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1592040000 XR30-60-70T EN v1.3 2020.08.26
XR30-60-70T
31/40
inF
dP1
Probe P1 value visualization
Pr1
read only
inF
dP2
Probe P2 value visualization
Pr1
read only
inF
dP3
Probe P3 value visualization
Pr1
read only
inF
dP4
Probe P4 value visualization
Pr1
read only
inF
rSE
Real regulation Set Point (SET + ES +
SETd)
Pr1
read only
inF
FdY
Firmware release date: day
Pr1
read only
inF
FMn
Firmware release date: month
Pr1
read only
inF
FYr
Firmware release date: year
Pr1
read only
inF
rEL
Firmware release
Pr1
read only
inF
SUb
Firmware sub release
Pr1
read only
inF
Ptb
Parameter map version
Pr1
read only
NOTE:
some parameters are not present in XR30T and XR60T models due to lack of the relevant I/O’s.
6. REGULATION
The regulation is based on the temperature measured
by the thermostat probe (P1) with a positive differential
compared to the set point: if the temperature increases
and reaches the set point plus differential, the
compressor will start. The compressor will stop when
the temperature reaches the set point value again. In
case of fault because of the thermostat probe, the start
and stop of the compressor are timed through
parameters
CoF
and
Con
.
7. ENERGY SAVING
The standard SET-POINT (
SET
) is used to maintain the temperature at a certain value when the energy
saving status (ES) is not active. On the other hand, when the ES status is active a different SET-POINT
(
SET_ES
), higher than the standard one, will be used. The parameter
HES
defines the energy setpoint
according to the following formula:
SET_ES = SET + HES
There are also two different differential values for
SET
and
SET_ES
, which are used for compressor cut-in
and cut-out: when ES status is active, the
HYE
parameter will be used instead of the
HY
parameter.
7.1
BASIC ENERGY SAVING ALGORITHM
The energy saving status will be always saved in the internal memory to resume previous operation if a
power failure occurs. The presence of a door switch to work properly (for example:
i1F=dor
) is required.
7.1.1 PARAMETERS INVOLVED
ErA:
energy saving algorithm
i1F or i2F:
set as door input to monitor the appliance usage
StE:
interval to switch from normal to energy saving mode
EtS:
interval to switch from energy saving to normal mode
HES:
SETPOINT differential when energy saving mode active
HYE:
regulation differential when energy saving mode is active
dS:
interval for open door detection
LdE:
light output controlled by energy saving (OFF when energy saving mode is active)
FROM
TO
MODE
Normal
mode
Energy
Saving
Activate the ECO function from Virtual Keyboard screen.
Door continuously closed for time
StE
.
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