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6.6.3
T2: Shutdown delay
This sets the delay after which the inverter shuts down after shutdown conditions have been reached:
system pressure and flow at minimum values.
T2 can be set between 5 and 120 s. The default setting is 10 s.
6.6.4
GP: Proportional gain coefficient
The proportional gain should generally be increased for elastic systems (wide and PVC pipelines) and
reduced in the case of rigid systems (narrow and steel pipelines).
To maintain constant system pressure, the inverter performs a PI check on the measured pressure error. On
the basis of this error, the inverter calculates the power to supply to the electric pump. The behaviour of this
check depends on the set parameters GP and GI. To meet the different requirements of the various types of
hydraulic systems where the system may operate, the inverter enables the selection of parameters that are
different from the default settings.
On virtually all systems, the factory setting of parameters GP and GI
are optimal.
However, in the event of problems with regulation, these settings may be modified as required.
6.6.5
GI: Integral gain coefficient
In the event of significant pressure drops on sudden increases in flow, or a slow system response, increase
the value of GI. Otherwise, in the event of pressure oscillations around the setpoint, reduce the value of GI.
NOTE: A typical example in which the value of GI should be reduced is that in which the inverter is located
far from the electric pump. This distance causes hydraulic elasticity which influences control of PI and
therefore pressure regulation.
IMPORTANT: To obtain satisfactory pressure settings, both values GP and GI should be adjusted.
6.6.6
FS: Maximum rotation frequency
This sets the maximum pump rotation frequency.
This sets a maximum rpm limit and can be set between FN and FN - 20%.
FS, in any conditions of regulation, ensures that the electric pump is never controlled at a frequency higher
than the set value.
FS can be automatically reconfigured following modifications to FN, when the above ratio is not verified (e.g.
if the value of FS is less than FN - 20%, FS will be reset to FN - 20%).
6.6.7
FL: Minimum rotation frequency
FL is used to set the minimum pump rotation frequency. The minimum admissible value is 0 [Hz], and the
maximum is 80% of FN; for example, if FN = 50 [Hz], FL can be set between 0 and 40[Hz].
FL can be automatically reconfigured following modifications to FN, when the above ratio is not verified (e.g.
if the value of FL is greater than 80% of the set FN value, FL will be reset to 80% of FN).
Содержание MCE-55/P
Страница 278: ...274 1 276 2 279 3 280 4 282 5 283 6 4 20 284 7 285 8 286 9 287 10 290 11 290 12 292...
Страница 279: ...275 IEC 60634...
Страница 280: ...276 1 6 MCE 55 P e MCE 30 P 1 1 1...
Страница 282: ...278 2 5 2 1 2 1 2 2 1 1 2 1 2 L L L 2 2 4 15...
Страница 283: ...279 2 2 2 1 2 2 1 1 4 3 1 RST 2 2 4 3 1 8 3 3...
Страница 284: ...280 AS 3 3 2 2 1 2 4 3 1 UVW 4 2 4 3 50 60 200 1...
Страница 286: ...282 4 2 2 3 Press e Flow 5 A B C D d1 d2...
Страница 288: ...284 DIN 43650 6 4 20 2 2 3 2 Flow 6 DIN 43650 6 DIN 43650 2 2 4 4 2 8 9 6 6 13 6 6 14 19 11 18 J5 18 50 A B C D...
Страница 291: ...287 3 9 64 X 128 4 MODE SET 10 7 MODE 1 SET 7 3 EEprom SET 6 SET MODE...
Страница 292: ...288 3 1 9 3 2 1 2 3 2 1 MODE SET MODE 8 2 2 5 5 5 2 2 8...
Страница 294: ...290 3 2 2 11 SET 10 15 12 11...
Страница 295: ...291 3 3 10 10 GO SB BL LP HP EC OC OF SC OT OB BP NC F1 F3 F4 P1 1 P2 2 P3 3 P4 4 E0 E16 0 16 EE EEprom WARN...
Страница 296: ...292 12 11 13 GO SB...
Страница 297: ...293 4 4 1 Link 8 4 2 4 2 1 Link 2 Link 5...
