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1592026601 XWi70K STD FULL EN r1.6 2022.07.29.docx 

XWi70K

 

3/15 

 

-

 

If 

MnP=oFF

, then the compressor will be stopped for 

tMA

 if it works continuously for 

tMi

 

10.7

 

PI ALGORITHM 

The VSC regulator implements a PI (Proportional-Integral) algorithm to guarantee temperature stability 
always  near  the  setpoint.  Here  below  there  are  some  advises  for  parameter  settings  in  some 
applications.  
 

 

Low Temperature Applications 

Normal Temperature Applications 

HY 

0.3 

HY1 

0.7 

tSt 

1 to 3 min 

1 to 3 min 

iSt 

10 to 20 min 

5 to 10 min 

rSr 

20 to 60 

90 to 180 

Str 

40 to 80 sec 

10 to 20 sec 

voS 

1 to 3 

3 to 5 

vo2 

3 to 7 

5 to 10 

vo3 

5 to 10 

5 to 10 

tHv 

90 to 120 sec 

20 to 30 sec 

tLv 

30 to 60 sec 

5 to 10 sec 

dPt 

2 to 4 

1 or 2 

SAt 

5 to 10 min 

1 to 3 min 

 

NOTE: 

-

 

Every application needs specific tuning tests to find the optimal values. 

-

 

Use 

HY

 

<

 

HY1

 (better if 

2*HY <= HY1

) in Low Temp Applications 

-

 

Use 

HY > HY1

 (better if 

HY >= 2*HY1

) in Normal Temp Applications 

11

 

SPECIAL FUNCTIONS 

By using the parameters 

oAx

 it is possible to configure the functions of the relay outputs as described 

in the following paragraphs: 

11.1

 

LIGHT RELAY (oAx = LiG) 

By setting 

oAx=Lig

 the relay will work as light relay, it is switched on and off by the light button on the 

keyboard and is affected by status of the digital input when 

i1F=dor

The parameter

 LHt (Light timer) 

sets the time the light will stay on after pressing the light switch on the 

keyboard. Every time the key is pushed the timer is re-loaded. 

11.2

 

SECOND COMPRESSOR MANAGEMENT (oAx = CP2) 

By  setting  one  of  the  parameters 

oAx=CP2

,  the  correspondent  relay  wi

ll  operate  as  “second 

compressor”. It will be activated in parallel with the relay of the first compressor, with a possible delay 

set in the 

AC1 

parameter (seconds). 

11.3

 

ON/OFF RELAY (oAx = onF) 

By setting one of the parameters 

oAx=onF

, correspondent the relay will operate as “on

-

off” relay: it will 

be activated when the controller is switched on and it will be switched off when the controller is in stand-
by status. 

11.4

 

ALARM RELAY (oAx =Alr) 

By setting 

oAx=ALr

 the correspondent relay will work as alarm relay, it is switched on when an alarm 

happens. 

Parameters involved:  

-

 

tbA (n, Y) 

Alarm relay silencing

 

-

 

AoP (cL; oP) 

Alarm relay polarity 

11.5

 

ANTI-SWEAT HEATER (oAx =tiM) 

If 

oAx=tiM,

 the correspondent relay will be able to work as Anti-Sweat Heater output. 

The relay will work based on the parameters 

btA

 (base time setting: seconds or minutes), 

AtF

 (output 

OFF time) and 

Ato

 (output ON time) with the following logic: the relay output will cycle (starting with the 

OFF time) between OFF and ON status.   

11.6

 

ENERGY SAVING TIMEOUT 

If the Energy Saving function has been activated by buttons or digital input, the Energy Saving will be 
automatically deactivated once the time defined in the parameter 

ESt

 is expired. If the value of 

ESt=0

 

the timeout is not considered and the Energy Saving, once activated by button or digital input, can be 

deactivated only manually by the user. 

11.7

 

DEAD BAND (oAx =db) 

By  setting 

oAx=db

  the  controller  will  perform  a 

dead band

” regulation.

 

The heating element has to be connected to the 
correspondent relay. 
If  the  temperature  increases  and  reaches  set 
point  plus  differential  (

HY

)  the 

compressor

  is 

started and then turned off when the temperature 
reaches the set point value again.  
If the temperature decreases and reaches the set 

point minus differential (

HY

) the output (

heater

is  switched  on  and  then  turned  OFF  when  the 
temperature reaches again the set point.   

 

12

 

KEYBOARDS 

Depending  on  the  type  of  used  keyboard,  some  special  function  could  be  associated  to  predefined 
buttons. Follow here below the complete list of functions: 
 

 

Normal  pressure: 

to  visualize  the  temperature  set  point;  in  programming  mode  it  selects  a 

parameter or confirm an operation.

 

Timed:

 to modify the temperature set point; when max or min temperature value is displayed, 

keep it pressed for 3 sec to reset the stored value.

