter for the first two channels:2*200KHz;**
23 +
24 +**Software counter for the first two channels:2*100KHz;**
25 +
26 +**Software counter for back four channels:4*10KHz**
27 +)))
23 23  |=**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 -≥1616 and bigger: 3*100KHz**|**2*100KHz**
30 +≥1616 and bigger: 3*100KHz**|(((
31 +**Hardware counter for the first two channels:2*100KHz;**
32 +
33 +**Software counter for the first two channels:2*50KHz;**
34 +
35 +**Software counter for back four channels:4*5KHz**
36 +)))
26 26  |=Storage Type|(% colspan="3" %)FLASH
27 27  |=Serial Communication|(((
28 28  COM1: RS422、RS485;COM2: RS485
... ... @@ -30,19 +30,18 @@
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 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
44 +|=Communication BD board|(% colspan="2" %)support LX5V-2RS485-BD and LX5V-ETH-BD|RS485 BD support, 3vp supports ethernet bd board
34 34  |=Expansion Module|(% colspan="2" %)yes √ (1212 and bigger can support)|yes √ (1212 and bigger can support)
35 35  |=Electronic CAM|√(2 sheets for switch)|√(2 sheets for switch)|N/A
36 36  |=S-type CAM|√|√|N/A
37 -|=N:N Comm|√|√|N/A
48 +|=PLClink|√|√|N/A
38 38  |=Linear Interpolation|√|√|N/A
39 39  |=Circular Interpolation|√|√|N/A
40 -|=sub-rotine|√|√|N/A
41 -|= | | |
51 +|=sub-routine|√|√|N/A
42 42  
43 -= **2 Software interface difference between 5S and 5V** =
53 += **2 Software difference between 5S vs 5V** =
44 44  
45 -== **2.1 High speed counter configuration** ==
55 +== **High speed counter configuration** ==
46 46  
47 47  **5V as below**
48 48  
... ... @@ -50,29 +50,29 @@
50 50  
51 51  **5S is as below**
52 52  
53 -[[image:image-20220614151015-2.png]]
63 +[[image:企业微信截图_16762524911554.png]]
54 54  
55 55  **More detail information,please check the product catalog**
56 56  
57 57  = **3** **Functions that 3V has but 5V does not** =
58 58  
59 -== **3.1 BD board** ==
69 +== **BD module** ==
60 60  
61 -LX5V does not support RS485 BD
71 +LX5V does not support LX3V-2RS485-BD
62 62  
63 -LX5V does not support Ethernet BD
73 +LX5V does not support LX3V-ETH-BD
64 64  
65 -LX5V does not support CAN BD
75 +== **Analog BD module expansion address** ==
66 66  
67 -== **3.2 Analog BD board expansion address** ==
77 +Provides the function of analog module BD to modify parameters such as filtering. For specific functions, please refer to the below link:
78 +~1. LX3 series: [[5-9 System-special address - Wecon (we-con.com.cn)>>url:https://docs.we-con.com.cn/bin/view/PLC%20Editor/05%20Registers/5-9%20system-special%20address/#HCOM1communicationsettings26BDmoduleconfiguration]]
79 +2. LX5 series: [[15 Appendix - Wecon (we-con.com.cn)>>url:https://docs.we-con.com.cn/bin/view/PLC%20Editor2/15/#HBDboardmodule]] [[15 Appendix - Wecon (we-con.com.cn)>>url:https://docs.we-con.com.cn/bin/view/PLC%20Editor2/15/#HBDboardmodule-1]]
68 68  
69 -Provides the function of analog board BD to modify parameters such as filtering. For specific functions, please refer to the BD board manual.
81 +== **PLDID** ==
70 70  
71 -== **3.3 PLDID** ==
72 -
73 73  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.
