16502 PIREG-C2 Gerätebeschreibung mit EtherNet_IP Bussystem191017 - EN.docx/ Page 26 of 66
Example Read: LISTW
RS232/USB: Response: AISTW 194
Example Read: 68 03 03 68 21 89 34 DE 16 (GA=21h)
RS485: Response: 68 05 05 68 21 00 34 C4 00 19 16
Reference: --
4.7.15. KANR command
Syntax Read: LKANR
RS232/USB: Response: AKANR n
Write: SKANR n
Response: OK or error acknowledgement; response time max. 1 ms
Release: not in the On or calibration state
Syntax: Read: Control set, BI = 3Ch
RS485: Response:
Write:
Response: short set, OK or error acknowledgement; response time max. 1 ms
Release: not in the On or calibration state
Description: Setting and querying the calibration number "n" (1...8) of the active calibration. With the
calibration number, the associated calibration is activated for use and any running meas-
urement pulse-pause is terminated.
If the calibration mode "New calibration after a power on or reset" is selected, the PIREG-
C2 always performs a calibration after the calibration switchover.
Calibration 1 is always active after power on or reset.
Example Read: LKANR
RS232/USB: Response: AKANR 1
Write: SKANR 1
Response: QOK00
Example Read: 68 03 03 68 21 89 3C E6 16 (GA=21h)
RS485: Response: 68 04 04 68 21 00 3C 01 5E 16
Write: 68 04 04 68 21 69 3C 01 C7 16 (GA=21h)
Response: 10 21 00 21 16
Reference: --
4.7.16. KAPA command
Syntax Read: LKAPA
RS232/USB: Response: AKAPA defg bbb ttt ±aaaa ±bbbb ±cccc
Syntax: Read: Control set, BI = 05h
RS485: Response: Long set with DB0…DB10
Description: Querying the following parameters of the current active calibration (1...8) of the PIREG-
C2:
- Settings "defg" (see below)
- Reference temperature "bbb" (0...50, 255 with variable reference temperature) in 1 °C
- Temperature range "ttt" (100...500) in 1 °C
- Temp. coeffic. of the heating conductor Tc1 "±aaaa" (+300…+9999) in 0.01x10
-4
1/K
- Temp. coeffic. of the heating conductor Tc2 "±bbbb" (-9999…+9999) in 0.01x10
-6
1/K
2
- Temp. coeffic. of the heating conductor Tc3 "±cccc" (-9999…+9999) in 0.01x10
-9
1/K
3
Long set with DB0, BI = 3Ch