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ENGLISH
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Table 3 also indicates the sizes of thermal magnetic circuit breakers to be used, according to the current
absorption.
CAUTION: The thermal magnetic circuit breaker and power cables of the inverter and pump must be sized
according to the system.
The differential switch that protects the system must be adequately sized and must be of “Class AS” type.
The automatic differntial switch must be marked with the following two symbols:
If the instructions supplied in this manual are in contrast with the regulations in force the regulations must be
considered as valid.
The earth connection must have tightened cable lugs as shown in Figure 3
Figure 3: Connection of the earth cable
2.2.1.2
Electrical connections to the pump
The connection between the inverter and the electropump must be made with a 4-core cable (3
earth). The characteristics of the connected electropump must be able to satisfy the indications in Table 1.
The output terminals are those marked with the text UVW and an arrow pointing away from the terminals;
see Figure 2.
The section, type and laying of the cables for connection to the electropump must be chosen according to
the regulations in force. Table 2 supplies an indication on the section of the cable to be used. The table
refers to 4-core PVC cables (3 earth) and gives the recommended minimum section with relation to
the current and the length of the cable.
The electropump current is generally specified on the motor data plate.
The rated voltage of the electric pump must be the same as the supply voltage of the inverter.
The rated frequency of the electric pump can be set via the display according to the specifications on the
manufacturer’s dataplate.
For example, the inverter can also be powered at 50 [Hz] with control of an electric pump at 60 [Hz] -
nominal (provided that the pump is declared as compatible for this frequency).
For special applications, pumps are also available with frequency up to 200 [Hz].
The utility connected to the inverter must not absorb current in excess of the maximum values specified in
Table 1.
Check the dataplates and type of motor connection (star or delta) used to ensure compliance with the above
conditions.
Incorrect connection of the earthing line, to a terminal other than the earth terminal can
cause irremediable damage to the equipment.
Incorrect connection of the power line on the output load terminals can cause irremediable
damage to the equipment.
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...