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ENGLISH
95
PR
Pressure sensor
PW
Password Settings
4.3.1.2.1
Automatic alignment of sensitive parameters
When a multi inverter system is detected, the unit checks for consistency of the set parameters. If the sensitive parameters are not
aligned on all inverters, the display of each inverter shows a message requesting whether to transfer the configuration of the specific
inverter to the entire system. On acceptance, the sensitive parameters on the inverter where confirmation is given are distributed to all
other inverters in the series.
If there are configurations incompatible with the system, the configuration cannot be aligned from these inverters.
During normal operation, modification of a sensitive parameter on an inverter will cause automatic alignment of the parameter on all
other inverters without any request for confirmation.
Automatic alignment of sensitive parameters has no effect on all other types of parameter
.
In the particular case of inserting an inverter with default settings in the series (in the case of an inverter which replaces an existing
model or an inverter with restored factory settings), if the configurations applied, with the exception of factory settings, are consistent,
the inverter with the factory settings will automatically take on the sensitive parameters of the series.
4.3.1.3
Parameters with optional alignment
These are the parameters that are admissible even if not aligned with other inverters. Each time these parameters are modified, when
SET or MODE is pressed, the request is displayed whether to modify the entire communicating inverter series. In this way if the series
has all the same settings, the same data does not need to be set on all inverters.
List of parameters with optional alignment:
LA
Language
RC
Rated current
MS Measurement system
FS
Maximum frequency
SO
Min. dry-running factor threshold
AE
Anti-blocking
O1
Output 1 function
O2
Output 2 function
4.4
Initial start-up of multiple inverter system
Make electrical and hydraulic connections of the entire system as described in para 2.2 and para 4.2.
Switch on one inverter at a time and configure the parameters as described in chapter 5 taking care that when turning on one inverter,
all others are switched off.
After configuring all inverters individually, all can be switched on simultaneously.
4.5
Multi-inverter settings
When a multi inverter system is switched on, the addresses are assigned automatically and, by means of an algorithm, an inverter is
nominated as the settings leader. The leader decides on the frequency and order of start-up of each inverter in the series.
The settings mode is sequential (inverters start one at a time). When start-up conditions are enabled, the first inverter starts, and when
this reaches maximum frequency, the next one starts, and so on. The order of start-up is not necessarily ascending according to the
machine address, but depends on the hours of operation; see ET: Tempo di scambio par. 6.6.9.
When the minimum frequency FL is used, and there is only one inverter operative pressure surges may occur. Depending on the case,
pressure surges may be inevitable and may occur at the minimum frequency when this value, in relation to the hydraulic load, causes
a pressure level greater than the required value. On multi inverter systems, this problem remains limited to the first pump that is started
up, as on the subsequent pumps the situation is as follows: when the previous pump reaches the maximum frequency, the next one
starts up at the minimum frequency to then reach the maximum frequency. When the frequency of the pump at maximum is reduced
(obviously through to the minimum frequency limit) the pump activation overlaps, which while observing minimum frequency rates,
does not cause pressure surges.
Summary of Contents for AD 1.0 AC
Page 13: ...ITALIANO 11 Figura 2 Fissaggio e distanza minima per la circolazione d aria...
Page 74: ...ENGLISH 72 Figure 2 Fixture and minimum clearance for air circulation...
Page 135: ...FRAN AIS 133 Figure 2 Fixation et distance minimum pour la circulation de l air...
Page 196: ...DEUTSCH 194 Abbildung 2 Befestigung und Mindestabstand f r die Luftzirkulation...
Page 257: ...ESPA OL 255 Figura 2 Fijaci n y distancia m nima para la circulaci n del aire...
Page 269: ...ESPA OL 267 Figura 13 Ejemplo de conexi n de las entradas...
Page 312: ...310 IEC 60634 1...
Page 313: ...311 1 6 1 1...
Page 317: ...315 1 2 1 1 1 1 2 5 2 1 2 1 2 2...
Page 318: ...316 2...
Page 319: ...317 2 2 3 3 15 2 2 1 1a 2a...
Page 320: ...318 4a 5b 1b 127 240 240 480 3 6 3b...
Page 324: ...322 2 2 2 GP GI 6 6 4 6 6 5 8 A B C D...
Page 332: ...330 3 14 64 X 128 4 MODE SET 12 9 MODE 1 SET 11 3 EEprom SET 6 SET MODE 3 1 11...
Page 333: ...331 3 2 1 2 3 2 1 MODE SET MODE 10 2 2 5 5 5 2 2 12...
Page 335: ...333 3 2 2 13 SET 15 15 14 16...
Page 337: ...335 17 15 15 3 4 PW 6 6 16 GO SB...
Page 338: ...336 4 4 1 Link 8 4 2 4 2 1 Link Link 16 18 Link...
Page 367: ...365 OC 10 6 OF 10 6 33 8 8 1 PMW 4 2 8 2 8 3 8 3 SET EE EEprom FLASH...
