Operating Data / General Characteristics - Immergas ARES 440 TEC ERP Instructions And Warnings

Modular condensing boiler
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Technical characteristics and dimensions
2.4
OPERATING DATA / GENERAL CHAR-
ACTERISTICS
ARES Tec ErP
Boiler category
Modulation ratio
Nominal heat input on L.V.C. Qn
Minimum heat input on L.C.V. Qmin
Nominal effective power (Tr 60 / Tf 80 °C) Pn
Minimum effective power (Tr 60 / Tf 80 °C) Pn min
Nominal effective power (Tr 30 / Tf 50 °C) Pcond
Minimum effective power (Tr 30 / Tf 50 °C) Pcond min
Efficiency at nominal power (Tr 60 / Tf 80°C)
Efficiency at minimum power (Tr 60 / Tf 80°C)
Efficiency at nominal power (Tr 30 / Tm 50°C)
Efficiency at minimum power (Tr 30 / Tm 50°C)
Efficiency at 30% of the load ( Tr 30°C)
Efficiency class according to directive 92/42 EEC
Combustion efficiency at nominal load
Combustion efficiency at a reduced load
Losses from operating burner casing (Qmin)
Losses from operating burner casing (Qn)
Flue temperature at net of Tf-Ta (min)(*)
Flue temperature at net of Tf-Ta (max)(*)
Maximum permitted temperature
Maximum operating temperature:
Mass flue flow rate (min)
Mass flue flow rate (max)
Air excess
Chimney losses with burner in operation (min)
Flue losses with burner in operation (max)
Minimum pressure of heating circuit
Maximum pressure of heating circuit
Water content
Methane gas consumption G20 (supp.press. 20 mbar) at Qn
Methane gas consumption G20 (supp.press. 20 mbar) at Qn
Gas consumption G25 (supp.press. 20/25 mbar) at Qn
Gas consumption G25 (supp.press. 20/25 mbar) at Qn
Propane gas consumption (supp.press. 37/50 mbar) at Qn
Propane gas consumption (supp.press. 37/50 mbar) at Qn
Maximum pressure available at flue base
Max condensate production
Emissions
CO at maximum heat input with 0% O2
NOx at maximum heat input with 0% O2
NOx class
(***) Sound pressure level
Electrical data
Frequency/Power supply voltage:
Supply fuse
(**) Degree of protection
(*) Room Temperature = 20°C
(**) See "NOZZLES - PRESSURES" table
(***) The IP X5D degree of protection is obtained with the lid lowered.
440
550
II
II
2H3P
2H3P
1 : 19,6
1 : 24,5
kW
432
540
kW
22
22
kW
424,3
530,4
kW
20,6
20,6
kW
445,0
557,8
kW
23,9
23,9
%
98,2
98,2
%
93,5
93,5
%
104,0
104,0
%
109,0
109,0
%
107,3
107,5
--
4
4
%
97,8
97,8
%
98,5
98,5
%
5,04
5,04
%
0,1
0,1
°C
31,0
31,0
°C
46,7
46,7
°C
100
100
°C
85
85
kg/h
25
25
kg/h
693
866
%
24,25
24,25
%
1,5
1,5
%
2,58
2,53
bar
0,5
0,5
bar
6,0
6,0
l
67
80
m
/h
45,68
57,10
3
m
/h
2,33
2,33
3
m
/h
53,13
66,41
3
m
/h
2,71
2,71
3
kg/h
33,53
41,92
kg/h
1,71
1,71
Pa
100
100
kg/h
73,4
91,7
mg/kWh
76,7
76,7
mg/kWh
68,8
68,8
6
6
dBA
54
54
V/Hz
230/50
230/50
A (R)
6,3/10
6,3/10
IP
X5D
X5D
12
660
770
900
II
II
II
2H3P
2H3P
2H3P
1 : 29,4
1 : 34,3
1 : 39,2
648
756
864
22
22
22
636,5
742,6
849,0
20,6
20,6
20,6
670,1
783,2
900,3
23,9
23,9
23,9
98,2
98,2
98,2
93,5
93,5
93,5
104,0
104,0
104,0
109,0
109,0
109,0
108,3
107,8
107,6
4
4
4
97,8
97,8
97,8
98,5
98,5
98,5
5,04
5,04
5,04
0,1
0,1
0,1
31,0
31,0
31,0
46,7
46,7
45,8
100
100
100
85
85
85
25
25
25
1040
1213
1386
24,25
24,25
24,25
1,5
1,5
1,5
2,51
2,58
2,58
0,5
0,5
0,5
6,0
6,0
6,0
94
108
122
68,52
79,94
91,36
2,33
2,33
2,33
79,69
92,97
106,25
2,71
2,71
2,71
50,30
58,68
67,01
1,71
1,71
1,71
100
100
100
110
128,4
146,7
76,7
76,7
76,7
68,8
68,8
68,8
6
6
6
54
54
56
230/50
230/50
230/50
6,3/10
6,3/10
6,3/10
X5D
X5D
X5D

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