Changes for page 08 Function parameter details
Last modified by Theodore Xu on 2025/02/21 14:13
From version 2.1
edited by Leo Wei
on 2022/06/08 14:52
on 2022/06/08 14:52
Change comment:
Renamed from xwiki:2\. User Manual.WECON VB AC Drive User Manual.2\.7 Function parameter details.WebHome
To version 7.1
edited by Jim(Forgotten)
on 2023/04/13 09:56
on 2023/04/13 09:56
Change comment:
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... ... @@ -1,1 +1,1 @@ 1 - 2.7Function parameter details1 +8 Function parameter details - Parent
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... ... @@ -1,1 +1,1 @@ 1 - 2\.User Manual.WECONVB AC Drive User Manual.WebHome1 +VFD.VB AC Drive User Manual.WebHome - Author
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. admin1 +XWiki.Jim - Content
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... ... @@ -1,4 +1,4 @@ 1 -= 6.1 F0 group basic parameters =1 += 1 F0 group basic parameters = 2 2 3 3 (% class="table-bordered" %) 4 4 |(% rowspan="3" %)**F0.00**|(% colspan="2" %)Motor control mode|Default|0 ... ... @@ -59,13 +59,13 @@ 59 59 60 60 Select the main source of the AC drive’s input frequency. There are 10 main frequency sources: 61 61 62 -0: Digital setting (non-retentive at power failure) 62 +**0:** Digital setting (non-retentive at power failure) 63 63 64 64 The initial value is 0. The frequency can be increased or decreased by the pulse knob, and the set frequency value of the inverter can be changed by the ▲/▼ keys of the keyboard (or UP and DOWN of the multi-function input terminals). 65 65 66 66 Non-retentive means that after the AC drive is powered off, the set frequency value will be restored to 0; it will be cleared after switching as the frequency source, so this parameter should not be the object of frequency source switching. 67 67 68 -1: Digital setting (retentive at power failure) 68 +**1: **Digital setting (retentive at power failure) 69 69 70 70 The initial value is the value of F0.08 "Keypad setting frequency". 71 71 ... ... @@ -73,27 +73,33 @@ 73 73 74 74 Retentive means that when the AC drive is powered on again after power failure, the set frequency is the value before the last power failure (note that it is used in conjunction with F0.23). 75 75 76 -2: AI1 76 +**2: **AI1 77 77 78 -3: AI2 78 +**3:** AI2 79 79 80 80 Means that the frequency is determined by the analog input terminal. The standard unit provides 2 analog input terminals (AI1, AI2), among which AI1 is 0V~~10V voltage input, AI2 can be 0V~~10V voltage input, or 4mA~~20mA current input, Selected by jumper J8 on the control board. 81 81 82 -4/5: Reserved 82 +**4/5: **PULSE setting(Reserved) 83 83 84 - 6:Multi-stagespeed84 +The set frequency is given by the terminal pulse. 85 85 86 +Pulse given signal specifications: voltage range 9V~~30V, frequency range 0kHz~~100kHz. 87 + 88 +Note: Pulse reference can only be input from the multi-function input terminal, __**requires custom control board development.**__ 89 + 90 +**6: **Multi-stage speed 91 + 86 86 Select multi-stage speed operation mode. Need to set the F5 group "input terminals" and FD group "multi-stage speed and PLC" parameters to determine the corresponding relationship between the given signal and the given frequency. 87 87 88 -7: Simple PLC 94 +**7: **Simple PLC 89 89 90 90 Select simple PLC mode. When the frequency source is simple PLC, you need to set the FD group "multi-speed and PLC" parameters to determine the set frequency. 91 91 92 -8: PID 98 +**8: **PID 93 93 94 94 Select process PID control. At this time, you need to set the F9 group "PID function of process control ". The running frequency of the inverter is the frequency value after PID action. For the meaning of PID given source, given amount, feedback source, etc., please refer to the introduction of "PID Function of process control" in F9 group. 95 95 96 -9: Communication setting 102 +**9: **Communication setting 97 97 98 98 Means that the main frequency source is given by the upper machine through communication. 99 99 ... ... @@ -381,7 +381,7 @@ 381 381 382 382 The decimal place of the control frequency related instruction, the default is 2 decimal places. After the parameter is set, the decimal place of the parameter associated with the frequency is automatically adjusted. This parameter is not affected by F0.20. 