Humidity Controller TH136 INSTRUCTION MANUAL

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1 R Humidity Controller TH INSTRUCTION MANUAL

2 Contents. Introduction.... Coding.... Mounting.... Electrical Connection.... Panel Layout.... Operation.... PID Auto-Tuning.... Configuration... Specifications Accuracy Sample Rate Input Resolution Range Outputs s Control Algorithm Communications Power Supply Environmental Dimensions ±% RH ms HM00 Humidity Sensor 0.% RH 0.0~99.9% RH Relay, NO., max.0vac, A Logic, 0V/0mA, drive SSR Triac, drive SCR Analog, 0~0mA, ~0mA, 0~0mA, 0~V, ~V, 0~0V Relay, NO., max.0vac, A Upper and lower limit alarm, deviation alarm ON/OFF PID with PID Auto-Tune RS-, RS- ~VAC, /0Hz Temp: 0~0 C, Rel. Humidity: 00% 9mm 9mm 00mm(W H D) mm mm 00mm(W H D)

3 Introduction The TH humidity controller using the HM00 humidity sensor(range: 0~00% RH, long lifetime) to measure the humidity directly. The controller has high control precision and friendly interface (easy to operate), the wiring is simple to configure too. With the humidifier and dehumidifier equipments, TH can be used to form a closed-loop humidity control system. Idea for ventilation systems in grain stores, environmental protection, pharmaceuticals, paper making, food processing, incubation, etc. Coding TH Optional Option Transmission of Measurement Value COMMS 0 None RS( wires), optical isolation, distance: m RS( wires), optical isolation, distance:.km 0 None R Relay, NO., A/0VAC 0 None Output Output R L T D Relay, NO., A/0VAC Logic, 0V/0mA, drive SSR Triac, drive SCR Analog, 0~0mA, ~0mA, 0~0mA, 0~V, ~V, 0~0V Dimensions NONE M 9*9*00mm **00mm e.g. TH/R/R/0/: Represent the controller with relay for output and output, without alarm, with RS communication option, the outline dimension is 9mm(W)*9mm(H)*00mm(D).

4 Mounting ) Prepare a square cut-out in the mounting panel to the size shown below. If a number of controllers are to be mounted in the same panel they should be spaced as shown. ) Insert the controller through the cut-out. ) From behind of the panel, catch the mounting bracket to the holes top and bottom of the case, and screw to fix. Dimensions TH OP OP COM RAMP MAN AL 9 Panel cut-out 9 PAR A/M 0 TH THM OP OP COM RAMP MAN AL Panel cut-out PAR A/M 0 THM Note: If a number of controllers are to be mounted in the same panel they should be spaced as shown above.

5 Electrical Connection. Rear Terminal Layout TH THM Note: In order to avoid the electrical noise to the input signal, the signal line should be separated from the power line.. Connection Diagram Power Supply 00~0VAC RXD 9 0 AL T/R(-) 9 TXD 9 T/R(+) 0 0 OUT - + RS GND RS GND(White) OUT - + Vin(Yellow) +V(Blue) HM00 Humidity Sensor Logic or Analog output Relay TH(9*9)

6 Power Supply 00~0VAC 9 AL 0 OUT GND(White) OUT Vin(Yellow) +V(Blue) HM00 Humidity Sensor Logic or Analog output Relay THM(*) Panel Layout OP OP COM RAMP MAN AL PAR A/M TH S.N. Items Description Display Display OP OP COM RAMP MAN AL PAR A/M Indicates Process Value and Parameters Indicates Setpoint and Parameter Values Output indicator Output indicator Communication indicator Program running indicator Manual operating mode indicator s indicator Parameter key Auto/Manual key Up key Down key Operation. Panel Overview When the controller is powered on, the upper display indicates the model code of the controller, and the lower display indicates the software version. seconds later, the upper display will indicate measured values (), on selecting a parameter, the appropriate parameter abbreviation appears. The lower display indicates setting values (), or on selecting a parameter, the appropriate parameter value appears here. When the controller is running in manual operating mode, the lower display indicates the output power.

7 There are LED indicators on the panel. The LED indicators indicate the current status of the controller. Both the LED indicator 'OP' & 'OP' indicates the state of the relevant output. The LED is lit when the output is 'ON'. The indicator COM flashes when the controller is in active communication with a host computer. (only if option communication' has been installed) The indicator RAMP is lit when the set point is ramping towards the target setpoint (only if ramp-to-setpint ha been configured). The indicator MAN indicates manual operating mode. The indicator AL is lit when alarm is active.. Setpoint Adjusting During the basic functioning, press keys or to increase or decrease setpoint. Keeping it pressed results in a progressively faster variation. Setpoint adjustable range: SP L ~ SP K.. Operating Parameter List When the controller is in the / displaying status, depress PAR key for seconds, the first parameter will appear in the upper display, the lower display will show the value of the parameter. At this time, use keys or to modify the value of the parameter. After modification, press PAR key, the controller will display the next parameter, at the same time, the modified data will be saved in the memory. If the last parameter is displayed or there is no key operation within seconds, the controller will return to the / displaying status. Operating Parameter List S.N. Mnemonic Parameter Adjustable Range Comments TVNE PID Auto-Tune 0FF ON AL 0.~00.0% RH Stop PID auto-tuning Start PID auto-tuning AL 0.~00.0% RH KYS AL KYS AL 0.~0.00% RH 0.~0.00% RH Optional 9 0 PROP Proportional band 0.~00.0% RH INT.T Integral time 0FF, ~000 sec. DER.T Derivative time 0FF, ~999 sec. X.<T Humidification cycle time 0.~0.0 sec. LOC Parameter Lock 0~9999 Appears only if (TRL = P,D Set as 0 to enter the next level menu

