Changes for page 4 Common function of VB
Last modified by Theodore Xu on 2025/02/27 09:58
From version 28.1
edited by Theodore Xu
on 2024/04/22 14:31
on 2024/04/22 14:31
Change comment:
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To version 18.1
edited by Theodore Xu
on 2024/04/09 15:18
on 2024/04/09 15:18
Change comment:
There is no comment for this version
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... ... @@ -355,27 +355,26 @@ 355 355 356 356 = **Constant pressure water supply** = 357 357 358 -The following example uses a current sensor to simulate a water pressure test, the sensor specification is 4-20mA current signal, the range is 16 bar. use the sensor to connect to the AI2 terminal port of the VB. 359 -Firstly please check the software version of **F7.11**, **F7.11 **is software version, if the **F7.11 **is greater than 2.064, please use A4 parameter group, A4 parameter group is special parameter for constant pressure water supply project. 360 -F0.20=1 Factory data reset 358 + 359 +The following example uses a current transducer to simulate a water pressure test, the transducer specification is 4-20mA current signal, the range is 16 bar. use the transducer to connect to the AI2 terminal port of the VB. 360 +Please check the software version of F7.11 inverter first, if the software version is greater than 2.064, please use A4 parameter group, A4 parameter group is special parameter for constant pressure water supply project. 361 +F0.20=1 factory data reset 361 361 A4.00=1 362 -A4.01= Set pressure363 +A4.01=set pressure 363 363 A4.03=Sensor range 364 364 A4.04=0 365 365 366 366 If the value of F7.11 is less than or equal to 2.064, use PID parameter group F9. 367 -F0.20=1 Factory data reset368 +F0.20=1 factory data reset 368 368 F0.03=8 369 369 F5.23=2 370 370 F9.01=Upper limit water pressure 371 371 F9.02=1 (AI2) 372 372 F9.28=1 373 -F9.29= Targetvalue374 +F9.29=Set pressure 374 374 F9.31=Lower limit water pressure 376 +In the parameter setting of group F9, 20mA is the maximum value of the transducer with a range of 16bar, and F9.01/F9.29/F9.31 are the setting parameters for the water pressure in the VB in percentage. For example when the inverter is required to keep the pressure at 8bar, modify F9.29=50%. F9.01 is the upper limit of water pressure setting, it needs to be greater than or equal to F9.29, it is recommended to set F9.29=F9.01 375 375 376 - 377 -In the parameter setting of group F9, 20mA is the maximum value of the transducer with a range of 16bar, and F9.01/F9.29/F9.31 are the setting parameters for the water pressure in the VB in percentage. For example when the inverter is required to keep the pressure at 8bar, modify F9.29=50%. F9.01 is the upper limit of water pressure setting, it is recommended to set F9.29=F9.01,of course you can set F9.01=80%,it needs to be greater than or equal to F9.29. If when the control effect of the inverter is slow or the descent time is too long, try reducing the integration time: F9.06 = 0.5 or 1.0. 378 - 379 379 = **PID function** = 380 380 381 381 (% style="text-align:center" %) ... ... @@ -417,6 +417,10 @@ 417 417 418 418 Control operation command address: 2000H (premise F0.01=2) 419 419 419 += **Safety and precautions** = 420 + 421 +~1. Familiar with product standard technical specifications. Please refer to the manual 422 + 420 420 = **Grounding** = 421 421 422 422 ~1. Understand the meaning and function of the ground wire and connect it correctly. ... ... @@ -442,78 +442,20 @@ 442 442 443 443 Braking resistor 444 444 445 -= ** Installationguidancerequiredby EMC** =448 += **Power and current value** = 446 446 447 - Theinput terminalof the inverterhasEMC screw accessoption.450 + ~1. Familiar with the rated current of the inverter in different power ranges, please refer to the manual 448 448 449 -= Torque mode control windingproject =452 += **Braking resistor** = 450 450 451 - Torquemode can onlybevectorcontrol,torquecontrolreferstothestrength,thatinthequemodeF0.03ishe default value,modify F0.03 for othervaluesinvalid.454 + ~1. Familiar with the selection of braking resistor. Under what conditions do you need to install a braking resistor? How to install the braking resistor? 452 452 453 - Debugging ideas:456 +Braking resistors are installed on the and PB ends of the inverter (built-in braking unit) 454 454 455 - ~1.According to theapplicationrequirements of the torquecommand and the upperlimitof the frequency.458 += **Fault code and troubleshooting** = 456 456 457 - 2.Set the frequencyacceleration/deceleration time F0.18/F0.19andthetorqueacceleration/decelerationtime F3.14/F3.15, the torqueacceleration/decelerationimeislessthanorequal to thefrequencyacceleration/deceleration time.460 + ~1. Familiar with various fault codes and countermeasures to deal with faults. 458 458 459 - 3.Start the motor and observe whether the motor can run or not, if it can't run normally, rotate the motor with externalforce,if it canbestarted, it is judgedtobe necessarytoincrease the static friction coefficient compensation.462 += **Installation guidance required by EMC** = 460 460 461 -4. After the motor is running, observe the motor running state, if the motor is blocked, check whether it is shaking when it is blocked, if it is shaking, increase F3.07, generally 0.01 amplitude increment. 462 - 463 -5. When the torque command F3.10 is lower than the percentage of "no-load current / rated current", the running frequency is about: rated frequency * torque command percentage * rated current / no-load current. 464 - 465 -6. Static Friction Compensation Logic: During startup, the torque command 1 = F3.11* F3.24 /100 is passed to the performance; after a maintenance time of F3.25 seconds, it reverts to torque command 2 = F3.11; the switching of torque commands 1 /2 occurs through the torque acceleration and deceleration times F3.14 / F3.15; 466 - 467 -7. Auxiliary debugging parameters: filter coefficient F3.07 and static friction compensation F3.24/ F3.25. 468 - 469 -F0.00=0 Vector control 470 - 471 -F0.18=2.0 Acceleration time 472 - 473 -F0.19=2.0 Deceleration time 474 - 475 -F2.01=Motor rated power 476 - 477 -F2.02=Motor rated voltage 478 - 479 -F2.03=Rated motor current 480 - 481 -F2.04=Rated motor frequency 482 - 483 -F2.05=Rated motor speed 484 - 485 -F2.11=1 Static tuning 486 - 487 -F3.01=0.2 Speed loop integration time 488 - 489 -F3.07=0.005 Speed loop filter coefficient 490 - 491 -F3.09=1 Torque control 492 - 493 -F3.10=1 Torque control upper limit source 494 - 495 -F3.11=200 Torque upper limit setting 496 - 497 -F3.12=50 Torque control maximum frequency 498 - 499 -F3.14=1.2 Torque control acceleration time 500 - 501 -F3.15=1.2 Torque control deceleration time 502 - 503 -F3.16=120 Torque stiffness factor 504 - 505 -Torque control commissioning instructions: 506 - 507 -F0.18: Frequency acceleration time 508 - 509 -F0.19: Frequency deceleration time 510 - 511 -F3.14: Torque acceleration time 512 - 513 -F3.15: Torque deceleration time 514 - 515 -F3.07: Frequency low-pass filtering factor 516 - 517 -F3.24: Static friction compensation 518 - 519 -F3.25: Static friction compensation time 464 + The input terminal of the inverter has EMC screw access option.