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13
NO.
value
(decimal)
Significance
21
21
T-type thermocouple input range
:
0.0
~
572.0
℉
22
22
R-type thermocouple input range
:
0.0
~
1600.0
℃
23
23
R-type thermocouple input range
:
32.0
~
2912.0
℉
24
24
S-type thermocouple input range
:
0.0
~
1600.0
℃
25
25
S-type thermocouple input range
:
32.0
~
2912.0
℉
26
26
Pt100
,
input range
:-
50.0
~
150.0
℃
27
27
Pt100
,
input range
:-
150.0
~
600.0
℃
28
28
Pt100
,
input range
:-
238.0
~
300.0
℉
29
29
Pt100
,
input range
:-
238.0
~
1112.0
℉
30
30
JPt100
,
input range
:-
50.0
~
150.0
℃
31
31
JPt100
,
input range
:-
150.0
~
500.0
℃
32
32
JPt100
,
input range
:-
238.0
~
300.0
℉
33
33
JPt100
,
input range
:-
238.0
~
932.0
℉
34
34
Cu100
,
input range
:-
30.0
~
120.0
℃
35
35
Cu100
,
input range
:-
22.0
~
248.0
℉
36
36
Cu50
,
input range
:-
30.0
~
120.0
℃
37
37
Cu50
,
input range
:-
22.0
~
248.0
℉
38
38
Ni120
,
input range
:-
80.0
℃~
280.0
℃
39
39
Ni120
,
input range
:-
112.0
℉~
536.0
℉
40
40
PT100
,
input range
::
-150.0
~
300.0
℃
41
41
B-type thermocouple, input range: 400.0 ~ 1800.0
℃
42
42
B-type thermocouple, input range: 752.0
~
3272.0
℉
43
43
K-type thermocouple, -100.0
~
600.0
℃
44
44
K-type thermocouple, -100.0
~
800.0
℃
45
45
J-type thermocouple, -100.0
~
800.0
℃
46
46
J-type thermocouple, -100.0
~
1200.0
℃
47
47
J-type thermocouple,-148.0
~
2192.0
℉
48
48
T-type thermocouple,-200.0
~
400.0
℃
49
49
T-type thermocouple,-328.0
~
752.0
℉
Explanation:
Celsius
=
5/9×(
(
Fahrenheit
)-
32
)
* 2. #909 ~ #912: temperature setting. Set the target value of each channel temperature control. The unit
is determined according to the input type (#901 ~ #904). When the mode is Celsius, the unit is 0.1
℃
;
when the mode is Fahrenheit, the unit is 0.1
℉
.
* 3. #917 ~ #920: control the output cycle setting value. The control output cycle of each channel is set,
the setting range is 1 ~ 100, the default value is 2, the unit is determined according to the temperature
control object characteristic selection of #1165 ~ #1168, when the temperature control object is selected
for slow temperature rise, the unit of temperature control period is seconds, but when the temperature
control object is selected for fast temperature rise, the unit of temperature control period is hundreds of
milliseconds.
* 4. #981 ~ #984: overlap/deadband
* 5. #989 ~ #992:
Undershoot suppression factor
.
* 6. #997: controls the start/stop Settings. Bit0 corresponds to channel 1, Bit1 corresponds to channel 2,
and so on. Is 1 when the channel opens the heating temperature control, is 0 when the channel closes
the heating temperature control; M0 ~ M3 elements map directly to Bit0 ~ Bit3 of #997, and the start and
stop of each channel can be directly controlled by setting M0 ~ M3 elements.
* 7. #999: self-tuning enable. Bit0 corresponds to channel 1, Bit1 to channel 2, and so on. When is 0, it
means self-tuning is closed or self-tuning is completed; when is 1, it means self-tuning is opened (at this