383 383 384 -= 6.2 F1 group start & stop control =390 += 2 F1 group start & stop control = 385 385 386 386 (% class="table-bordered" %) 387 387 |(% rowspan="4" %)**F1.00**|(% colspan="2" %)Starting mode|Default|0 ... ... @@ -541,7 +541,7 @@ 541 541 542 542 Setting whether the AC drive has output when running frequency is 0 543 543 544 -= 6.3 F2 group motor parameters =550 += 3 F2 group motor parameters = 545 545 546 546 (% class="table-bordered" %) 547 547 |(% rowspan="5" %)**F2.00**|(% colspan="2" %)Motor type selection|Default|0 ... ... @@ -654,7 +654,7 @@ 654 654 655 655 The main and auxiliary winding currents can be changed by adjusting the single-phase motor turns ratio. Generally, reducing the single-phase motor turns ratio can increase the main winding current, reduce the auxiliary winding current, and reduce the motor heating (only effective when F2.00 = 3) . 656 656 657 -= 6.4 F3 group vector control parameters =663 += 4 F3 group vector control parameters = 658 658 659 659 F3 group function codes are only valid in vector control mode, that is, it is valid when F0.00=0, and it is invalid when F0.00=1. 660 660 ... ... @@ -791,7 +791,7 @@ 791 791 792 792 During startup, torque command 1 = F3.11 * F3.24 / 100; after maintaining time F3.25 seconds, it will be restored to torque command 2 = F3.11; torque command 1/2 switching requires torque acceleration and deceleration time F3.14/F3.15. 793 793 794 -= 6.5 F4 group v/f control parameters =800 += 5 F4 group v/f control parameters = 795 795 796 796 This group of function codes is only valid for V/F control (F0.00=1), and invalid for vector control. 797 797 ... ... @@ -960,7 +960,7 @@ 960 960 961 961 According to the actual use, select the situation where the AVR function is enabled. 962 962 963 -= 6 .6F5 group input terminals =969 += 6 F5 group input terminals = 964 964 965 965 The standard unit of the VB series inverter has 6 multi-function digital input terminals and 2 analog input terminals. 966 966 ... ... @@ -1095,7 +1095,7 @@ 1095 1095 1096 1096 0: Two-line mode 1: This mode is the most commonly used two-line mode. The FWD and REV terminal commands determine the forward and reverse of the motor. 1097 1097 1098 -1: Two-wire mode 2: REVis the enable terminal when using this mode. The direction is determined by the state of theFWD.1104 +1: Two-wire mode 2: FWD is the enable terminal when using this mode. The direction is determined by the state of the REV. 1099 1099 1100 1100 2: Three-line mode 1: This mode Din is the enable terminal, and the direction is controlled by FWD and REV respectively. 1101 1101 ... ... @@ -1151,20 +1151,6 @@ 1151 1151 The function of AI2 is similar to the setting method of AI1. 1152 1152 1153 1153 (% class="table-bordered" %) 1154 -|(% rowspan="2" %)**F5.28**|PULSE INPUT minimum input|Default|0.00kHz 1155 -|Setting range|(% colspan="2" %)0.00kHz~~F5.30 1156 -|(% rowspan="2" %)**F5.29**|Percentage rate of PULSE INPUT minimum input|Default|0.0% 1157 -|Setting range|(% colspan="2" %)-100.00%~~100.0% 1158 -|(% rowspan="2" %)**F5.30**|PULSE INPUT maximum input|Default|50.00kHz 1159 -|Setting range|(% colspan="2" %)F5.28~~50.00kHz 1160 -|(% rowspan="2" %)**F5.31**|Percentage rate of PULSE INPUT maximum input|Default|100.0% 1161 -|Setting range|(% colspan="2" %)-100.00%~~100.0% 1162 -|(% rowspan="2" %)**F5.32**|PULSE INPUT filter time|Default|0.10s 1163 -|Setting range|(% colspan="2" %)0.00s~~10.00s 1164 - 1165 -This group of function codes defines the corresponding relationship when pulse is used as the frequency setting method. Pulse frequency input can only be input through DI6 channel. The application of this group of functions is similar to that of AI1. 1166 - 1167 -(% class="table-bordered" %) 1168 1168 |(% rowspan="2" %)**F5.33**|DI1 enable delay time|Default|0.0s 1169 1169 |Setting range|(% colspan="2" %)0.0s~~3600.0s 1170 1170 |(% rowspan="2" %)**F5.34**|DI1 disable delay time|Default|0.0s ... ... @@ -1202,7 +1202,7 @@ 1202 1202 1203 1203 Low Level:The connection between DI terminal and COM is invalid, while disconnection is valid. 1204 1204 1205 -= 6.7 F6 group output terminals =1197 += 7 F6 group output terminals = 1206 1206 1207 1207 The standard unit of VB series inverter has 2 multi-function relay output terminals, 1 FM terminal and 2 multi-function analog output terminals. 1208 1208 ... ... @@ -1456,8 +1456,14 @@ 1456 1456 1457 1457 For the second output, the parameter setting method is the same as F6.28~~F6.32. 