Changes for page 08 Communication
Last modified by Iris on 2025/07/24 15:23
From version 4.6
edited by Joey
on 2022/06/18 21:59
on 2022/06/18 21:59
Change comment:
Update document after refactoring.
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. Joey1 +XWiki.Stone - Content
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... ... @@ -54,58 +54,46 @@ 54 54 55 55 (% class="table-bordered" %) 56 56 |(% style="text-align:center; vertical-align:middle" %)**Operate**|(% style="text-align:center; vertical-align:middle" %)**Command code** 57 -|(% style="text-align:center; vertical-align:middle" %)Read 16-bit 57 +|(% style="text-align:center; vertical-align:middle" %)Read 16-bit/32-bit function code|(% style="text-align:center; vertical-align:middle" %)0x03 58 58 |(% style="text-align:center; vertical-align:middle" %)Write 16-bit function code|(% style="text-align:center; vertical-align:middle" %)0x06 59 +|(% style="text-align:center; vertical-align:middle" %)Write 32-bit function code|(% style="text-align:center; vertical-align:middle" %)0x10 59 59 60 -** (1)Read function code: 0x03**61 +**Read function code: 0x03** 61 61 62 62 Request format: 63 63 64 -(% class="table-bordered" %) 65 -|(% style="text-align:center; vertical-align:middle; width:84px" %)**Address**|(% style="text-align:center; vertical-align:middle; width:104px" %)**Function code**|(% style="text-align:center; vertical-align:middle; width:179px" %)((( 66 -**Initial address high byte** 67 -)))|(% style="text-align:center; vertical-align:middle; width:162px" %)((( 68 -**Initial address low byte** 69 -)))|(% style="text-align:center; vertical-align:middle; width:194px" %)((( 70 -**Number of reads high byte** 71 -)))|(% style="text-align:center; vertical-align:middle; width:195px" %)((( 72 -**Number of reads low byte** 73 -)))|(% style="text-align:center; vertical-align:middle; width:158px" %)**CRC check code** 74 -|(% style="text-align:center; vertical-align:middle; width:84px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:104px" %)03|(% style="text-align:center; vertical-align:middle; width:179px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:162px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:194px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:195px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:158px" %)2 bytes 65 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Initial address**|(% colspan="2" %)**Number of reads**|(% rowspan="2" %)**CRC check code** 66 +|**high byte**|**low byte**|**high byte**|**low byte** 67 +|1 byte|03|1 byte|1 byte|1 byte|1 byte|2 bytes 75 75 76 76 Correct response format: 77 77 78 -(% class="table-bordered" %) 79 -|(% style="text-align:center; vertical-align:middle; width:85px" %)**Address**|(% style="text-align:center; vertical-align:middle; width:139px" %)**Function code**|(% style="text-align:center; vertical-align:middle; width:244px" %)((( 80 -**Return data number of bytes** 81 -)))|(% style="text-align:center; vertical-align:middle; width:203px" %)((( 82 -**Register 1 high byte** 83 -)))|(% style="text-align:center; vertical-align:middle; width:190px" %)((( 84 -**Register 1 low byte** 85 -)))|(% style="text-align:center; vertical-align:middle; width:72px" %)…|(% style="text-align:center; vertical-align:middle; width:143px" %)**CRC check code** 86 -|(% style="text-align:center; vertical-align:middle; width:85px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:139px" %)03|(% style="text-align:center; vertical-align:middle; width:244px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:203px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:190px" %)1 byte|(% style="text-align:center; vertical-align:middle; width:72px" %)…|(% style="text-align:center; vertical-align:middle; width:143px" %)2 bytes 71 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% rowspan="2" %)**Number of bytes of returned data**|(% colspan="2" %)**Register 1**|(% rowspan="2" %)**…**|(% rowspan="2" %)**CRC check code** 72 +|**high byte**|**low byte** 73 +|1 byte|03|1 byte|1 byte|1 byte|…|2 bytes 87 87 88 -** (2)Write function code: 0x06**75 +**Write function code: 0x06** 89 89 90 90 Request format: 91 91 92 -(% class="table-bordered" %) 93 -|(% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Register address high byte**|(% style="text-align:center; vertical-align:middle" %)**Register address low byte**|(% style="text-align:center; vertical-align:middle" %)**Data high