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Programming “r.t1” = oF the output in probe error condition will
remain switched off.

Programming instead “r.t1” to any value and “r.t2” = oF the output
in probe error condition will remain switched on.

Remember that the temperature regulation function can be
conditioned by the “Continuous Cycle”, “Compressor Protection

and output delay at power-on”, “Defrost”, “Door open” and “external
alarm with outputs disable”  functions.

4.7 - COMPRESSOR PROTECTION FUNCTION AND DELAY AT
POWER-ON

The function “Compressor Protection” aims to avoid close start ups

of the compressor controlled by the instrument in cooling
applications.

This function foresees 3 time controls on the switching on of the
output configured as “ot” associated with the temperature

regulation request.
The protection consists of preventing the output being switched on
during the times set in the parameters

 

“P.P1”, “P.P2” and “P.P3”

and therefore that any activation occurs only after all the times has
finished.
First control (par. 

“P.P1”

 ) foresees a delay to the output activation

(switching-on delay).

Tem p.

off

O N

SP 

tim e

r.d

off

off

off

O N

O N

Pr1

Out

(ot)

Second control (par. 

“P.P2”

 )  foresees an inhibition to the

activation of the output  by a time delay that starts when the output
is turning off (delay after switching-off).

ON

o ff

P.P2

P.P2

P.P2

SP 

Tem p.

tim e

r.d

O N

O N

o ff

o ff

Pr1

O ut

(ot)

Third control (par. 

“P.P3”

 ) foresees an inhibition to the activation

of the output "Out" by a time delay that starts when the output was
turning on last time (delay between switching-on).

P.P3

off

SP 

ON

Temp.

P.P3

P.P3

time

r.d

off

off

ON

ON

Pr1

(ot)

Out

During the output inhibition  the led OUT (Cool o Heat) blinking.
It is also possible to prevent activation of the output after the
instrument is turned on, for the time set in the parameter 

“P.od”

.

During the power on delay phase, the display shows the indication

od,

 alternating with the normal visualisation.

All the functions are disabled by relative parameters = oF.

4.8 - DEFROST CONTROL

The defrosting control acts on the outputs configured as “ot” and
“dF”

.

The type of defrosting that the instrument must carry out is set by
the parameter 

“d.dt”

 that can be programmed:

= EL

 - WITH ELECTRICAL HEATING  (or BY STOPPING

COMPRESSOR): during defrosting, the output “ot” is deactivated

while the output “dF” is enabled.
The defrost will be by Stopping compressor if not using the “dF”

output

= in

 - WITH HOT GAS or INVERSION OF CYCLE:

during defrosting the outputs “ot” and “dF” are enabled

= no

 - WITHOUT COMPRESSOR OUTPUT CONDITIONING:

during defrosting, the output “ot” continuous to operate in order to
temperature controller while the output “dF” is enabled.

= Et

 -  WITH ELECTRICAL HEATING AND DEFROSTING

TEMPERATURE CONTROL: during defrosting, the output “ot” is
deactivated while the output “dF” operate as evaporator

temperature control. In this mode the defrost lenght is by time-out   
(time "d.dE").  During the defrost "dF" output  it behaves as an

heating mode temperature control  with Set = "d.tE" and fixed
differential at 1°C and operate in order to evaporator probe (EP).

4.8.1 -  AUTOMATIC DEFROST

 

STARTS

The automatic control of defrost  occours by interval times.
The automatic defrost function is activate when at the parameter

“d.di”

 is set the defrost interval time.

The first defrost after swiching on can be set by par. 

“d.Sd”

This allows to perform the first defrost to a different interval from
"d.di." time.

If it is desired that to every instrument power on a defrost cycle is
realized (as long as the conditions set in the parameters “tS” and
"tE" apply) program the par. "d.Sd" = oF.
This allows the evaporator to be permanently defrosted, even when
 frequent interruptions to power supply occur that may cause the

cancellation of the various defrosting cycles.
Instead

 

if is desired all defrost to the same interval program "d.Sd"

= "d.di."
Automatic defrost function is disable when “d.di” = oF.

Counting mode interval  and automatic defrost starts is set through
the parameter 

"d.dC"

 that can be programmed:

= rt

 - intervals with counts the total function time (instrument on)

This mode results that currently used in the refrigerators systems.

= ct

 - intervals with counts only the compressor function time

(output “ot” switched on)
Mode typically used in the positive temperature refrigerators

system with defrost by stopping compressor.

= cS

 - the instrument carries out a defrosting cycle at each

compressor stop (i.e. at each deactivation of the output “ot”) or

however at defrost interval end with counts the total function time
(instrument on).

If "d.di" = oF the defrost happens only to the compressor stop.
This mode is used only on particular refrigerator system in which is

desired to always have the evaporator to the maximum efficiency
conditions every compressor cycle.

= St

 - Defrost for temperature evaporator. The instrument starts a

defrost cycle when the temperature evaporator (“EP” probe) goes
below the “d.tS” programmed temperature or however at defrost

interval end with counts the total function time (instrument on).
If "d.di" = oF the defrost happens only when the evaporator

temperature goes below“d.tS” temperature.
This system can be used in heat pump defrost system (in this case

the defrosting intervals  are usually disabled) or to guarantee a
defrost if the evaporator reaches very low temperatures that

normally result symptomatic of a bad thermal exchange in
comparison to the normal working conditions.

