30
Floor with thickness >5cm
- advanced regulation with integral proportional band specially
made for floor heating with big inertia.
Floor with thickness <5cm
- advanced regulation with integral proportional band specially
made for floor heating with small inertia.
4.3.3
Calibration sensor
In this submenu you can calibrate the sensors.
Procedure for calibration:
- The calibration must be done after 12Hours working with the
same setting temperature.
Ambient sensor calibration:
- To check the temperature in the room, put a thermometer at 1.5M
distance to the floor in the concerned room and wait 1 hour to be
sure that the thermometer show the correct temperature.
Then you can enter the value saw on the thermometer with
(
◄-)
or
(►+)
in the corresponding line “
Ambient
” and press
(Ok)
to valid.
-
When a calibration is made the message “
Made
” will be
displayed.
- To erase the calibration already made press
(Ok)
and change the
value “
made
” by “
no
” with
(
◄-)
or
(►+)
.
External sensor calibration:
- The calibration must be done same as described above if the
external sensor is connected and used like a deported ambiance
sensor.
- If the external sensor is used as floor sensor, the thermometer
should be put on the floor.
4.3.4
Pump Exercise
Calibration sensor
Ambient
no
Floor (ext) no
Summary of Contents for Purmo Tempco CP W
Page 2: ...2...
Page 147: ...147 Pami 177 Notatki 178 Annexes PROGRAM P1 to P9 250...
Page 182: ...182 Memory safe 213 Notes 214 Annexes PROGRAM P1 to P9 250...
Page 215: ...215...
Page 216: ...216 230...
Page 218: ...218 NTC 10K 248 248 249 250...
Page 220: ...220 1 2 3 4 OK i 27 04 2009 11 15 22 6 C 33 3 1 2 4...
Page 221: ...221 i OK i ITCS ZONE A B...
Page 222: ...222 1 2 1 ITCS A A B B 3 4 On Off PWM 5...
Page 223: ...223 1 OK OK OK 2 27 04 2009 11 15 22 6 C 33 20 0 C 18 0 C rH 60 osi gni ty...
Page 224: ...224 2 OK 2 1 ITCS A B 2 1 2 1 1 OK ITCS 1 A A B B...
Page 225: ...225 2 1 2 OK 1 nazw ITCS 20 0 C 18 0 C 20 0 C 18 0 C 1 0 12 24 programu dnia...
Page 226: ...226 OK OK 10 2 1 3 OK OK 2 1 4 OK ITCS ITCS...
Page 227: ...227 OK OK 9 P1 P9 3 U1 U3 OK OK 7 00 P1 View P1 0 12 24 P1...
Page 228: ...228 15 6 3 1 1 6 OK 1 1...
Page 229: ...229 OK OK Ok 5 OK 2 1 2 05 30 1 00 00 2...
Page 230: ...230 1 2 OK OK OK 2 1 2 OK 3 4 17 30 2 3 07 45 17 30 1 2 05 30 07 45 4...
Page 231: ...231 OK OK Ok 2 2 1 00 00 3 4 17 30 22 45...
Page 234: ...234 Ok ITCS 2 1 6 Ok ITCS 27 04 2009 11 15 22 6 C 33 ITCS ITCS...
Page 235: ...235 2 2 A A 6 A P1 2 3 B B 6 B P1 B A...
Page 236: ...236 3 i Ok 3 1 Ok Ok Ok Ok Ok Ok Ok 27 04 2009...
Page 237: ...237 i Ok 3 2 Ok 1 10 6 C 27 04 2009...
Page 238: ...238 7 0 C i Ok 3 3 Ok 1...
Page 239: ...239 i Ok 2 4 4 1 Ok OK 4 2 Ok...
Page 240: ...240 Ok Ok Ok Ok Ok 4 3 OK 11 15 27 04 2009...
Page 241: ...241 4 3 1 Ok 10 k 25 C 1 10 k 25 C 18 0 C 35 C 2 10 k 25 C 0 C 1 2...
Page 242: ...242 4 3 2 Ok On Off 0 5 C PWM 5 5 4 3 3 12 On Off PWM 5 5...
Page 243: ...243 1 5 1 Ok Ok 4 3 4 1 Ok 4 3 5 Ok 24 C 12 F...
Page 244: ...244 4 3 6 OK Ok H C module...
Page 245: ...245 4 4 Ok Ok 100 1 1 0 4 5 Ok 2 Ok 0 50...
Page 246: ...246 5 Ok...
Page 247: ...247 6 Er Lo Hi V _ _ _...
Page 250: ...250 Annexes PROGRAM P1 to P9...
Page 251: ...251...