74 74  
75 -== **3.4 Instructions** ==
85 +== **Instructions** ==
76 76  
77 77  (1) NOP instruction (null instruction)
78 78  
... ... @@ -96,9 +96,9 @@
96 96  
97 97  (11) CPAVL instruction(communication BD configuration)
98 98  
99 -== **3.5 Unsupported special register function (M8000, D8000)** ==
109 +== **Unsupported special register function (M8000, D8000)** ==
100 100  
101 -=== **3.5.1 Clock related** ===
111 +=== **Clock related** ===
102 102  
103 103  Clock function not supported by LX5V
104 104  
... ... @@ -109,30 +109,27 @@
109 109  |=M8018|install and examine
110 110  |=M8019|Real-time clock (RTC) error
111 111  
112 -=== **3.5.2 High-speed counter ring counting function** ===
122 +=== **High-speed counter ring counting function** ===
113 113  
114 -|=(% style="width: 262px;" %)M8099|(% style="width:1227px" %)High-speed ring counter count start
115 -|=(% style="width: 262px;" %)M8099|(% style="width:1227px" %)Ring count configuration
124 +|=M8099|High-speed ring counter count start
125 +|=M8099|Ring count configuration
116 116  
117 -=== **3.5.3 X0~~X5 pulse capture function** ===
127 +=== **X0~~X5 pulse capture function** ===
118 118  
119 -|=(% style="width: 264px;" %)M8170|(% style="width:1225px" %)X000 pulse capture
120 -|=(% style="width: 264px;" %)M8171|(% style="width:1225px" %)X001 pulse capture
121 -|=(% style="width: 264px;" %)M8172|(% style="width:1225px" %)X002 pulse capture
122 -|=(% style="width: 264px;" %)M8173|(% style="width:1225px" %)X003 pulse capture
123 -|=(% style="width: 264px;" %)M8174|(% style="width:1225px" %)X004 pulse capture
124 -|=(% style="width: 264px;" %)M8175|(% style="width:1225px" %)X005 pulse capture
129 +|=M8170|X000 pulse capture
130 +|=M8171|X001 pulse capture
131 +|=M8172|X002 pulse capture
132 +|=M8173|X003 pulse capture
133 +|=M8174|X004 pulse capture
134 +|=M8175|X005 pulse capture
125 125  
126 -= **4. 5V function under development** =
136 += **4 3V and 5V incompatible functions** =
127 127  
128 -N:N communication protocol
138 +(% class="wikigeneratedid" %)
139 +**(These can be automatically converted in the future)**
129 129  
130 -Interpolation instructions (G90G01, G90G02, G90G03, G91G01, G91G02, G91G03)
141 +== **General register** ==
131 131  
132 -= **5. 3V and 5V incompatible functions (These can be automatically converted in the future)** =
133 -
134 -== **5.1 General register** ==
135 -
136 136  (% class="table-bordered" %)
137 137  |=(% scope="row" %)**register**|=**LX3V**|=**LX5V**|=**Remarks**
138 138  |=Input|X0~~X377|X0~~X1777|
... ... @@ -161,10 +161,13 @@
161 161  
162 162  5. Pointer I is cancelled in LX5V, please check the programming mode for details.