8 . Parameter description ). Control parameters ( PROP,INT.T,DER.T) These three parameters directly affect the precision of control. The PID auto-tuning function could automatically measure, compute, and set these three constants. If the controller is configured as an ON/OFF controller, the proportional band(prop) becomes the output hysteresis. Proportional band(prop) is the band of error within which the power output is proportional to the error. Error values outside this band give 00% or 0% power output. If the proportional band is too narrow it will give control resembling on/off control with continuous oscillation. Wide proportional bands give stable but sluggish control with an offset in the steady-state condition. Parameter INT.T provides automatic compensation for long term control offsets. It is the time taken for the output to change by one proportional band width for a constant error equal to the proportional band. Typically this must be set to a value longer than the response time of the process being controlled. The parameter DER.T provides anticipation and fast recovery from disturbances. It can be taken as the 'look ahead' period of the controller. It is typically set to a time approximately one sixth of the integral time. ). Humidification cycle time ( K.CT) The cycle time of the switching outputs(k.ct) should be set to high values(e.g. 0 seconds) if contactors are used, and to low values(e.g. second for logic output) if thyristors are used. PID Auto-Tuning In order to achieve a good control performance, the PID control parameters(prop, INT.T, DER. T) must be optimized first. The PID auto-tuning function could automatically measure, compute, and set PID constants. Auto-tuning can be activated under the following conditions: Automatic operating(closed loop) PID control algorithm Before activating the auto-tuning, the actual value should be broadly stable. By setting the parameter TVNE to ON, the auto-tunging will start. During auto-tuning execution, code TVNE flashes in the lower display. The tuning operation is finished when the code TVNE no longer flashes. The user can abort PID auto-tuning at any time by setting the parameter TVNE to 0FF. During auto-tuning, the controller will execute ON/OFF regulation, will oscillate,. period later, autotuning finished. According to the period and amplitude of the oscillation, the controller will calculate the optimum PID parameters and stored them in the memory automatically. During auto-tuning, do not change any of the parameters, because each modification of setpoint will restart the auto-tuning.

9 CP setpoint Output 00% 0% Auto-tuning from setpoint - heating process Configuration The controller should be configured correctly before put it into use, such as the control algorithm, alarm mode, etc. When the controller is in the / displaying status, depress PAR key for seconds, the st parameter will appear in the upper display, the lower display will show the value of the parameter. At this time, use or key to modify the value of the parameter. After modification, press PAR key, the controller will display the next parameter, at the same time, the modified data will be saved in the memory. If the last parameter is displayed or there is no key operation within seconds, the controller will return to the / displaying status. After configuration, set the Parameter Lock ( LOC) to a new value to protect the parameters safety. Configuration Parameter List S.N. Mnemonic Parameter Adjustable Range Comments 0FST Input/calibration offset -9.99~0.00 ADDR Instrument Address 00~99 BAVD Baud rate (TRL Control Algorithm output mode ALO (AL) output mode ALO (AL) ACT Control Action N.0F P,D 0FF K,AL LOAL KDA LDA DA0 NDA0 REV D,R ON/OFF Control PID Control OFF Full-scale high alarm Full-scale low alarm High deviation alarm Low deviation alarm Outside deviation band alarm Inside deviation band alarm Direct Reverse

10 Parameter Description ). Control algorithms - (TRL There are different control algorithms can be selected: ON/OFF and PID. If (TRL=0N.0F, the controller is configured as an ON/OFF controller, the output hysteresis is set using the proportional band(prop). If (TRL=P,D, the controller is configured as a PID controller, PID is intended for high precision control applications. SP PROP SP Output Output 00% 00% 0% 0% ON/OFF Control PID Control ). s - ALO, ALO Six different types of alarm can be configured with ALO and ALO: K,AL, LOAL, KDA, LDA, DAO, NDAO as the following table shows. The hysteresis is KYS, KYS. is used to provide a definite indication of the alarm condition and to prevent alarm relay chatter. When ALO, ALO are configured as KDA, ALO, ALO can be used as dehumidification output. When ALO, ALO are configured as LDA, ALO, ALO can be used as humidification output. Full-scale high alarm(k,al) Full-scale low alarm(loal) Outside deviation band alarm( DAO) value value High-deviation alarm( KDA) Low-deviation alarm(lda) Inside deviation band alarm(ndao) value value value value

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