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Installing and Operating Instructions 

1592020570

 

 

1592020570 XR70CX RTC GB r1.0 28.05.2008.doc 

XR70CX 

2/5 

6.2

 

HOW TO SEE THE SETPOINT 

 

1.

 

Push and immediately release the 

SET 

key: the display will show the 

Set point value; 

2.

 

Push and immediately release the 

SET 

key or wait for 5 seconds to  

display the probe value again. 

6.3

 

HOW TO CHANGE THE SETPOINT 

1.

 

Push the 

SET 

key for more than 2 seconds to change the Set point value; 

2.

 

The value of the set point will be displayed and the “

°C” or “°F”

 LED starts blinking; 

3.

 

To change the Set value push the 

or 

n

 arrows within 10s. 

4.

 

To memorise the new set point value push the 

SET

 key again or wait 10s. 

6.4

 

HOW TO START A MANUAL DEFROST 

 

Push the 

DEF 

key for more than 2 seconds and a manual defrost will start. 

6.5

 

HOW TO CHANGE A PARAMETER VALUE 

To change the parameter’s value operate as follows:  
1.

 

Enter the Programming mode by pressing the 

Set

 + 

n

 keys for 3s (the “

°C” or “°F”

 LED starts 

blinking). 

2.

 

Select the required parameter. Press the “

SET

” key to display its value 

3.

 

Use “

UP

” or “

DOWN

” to change its value. 

4.

 

Press “

SET

” to store the new value and move to the following parameter. 

To exit

: Press 

SET + UP 

or wait 15s without pressing a key. 

NOTE

: the set value is stored even when the procedure is exited by waiting the time-out to expire. 

6.6

 

THE HIDDEN MENU 

The hidden menu Includes all the parameters of the instrument. 

6.6.1  HOW TO ENTER THE HIDDEN MENU 

1.

 

Enter the Programming mode by pressing the 

Set

 + 

n

 keys for 3s (the “

°C” or “°F”

 LED starts 

blinking). 

2.

 

Released the keys, then push again the Set+

n

 keys for more than 7s. The Pr2 label will be 

displayed immediately followed from the HY parameter.  

NOW YOU ARE IN THE HIDDEN MENU.

 

3.

 

Select the required parameter. 

4.

 

Press the “

SET

” key to display its value 

5.

 

Use 

or 

n

 to change its value. 

6.

 

Press “

SET

” to store the new value and move to the following parameter. 

To exit

: Press 

SET + 

or wait 15s without pressing a key. 

NOTE1: 

if none parameter is present in Pr1, after 3s the “noP” message is displayed. Keep the keys 

pushed till the Pr2 message is displayed.  

NOTE2

: the set value is stored even when the procedure is exited by waiting the time-out to expire. 

6.6.2  HOW TO MOVE A PARAMETER FROM THE HIDDEN MENU TO THE 
FIRST LEVEL AND VICEVERSA. 

Each parameter present in the HIDDEN MENU can be removed or put into “THE FIRST LEVEL” 
(user level) by pressing 

“SET + 

n

.  

In HIDDEN MENU when a parameter is present in First Level the decimal point is on. 

6.7

 

HOW TO LOCK THE KEYBOARD 

1. 

 

Keep pressed for more than 3 s the 

UP

 +  

DOWN

 keys. 

2. 

 

The “POF” message will be displayed and the keyboard will be locked. At this point it will be 
possible only to see the set point or the MAX o Min temperature stored 

3. 

 

If a key is pressed more than 3s the “POF” message will be displayed. 

6.8

 

TO UNLOCK THE KEYBOARD 

Keep pressed together for more than 3s the 

and 

n

 keys, till the 

“Pon” 

message will be 

displayed. 

6.9

 

THE CONTINUOUS CYCLE 

When defrost is not in progress, it can be activated by holding the “

o

” key pressed for about 3 

seconds. The compressor operates to maintain the “

ccS

” set point for the time set through the “

CCt

” 

parameter. The cycle can be terminated before the end of the set time using the same activation key 

o

” for 3 seconds. 

6.10

 

THE ON/OFF FUNCTION 

 

 

With “

onF = oFF

”, pushing the 

ON/OFF

 key, the instrument is switched off. The 

“OFF” 

message is displayed. In this configuration, the regulation is disabled.  
To switch the instrument on, push again the ON/OFF key. 

 

WARNING: Loads connected to the normally closed contacts of the relays are always 

supplied and under voltage, even if the instrument is in stand by mode.  

7.

 

PARAMETERS 

rtc  Real time clock menu: 

to set the time and date and defrost start time. 

REGULATION 
Hy Differential

: (0,1 ÷ 25,5°C / 1÷255 °F) Intervention differential for set point. Compressor Cut IN 

is Set Point + differential (Hy). Compressor Cut OUT is when the temperature reaches the set 
point. 

LS  Minimum set point:

 (- 50°C÷SET/-58°F÷SET): Sets the minimum value for the set point. 

US Maximum set point: 

(SET÷110°C/ SET÷230°F). Set the maximum value for set point. 

