ENGLISH
72
GB
of water with temperatures close to freezing point, to avoid breakages of
the system. This is the reason why it is recommended to empty any elec
-
tropump that is going to remain unused during the winter. However, this
system has a protection that prevents ice formation inside by activating the
electropump when the temperature falls to values close to freezing point.
In this way the water inside is heated and freezing prevented.
The Anti-Freeze protection works only if the system is regularly
fed: with the plug disconnected or in the absence of current the
protection cannot work.
However, it is advised not to leave the system full during long peri
-
ods of inactivity: drain the system accurately through the drainage
cap (Fig.1 Face E) and put it away in a sheltered place.
4.1.4 - “BP1” Blockage due to fault of the internal pressure sensor
If the device detects a fault in the pressure sensor the pump remains
blocked and the error signal “BP1” is given. This status begins as soon as
the problem is detected and ends automatically when correct conditions
have been restored.
4.1.5 - “PB” Blockage due to supply voltage outside specifications
This occurs when the allowed line voltage at the supply terminal assumes
values outside the specifications. It is reset only automatically when the
voltage at the terminal returns within the allowed values.
4.1.6 - “SC” Blockage due to short circuit between the motor phases
The device is provided with protection against the direct short circuit which
may occur between the motor phases. When this blockage is indicated
you can attempt to restore operation by simultaneously holding down the +
and – keys, but this will not have any effect until 10 seconds have passed
since the moment the short circuit occurred.
4.2 - Manual reset of error conditions
In error status, the user can cancel the error by forcing a new attempt,
pressing and then releasing the + and – keys.
4.3 - Self-reset of error conditions
For some malfunctions and blockage conditions, the system attempts au
-
tomatic self-reset.
The auto self-reset procedure concerns in particular:
“BL”
Blockage due to water lack
“PB”
Blockage due to line voltage outside specifications
“OT”
Blockage due to overheating of the power stages
“OC”
Blockage due to motor overload
“BP”
Blockage due to fault of the pressure sensor
For example, if the system is blocked due to water lack, the device auto
-
matically starts a test procedure to check whether the machine is really
left definitively and permanently dry. If during the sequence of operations
an attempted reset is successful (for example, the water comes back), the
procedure is interrupted and normal operation is resumed.
Table 21 shows the sequences of the operations performed by the device
for the different types of blockage.
Automatic resets of error conditions
Display indica-
tion
Description
Automatic reset sequence
BL
Blockage due to water
lack
- One attempt every 10 minutes for a
total of 6 attempts
- One attempt every hour for a total of
24 attempts
- One attempt every 24 hours for a total
of 30 attempts
Summary of Contents for E.sybox 50
Page 6: ......
Page 59: ...ITALIANO IT 56...
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Page 285: ...RU 282 IEC 364 CEI 64 2 1000 3 1 2 e sybox e sybox 30 50 e sybox...
Page 286: ...RU 283 6 1 A 2 2 3 1 2 3 4 5 6 B 10 3 C 4 4 2 1 IN 2 3 1 A B C D E F A B E F 1...
Page 287: ...RU 284 OUT D 1 OUT C 4 4 1 2 F 1 2 2 3 IN C 2 4 5 4 4 5 4 5 5 1 1 SP 3 0 RP 0 3 5 6 7...
Page 291: ...RU 288 10 E 270 200 2 1 1 F IN 7 F OUT 7 1 GAS 1 3 1 BSP 25 8 2 1 2 30 25 mm 25 mm 8...
Page 293: ...RU 290 2 2 1 IN 9 OUT 9 D OUT 2 9 2 1 GAS 8 2 2 2 90 10 4 4 10...
Page 294: ...RU 291 2 2 3 3_ 5 F 1 1 5 11 x4 x4 1 5 F 1 3 _ 5 3 8 8 e sybox 7 e sybox30 50 3 1...