1458 1458 1459 -= 6.8 F7 group keypad display = 1451 +(% class="table-bordered" %) 1452 +|(% rowspan="2" %)**F6.38**|The setting time of timer|Default|0 1453 +|Setting range|(% colspan="3" %)0.00s~~100.0s 1460 1460 1455 +Set the timer setting time 1456 + 1457 += 8 F7 group keypad display = 1458 + 1461 1461 (% class="table-bordered" %) 1462 1462 |(% rowspan="4" %)**F7.00**|(% colspan="2" %)LCD keypad parameter copy|Default|0 1463 1463 |(% rowspan="3" %)Setting range|0|(% colspan="2" %)No operation ... ... @@ -1667,7 +1667,7 @@ 1667 1667 |(% rowspan="2" %)**F7.15**|Performance software version|Default|- 1668 1668 |Setting range|(% colspan="2" %)- 1669 1669 1670 -= 6.9 F8 group auxiliary functions =1668 += 9 F8 group auxiliary functions = 1671 1671 1672 1672 (% class="table-bordered" %) 1673 1673 |(% rowspan="2" %)**F8.00**|JOG running frequency|Default|2.00Hz ... ... @@ -1967,7 +1967,7 @@ 1967 1967 1968 1968 Enabling the fast current limiting function can minimize the inverter's overcurrent fault and protect the inverter from uninterrupted operation. After entering the fast current-limiting state for a period of time, a fast current-limiting fault (Err40) will be reported, indicating that the inverter is overloaded. Please refer to the handling of Err10. 1969 1969 1970 -= 6.10 F9 group pid function of process control =1968 += 10 F9 group pid function of process control = 1971 1971 1972 1972 PID control is a common method used in process control. It adjusts the output frequency of the inverter by performing proportional, integral, and differential calculations on the difference between the feedback signal of the controlled quantity and the target quantity signal to form a negative feedback system. The controlled amount is stable at the target amount. It is suitable for process control such as flow control, pressure control and temperature control. The basic control block diagram is as follows: 1973 1973 ... ... @@ -2169,9 +2169,8 @@ 2169 2169 2170 2170 Figure 6-10-2 PID sleep and wake-up timing diagram 2171 2171 2170 += 11 FA group faults & protection = 2172 2172 2173 -= 6.11 FA group faults & protection = 2174 - 2175 2175 (% class="table-bordered" %) 2176 2176 |(% rowspan="3" %)**FA.00**|Motor overload protection selection|Default|1 2177 2177 |(% rowspan="2" %)Setting range|0|Disabled ... ... @@ -2404,7 +2404,7 @@ 2404 2404 2405 2405 Note: The function code display data is H.xxx, where H. means hexadecimal data. 2406 2406 2407 -= 6.12 FB group frequency swing, length fixing and counting =2404 += 12 FB group frequency swing, length fixing and counting = 2408 2408 2409 2409 The swing frequency function is suitable for textile, chemical fiber and other industries and occasions that require traverse and winding functions. 2410 2410 ... ... @@ -2491,7 +2491,7 @@ 2491 2491 2492 2492 Figure 6-12-2 Schematic diagram of set count value given and designated count value given 2493 2493 2494 -= 6.13 FC group communication parameters =2491 += 13 FC group communication parameters = 2495 2495 2496 2496 (% class="table-bordered" %) 2497 2497 |(% rowspan="2" %)**FC.00**|Local address|Default|1 ... ... @@ -2542,7 +2542,7 @@ 2542 2542 2543 2543 Used to determine the output unit of the current value when the communication reads the output current. 2544 2544 2545 -= 6.14 FD group muti-stage speed and simple plc functions =2542 += 14 FD group muti-stage speed and simple plc functions = 2546 2546 2547 2547 The simple PLC function is that the inverter has a programmable controller (PLC) built in to complete automatic control of multi-segment frequency logic. The running time, running direction and running frequency can be set to meet the technological requirements. This series of inverters can realize 16-speed change control, and there are 4 kinds of acceleration and deceleration time for selection. When the set PLC completes a cycle, an ON signal can be output from the multifunctional digital output terminals DO1 and DO2 or multifunctional relay 1 and relay 2. See F1.02~~F1.05 for details. When the frequency source selection F0.07, F0.03, F0.04 is determined as the multi-speed operation mode, it is necessary to set FD.00~~FD.15 to determine its characteristics. 2548 2548 ... ... @@ -2701,7 +2701,7 @@ 2701 2701 2702 2702 This parameter determines the target quantity given channel of multi-speed 0. 2703 2703 2704 -= 6.15 FE group user password management =2701 += 15 FE group user password management = 2705 2705 2706 2706 (% class="table-bordered" %) 2707 2707 |(% rowspan="2" %)**FE.00**|User password|Default|0