Real time clock alarm rtF, the clock board has to be replaced. Contact the service.
14.2 OTHER MESSAGES
Pon
Keyboard unlocked.
PoF
Keyboard locked
noP
In programming mode: none parameter is present in Pr1
On the display or in dP2, dP3, dP4: the selected probe is nor enabled
15. TECHNICAL DATA
Housing: self extinguishing ABS.
Case: facia 38x185 mm; depth 40mm
Mounting : panel mounting in a 150x31 mm panel cut-out with
Only for XW60LR: two screws.
Protection: IP20;
Frontal protection: IP65 Only for XW60LR with frontal gasket mod RG-L or RG-LX.
Connections: Screw terminal block 1 mm
block
2,5 mm
heat-resistant wiring for low voltage (110 or 230Vac).
2
Power supply: 230Vac or. 110Vac 10%, 50/60Hz.
Power absorption: 7VA max.
Display: 3 digits, red LED, 14,2 mm high.
Inputs: Up to 4 NTC or PTC probes.
Digital inputs: free of voltage
Relay outputs: Total current on loads MAX. 20A
compressor: relay SPST 20(8) A, 250Vac
light: relay SPST 5A, 250Vac
fans: relay SPST 5 A, 250Vac
defrost: relay SPST 8(3) A, 250Vac
Other output : buzzer (optional)
Serial output : TTL as alternate to X-REP output
X-REP output : optional as alternate to TTL serial output
Communication protocol: Modbus - RTU
Data storing: on the non-volatile memory (EEPROM).
Internal clock back-up: 24 hours (only for model with RTC)
Kind of action: 1B; Pollution grade: normal; Software class: A.;
Over voltage Category: II
Operating temperature: 0÷60 °C; Storage temperature: -30÷85 °C.
Relative humidity: 2085% (no condensing)
Measuring and regulation range: NTC probe: -40÷110°C (-40÷230°F);
PTC probe: -50÷150°C (-58÷302°F)
Resolution: 0,1 °C or 1 °F (selectable); Accuracy (ambient temp. 25°C): ±0,7 °C ±1 digit
16. CONNECTIONS
Supply: 120Vac: connect to terminals 8-9.
NOTE: on models with X-REP option, connect the X-REP to the HOT KEY receptacle
1592027550 XW60LR - XW60LRH RTC GB r2.0 14.02.2014.doc
3x2mm, distance between holes 165mm
heat-resistant wiring for very low voltage, Screw terminal
2
17. DEFAULT SETTING VALUES
Label
Set Set point
rtc* Real time clock menu
Hy Differential
LS Minimum set point
US Maximum set point
Ot P1 probe calibration
P2P P2 probe presence
OE P2 probe calibration
P3P P3 probe presence
O3 P3 probe calibration
OdS Outputs delay at start up
AC Anti-short cycle delay
AC1 Second compressor start delay
rtr P1-P2 percentage for regulation
CCt Continuous cycle duration
CCS Set point for continuous cycle
COn Compressor ON time with faulty probe
COF Compressor OFF time with faulty probe
CF Temperature measurement unit
rES Resolution
Lod Probe displayed
rEd
2
X-REP display
dLy Display temperature delay
dtr P1-P2 percentage for display
EdF* Kind of interval for defrost
tdF Defrost type
dFP Probe selection for defrost termination
dtE Defrost termination temperature
IdF Interval between defrost cycles
MdF (Maximum) length for defrost
dSd Start defrost delay
dFd Displaying during defrost
dAd MAX display delay after defrost
Fdt Draining time
dPo First defrost after start-up
dAF Defrost delay after fast freezing
Fnc Fan operating mode
Fnd Fan delay after defrost
Fct Differential of temperature for forced
activation of fans
FSt Fan stop temperature
Fon Fan on time with compressor off
FoF Fan off time with compressor off
FAP Probe selection for fan management
ACH Kind of action for auxiliary relay
SAA Set Point for auxiliary relay
SHy Differential for auxiliary relay
ArP Probe selection for auxiliary relay
Sdd Auxiliary relay operating during defrost
ALP Alarm probe selection
ALc Temperat. alarms configuration
ALU MAXIMUM temperature alarm
ALL Minimum temperature alarm
AFH Differential for temperat. alarm recovery
ALd Temperature alarm delay
dAO Delay of temperature alarm at start up
AP2 Probe for temperat. alarm of condenser
AL2 Condenser for low temperat. alarm
AU2 Condenser for high temperat. alarm
AH2 Differ. for condenser temp. alar. recovery
Ad2 Condenser temperature alarm delay
dA2 Delay of cond. temper. alarm at start up
Compr.
off
bLL
temperature alarm
Compr.
off
AC2
temperature alarm
tbA Alarm relay disabling
oA3 Third relay configuration
AoP Alarm relay polarity
i1P Digital input polarity
i1F Digital input 1 configuration
did Digital input alarm delay
i2P Digital input 2 polarity
i2F Digital input 2 configuration
d2d Digital input alarm delay
nPS Number of activation of pressure switch
odc Compress and fan status when open
door
rrd Regulation restart with door open alarm
HES Differential for Energy Saving
Hur* Current hour
Min* Current minute
dAY* Current day
XW60LR – XW60LRH
Name
Range
LS - US
(0,1°C ÷ 25,5°C)
(-55,0°C ÷ SET)
(SET ÷ 150,0°C)
(-12,0°C ÷ 12,0°C)
n - Y
(-12,0°C ÷ 12,0°C)
n - Y
(-12,0°C ÷ 12,0°C)
0 ÷ 255 (min.)