Ot  Thermostat probe calibration

: (-12.0÷12.0°C; -120÷120°F) allows to adjust possible offset of 

the thermostat probe. 

P2P  Evaporator probe presence: n

= not present: the defrost stops by time; 

y=

 present: the defrost 

stops by temperature. 

OE Evaporator probe calibration:

 (-12.0÷12.0°C; -120÷120°F). allows to adjust possible offset of 

the evaporator probe. 

P3P Third probe presence (P3): n

= not present:, the terminal operates as digital input.; 

y=

 

present:, the terminal operates as third probe. 

O3 Third probe calibration  (P3):

 (-12.0÷12.0°C; -120÷120°F). allows to adjust possible offset of 

the third probe. 

P4P Fourth probe presence

: (n = Not present; y = present). 

o4  Fourth probe calibration

: (-12.0

÷

12.0°C) allows to adjust possible offset of the fourth probe. 

OdS Outputs activation delay at start up:

 (0÷255min) This function is enabled at the initial start up 

of the instrument and inhibits any output activation for the period of time set in the parameter.  

AC  Anti-short cycle delay

: (0÷50 min) minimum interval between the compressor stop and the 

following restart. 

rtr  Percentage of the second and first probe for regulation (0÷100; 100 = P1, 0 = P2 ): 

it 

allows to set the regulation according to the percentage of the first and second probe, as for the 
following formula (rtr(P1-P2)/100 + P2). 

CCt Compressor ON time during continuous  cycle: 

(0.0÷24.0h; res. 10min) Allows to set the 

length of the continuous cycle: compressor stays on without interruption for the CCt time. Can be 
used, for instance, when the room is filled with new products. 

CCS Set point for continuous cycle: 

(-50÷150°C) it sets the set point used during the continuous 

cycle. 

COn Compressor ON time with faulty probe: 

(0÷255 min) time during which the compressor is 

active in case of faulty thermostat probe. With COn=0 compressor is always OFF. 

COF Compressor OFF time with faulty probe: 

(0÷255 min) time during which the compressor is 

OFF in case of faulty thermostat probe. With COF=0 compressor is always active. 

DISPLAY 
CF Temperature measurement unit: 

 

°C=

Celsius; 

°F

=Fahrenheit. WARNING: When the 

measurement unit is changed the SET point and the values  of the parameters Hy, LS, US, Ot, 
ALU and ALL have to be checked and modified if necessary). 

rES  Resolution (for °C)

: (in = 1°C; dE = 0.1 °C) allows decimal point display. 

Lod Instrument display

: (P1; P2, P3, P4,  SET, dtr): it selects which probe is displayed by the 

instrument: 

P1

 = Thermostat probe; 

P2

 = Evaporator probe; 

P3

 = Third probe(only for model 

with this option enabled); 

P4

 = Fourth probe,

 SET

 = set point;  

dtr

 = percentage of 

visualization. 

rEd  X- REP display (

optional

)

: (P1; P2, P3, P4,  SET, dtr): it selects which probe is displayed by 

X- REP: 

P1

 = Thermostat probe; 

P2

 = Evaporator probe; 

P3

 = Third probe(only for model with 

this option enabled); 

P4

 = Fourth probe,

 SET

 = set point;  

dtr

 = percentage of visualization. 

dLy Display delay: 

(0 ÷20.0m; risul. 10s) when the temperature increases, the display is updated 

of 1 °C/1°F after this time. 

dtr  Percentage of the second and first probe for visualization when Lod = dtr (0÷100; 100 = 

P1, 0 = P2 ): if Lod = dtr 

it allows to set the visualization according to the percentage of the 

first and second probe, as for the following formula (dtr(P1-P2)/100 + P2). 

DEFROST 
EdF Defrost mode:

  

 

 rtc 

Real Time Clock mode

. Defrost time follows 

Ld1÷Ld6

 parameters on workdays and 

Sd1÷Sd6

 on holidays. 

in

 = 

interval mode

. The defrost starts when the time “

Idf

” is expired. 

dFP Probe selection for defrost termination: nP

 = no probe; 

P1

 =thermostat probe; 

P2 = 

evaporator probe; 

P3

 =configurable probe; 

P4

 = Probe on Hot Key plug. 

tdF   Defrost type

: EL = electrical heater; in = hot gas 

dtE  Defrost termination temperature

: (-50÷50 °C/  

-58÷122°F) (Enabled only when EdF=Pb) sets the temperature measured by the evaporator 
probe, which causes the end of defrost. 

IdF  Interval between defrost cycles

: (0÷120h) Determines the time interval between the 

beginning of two defrost cycles. 

MdF  (Maximum) length for defrost

: (0÷255min) When 

P2P = n

, (not evaporator probe: timed 

defrost) it sets the defrost duration, when 

P2P = y

 (defrost end based on temperature) it sets 

the maximum length for defrost. 

dSd Start defrost delay

: ( 0÷99min) This is useful when different defrost start times are necessary 

to avoid overloading the plant.  

dFd  Temperature displayed during defrost

: (

rt

 = real temperature; 

it

 = temperature at defrost 

start; 

SEt

 = set point; 

dEF

 = “dEF” label) 

dAd MAX display delay after defrost

: (0÷255min). Sets the maximum time between the end of 

defrost and the restarting of the real room temperature display. 