Страница 300: ...296 4 3 1 2 1 4 3 1 3 SET MODE LA RC FN MS FS FL AC AE O1 1 O2 2 4 4 ET 6 6 9 FL...
Страница 302: ...298 5 5 1 2 EC A 8 2 RC 5 1 1 EC MODE SET RC 16 0 A RC SET MODE RC 5 1 2 RC 5 1 1 MODE FN 50 RC FN OC OF BL RC FN...
Страница 305: ...301 6 6 1 MODE MODE 6 1 1 FR 6 1 2 VP 6 1 3 C1 A C1 RC 6 5 1 6 1 4 PO PO 6 1 5 SM 13 SB F 13 SM...
Страница 306: ...302 13 F Sb RC A SM 6 1 6 VE 6 2 2 SET MODE 6 2 1 VF 6 2 2 TE 6 2 3 BT 6 2 4 FF FF x y x y x 1 x y 64 RF 6 2 5 CT...
Страница 312: ...308 6 5 9 FI 17 0 1 F3 00 2 F3 00 3 4 17 6 5 9 1 FK FD 2 FZ 6 5 12 FZ FZ 2 6 6 3 FZ 1 FZ 6 5 5 2 FZ FZ 1 FZ 2 FZ...
Страница 324: ...320 7 BL OC OF SC PD FA 27 BL BP LP HP OT OB OC OF SC EC RC Ei i Vi i 28 7 1 7 1 1 BL TB BL 2 3...
Страница 325: ...321 7 1 2 BP BP 7 1 3 LP 295 348 7 1 4 HP 7 1 5 SC U V W PUMP 10 7 2 7 3 BL LP HP OT OB OC OF BP 29...
Страница 326: ...322 BL 10 6 24 24 30 LP 295 348 HP OT TE 100 C 85 C OB BT 120 C 100 C OC 10 6 OF 10 6 29...
Страница 327: ...323 8 8 1 PMW 4 2 8 2 8 3 8 3 SET EE EEprom FLASH...
Страница 494: ...490 1 492 2 495 3 496 4 498 5 499 6 4 20 mA 500 7 501 8 502 9 503 10 506 11 506 12 508 13 523...
Страница 495: ...491 IEC 364 inverter...
Страница 496: ...492 1 Inverter inverter inverter 6 inverter MCE 55 P MCE 30 P 1 1 1...
Страница 499: ...495 2 2 2 1 inverter inverter 2 2 1 1 inverter 4 3 1 RST 2 inverter 2 PVC 4 3 inverter 1 8 inverter 3...
Страница 500: ...496 3 inverter AS 3 3 2 2 1 2 inverter 4 3 1 UVW 2 2 PVC 4 3 inverter inverter 50 Hz 60 Hz 200 Hz inverter 1...
Страница 502: ...498 4 2 2 3 Press Flow 5 A B C D d1 d2...
Страница 507: ...503 3 9 oled 64 X 128 4 MODE SET 9 inverter 7 MODE 1 SET 7 3 EEprom SET 6 SET MODE...
Страница 508: ...504 3 1 9 3 2 1 2 3 2 1 MODE SET Setpoint MODE 8 ONOMA TOY MENOY 2 Setpoint 2 5 5 5 2 2 8...
Страница 512: ...508 12 11 12 GO SB FAULT...
Страница 539: ...535 6 6 14 1 O1 1 1 1 26 6 6 14 2 O2 2 2 2 26 OUT1 OUT2 0 NC NC 1 NC NC 2 NC NC 3 NC NC 26 6 6 15 RF 2 RF 64 FF...
Страница 540: ...536 7 inverter inverter L C F SC PD FA 27 BL BP LP HP OT OB OC OF SC EC RC Ei i Vi i 28 7 1 7 1 1 L setpoint L 2 3...
Страница 542: ...538 BL 10 6 24 24 30 LP 295VAC 348VAC HP OT TE 100 C 85 OB BT 120 C 100 C OC 10 6 24 24 30 OF 10 6 24 24 30 29...
Страница 543: ...539 8 8 1 PMW 4 2 8 2 inverter 8 3 8 3 inverter SET EEPROM FLASH setpoint...
Страница 599: ...595...