0 ÷ 50 (min.)
0 ÷ 255 (sec.)
0 ÷ 100 (100=P1 , 0=P2)
0 ÷ 24H0(144)
(-55.0°C ÷ 150,0°C)
0 ÷ 255 (min.)
0 ÷ 255 (min.)
°C - °F
dE – in
P1 - P2 - P3 - P4 - SEt – dtr
P1 - P2 - P3 - P4 - SEt – dtr
0 ÷ 20.0min (ris. 10 sec.)
1 ÷ 99
rtc÷in
EL – in
nP - P1 - P2 – P3 - P4
(-55.0°C ÷ 50.0°C)
0 ÷ 120 (ore)
0 ÷ 255 (min.)
0 ÷ 255 (min.)
rt - it - SEt – dEF
0 ÷ 255 (min.)
0 ÷ 255 (min.)
n – Y
0 ÷ 24.0h; ris. 10min
C_n - O_n - C_Y – O_Y
0 ÷ 255 (min.)
(0°C ÷ 50°C)
(-55.0°C ÷ 50.0°C)
0÷15 (min.)
0÷15 (min.)
nP - P1 - P2 - P3 – P4
CL – Ht
(-55.0°C ÷ 150,0°C)
(0,1°C ÷ 25,5°C)
nP - P1 - P2 - P3 – P4
n – Y
nP - P1 - P2 - P3 – P4
rE – Ab
ALc=rE: 0.0÷ 50.0°C
ALc=Ab: ALL÷150°C
ALc = rE: 0.0÷50.0°C; ALc=Ab:
-55°C÷ALU
(0,1°C ÷ 25,5°C)
0 ÷ 255 (min.)
0 ÷ 24.0 h ris. 10min
nP - P1 - P2 - P3 – P4
(-55.0°C ÷ 150,0°C)
(-55.0°C ÷ 150,0°C)
(0,1°C ÷ 25,5°C)
0 ÷ 255 (min.)
0 ÷ 24H0(144)
for
condenser
low
n – Y
for
condenser
high
n – Y
n – Y
dEF - FAn - ALr - LiG - AUS -
OnF - db - CP2 - dF2 – HES
OP – CL
OP – CL
EAL - bAL - PAL - dor - dEF -
AUS - Htr - FAn - ES-HdF – onF
0 ÷ 255 (min.)
OP – CL
EAL - bAL - PAL - dor - dEF -
AUS - Htr - FAn - ES-HdF – onF
0 ÷ 255 (min.)
0 ÷ 15
no - FAn - CPr - F-C
n - Y
(-30°C ÷ 30°C)
Read only
Read only
Read only
°C/°F
Level
-5.0
- - -
-
Pr1
2.0
Pr1
-50.0
Pr2
110
Pr2
0.0
Pr1
Y
Pr1
0.0
Pr2
n
Pr2
0
Pr2
0
Pr2
1
Pr1
5
Pr2
100
Pr2
0.0
Pr2
-5
Pr2
15
Pr2
30
Pr2
°C
Pr2
dE
Pr1
P1
Pr2
P1
Pr2
0.0
Pr2
50
Pr2
in
Pr2
EL
Pr1
P2
Pr2
8.0
Pr1
6
Pr1
30
Pr1
0
Pr2
it
Pr2
30
Pr2
0
Pr2
n
Pr2
0.0
Pr2
o-n
Pr1
10
Pr1
10
Pr2
2
Pr1
0
Pr2
0
Pr2
P2
Pr2
cL
Pr2
0,0
Pr2
2,0
Pr2
nP
Pr2
n
Pr2
P1
Pr2
Ab
Pr2
110,0
Pr1
-50,0
Pr1
2,0
Pr2
15
Pr2
1,3
Pr2
P4
Pr2
-40
Pr2
110
Pr2
5
Pr2
15
Pr2
1,3
Pr2
n
Pr2
n
Pr2
y
Pr2
Lig
Pr2
cL
Pr2
cL
Pr1
dor
Pr1
15
Pr1
cL
Pr2
EAL
Pr2
5
Pr2
15
Pr2
F-c
Pr2
y
Pr2
0
Pr2
-
Pr1
-
Pr1
-
Pr1
5/6