163 163  
164 -== **5.2 Programming method** ==
171 +== **Programming method** ==
165 165  
166 -=== **5.2.1 Subroutine (For details, please refer to LX5V Programming Manual Chapter 1.4-Subroutine Branch)** ===
173 +=== **Subroutine** ===
167 167  
175 +(% class="wikigeneratedid" %)
176 +**(For details, please refer to LX5V Programming Manual Chapter 1.4-Subroutine Branch)**
177 +
168 168  **Use of LX3V subroutines**
169 169  [[image:1652684087594-147.png]]
170 170  
... ... @@ -178,8 +178,11 @@
178 178  
179 179  [[image:1652684829740-769.png]]
180 180  
181 -=== **5.2.2 Interrupt (For details, please refer to LX5V Programming Manual Chapter 1.4-Branch)** ===
191 +=== **Interrupt** ===
182 182  
193 +(% class="wikigeneratedid" %)
194 +**(For details, please refer to LX5V Programming Manual Chapter 1.4-Branch)**
195 +
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 -=== **5.2.3 Instructions** ===
214 +=== **Instructions** ===
202 202  
203 -**OUT command**
216 +**OUT instruction**
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 -= **6. High-speed input function** =
282 += **5 High-speed input function** =
270 270  
271 -== **6.1 Use on LX3V** ==
284 +== **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 -== **6.2 Use on LX5V** ==
296 +== **Use on LX5V** ==
284 284  
285 285  According to channel, select the HSC register to use:
286 286  
... ... @@ -294,11 +294,10 @@
294 294  
295 295  [[image:1652692388207-617.png]]
296 296  
297 -== **6.3 Difference between high-speed counters on LX5V and LX3V** ==
310 +== **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  
301 -
302 302  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.
303 303  
304 304  LX5V single-phase high-speed counter supports filtering function, configurable 0~~17us.
... ... @@ -305,7 +305,7 @@
305 305  
306 306  LX5V high-speed input counter will update the input frequency in the special soft element (SD) every 100us.
307 307  
308 -= **7. High-speed output function** =
320 += **6 High-speed output function** =
309 309  
310 310  **High-speed pulse commands are the same in the use of commands.**
311 311  
... ... @@ -333,13 +333,13 @@
333 333  (% class="table-bordered" %)
334 334  |=(% scope="row" %)**3V**|=**Description**|=**5V**|=**Description**
335 335  |=M8145|Y000 pulse output stop|SM898|Y000 pulse output stop
336 -|=M8146|Y001 Pulse output stop|SM958|Y001 Pulse output stop
348 +|=M8146|Y001 pulse output stop|SM958|Y001 Pulse output stop
337 337  |=M8152|Y002 pulse output stop|SM1018|Y002 pulse output stop
338 -|=M8153|Y003 Pulse output stop|SM1078|Y003 Pulse output stop
350 +|=M8153|Y003 pulse output stop|SM1078|Y003 Pulse output stop
339 339  |=M8147|Y000 monitoring during pulse output|SM880|Y000 monitoring during pulse output
340 -|=M8148|Y001 Monitoring during pulse output|SM940|Y001 Monitoring during pulse output
341 -|=M8149|Y002 Monitoring during pulse output|SM1000|Y002 Monitoring during pulse output
342 -|=M8150|Y003 Monitoring during pulse output|SM1060|Y003 Monitoring during pulse output
352 +|=M8148|Y001 monitoring during pulse output|SM940|Y001 Monitoring during pulse output
353 +|=M8149|Y002 monitoring during pulse output|SM1000|Y002 Monitoring during pulse output
354 +|=M8150|Y003 monitoring during pulse output|SM1060|Y003 Monitoring during pulse output
343 343  |=(% rowspan="4" %)(((
344 344  
345 345  
... ... @@ -359,8 +359,8 @@
359 359  )))|(((
360 360  SM957
361 361  )))|Y1 Perimeter control bit