Fdt Drip time

: (0

÷

120 min) time interval between reaching defrost termination temperature and the 

restoring of the control’s normal operation. This time allows the evaporator to eliminate water 
drops that might have formed due to defrost. 

dPo  First defrost after start-up

: (y = immediately; n = after the IdF time) 

dAF Defrost delay after continuous cycle

: (0

÷

23.5h) time interval between the end of the fast 

freezing cycle and the following defrost related to it. 

FANS 
FnC Fans operating mode

C-n

= runs with the compressor, OFF during defrost;  

o-n

 = continuous mode, OFF during defrost;  

C-Y

 = runs with the compressor, ON during defrost;  

o-Y

 = continuous mode, ON during defrost;  

Fnd Fans delay after defrost:

 (0÷255min) Interval between end of defrost and evaporator fans 

start.

 

Fct  Temperature differential avoiding short cycles of fans 

(0÷59°C; Fct=0 function disabled). If 

the difference of temperature between the evaporator and the room probes is more than the 
value of the Fct parameter, the fans are switched on.

 

FSt  Fans stop temperature

: (-50÷50°C/122°F) setting of temperature, detected by evaporator 

probe, above which fans are always OFF. 

Fon Fan ON time:

 (0÷15 min)

 with 

Fnc = C_n or C_y, (fan activated in parallel with compressor). it 

sets the evaporator fan ON cycling time when the compressor is off. With Fon =0 and FoF 

 0 

the fan are always off, with Fon=0 and FoF =0 the fan are always off.

 

FoF Fan OFF time:

 (0÷15 min)

 with 

Fnc = C_n or C_y, (fan activated in parallel with compressor). it 

sets the evaporator fan off cycling time when the compressor is off. With Fon =0 and FoF 

 0 

the fan are always off, with Fon=0 and FoF =0 the fan are always off.

 

FAP  Probe selection for fan management: nP

 = no probe; 

P1

 =thermostat probe; 

P2 = 

evaporator 

probe; 

P3

 =configurable probe; 

P4

 = Probe on Hot Key plug. 

ALARMS 
ALC  Temperature alarms configuration:

 (Ab; rE) 

 

Ab= absolute temperature: alarm temperature is given by the ALL or ALU values.  rE = 
temperature alarms are referred to the set point. Temperature alarm is enabled when the 
temperature exceeds the “SET+ALU” or “SET-ALL” values. 

Summary of Contents for XR70CX

Page 1: ...controlled by the evaporator s probe P2P At the end of defrost dripping time is started its length is set in the Fdt parameter With Fdt 0 the dripping time is disabled 3 3 CONTROL OF EVAPORATOR FANS The fan control mode is selected by means of the FnC parameter FnC C_n fans will switch ON and OFF with the compressor and not run during defrost FnC o_n fans will run even if the compressor is off and...

Page 2: ...on 0 100 100 P1 0 P2 it allows to set the regulation according to the percentage of the first and second probe as for the following formula rtr P1 P2 100 P2 CCt Compressor ON time during continuous cycle 0 0 24 0h res 10min Allows to set the length of the continuous cycle compressor stays on without interruption for the CCt time Can be used for instance when the room is filled with new products CC...

Page 3: ...kdays ISE Energy Saving cycle start on holidays 0 23h 50 min dSE Energy Saving cycle length on holidays 0 24h 00 min TO SET DEFROST TIMES Ld1 Ld6 Workday defrost start 0 23h 50 min These parameters set the beginning of the 6 programmable defrost cycles during workdays Ex When Ld2 12 4 the second defrost starts at 12 40 during workdays Sd1 Sd6 Holiday defrost start 0 23h 50 min These parameters set...

Page 4: ...a 71x29mm panel cut out Protection IP20 Frontal protection XR70CX IP65 Connections Screw terminal block 2 5 mm2 wiring Power supply according to the model 12Vac dc 10 24Vac dc 10 230Vac 10 50 60Hz 110Vac 10 50 60Hz Power absorption 3VA max Display 3 digits red LED 14 2 mm high Inputs Up to 4 NTC or PTC probes Digital input free voltage contact Relay outputs compressor SPST 8 3 A 250Vac SPST 16 6 A...

Page 5: ... restart with door open alarm n Y y Pr2 HES Differential for Energy Saving 30 C 30 C 54 F 54 F 0 Pr2 Hur Current hour 0 23 rtc Min Current minute 0 59 rtc dAY Current day Sun SAt rtc Hd1 First weekly holiday Sun SAt nu nu rtc Hd2 Second weekly holiday Sun SAt nu nu rtc ILE Energy Saving cycle start during workdays 0 23h 50 min 0 rtc dLE Energy Saving cycle length during workdays 0 24h 00 min 0 rtc...

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