= dd

 - "DYNAMIC DEFROST INTERVALS SYSTEM". This mode

allows to dynamically reduce in progress the defrost interval
counting ("d.di" or "d.Sd" if is the first defrost), anticipating so the

execution of a defrost when it was necessary, in order to an
algorithm that allows to notice a decrease performances of  

refrigerator thermal exchange.  
Besides it maintains activates the mode "St" that it allows a further

possibility of control of the defrost in order to notice a decrease
performances of  refrigerator thermal exchange.

The algorithm allows to esteem a reduction of  thermal exchange in
base to the increase of the difference of temperature between Pr1

TECNOLOGIC spa - W09Y 

 

- OPERATING INSTRUCTIONS - Vr. 01 - 07/09 -  ISTR-MW09YENG1 -  PAG. 6

Содержание W09Y

Страница 1: ...UNCTION AND DELAY AT POWER ON 4 7 TEMPERATURE CONTROL 4 6 ACTIVE SET POINT SELECTION 4 5 OUTPUTS AND BUZZER CONFIGURATION 4 4 DIGITAL INPUT 4 3 MEASURING AND VISUALIZATION 4 2 ON STAND BY FUNCTION 4 1 FUNCTIONS 4 ELECTRICAL WIRING DIAGRAM 3 4 ELECTRICAL CONNECTIONS 3 3 MECHANICAL MOUNTING 3 2 PERMITTED USE 3 1 INFORMATION ON INSTALLATION AND USE 3 KEYBOARD LOCK FUNCTION 2 7 PARAMETERS CONFIGURATIO...

Страница 2: ...GRAMMING 2 1 FAST PROGRAMMING OF SET POINT Press the key P then release it and the display will show SP or SP2 if the second set is active at that time alternating with the set value To change it press the UP key to increase the value or DOWN to decrease it These keys increase or decrease the value one digit at a time but if the button is pressed for more than one second the value increase or decr...

Страница 3: ...DAPTER 12 VDC For additional info please have a look at the A01 instruction manual 2 7 KEYBOARD LOCK FUNCTION On the instrument it s possibile to lock completely the keyboard This function is particularly useful when the regulator is reachable by the users and it s desired to avoid any modification To activate the keyboard lock it s enough program the par t Lo to a different value to oF The value ...

Страница 4: ... the same func tion priority goes to i P2 Using the parameter i Ft it is possible to set the time constant for the software filter for measuring the input values to be able to reduce the sensitivity to measurement disturbances increasing the time Through the parameter i dS it is possible to fix the normal visualisation on the display that can be the measurement of the probe Pr1 P1 the measurement ...

Страница 5: ...the ot output is disabled This function mode can be used as a command for a second compressor or for all other working utilities according to the same ot output conditions but which must be delayed after the start up of the compressor to avoid excess electricity absorption 2 Activation by front key U or DOWN AUX or by digital input with contact normally open the output is activated by pressing the...

Страница 6: ... d tE and fixed differential at 1 C and operate in order to evaporator probe EP 4 8 1 AUTOMATIC DEFROST STARTS The automatic control of defrost occours by interval times The automatic defrost function is activate when at the parameter d di is set the defrost interval time The first defrost after swiching on can be set by par d Sd This allows to perform the first defrost to a different interval fro...

Страница 7: ...temperature measured by the evaporator probe exceeds the temperature set in the parameter d tE If this temperature is not reached in the time set in the parameter d dE defrosting is interrupted In order to avoid pointless defrosting the parameter d tS in d dC rt ct cS mode is foreseen that sets the enablement temperature for defrosting If the temperature measured by the probe is higher than the on...

Страница 8: ... of memorised alarm can only be carried out manually by pressing any key when the alarm has ended typical application for light signal At when one wants the function described as At but with an inverse function output activated in normal condition and disabled in alarm status AL when one wants the function described as AL but with inverse logic output activated in normal conditions and disabled in...

Страница 9: ...vice versa 5 PROGRAMMABLE PARAMETERS TABLE Here below is a description of all the parameters available on the instrument Some of them may not be present because depend on the model type of instrument C1 C0 F0 C1 F1 Unit of measurement and resolution decimal point C0 C with 1 res i uP 7 nt Pt nt Probes Type i SE 6 i parameters relative to inputs 0 0 S LS S HS Set Point 2 SP2 5 0 0 S LS S HS Set Poi...

Страница 10: ... dt 23 d parameters relative to defrosting control o parameters relative to configuration of outputs and buzzer 3 00 oF 0 01 9 59 min sec 99 5 min sec x10 Alarm delay with door open A oA 52 1 00 oF 0 01 9 59 hrs min 99 5 hrs min x10 Temperature Alarms delay after defrost and continuous cycle and unlock display delay after defrost A dA 51 2 00 oF 0 01 9 59 hrs min 99 5 hrs min x10 Temperature Alarm...

Страница 11: ...d Reason Message 6 2 CLEANING We recommend cleaning of the instrument only with a slightly wet cloth using water and not abrasive cleaners or solvents 6 3 GUARANTEE AND REPAIRS The instrument is under warranty against manufacturing flaws or faulty material that are found within 12 months from delivery date The guarantee is limited to repairs or to the replacement of the instrument The eventual ope...

Страница 12: ...tion 1 or 0 1 Overall accuracy 0 5 fs 1 digit Sampling rate 130 ms Display 3 Digit Red Blue optional h 15 5 mm Software class and structure Class A Compliance ECC directive EMC 2004 108 CE EN55022 class B EN61000 4 2 8KV air 4KV cont EN61000 4 3 10V m EN61000 4 4 2KV supply inputs outputs EN61000 4 5 supply 2KV com mode 1 KV diff mode EN61000 4 6 3V LV 2006 95 CE EN 60730 1 EN 60730 2 7 EN 60730 2...

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