362 -|=M8136|Y2 Perimeter control bit|SM1017|Y2 Perimeter control bit
363 -|=M8137|Y3 Perimeter control bit|SM1077|Y3 Perimeter control bit
374 +|=M8136|Y2 perimeter control bit|SM1017|Y2 Perimeter control bit
375 +|=M8137|Y3 perimeter control bit|SM1077|Y3 Perimeter control bit
364 364  
365 365  3. Comparison of word devices
366 366  
... ... @@ -370,14 +370,14 @@
370 370  |=D8105|Y1 acceleration and deceleration time (open M8135)|SD1022/SD1082|Y1 acceleration/deceleration time
371 371  |=D8106|Y2 acceleration and deceleration time (open M8135)|SD1142/SD1202|Y2 acceleration/deceleration time
372 372  |=D8107|Y3 acceleration and deceleration time (open M8135)|SD1262/SD1322|Y3 acceleration/deceleration time
373 -|=D8140|Y000 Current position low|SD880|Y000 Current position low
385 +|=D8140|Y000 current position low|SD880|Y000 Current position low
374 374  |=D8141|Y000 current position high|SD881|Y000 current position high
375 -|=D8142|Y001 Current position low|SD940|Y001 Current position low
376 -|=D8143|Y001 Current position high|SD941|Y001 Current position high
387 +|=D8142|Y001 current position low|SD940|Y001 Current position low
388 +|=D8143|Y001 current position high|SD941|Y001 Current position high
377 377  |=D8150|Y002 current position low|SD1000|Y002 current position low
378 378  |=D8151|Y002 current position high|SD1001|Y002 current position high
379 -|=D8152|Y003 Current position low|SD1060|Y003 Current position low
380 -|=D8153|Y003 Current position high|SD1061|Y003 Current position high
391 +|=D8152|Y003 current position low|SD1060|Y003 Current position low
392 +|=D8153|Y003 current position high|SD1061|Y003 Current position high
381 381  |=(% rowspan="4" %)(((
382 382  
383 383  
... ... @@ -387,7 +387,7 @@
387 387  
388 388  
389 389  
390 -Y0-Y3 Paranoid speed (single word)
402 +Y0-Y3 paranoid speed (single word)
391 391  )))|SD900, SD901|Y0 Paranoid speed (double word)
392 392  |=SD960, SD961|Y1 Paranoid speed (double word)
393 393  |=SD1020, SD1021|Y2 Paranoid speed (double word)
... ... @@ -452,7 +452,7 @@
452 452  
453 453  ⑨Support direction reversal (can set the forward direction to low level)
454 454  
455 -= **8. Communication function** =
467 += **7 Communication function** =
456 456  
457 457  **~1. Communication parameter configuration**
458 458  
... ... @@ -477,13 +477,13 @@
477 477  5V settings:
478 478  
479 479  (% class="table-bordered" %)
480 -|**SD2592 value setting**|**Protocol**
481 -|0 H|Wecon Modbus slave
482 -|2 H|ModbusRTU slave
483 -|3 H|ModbusASCII slave
484 -|10 H|User-defined protocol
485 -|20 H|ModbusRTU master station
486 -|30 H|(((
492 +|=(% scope="row" %)**SD2592 value setting**|=**Protocol**
493 +|=0 H|Wecon Modbus slave
494 +|=2 H|ModbusRTU slave
495 +|=3 H|ModbusASCII slave
496 +|=10 H|User-defined protocol
497 +|=20 H|ModbusRTU master station
498 +|=30 H|(((
487 487  ModbusASCII master
488 488  
489 489  
... ... @@ -500,34 +500,31 @@
500 500  5V address:
501 501  
502 502  (% class="table-bordered" %)
503 -|Port|Occupy|(% style="width:240px" %)Address range|(% style="width:221px" %)(((
515 +|=(% scope="row" %)Port|=Occupy|=(% style="width: 240px;" %)Address range|=(% style="width: 221px;" %)(((
504 504  10 hex Register
505 -)))|(((
517 +)))|=(((
506 506  Total reserved land Address size
507 507  )))
508 -|**Word address**| |(% style="width:240px" %) |(% style="width:221px" %) |
509 -|T0~~T511|512 WORD|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %)0|1536
510 -|C0~~C255|256 WORD|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024