byte**|(% style="text-align:center; vertical-align:middle" %)**Data low byte**|(% style="text-align:center; vertical-align:middle" %)**CRC check code** 94 -|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)06|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)2 bytes 79 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)((( 80 +**Register address** 81 +)))|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC check code** 82 +|**high byte**|**low byte**|**high byte**|**low byte** 83 +|1 byte|06|1 byte|1 byte|1 byte|1 byte|2 bytes 95 95 96 96 Response format: 97 97 98 -(% class="table-bordered" %)99 -| (% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Register addresshigh byte**|(% style="text-align:center; vertical-align:middle" %)**Register addresslow byte**|(% style="text-align:center; vertical-align:middle" %)**Datahigh byte**|(% style="text-align:center; vertical-align:middle" %)**Datalow byte**|(% style="text-align:center; vertical-align:middle" %)**CRC check code**100 -| (% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)06|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)2 bytes87 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Register address**|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC check code** 88 +|**high byte**|**low byte**|**high byte**|**low byte** 89 +|1 byte|06|1 byte|1 byte|1 byte|1 byte|2 bytes 101 101 102 102 If the setting is successful, the original is returned 103 103 104 -(% class="table-bordered" %) 105 -|(% rowspan="2" style="text-align:center; vertical-align:middle" %)**There should be a message interval not less than 3.5 characters at the beginning**|(% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Data**|(% style="text-align:center; vertical-align:middle" %)**CRC check code** 106 -|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)N bytes|(% style="text-align:center; vertical-align:middle" %)2 bytes 93 +|(% rowspan="2" %)**There should be a message interval not less than 3.5 characters at the beginning**|**Address**|**Function code**|**Data**|**CRC check code** 94 +|1 byte|1 byte|N bytes|2 bytes 107 107 108 -= =**CRC check**==96 +(% style="color:inherit; font-family:inherit; font-size:26px" %)**CRC check** 109 109 110 110 The servo uses a 16-bit CRC check, and the host computer must also use the same check rule, otherwise the CRC check will make mistake. When transmitting, the low bit is in the front and the high bit is at the back. The CRC code are as follows: 111 111 ... ... @@ -176,39 +176,62 @@ 176 176 177 177 == **Communication example** == 178 178 179 -**03 Function Code Read** 180 180 168 + 169 +**03 Function code read** 170 + 181 181 Read the monitoring volume U0-31 bus voltage, the Modbus register address corresponding to this variable is 7716 (0x1E24) 182 182 183 183 Request format: 184 184 185 -(% class="table-bordered" %)186 -| (% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Register addresshigh byte**|(% style="text-align:center; vertical-align:middle" %)**Register addresslow byte**|(% style="text-align:center; vertical-align:middle" %)**Datahigh byte**|(% style="text-align:center; vertical-align:middle" %)**Datalow byte**|(% style="text-align:center; vertical-align:middle" %)**CRC check code**187 -| (% style="text-align:center; vertical-align:middle" %)1byte|(% style="text-align:center; vertical-align:middle" %)06|(% style="text-align:center; vertical-align:middle" %)1byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1 byte|(% style="text-align:center; vertical-align:middle" %)1byte|(% style="text-align:center; vertical-align:middle" %)2bytes175 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Register address**|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC check code** 176 +|**high byte**|**low byte**|**high byte**|**low byte** 177 +|01|03|1E|24|00|01|C2 29 188 188 189 189 The slave responds normally: 190 190 191 -(% class="table-bordered" %)192 -| (% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Number of bytes**|(% style="text-align:center; vertical-align:middle" %)**Datahigh byte**|(% style="text-align:center; vertical-align:middle" %)**Datalow byte**|(% style="text-align:center; vertical-align:middle" %)**CRC low byte**|(% style="text-align:center; vertical-align:middle" %)**CRC high byte**193 -| (% style="text-align:center; vertical-align:middle" %)01|(% style="text-align:center; vertical-align:middle" %)03|(% style="text-align:center; vertical-align:middle" %)02|(% style="text-align:center; vertical-align:middle" %)0C|(% style="text-align:center; vertical-align:middle" %)26|(% style="text-align:center; vertical-align:middle" %)3C|(%style="text-align:center; vertical-align:middle" %)9E181 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% rowspan="2" %)**Number of bytes**|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC high byte** 182 +|**high byte**|**low byte** 183 +|01|03|02|0C|4F|FC B0 194 194 195 -The value read is 0x0C 26, which means that the voltage is 311.0V.185 +For example: The value read is 0x0C4F, which means that the voltage is 315.1V. 196 196 187 + 188 + 197 197 **06 Function Code Write** 198 198 199 -P1-10 the maximum speed threshold is set to 3000rpm. This variable corresponds to the Modbus 191 +P1-10 the maximum speed threshold is set to 3000rpm. This variable corresponds to the Modbus address: 266 (0x010A) 200 200 201 201 Request format: 202 202 203 -(% class="table-bordered" %)204 -| (% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Register addresshigh byte**|(% style="text-align:center; vertical-align:middle" %)**Register addresslow byte**|(% style="text-align:center; vertical-align:middle" %)**Datahigh byte**|(% style="text-align:center; vertical-align:middle" %)**Datalow byte**|(% style="text-align:center; vertical-align:middle" %)**CRC low byte**205 -| (% style="text-align:center; vertical-align:middle" %)01|(% style="text-align:center; vertical-align:middle" %)06|(% style="text-align:center; vertical-align:middle" %)01|(% style="text-align:center; vertical-align:middle" %)0A|(% style="text-align:center; vertical-align:middle" %)0B|(% style="text-align:center; vertical-align:middle" %)B8|(% style="text-align:center; vertical-align:middle" %)AF195 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Register address**|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC check code** 196 +|**high byte**|**low byte**|**high byte**|**low byte** 197 +|01|06|01|0A|0B|B8|AF, 76 206 206 207 207 The slave responds normally: 208 208 209 -|(% style="text-align:center; vertical-align:middle" %)**Address**|(% style="text-align:center; vertical-align:middle" %)**Function code**|(% style="text-align:center; vertical-align:middle" %)**Register address high byte**|(% style="text-align:center; vertical-align:middle" %)**Register address low byte**|(% style="text-align:center; vertical-align:middle" %)**Data high byte**|(% style="text-align:center; vertical-align:middle" %)**Data low byte**|(% style="text-align:center; vertical-align:middle" %)**CRC low byte** 210 -|(% style="text-align:center; vertical-align:middle" %)01|(% style="text-align:center; vertical-align:middle" %)06|(% style="text-align:center; vertical-align:middle" %)01|(% style="text-align:center; vertical-align:middle" %)0A|(% style="text-align:center; vertical-align:middle" %)0B|(% style="text-align:center; vertical-align:middle" %)B8|(% style="text-align:center; vertical-align:middle" %)AF 201 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Register address**|(% colspan="2" %)**Data**|(% rowspan="2" %)**CRC check code** 202 +|**high byte**|**low byte**|**high byte**|**low byte** 203 +|01|06|01|0A|0B|B8|AF, 76 211 211 205 + 206 + 207 +**10 Function code write** 208 + 209 +P07-09 set the 1st segment position to 2000, and this variable corresponds to the Modbus address: 1801 (0x0709). 210 + 211 +Request format: 212 + 213 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Initial address**|(% colspan="2" %)**Number of register**|(% rowspan="2" %)**Number of data**|(% colspan="2" %)**Data 1**|(% colspan="2" %)**Data 2**|(% colspan="2" %)**CRC check code** 214 +|**high byte**|**low byte**|**high byte**|**low byte**|**high byte**|**low byte**|**high byte**|**low byte**|**high byte**|**low byte** 215 +|01|10|07|09|00|02|04|00|00|07|D0|16|59 216 + 217 +The slave responds normally: 218 + 219 +|(% rowspan="2" %)**Address**|(% rowspan="2" %)**Function code**|(% colspan="2" %)**Register address**|(% colspan="2" %)**Data**|(% colspan="2" %)**CRC check code** 220 +|**high byte**|**low byte**|**high byte**|**low byte**|**high byte**|**low byte** 221 +|01|10|07|09|00|02|90|BE 222 + 212 212 = **Servo communication parameter setting** = 213 213 214 214 (% style="text-align:center" %) ... ... @@ -228,14 +228,11 @@ 228 228 229 229 The data bit check methods of servo communication are: 230 230 231 -Odd parity 242 +* Odd parity 243 +* Even parity 244 +* No