background image

DATALOGIC AUTOMATION - TH-TS series 

 

– INSTRUCTION MANUAL - Rev. 04 - PAGE 3

 

 

Using par. 

“diSP”, 

located in the group 

]

PAn”, 

it is possible to set 

normal visualization of the display which can be the process variable 
(dEF), the control power (Pou), the active Set Point (SP.F) the Set 
Point operating when there are active ramps (SP.o) or alarm 
threshold AL1 (AL1).

 

Again in the group 

]

PAn”

 the  par. 

“AdE”

 is present that defines 

the 3 led shift index functioning. 
The lighting up of the green led = indicates that the process value is 
within the range  [SP+AdE ... SP-AdE], the lighting up of the led – 
indicates that the process value is lower than [SP-AdE] and the 
lighting up of the led + indicates that the process value is higher than 
[SP+AdE]. 

 
4.2 - OUTPUTS CONFIGURATION 

The instrument’s outputs can be programmed by entering the group 
of parameters 

]

Out

, where the relative parameters  

“O1F” 

and

 

“O2F” 

(depending on the number of outputs available on the 

instrument) are located.

 

The outputs can be set for the following functions : 
- Main control output (1.rEG) 
- Secondary control output (2.rEG) 
- Alarm output normally open (ALno) 
- Alarm output normally closed (ALnc) 
- Alarm output normally closed with led reverse indication (ALni) 
- Output deactivated (OFF) 
The coupling outputs number outputs – number alarms can be made 
in the group referring to the alarm to the alarm (“

]

AL1”). 

 

4.3 – ON/OFF CONTROL (1rEG) 

All the parameters referring to the ON/OFF control are contained in 
the group 

]

rEG”. 

This type of control can be obtained by programming par.

"Cont"

 = 

On.FS or = On.FA  and works on the output programmed as 

1.rEG,

 

depending on the measure, on the active Set Point 

“SP”

, on the 

functioning mode 

"Func” 

and on the hysteresis 

"HSEt

". 

The instrument carries out an ON/OFF control with symmetric 
hysteresis if “Cont" = On.FS or with asymmetrical hysteresis if “Cont” 
= On.Fa. 
The control works in the following way : in the case of reverse action, 
or heating (“FunC”=HEAt), it deactivates the output, when the 
process value reaches [SP + HSEt] in case of symmetrical 
hysteresis, or [SP] in case of asymmetrical hysteresis and is then 
activated again when the process value goes below value [SP - 
HSEt].  
Vice versa, in case of direct action or cooling ("Func”=CooL), it 
deactivates the output, when the process value reaches [SP - HSEt] 
in case of symmetrical hysteresis, or [SP] in case of asymmetrical 
hysteresis  and is activated again when the process value goes 
above value [SP + HSEt]. 

 

 
4.4 - NEUTRAL ZONE ON/OFF CONTROL (1rEG - 2rEG)

 

All the parameters referring to Neutral Zone ON/OFF control are 
contained in the group 

]

rEG”. 

This type of control can be obtained when 2 outputs are 
programmed respectively as 1rEG and 2rEG and the par. 

“Cont”

 = 

nr . 
The Neutral Zone control is used to control plants in which there is 
an element which causes a positive increase (ex. Heater, humidifier, 
etc.) and an element which causes a negative increase (ex. Cooler, 
de-humidifier, etc). 

The control functions works on the programmed outputs depending 
on the measurement, on the active Set Point 

“SP” 

and on the 

hysteresis 

"HSEt

". 

The control works in the following way : it deactivates the outputs 
when the process value reaches the Set Point and it activates the 
output 1rEG when the process value goes below value [SP - HSEt], 
or it activates the output 2rEG when the process value goes above 
[SP + HSEt].  
Consequently, the element causing a positive increase has to be 
connected to the output programmed as 1rEG while the element 
causing a negative increase has to be connected to the output 
programmed as 2rEG. 

 

If 2rEG output is used to control compressor is possible to use the 
“Compressor Protection” function that has the meaning to avoid 
compressor “short cycles”. 
This function allows a control by time on the output 2rEG activation, 
independently by the temperature control request. 
The protection is a “delayed after deactivation” type. 
This protection permits to avoid the output activation for a time 
programmable on par. “

CPdt

” (expressed in sec.); the output 

activation will occurs only after the elapsing of time “CPdt”. 
The time programmed on parameter “CPdt” is counted starting from 
the last output deactivation. 
Obviously, whether during the time delay caused by the compressor 
protection function, the regulator request should stop, the output 
activation foreseen after time “CPdt” would be erased. 
The function is not active programming “CPdt” =OFF. 
The led relative to 2rEG output blinks during the phases of output 
activation delay, caused by “Compressor Protection” function. 
 

4.5 - SINGLE ACTION PID CONTROL (1rEG) 

All the parameters referring to PID control are contained in the group 

]

rEG”. 

The Single Action PID control can be obtained by programming 
par.

"Cont"

 = Pid  and works on the output 1rEG depending on the 

active Set Point 

“SP”

, on the functioning mode 

"Func” 

and on the 

instrument’s PID algorithm with two degree of freedom. 