Page 301: ...RU 298 6 128x240 POWER COMM ALARM 12 6 MODE 1 SET 12 3 EEprom SET 6 SET MODE 5 5 6...
Page 302: ...RU 299 5 5 5 2 2 7 8 1 2 6 1 MODE SET MODE 7 2 2...
Page 304: ...RU 301 FF AY AE AF I1 1 I2 2 I3 3 I4 4 O1 1 O2 2 FW RF PW...
Page 305: ...RU 302 6 2 14 MODE 8 8 15 14 13...
Page 306: ...RU 303 2 298 9 GO SB DIS F1 F3 F4 P1 1 P2 2 P3 3 P4 4 EE EEprom 9 6 3 14...
Page 307: ...RU 304 GO SB 15 15 10 6 4 PW 6 5 RF PW 7 7 1 MODE MODE 7 1 1 7 1 2 RS 7 1 3 VP 7 1 4 VF...
Page 308: ...RU 305 7 1 9 11 SB F 8 F SB 7 1 10 2 11 7 1 5 PO PO 7 1 6 C1 A C1 7 1 7 7 1 8 PI 5 16...
Page 324: ...RU 321 6 7 9 9 1 6 1 2 1 2 3 18 4 5...
Page 325: ...RU 322 9 2 DAB 19 9 3 DAB 20 19 3 4 5 6 18...
Page 331: ...RU 328 1 3 C 1 1 1 4 D E 9 3 F 10 3 10 2 1 2 3 4 5 1 E 2 5 26 24 25...
Page 332: ...RU 329 6 10 3 1 27 2 F 10 1 27 3 27 4 27 5 6 2 D F 27 7 27 27 1 2 3 4 5 6...
Page 336: ...RU 333 12 10 4 3 2 SP RP 6 7 8 9 1 2 3 1 1 2 3 1 2 1 2 10 3 1 2 SP RP 1 2...
Page 337: ...RU 334 BL 1 2 3 RM 1 2 3 RM BP1 1 1 OC 1 2 1 2 PB 1 2 1 2 13 14...
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Page 394: ......
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Page 501: ...ROM N RO 498...
Page 504: ......
Page 505: ...GR 502 IEC 364 CEI 64 2 1000 Kg m3 1mm2 s i e sybox e sybox 30 50 e sybox H...
Page 506: ...GR 503 1 6 1 2 2 3 1 2 3 4 5 6 10 3 C 4 4 2 1 OUT 2 3 A B C D E F 1 A B E F...
Page 513: ...GR 510 2 2 1 C 9 C OUT 9 D OUT2 9 2 1 GAS e 8 2 2 2 90 10 4 4 10...
Page 514: ...GR 511 2 2 3 3_ 5 F 1 1 5 1 5 11 x4 x4 F 1 3_ 5 3 8 bar 8 e sybox 7 e sybox 30 50 3 1...
Page 522: ...GR 519 Setpoint 2 5 5 5 2 2 7 8 1 2 6 1 MODE SET Setpoint MODE 7 ONOMA TOY MENOY 2...
Page 540: ...GR 537 F4 KIWA Ix Ix 10 F4 11 C F4 12 F4 8 C F3 9 7 6 15 5 KIWA 18 Ix 1 7 6 2 1 F4 F4 2 18 17...
Page 545: ...GR 542 9 2 DAP 19 9 3 DAB 19 6 O ring 7 18 3 4 5 6...
Page 551: ...GR 548 C 1 1 1 4 D 9 3 24 25 F 10 3 10 2 1 2 3 4 5 1 2 5 6 26...
Page 552: ...GR 549 10 3 1 27 2 F 10 1 27 3 27 4 27 5 6 2 O Ring D F 27 7 27 27 1 2 3 4 5 6...
Page 556: ...GR 553 10 4 3 2 SP RP 1 2 3 4 1 2 3 1 1 2 3 1 2 1 2 10 3 1 2 SP RP 1 2...