 

 

Normal  pressure:  nu

=not  special  functions; 

Std

=maximum  temperature; 

Lnt

=configuration 

change; 

ALr

=alarm list 

Timed: nu

=not special functions; 

Std

=maximum temperature; 

CC

=reload default configuration; 

ALr

=not used; 

Pdn

=Pull Down activation 

 

Normal  pressure:  nu

=not  special  functions; 

Std

=minimum  temperature; 

Lnt

=configuration 

change; 

ALr

=alarm list 

Timed: nu

=not special functions; 

Std

=maximum temperature; 

Lnt

=configuration change; 

ALr

=  

not used; 

Pdn

=Pull Down activation 

 

Normal pressure: nu

=not special functions; 

Pb2

=Second probe value; 

AU1

=auxiliary output 1 

activation; 

AU2

=auxiliary output 2 activation 

Timed: nu

=not special functions; 

Std

=maximum temperature; 

Lnt

=configuration change; 

ALr

not used; 

Pdn

=Pull Down activation 

 

Normal pressure: nu

=not special functions; 

LiG

=light output activation; 

AU1

=auxiliary output 

1 activation; 

AU2

=auxiliary output 2 activation; 

Lnt

=configuration change 

Timed: nu

=not special functions; 

LiG

=light output activation; 

AU1

=auxiliary output 1 activation; 

AU2

=auxiliary output 2 activation; 

Lnt

=configuration change; 

rSt

=reset 

 

Normal pressure: nu

=not special functions; 

oFF

=ON OFF function; 

ES

=energy saving 

Timed: nu

=not special functions; 

oFF

=ON OFF function; 

ES

=energy saving 

 

Normal pressure: nu

=not special functions; 

AU1

=auxiliary output 1 activation; 

AU2

=auxiliary 

output 2 activation; 

LiG

=light output activation 

Timed:  nu

=not  special  functions; 

AU1

=auxiliary  output  1  activation; 

AU2

=auxiliary  output  2 

activation; 

LiG

=light output activation 

 

Normal pressure: nu

=not special functions; 

ES

=energy saving 

Timed: nu

=not special functions; 

ES

=energy saving 

12.1

 

KEYBOARD LOCK 

It is possible to select partial or complete keyboard lock: 
-

 

brd

: type  of lock, 

UnL

=unlock; 

SEL

=only buttons SET  and ONOFF are  available  during lock 

condition (factory predefined configuration, not changeable); 

ALL

=all buttons locked. 

-

 

tLC

: power-on interval before locking keyboard 

 
NOTE:

 a power-off is required to deactivate the keyboard lock function 

12.2

 

CH620 OR VH620 KEYBOARD 

 

 

12.3

 

T620T OR T620H KEYBOARD 

 

 

12.4

 

T820T OR T820H KEYBOARD 

 

 

12.5

 

KEY COMBINATIONS 

 + 

 

To lock and unlock the keyboard.

 

 + 

 

To enter the programming mode. 

 + 

  To exit the programming mode.

 

Summary of Contents for Dixell XWi70K

Page 1: ... delay AC1 is always respected The second compressor is deactivated when T SET HY With parameter rCC it is possible to enable the compressor rotation function the activation of the first and the second compressor will be alternated to equalize the number of working hours of both of them In case of hot gas defrost operation it is possible to select if one or both compressors will be used 3 2 PULL D...

Page 2: ... for auxiliary regulator 2 Sd2 Auxiliary regulator 2 disabled during any defrost 9 ANALOGUE OUTPUTS The controller is equipped with 2 configurable analogue outputs type 4 20mA or 0 10Vdc both selectable It is possible to use them for proportional regulation of Evaporator fan speed Condenser fan speed Or as proportional output linked to the Auxiliary regulator 1 linked only to analogue output 1 Aux...

Page 3: ... manually by the user 11 7 DEAD BAND oAx db By setting oAx db the controller will perform a dead band regulation The heating element has to be connected to the correspondent relay If the temperature increases and reaches set point plus differential HY the compressor is started and then turned off when the temperature reaches the set point value again If the temperature decreases and reaches the se...

Page 4: ...accessible parameters under a specific menu operate as follows 1 Enter the Programming mode by pressing the SET DOWN key for 3 seconds 2 The display will show the first menu available under Pr1 level 14 4 HOW TO ENTER PARAMETER PROGRAMMING MENU PR2 In the PR2 level there are all the parameters of the instrument 14 4 1 ENTERING THE PARAMETER PROGRAMMING MENU PR2 1 Enter the Programming mode by pres...

Page 5: ... control ON in normal mode n Y Y VSC is never stopped during regulation CME Continuous control ON in energy saving mode n Y Y VSC is never stopped during regulation MnP Compressor speed threshold to activate lubrication valid for variable speed compressors only 0 disabled nu 1 to 100 OFF nu not used 1 to 100 select the percentage to activate function OFF compressor is stopped when the condition is...