 

In order to obtain good stability of the process variable, in the event 
of fast processes, the cycle time “tcr1” has to have a low value with a 
very frequent intervention of the control output. 
In this case use of a solid state relay (SSR) is recommended for 
driving the actuator. 
The Single Action PID control algorithm foresees the setting of the 
following parameters : 

"Pb"

 – Proportional Band 

"tcr1"

 – Cycle time of the output 1rEG 

"Int"

 – Integral Time 

"rS"

 – Manual Reset (if “Int =0 only) 

"dEr"

 – Derivative Time 

“FuOC” - 

Fuzzy Overshoot Control 

This last parameter allows the variable overshoots at the start up of 
the process or at the changing of the Set Point to be avoided. 

Summary of Contents for TH Series

Page 1: ...le to exit by the fast programming mode or it is possible to visualise the alarm thresholds see par 2 3 To exit the fast Set programming it is necessary to push key P after the visualisation of the last Set Point or alternatively if no key is pressed for approx 15 seconds the display will return to normal functioning automatically 2 2 SELECTION OF THE CONTROL STATE AND PARAMETER PROGRAMMING By pus...

Page 2: ... the power supply to the equipment It is also recommended that all the electrical circuits connected to the instrument must be protect properly using devices ex fuses proportionate to the circulating currents It is strongly recommended that cables with proper insulation according to the working voltages and temperatures be used Furthermore the input cable of the probe has to be kept separate from ...

Page 3: ...par Cont nr The Neutral Zone control is used to control plants in which there is an element which causes a positive increase ex Heater humidifier etc and an element which causes a negative increase ex Cooler de humidifier etc The control functions works on the programmed outputs depending on the measurement on the active Set Point SP and on the hysteresis HSEt The control works in the following wa...

Page 4: ...the connected plant in order to calculate the most suitable PID parameters If Auto 1 or Auto 2 and if at the Auto tuning start the condition for the lower process value is not found with Func HEAt than SP SP 2 or higher with Func CooL than SP SP 2 the display will show ErAt and the instrument will be swapped to normal control conditions according to the previously programmed parameters To make the...

Page 5: ...re to set his functioning it s necessary to establish to which output the alarm has to correspond to First of all it s necessary to configure in the parameters group Out the parameters relative to the outputs required as alarm O1F O2F programming the parameter relative to the desired output as follows ALno if the alarm output has to be ON when the alarm is active while it s OFF when the alarm is n...

Page 6: ...ble to the low threshold AL1L while the example of the high alarm is applicable to the high threshold AL1H 4 11 LOOP BREAK ALARM FUNCTION All the parameters referring to the Loop Break alarm function are contained in the group LbA The Loop Break alarm is available on all the instruments which intervenes when for any reason short circuit of a thermocouple thermocouple inversion load interruption th...

Page 7: ...HAb LodE HidE LHdE HiAb OPER 23 Ab1 Alarm AL1 functioning 0 15 0 CONF 24 AL1 Alarm AL1 threshold AL1L AL1H 0 OPER 25 AL1L Low threshold band alarm AL1 or Minimum set alarm AL1 for high or low alarm 1999 AL1H 1999 CONF 26 AL1H High threshold band alarm AL1 or Maximum set alarm AL1 for high or low alarm AL1L 9999 9999 CONF 27 HAL1 Alarm AL1 hysteresis OFF 9999 1 CONF 28 AL1d Activation delay of alar...

Page 8: ...ed value InE OPE FUNCTIONING IN CASE OF MEASUREMENT ERROR This defines the error conditions of the input allowing the instrument to give the power programmed on par OPE as output The possibilities are Or the condition occurs in case of over range or probe breakage Ur the condition occurs in case of under range or probe breakage Our the condition occurs in case of over range or under range or probe...

Page 9: ...tion 4 if it s desired to activate the autotuning automatically at the end of programmed Soft Start cycle The Autotuning will start at the condition that the process value is lower with Func HEAt than SP SP 2 or higher with Func CooL than SP SP 2 OFF Autotuning disabled When it s occurring an Autotuning cycle led AT blinks SELF SELF TUNING ENABLE Parameter used to enable yES or disable no the Self...

Page 10: ...ry to repeat the auto tuning LbA Loop control interrupted Loop break alarm Check the working of probe and actuator and swap the instrument to rEG control ErEP Possible anomaly of the EEPROM memory Push key P In error conditions the instrument provides an output power as programmed on par OPE and activates the desired alarms if the relative parameters ALni have been programmed yES 6 2 CLEANING We r...

Page 11: ... 55 0 150 0 C 67 0 302 0 F NTC 103 AT2 SEnS ntc 50 110 C 58 230 F 50 0 110 0 C 58 0 230 0 F 7 5 MECHANICAL DIMENSIONS PANEL CUT OUT AND MOUNTING mm THT Series For any further information please contact DATALOGIC AUTOMATION Via Lavino 265 40050 Monte S Pietro Bologna Italy Tel 39 051 6765611 Fax 39 051 6759324 www automation datalogic com e mail info automation datalogic com Datalogic and the Datal...

Reviews: