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Planning
Fire detection
4
51 | 94
Building Technologies
A6V10209291_h_en_--
Fire Safety
2016-03-03
4.2.2.3 Specification
The following table shows the characteristics and fields of application of the
parameter sets of neural fire detectors FDOOTC241.
No.
Name
Optical
Thermal
Typ. Response
time
from - typ. - to
Sensitivity,
open fire
Sensitivity,
smoldering fire
Static
activation
temperature
Differential activation
temperature
(temperature
increase >10 K/min)
Differential
activation
possible from:
[s]
[%/m]
[%/m]
[°C]
T [K]
[°C]
8
'High Suppression'
60 - 80 - 360
2.3
8
80
25
30
5
4
'Suppression'
90 - 160 - 760 3.2
11.4
80
29
30
12
'Suppression CO'
1
75 - 150 - 760 2.3…3.2
3
8.6…11.4
2
80
29
30
7
'High Compensation' 80
3.2
11.4
80
29
30
0
'High Compensation' 80
3.2
11.4
80
29
30
2
'Robust'
80
3.2
11.4
80
29
30
4
'Balanced'
40 - 64 - 300
2.3
8
80
25
30
10
'Balanced CO'
1
25 - 50 - 300
1.4…2.3
3
5…8
2
80
25
30
6
'Fast Response'
20 - 30
1.6
5.6
80
22
3
9
'High Sensitive Fast' 20 - 30
0.8
2.8
60
16
3
14
Application-specific parameter sets
15
1
The CO signal helps to speed up alarm activation in the event of smoldering fires but cannot
trigger fire alarms on its own.
2
Depends on CO proportion.
3
In the case of open fires, the proportion of CO in the fire gas make-up is low. With high proportions
of CO, the sensitivity could theoretically increase by up to 0.9 %/m with open fires (i.e. instead of
2.3 %/m to 1.4…2.3 %/m, for example).
4
If the 'Suppression (5)' parameter set is needed, 'Suppression CO (12)' should be used for new
applications.
The static activation temperature of 80 °C is above the operating temperature
range permissible for continuous periods.
The point detector may only be used in continuous operation within the specified
temperatures!