CHAPTER 4 APPLIED OPERATION CHAPTER44 APPLIED OPERATION

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Transcription:

CHAPTER 4 APPLIED OPERATION CHAPTER44 APPLIED OPERATION 4 1

4.1 Shifting Input Values Shifting input 1-point shift Temperature Upper-limit value Lower-limit value 0 After shift Before shift Input shift value 100 Input Operation Procedure Operation level Adjustment level Temperature input shift Operation level 4 2

2-point shift Temperature Upper-limit temperature input shift value Upper-limit value After shift Before shift Lower-limit value 0 Lower-limit temperature input shift value 100 Input How to calculate input shift values (2-point shift) [Preparations] Non-contact temperature sensor (C) Control target (B) Thermometer (A) E5CN Figure 1 Configuration When Compensating a Non-contact Temperature Sensor 4 3

1-point shift method Adjustment level Upper-limit temperature input shift value Lower-limit temperature input shift value Controller readout (A) Temperature readout after shift (e.g. 120 C) Temperature readout before shift (e.g. 110 C) After shift Input shift value (e.g. 10 C) Before shift 0 Near set point (e.g. 120 C) Figure2 1-point Temperature Input Shift Temperature readout of control target (B) 2-point shift method Controller readout (A) Temperature readout after input shift X2 (e.g. 110 C) Temperature readout before input shift Y2 (e.g. 105 C) Set temperature upper limit YH (e.g. 260 C) After shift Upper-limit temperature input shift value Before shift Temperature readout before input shift Y1 (e.g. 40 C) Temperature readout after input shift X1 (e.g. 25 C) Lower-limit temperature input shift value 0 X1 room temperature (e.g. 25 C) Near X2 set point (e.g. 110 C) Set temperature lower limit YL (e.g. 0 C) Figure3 2-point Temperature Input Shift Temperature readout of control target (B) 4 4

Example of 2-point temperature input shift Adjustment level Lower-limit temperature input shift value Upper-limit temperature input shift value 4 5

4.2 Alarm Hysteresis Upper-limit alarm Alarm hysteresis Lower-limit alarm Alarm hysteresis ON ON OFF OFF Alarm value Alarm value Standby sequence Restart 4 6

Close in alarm/ open in alarm Alarm Output Function Output Alarm LCD Close in ON ON Lit alarm OFF OFF Out Open in ON OFF Lit alarm OFF ON Out Summary of alarm operations Alarm type: lower-limit alarm with standby sequence Alarm value PV Alarm hysteresis Alarm output Standby sequence canceled Time ON OFF ON (closed) OFF (open) Parameters Symbol Parameter : Level Description Alarm 1 to 2 hysteresis: Advanced function setting level Standby sequence reset method: Advanced function setting level Alarm 1 to 2 open in alarm: Advanced function setting level Alarm Alarm Alarm 4 7

4.3 Setting Scaling Upper and Lower Limits (analog input) Analog input Scaling upper limit Scaling lower limit Decimal point Readout (humidity) 50mV Upper-limit value (95.0%) Lower-limit value (10.0%) 0 0mV 100%FS Input (0 to 50 mv) Operation Procedure Initial setting level Input type Scaling upper limit Scaling lower limit Decimal point 4 8

4.4 Executing Heating and Cooling Control Heating and cooling control Dead band Output Control Method Heating control (standard) Cooling control (standard) Heating and cooling control Control Output Alarm 2 output Direct/ reverse operation Control output (heat) - Reverse operation Control output (heat) - Direct operation Control output (heat) Control output (cool) Reverse operation Dead band: dead band width = positive Output Overlap band: dead band width = negative Heating side Cooling side PV 0 0 Set point Heating side Set point Cooling side PV Cooling coefficient Output Output Heating side P 1.0 Heating side P 1.0 Heating side P Cooling side P PV 0 Set point Heating side P 0.8 0 Heating side P Set point Heating side P 1.5 Cooling side P PV 4 9