parity 245 +* The stop bit: 1 stop bit and 2 stop bits. 232 232 233 -Even parity 234 - 235 -No parity 236 - 237 -The stop bit: 1 stop bit and 2 stop bits. 238 - 239 239 The data frame format of the servo and the host computer must be consistent, otherwise the communication cannot be carried out. 240 240 241 241 **(4) Set that whether the function code changed by Modbus communication is written into EEPROM in real time [P12-4]** ... ... @@ -263,12 +263,12 @@ 263 263 **Setting method** 264 264 )))|(% style="text-align:center; vertical-align:middle; width:186px" %)((( 265 265 **Effective time** 266 -)))|(% style="text-align:center; vertical-align:middle; width:130px" %)**Default value**|(% style="text-align:center; vertical-align:middle; width:132px" %)**Range**|(% style="text-align:center; vertical-align:middle; width: 335px" %)**Definition**|(% style="text-align:center; vertical-align:middle; width:189px" %)**Unit**274 +)))|(% style="text-align:center; vertical-align:middle; width:130px" %)**Default value**|(% style="text-align:center; vertical-align:middle; width:132px" %)**Range**|(% style="text-align:center; vertical-align:middle; width:252px" %)**Definition**|(% style="text-align:center; vertical-align:middle; width:85px" %)**Unit** 267 267 |(% style="text-align:center; vertical-align:middle; width:121px" %)P12-02|(% style="text-align:center; vertical-align:middle; width:205px" %)Baud rate|(% style="text-align:center; vertical-align:middle; width:187px" %)((( 268 268 Operation setting 269 269 )))|(% style="text-align:center; vertical-align:middle; width:186px" %)((( 270 270 Effective immediately 271 -)))|(% style="text-align:center; vertical-align:middle; width:130px" %)2|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 5|(% style="width: 335px" %)(((279 +)))|(% style="text-align:center; vertical-align:middle; width:130px" %)2|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 5|(% style="width:252px" %)((( 272 272 0-2400bps 273 273 274 274 1-4800bps ... ... @@ -280,12 +280,12 @@ 280 280 4-38400bps 281 281 282 282 5-57600bp 283 -)))|(% style="text-align:center; vertical-align:middle; width: 189px" %)-291 +)))|(% style="text-align:center; vertical-align:middle; width:85px" %)- 284 284 |(% style="text-align:center; vertical-align:middle; width:121px" %)P12-03|(% style="text-align:center; vertical-align:middle; width:205px" %)Serial data format|(% style="text-align:center; vertical-align:middle; width:187px" %)((( 285 285 Operation setting 286 286 )))|(% style="text-align:center; vertical-align:middle; width:186px" %)((( 287 287 Effective immediately 288 -)))|(% style="text-align:center; vertical-align:middle; width:130px" %)0|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 3|(% style="width: 335px" %)(((296 +)))|(% style="text-align:center; vertical-align:middle; width:130px" %)0|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 3|(% style="width:252px" %)((( 289 289 0: 1 stop bit, no parity 290 290 291 291 1: 1 stop bit, odd parity ... ... @@ -293,16 +293,16 @@ 293 293 2: 1 stop bit, even parity 294 294 295 295 3: 2 stop bits, no parity 296 -)))|(% style="text-align:center; vertical-align:middle; width: 189px" %)-304 +)))|(% style="text-align:center; vertical-align:middle; width:85px" %)- 297 297 |(% style="text-align:center; vertical-align:middle; width:121px" %)P12-04|(% style="text-align:center; vertical-align:middle; width:205px" %)Modbus communication data is written into EEPROM|(% style="text-align:center; vertical-align:middle; width:187px" %)((( 298 298 Operation setting 299 299 )))|(% style="text-align:center; vertical-align:middle; width:186px" %)((( 300 300 Effective immediately 301 -)))|(% style="text-align:center; vertical-align:middle; width:130px" %)0|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 1|(% style="width: 335px" %)(((309 +)))|(% style="text-align:center; vertical-align:middle; width:130px" %)0|(% style="text-align:center; vertical-align:middle; width:132px" %)0 to 1|(% style="width:252px" %)((( 302 302 0: Do not write to EEPROM, and do not store after power failure; 303 303 304 304 1: Write to EEPROM, power-down storage. 