44
Technical Handbook
AOF.1000 Storage battery charger regulator
Used for the connection to the voltage/speed regulator of the genset.
AOF.1001 Storage battery charger regulator
(generic)
X
Used for the connection to the voltage/speed regulator of the genset.
AOF.1003 Speed regulator (generic)
X
Used to select the engine speed more efficient at the current power.
AOF.3001 Engine speed
X
The value of the output is proportional to the speed of the engine.
AOF.3011 Oil pressure
X
The value of the output is proportional to the pressure of the lube oil of
the engine.
AOF.3013 Oil temperature
X
The value of the output is proportional to the temperature of the lube oil
of the engine.
AOF.3015 Oil level
X
The value of the output is proportional to the level of the lube oil of the
engine.
AOF.3023 Coolant temperature
X
The value of the output is proportional to the temperature of the coolant
of the engine.
AOF.3025 Coolant level
X
The value of the output is proportional to the level of the coolant of the
engine.
AOF.3035 Fuel level
X
The value of the output is proportional to the level of the fuel of the
engine.
AOF.3101 Frequency of the generator
X
The value of the output is proportional to the frequency of the AC
voltages of the generator.
AOF.3111 Voltage of the generator (AC)
X
The value of the output is proportional to the average AC voltage of the
generator.
AOF.3113 Voltage of the generator (DC)
X
The value of the output is proportional to the DC voltage of the generator.
AOF.3121 Power of the generator
X
The value of the output is proportional to the power supplied by the
generator.
AOF.3131 Current of the generator (DC)
X
The value of the output is proportional to the current of the generator.
AOF.3201 Frequency of the auxiliary source
X
The value of the output is proportional to the frequency of the AC
voltages of the auxiliary source.
AOF.3211 Voltage of the auxiliary source (AC)
X
The value of the output is proportional to the average AC voltage of the
auxiliary source.
AOF.3213 Voltage of the auxiliary source (DC)
X
The value of the output is proportional to the DC voltage of the auxiliary
source.
AOF.3221 Power of the auxiliary source
X
The value of the output is proportional to the power supplied by the
auxiliary source.
AOF.3231 Current of the auxiliary source (DC)
X
The value of the output is proportional to the current of the auxiliary
source.
AOF.3313 Voltage of the battery (DC)
X
The value of the output is proportional to the DC voltage of the plant
battery.
AOF.3321 Power of the battery
X
The value of the output is proportional to the power supplied by the plant
battery.
AOF.3331 Current of the battery (DC)
X
The value of the output is proportional to the current of the plant battery.
AOF.3413 Voltage of the loads (DC)
X
The value of the output is proportional to the DC voltage of the loads.
AOF.3421 Power of the loads
X
The value of the output is proportional to the power supplied by the loads.
AOF.3431 Current of the loads (DC)
X
The value of the output is proportional to the current of the loads.
The column “Curve” shows the functions that allow the definition of generic conversion curves.
Specially for functions AOF.3001 and higher, the curve allows to define the percentages for
the output related to the values of the selected measure (for example, the function AOF.3001
selects the engine speed as input measure).
The default function for the analogue outputs of the controller are:
Terminal
Function
JR
AOF.1000
–
Storage battery charger regulator
.
The following functions, not directly linked to the operation sequences of the board, are
selectable for any analogue output:
•
AOF.0101 -
“Used by PLC”. This function matches the digital output to the PLC
program inside the device; in this way, it is the PLC logic which commands the output,
and not the normal operation logics of the controller. Note: if the PLC program uses
some outputs, but those are not configured with function AOF.0101, the outputs will
not be commanded (but the controller signals this situation with a warning).
•
DOF.0102 -
“Controlled by the serial ports”. The board does not control the output with
its own internal logics, but with the controls it receives through the serial ports.
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