Page 557: ...GR 554 BL 1 2 3 setpoint RM 1 2 3 RM setpoint BP1 1 1 OC 1 2 1 2 PB 1 2 1 2 13 14...
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Page 669: ...T RK E TR 666...
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Page 728: ......
Page 781: ...ESKY CZ 778...
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Page 838: ......
Page 839: ...BG 836 1000 1 e sybox e sybox 30 50 e sybox IEC 364...
Page 841: ...BG 838 1 1 4 4 5 SP 3 0 bar RP 0 3 bar 5 6 7 5 6 7 1 2 2 SP RP 6 7 3 1...
Page 846: ...BG 843 270 B 200 A 10 D 2 2 1 C IN 9 C OUT 1 9 D OUT 2 9 1 GAS 8 2 2 2 0 90 10 4 4 4 10...
Page 847: ...BG 844 2 2 3 F 1 1 5 1 5 F 3 3_ 5 11 x4 x4 3 8 8 e sybox 7 e sybox30 50 3 1 A...
Page 854: ...BG 851 5 5 wireless wireless 8 2 1 2 6 1 MODE SET MODE 7 2 2 5 5 5 2 2 7...
Page 856: ...BG 853 FF Log AY AE AF I1 1 I2 2 I3 3 I4 4 O1 1 O2 Funzione uscita 2 FW RF PW...
Page 858: ...BG 855 2 76 9 GO SB DIS F1 F3 F4 P1 1 P2 2 P3 3 P4 4 E EE EEprom 9 6 3 rpm psi kW 14...
Page 874: ...BG 871 1 2 1 2 3 O 18 4 5 t O 6 7 18 3 4 5 6...
Page 875: ...BG 872 9 2 DAB 19 9 3 DAB 19 20 9 4 9 4 1 wireless 4 r 9 4 2 20...
Page 881: ...BG 878 27 7 27 27 1 2 3 4 5 6 10 4 1 27 2 3 4 10 5 1 2...
Page 884: ...BG 881 1 2 3 1 1 2 3 1 2 1 2 10 3 1 2 12 off t off 10 4 3 2 SP RP 1 2 3 4...
Page 885: ...BG 882 13 14 SP RP 1 2 BL 1 2 3 RM 1 2 3 RM BP1 1 1 OC 1 2 1 2 PB 1 2 1 2...
Page 886: ...BG 883...
Page 889: ......
Page 890: ...887 1mm2 s kg m 1000...
Page 891: ...888 A 1 2 3 4 5 6 B 4 C 1 1 B C D E F B E F 3 2...
Page 892: ...889 IN OUT D C 4 E 2 F 1 1 bar 0 SP 3 bar 3 RP 0 5 6 7 1 2 2 5 4 4...
Page 897: ...894 270 B 200 A 10 D 2 2 1 OUT 1 IN C 9 OUT 2 D GAS 2 2 2 90 4 4 10...
Page 898: ...895 2 2 3 1 5 3 8 7 8 3 1 A 3 2 11 x4 x4...
Page 899: ...896 SP RP 10 1 2 7 3 0 0 3 27 3 3 10 10 5 1 8 5 5 T2 4 3 2 1 E18 E19 E20 E21 Reset 15 PD FA...
Page 906: ...903...
Page 907: ...904 AY FF AE I1 1 I2 2 I3 3 I4 4 O1 1 O2 2 FW RF Reset PW Password...
Page 923: ...920 1 2 3 4 5 6 7 18 3 4 5 6...
Page 924: ...921 2 9 3 9 19 4 9 1 4 9 4 1 2 3 2 4 9 3 4 9 20...
Page 928: ...925 2 3 B 2 C 24 D 25 E 26 F 2 10 1 2 23 24 25 26...
Page 929: ...926 3 4 5 6 3 10 1 F 2 3 4 5 6 7 27 1 2 3 4 5 6...