305 -)))|(% style="text-align:center; vertical-align:middle; width: 189px" %)-313 +)))|(% style="text-align:center; vertical-align:middle; width:85px" %)- 306 306 307 307 = **Modbus communication variable address and value** = 308 308 ... ... @@ -310,24 +310,21 @@ 310 310 311 311 Modbus registers are divided into two categories: 312 312 313 -~1. The first category is servo function code parameters (address: 0x0001 to 0x0D08), this part of the register is readable and writable (that is, 0x03 and 0x06 are supported); 321 +1. The first category is servo function code parameters (address: 0x0001 to 0x0D08), this part of the register is readable and writable (that is, 0x03 and 0x06 are supported); 322 +1. The second category is the monitoring volume of the servo (address: 0x1E01 to 0x2010), this part of the register is only readable (0x03 function is supported). 314 314 315 -2. The second category is the monitoring volume of the servo (address: 0x1E01 to 0x2010), this part of the register is only readable (0x03 function is supported). 316 - 317 317 **Servo function code representation: PXX-YY.** 318 318 319 -XX: represents the function code group number, 326 +* XX: represents the function code group number, 327 +* YY: represents the bias within the function code group;; 320 320 321 -YY: represents the bias within the function code group;; 322 - 323 323 During servo communication, the communication address of the function code is a 16-bit address, which is composed of the function code group number (high 8 bits) + group bias (low 8 bits), for example, the Modbus address corresponding to P12-1 (servo address) is 0x0C01. 324 324 325 325 **Servo monitor volume representation: Uxx-yy.** 326 326 327 -xx: represents the monitoring volume group number, 333 +* xx: represents the monitoring volume group number, 334 +* yy: represents the bias within the monitoring volume group; 328 328 329 -yy: represents the bias within the monitoring volume group; 330 - 331 331 During Modbus communication, the starting address of the monitoring volume is 0x1E01, and the conversion relationship of the address is similar to the representation way of the function code. 332 332 333 333 For example, U0-01 (servo status) corresponds to the Modbus address is 0x1E01. ... ... @@ -352,18 +352,20 @@ 352 352 353 353 When writing function codes with signed numbers, you need to convert the pre-written data into hexadecimal complements. The conversion rules are as follows: 354 354 355 -~1. The data is positive or 0: complement code = original code 360 +1. The data is positive or 0: complement code = original code 361 +1. The data is negative: complement code = 0xFFFF-absolute value of data + 0x0001 356 356 357 - 2.Thedata is negative: complement code = 0xFFFF-absolute value of data + 0x0001363 +For example: 358 358 359 -For example,The 16-bit signed positive number +100, the original code is 0x0064, and the complement is: 0x0064. The 16-bit signed positive number -100, its hexadecimal complement is: 0xFFFF-0x0064 + 0x0001 = 0xFF9C. 365 +* The 16-bit signed positive number +100, the original code is 0x0064, and the complement is: 0x0064. 366 +* The 16-bit signed positive number -100, its hexadecimal complement is: 0xFFFF-0x0064 + 0x0001 = 0xFF9C. 367 +* If it is an unsigned number, just pass it directly according to its original code. For example, if the decimal number is 32768, write 0x8000 directly. 360 360 361 -If it is an unsigned number, just pass it directly according to its original code. For example, if the decimal number is 32768, write 0x8000 directly. 362 - 363 363 == **Numerical unit description** == 364 364 365 365 Some values have units and decimals, such as 0.1%, 0.1Hz, 0.01ms, and the corresponding value conversion is required when reading and writing. The methods are as follows: 366 366 367 -~1. When the unit is 0.1%: 1 represents 0.1%, 10 represents 1.0%, 1000 represents 100.0%. Therefore, writing 1000 means setting to 100.0%; on the contrary, if it is reading 1000, it means that the value is 100.0%; 373 +1. When the unit is 0.1%: 1 represents 0.1%, 10 represents 1.0%, 1000 represents 100.0%. Therefore, writing 1000 means setting to 100.0%; on the contrary, if it is reading 1000, it means that the value is 100.0%; 374 +1. When the unit is 0.01ms: 1 means 0.01ms, 50 means 0.5ms, 10000 means 100ms. Therefore, writing 1000 means setting to 10.00ms; on the contrary, if 1000 is read, it means 10.00ms; 368 368 369 - 2. When the unit is 0.01ms: 1 means 0.01ms, 50 means 0.5ms, 10000 means 100ms.Therefore,writing 1000 means setting to10.00ms; onthecontrary,if 1000 is read, it means 10.00ms; The otherunits can be deduced by this, and integer remains unchanged.376 +The other units can be deduced by this, and integer remains unchanged.