Page 379: ...NEDERLANDS 377 Afbeelding 2 Bevestiging en minimumafstand voor luchtrecirculatie...
Page 440: ...SVENSKA 438 Fig 2 Fasts ttning och min utrymme f r luftcirkulation...
Page 501: ...T RK E 499 ekil 2 Hava sirk lasyonu tesisat ve minimum a kl k...
Page 556: ...554 IEC 364 1 inverter...
Page 557: ...555 1 Inverter inverter inverter 6 inverter 1 1...
Page 561: ...559 1 2 1 1 inverter inverter 1 1 2 5 inverter 2 1 inverter 2 1 2 2 C...
Page 562: ...560 2...
Page 563: ...561 2 2 3 3 inverter 15 inverter 2 2 1 inverter inverter 1a 2a...
Page 564: ...562 4a 5b 1b V 127 240 240 480 mm 3 6 3b azione...
Page 568: ...566 2 2 2 inverter inverter GP GI 6 6 4 6 6 5 inverter 8 A B C D...
Page 576: ...574 3 14 oled 64 X 128 4 MODE SET 12 inverter 9 MODE 1 SET 11 3 EEprom SET 6 SET MODE 3 1 11...
Page 577: ...575 3 2 1 2 3 2 1 MODE SET Setpoint MODE 10 ONOMA TOY MENOY 2 Setpoint 2 5 5 5 2 2 12...
Page 581: ...579 17 15 15 3 4 Password inverter password password inverter password PW 6 6 16 GO SB FAULT...
Page 623: ...ROM N 621 Figura 2 Fixarea i distan a minim pentru circula ia aerului...
Page 684: ...POLSKI 682 Rys 2 Mocowanie oraz minimalna odleg o na potrzeby cyrkulacji powietrza...
Page 745: ...MAGYAR 743 2 bra R gz t s s minim lis t vols g a szell z leveg kering se rdek ben...
Page 800: ...798 IEC 364 1...
Page 801: ...799 1 3 1 1...
Page 805: ...803 1 2 1 1 1 1 2 5 2 1 2 1 2 C...
Page 806: ...804 2...
Page 807: ...805 2 2 3 3 15 2 2 1 1 2a...
Page 808: ...806 4a 5b 1b V 127 240 240 480 3 6 3b...
Page 812: ...810 2 2 2 GP GI 6 6 4 6 6 5 8 A B C D...
Page 817: ...815 V 36 36 12V A 3 3 3 3 2 13 9 11 8 13...
Page 819: ...817 3 14 64 X 128 4 MODE SET and 12 9 MODE 1 SET 11 3 EEprom SET 6 SET MODE 3 1 11...
Page 820: ...818 3 2 1 2 3 2 1 10 2 2 5 5 5 2 2 12...
Page 824: ...822 15 3 4 GO SB FAULT...
Page 825: ...823 4 4 1 8 4 2 4 2 1 16 18...
Page 862: ...ESKY 860 Obr zek 2 P ipevn n a minim ln vzd lenost kv li cirkulaci vzduchu...
Page 917: ...915 IEC 60634 1...
Page 918: ...916 1 6 1 1...
Page 922: ...920 1 2 1 1 1 1 2 5 2 1 2 1 2 2...
Page 923: ...921 2...
Page 924: ...922 2 2 3 3 15 2 2 1 1a 2a...
Page 925: ...923 4a 5b 1b 127 240 240 480 3 6 3b...
Page 929: ...927 2 2 2 GP GI 6 6 4 6 6 5 8 A B C D...
Page 931: ...929 10 4 20 6 4 20 PR 6 5 7 4 20 2 18 J5 GND 1 J5 GND o IN 11 J5 4 20 7 OUT 8 10 11 IN...
Page 935: ...933 13 J5 I1 11 17 16 18 16 17 I2 11 15 16 18 15 16 I3 11 14 13 18 13 14 I4 11 12 13 8 12 13 9...
Page 937: ...935 3 14 64 X 128 4 MODE SET 12 9 MODE 1 SET 10 3 EEprom SET 6 SET MODE 3 1 11...
Page 938: ...936 3 2 1 2 3 2 1 MODE SET MODE 10 2 2 5 5 5 2 2 11...
Page 940: ...938 3 2 2 13 SET 15 15 14 16...
Page 942: ...940 17 14 15 3 4 PW 6 6 16 GO SB FAULT...
Page 943: ...941 4 4 1 Link 8 4 2 4 2 1 Link Link 16 18 Link...
Page 946: ...944 4 3 1 2 1 4 3 1 3 SET MODE LA RC MS FS SO AE O1 1 O2 2 4 4 2 2 4 2 5 4 5 ET 6 6 9 FL...
Page 969: ...967 10 0 Mode Set PW 0 PW 2 7 3 6 6 16 1 PW PW PW PW 0 PW 0 0 PW PW PW PW PW 0 PW...