511 -|LC0~~LC255|512 WORD|(% style="width:240px" %)0x0A00-0x0BFF|(% style="width:221px" %)2560|1024
512 -|HSC0~~HSC15|128 WORD|(% style="width:240px" %)0x0E00-0x0E1F|(% style="width:221px" %)3584|512
513 -|D0~~D7999|8000 WORD|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384
514 -|SD0~~SD4095|4096 WORD|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288
515 -|R0~~R30000|30000 WORD|(% style="width:240px" %)0x8000-0xF52F|(% style="width:221px" %)32768|30000
516 -|**Bit address**| |(% style="width:240px" %) |(% style="width:221px" %) |
517 -|T0~~T511|512 bit|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %) |1536
518 -|C0~~C255|256 bit|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024
519 -|LC0~~LC255|256 bit|(% style="width:240px" %)0x0A00-0x0AFF|(% style="width:221px" %)2560|1024
520 -|HSC0~~HSC15|64 bit|(% style="width:240px" %)0x0E00-0x0E0F|(% style="width:221px" %)3584|512
521 -|M0~~M8000|8192bit|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384
522 -|SM0~~SM4095|4096bit|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288
523 -|Reserved| |(% style="width:240px" %)0x8000-0xBFFF|(% style="width:221px" %) |16383
524 -|S0~~S4095|4096bit|(% style="width:240px" %)0xC000-0xCFFF|(% style="width:221px" %)49152|8192
525 -|X0~~X1023|1024bit|(% style="width:240px" %)0xE000-0xE3FF|(% style="width:221px" %)57344|4096
526 -|Y0~~Y1023|1024bit|(% style="width:240px" %)0xF000-0xF3FF|(% style="width:221px" %)61440|4096
520 +|=**Word address**| |(% style="width:240px" %) |(% style="width:221px" %) |
521 +|=T0~~T511|512 WORD|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %)0|1536
522 +|=C0~~C255|256 WORD|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024
523 +|=LC0~~LC255|512 WORD|(% style="width:240px" %)0x0A00-0x0BFF|(% style="width:221px" %)2560|1024
524 +|=HSC0~~HSC15|128 WORD|(% style="width:240px" %)0x0E00-0x0E1F|(% style="width:221px" %)3584|512
525 +|=D0~~D7999|8000 WORD|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384
526 +|=SD0~~SD4095|4096 WORD|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288
527 +|=R0~~R30000|30000 WORD|(% style="width:240px" %)0x8000-0xF52F|(% style="width:221px" %)32768|30000
528 +|=**Bit address**| |(% style="width:240px" %) |(% style="width:221px" %) |
529 +|=T0~~T511|512 bit|(% style="width:240px" %)0x0000-0x01ff|(% style="width:221px" %) |1536
530 +|=C0~~C255|256 bit|(% style="width:240px" %)0x0600-0x06ff|(% style="width:221px" %)1536|1024
531 +|=LC0~~LC255|256 bit|(% style="width:240px" %)0x0A00-0x0AFF|(% style="width:221px" %)2560|1024
532 +|=HSC0~~HSC15|64 bit|(% style="width:240px" %)0x0E00-0x0E0F|(% style="width:221px" %)3584|512
533 +|=M0~~M8000|8192bit|(% style="width:240px" %)0x1000-0x2F3F|(% style="width:221px" %)4096|16384
534 +|=SM0~~SM4095|4096bit|(% style="width:240px" %)0x5000-0x5FFF|(% style="width:221px" %)20480|12288
535 +|=Reserved| |(% style="width:240px" %)0x8000-0xBFFF|(% style="width:221px" %) |16383
536 +|=S0~~S4095|4096bit|(% style="width:240px" %)0xC000-0xCFFF|(% style="width:221px" %)49152|8192
537 +|=X0~~X1023|1024bit|(% style="width:240px" %)0xE000-0xE3FF|(% style="width:221px" %)57344|4096
538 +|=Y0~~Y1023|1024bit|(% style="width:240px" %)0xF000-0xF3FF|(% style="width:221px" %)61440|4096
527 527  
528 528  **5. LX5V added functions**
529 529  
530 530  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)
531 -
532 -
533 -
企业微信截图_16762524911554.png
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