Setup Setting heating and cooling control Operation Procedure Initial setting level Standard/heating and cooling Setting dead band Operation Procedure Adjustment level Dead band Setting cooling coefficient Operation Procedure Adjustment level Cooling coefficient 4 10

4.5 Externally Setting the SP Setting event input Number of Multi-SP Uses Event Input 1 Function Event Input 2 Function 0 Set in event input assignment 1 Set in event input assignment 2 1 Multi-SP (SP 0/1 selectable) Set in event input assignment 2 2 Multi-SP (SP 0/1/2/3 selectable) E5CN 11 12 13 EV1 EV2 How to use multi-sp When multi-sp is used by event input When number of multi-sp uses is set to 1 Event input 1 Selected Set Point OFF Set point 0 ON Set point 1 When number of multi-sp uses is set to 2 Event input 1 Event input 2 Selected Set Point OFF OFF Set point 0 ON OFF Set point 1 OFF ON Set point 2 ON ON Set point 3 4 11

Setting by key operation Multi-SP Selected Set Point 0 Set point 0 1 Set point 1 2 Set point 2 3 Set point 3 Setup To select set points (0/1/2/3) Operation Procedure 4 12

Operation level Initial setting level PV/SP Input type Move to advanced function setting level Advanced function setting level Parameter initialize E5CN Number of multi-sp uses setting Number of multi-sp uses 11 12 EV1 EV2 13 4 13

Executing run/ stop control Setting Input Contact State Event input 1 or 2 ON STOP Event input 1 or 2 OFF RUN Note: Parameter Name Number of multi-sp uses Setting 0 1 2 Event input assignment 1 None or Run/stop Not displayed (none) Not displayed (none) Event input assignment 2 None or Run/stop None or Run/stop Not displayed (none) Parameters Symbol Parameters : Level Description Event input 1 assignment: Advanced function setting level Event input 2 assignment: Advanced function setting level For event input function Number of multi-sp uses: Advanced function setting level 4 14

4.6 Setting the SP Upper and Lower Limit Values Set point limitter Sensor range Setting range Changed to upper limit value Input type changed Set point limitter Changed to the new upper limit value Set point Upper- and lower-limit values of the limitter Sensor upper- and lower-limit values C C A B Set point Set point Set point B (setting possible) (setting impossible) Parameters Symbol Parameters : Level Description Set point upper limit : Initial setting level For limiting SP setting Set point lower limit : Initial setting level For limiting SP setting 4 15

Setup -200 1300 Sensor range Set point limitter -100 1000 Setting the set point upper limit Operation Procedure Initial setting level Input type Set point upper limit Setting the set point lower limit Operation Procedure Set point lower limit 4 16

4.7 Executing the SP Ramp Function (limiting the SP change rate) SP ramp SP SP after change SP ramp SP ramp set value Time unit of ramp rate (min.) SP before change Time Change point Parameters Symbol Parameters : Level Description MV upper limit : For limiting manipulated variable Advanced function setting level MV lower limit : For limiting manipulated variable Advanced function setting level Set point upper limit: For limiting SP setting Initial setting level Set point lower limit: For limiting SP setting Initial setting level SP ramp set value: Advanced function setting level For limiting SP change rate 4 17

Operation at start PV < SP PV > SP Set point SP SP ramp PV SP SP ramp Same change rate Set point Restrictions during SP ramp operation PV Power ON Time Power ON Time 4 18

4.8 To Move to the Advanced Function Setting Level Protect level operation/adjustment protection initial setting/ communications protection Operation level PV/SP Initial setting level Input type Move to advanced function setting level Advanced function setting level 4 19

4.9 Using the Key Protect Level Key protect Operation/adjustment protection Set value Level 0 1 2 3 PV Operation level PV/SP Other Adjustment level : Can be displayed and changed : Can be displayed : Cannot be displayed and move to other levels not possible Initial setting/ communications protection Set value Initial setting level Communications setting level Advanced function setting level 0 1 2 : Move to other levels possible : Move to other levels not possible Setting change protection Set value OFF ON Description Setup can be changed by key operation. Setup cannot be changed by key operation. (The protect level can be changed.) 4 20