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DAB Esybox Serie Instructions Pour L'installation Et L'entretien page 50

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  • FRANÇAIS, page 76
Display
indication
BL
Blockage due to water lack
PB
Blockage due to line voltage outside specifications - It is reset when it returns to a specific voltage.
OT
Blockage due to overheating of the power stages
OC
Blockage due to motor overload
7. INVERTER ELECTRONIC CONTROL AND USER INTERFACE
The inverter makes the system work at constant pressure. This regulation is appreciated if the hydraulic plant downstream from the
system is suitably sized. Plants made with pipes with too small a section introduce load losses that the equipment cannot compensate;
the result is that the pressure is constant on the sensors but not on the utility.
Plants that are excessively deformable can create the onset of oscillations; if this occurs, the problem can be solved by adjusting the
control parameters "GP" and "GI" (see par. 9.6 - GP: : Proportional gain coefficient and 9.6 - GI: Integral gain coefficient).
7.1 Operation with control unit
E.sybox, alone or in a pumping unit, may be connected by means of wireless communication to a remote unit referred to below as a control unit.
Depending on the model, the control unit offers a variety of functions.
The possible control units are: e.sylink.
Combining one or more e.syboxes with a control unit allows the use of:
– Digital inputs
– Relay outputs
– Remote pressure sensor
– Ethernet network connection
Below, the combination of functions listed above, made available by the various types of control unit, will be referred to as "control unit functions.
7.1.1 Functions made available by control units
The functions made available are specified in Table 6 Functions made available by control units.
Functions
Opto-isolated digital inputs
Output relay with NO contact
Remote pressure sensor
Network connectiondi rete
7.1.2 Electrical connections of utility inputs and outputs
See control unit manual.
7.1.3 Safety mode operation
When using the input or remote sensor functions, in the event of a communications downage or control unit error, the e.sysbox and control unit
will switch to safety mode, adopting the configuration considered least damaging. When safety mode comes into operation, a flashing icon showing
a cross inside a triangle appears on the display.
The way in which the e.sysbox responds to a communications downage is explained in the table below.
e.sybox setting
In=0 Input function disabled
In
=1, 2
(2)
Low water level indicated by float
switch
in
=3, 4
(2)
Pauxn auxiliary setpoint
in
=5, 6
(2)
Disable system
in
=7, 8
(2)
Disable system + fault and
warning reset.
in =9
Fault and warning reset
in
=10, 11, 12,
(2)
Automatic resets of error conditions
Description
Table 5: Self-reset of blockages
e.sylink
No control unit associated
(by means of input or menu)
No action
No action
System in stop status F1
No action
Activation of corresponding
No action
System in stop status F3
No action
System in stop status F3
+ fault and warning reset
No action
Fault and warning reset
No action
System in stop status F4
ENGLISH
- 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.
- It is reset when the temperature of the power stages returns within the
specifications.
- 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
Table 6: Functions made available by control units.
e.sybox response
Control unit associated
Function activated
Function not activated
(by means of input or menu)
No action
No action
No action
No action
auxiliary setpoint
No action
No action
No action
No action
48
Automatic reset sequence
Control unit associated
No communication with control unit, or control unit
Safety mode
System in stop status(1)
Activation of lowest auxiliary setpoint pressure set
System in stop status
System in stop status
System in stop status
error
No action
(1)
(1)
No action
(1)

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