Page 6: ...tput value at the end of the scale 2At Interval of time with analogue output 2 maximum value 0 to 255 sec analogue output is forced at 100 after any activation for 2At seconds ALARM MENU ALr ALP Probe selection for temperature alarms nP P1 P2 P3 P4 nP no probe Px probe x Note P4 Probe on Hot Key plug ALC Temperature alarm configuration Ab rE Ab absolute rE relative ALU High temperature alarm when ...

Page 7: ...mable defrost cycles during any ddx day Example when Ld2 12 4 the second defrost starts at 12 40 am during working days N B To disable a defrost cycle set it to nu not used Ex if Ld6 nu the sixth defrost cycle will be disabled SERIAL COMMUNICATION CoM Adr Serial address 1 to 247 device address for Modbus communication bAU Baudrate 9 6 19 2 select the correct baudrate for serial communication USER ...

Page 8: ...automatically downloaded into the Controller memory The doL message will blink followed a by a flashing End label 4 After 10 seconds the instrument will restart working with the new parameters 5 Remove the HOT KEY NOTE the message Err is displayed for failed programming In this case turn the unit off and then on if you want to restart the download again or remove the HOT KEY to abort the operation...

Page 9: ...t Maximum duration for Pull Down 04 00 Pr1 hour CCS Pull Down phase differential SET CCS or SET HES CCS 1 Pr1 F oHt Threshold for automatic activation of Pull Down in normal mode SET HY oHt 10 Pr1 F Con Compressor ON time with faulty probe 30 Pr1 min CoF Compressor OFF time with faulty probe 10 Pr1 min PbC Probe selection ntC Pr2 ot Probe P1 calibration 0 Pr1 F P2P Probe P2 presence yes Pr1 oE Pro...

Page 10: ...r2 C ndE Number of connected controllers for random refrost Syd rnd 1 Pr2 FAP Probe selection for evaporator fan P3 Pr1 FSt Evaporator fan stop temperature 50 Pr1 F HyF Evaporator fan regulator differential 2 Pr1 F FnC Evaporator fan operating mode O_n Pr1 Fnd Evaporator fan delay after defrost cycle 4 Pr1 min FCt Differential temperature for cyclic activation of evaporator fans 0 disabled 0 Pr1 F...

Page 11: ...ential in energy saving 1 Pr1 F ESt Energy saving timeout 24 Pr1 hour LdE Energy saving controls the lights lights OFF when energy saving goes active no Pr1 LHt Maximum duration for light output on 0 Pr1 min HUr Hours Pr1 Min Minutes Pr1 dAy Day of the week Pr1 dyM Day of the month Pr1 Mon Month Pr1 yAr Year Pr1 Hd1 First day of weekend nu Pr1 Hd2 2nd day of weekend nu Pr1 iLE Energy saving cycle ...

Page 12: ...r max interval for output variation 30 Pr2 sec tLv_nt PI regulator min interval for output variation 10 Pr2 sec rSr_nt PI regulator range for output value calculation RPM 10 90 Pr2 RPM 10 Str_nt PI regulator delay before range drift 60 Pr2 sec dPt_nt PI regulator divisor for PI response time reduction acts on both par tSt and iSt 1 Pr2 CMn_nt Continuous control ON in normal mode yes Pr2 CME_nt Con...

Page 13: ...Interval of time with analogue output 1 maximum value 5 Pr1 sec 2An_nt Type of analogue output 2 Vlt Pr1 2oL_nt Minimum value for analogue output 2 5 Pr1 2oH_nt Maximum value for analogue output 2 100 Pr1 2At_nt Interval of time with analogue output 2 maximum value 5 Pr1 sec ALP_nt Probe selection for temperature alarms nP Pr1 ALC_nt Temperature alarms configuration relative absolute Ab Pr1 ALU_nt...

Page 14: ...no Pr1 dd7_nt Saturday defrost no Pr1 Ld1_nt 1st defrost starting time nu Pr1 hour Ld2_nt 2nd defrost starting time nu Pr1 hour Ld3_nt 3rd defrost starting time nu Pr1 hour Ld4_nt 4th defrost starting time nu Pr1 hour Ld5_nt 5th defrost starting time nu Pr1 hour Ld6_nt 6th defrost starting time 12 00 Pr1 hour Adr_nt Serial address 1 Pr1 bAU_nt Baudrate 9 6 Pr1 brd_nt Type of keyboard lock UnL Pr2 ...

Page 15: ...ac 30K cycles Motor load 2HP 12FLA 72LRA 230Vac 30K cycles Motor load 1HP 16FLA 96LRA 110Vac 30K cycles Motor load 4 9FLA 29 4LRA 110 230Vac 30K cycles 14 8 A 230Vac 30K cycles oA2 SPST 16A 250VAC Resistive load 10A 230 Vac 30K cycles 14A NO 230Vac 50K cycles oA3 SPST 8A 250VAC Resistive load 10A 110 230Vac 30K cycles Motor load 1 2HP 230Vac 30K cycles Motor load 4 9FLA 29 4LRA NO 110 230Vac 30K c...

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