Rointe Heating Catalogue 2023 UK-IE - Catalog - Page 33
RADIATORS
YEARS
YEARS
GUARANTEE ON
ELECTRONICS
GUARANTEE ON
BODY
LOT20READY
TECHNICAL SPECIFICATIONS
MODELS
BRI0330RAD
BRI0550RAD
BRI0770RAD
BRI0990RAD
BRI1210RAD
BRI1430RAD
Number of elements
3
5
7
9
11
13
15
Nominal power (W)
330
550
770
990
1,210
1,430
1,600
Effective power (W)4
Voltage (V)
BRI1600RAD
125
209
293
376
460
543
608
220-240 V ~
220-240 V ~
220-240 V ~
220-240 V ~
220-240 V ~
220-240 V ~
220-240 V ~
Frequency (Hz)
50
50
50
50
50
50
50
Current (A)
1.4
2.4
3.3
4.3
5.3
6.2
7.0
Insulation
Class I
Class I
Class I
Class I
Class I
Class I
Class I
IP24
IP24
IP24
IP24
IP24
IP24
IP24
500 x 575 x 95
660 x 575 x 95
820 x 575 x 95
IP protection
Width x height x depth (mm) 340 x 575 x 95
980 x 575 x 95 1,140 x 575 x 95 1,300 x 575 x 95
Installed depth (mm)
118
118
118
118
118
118
118
Weight (Kg)
6.9
9.7
13.4
16.1
19.9
22.6
26.4
Weight with packaging (Kg)
8.0
11.0
15.0
18.0
22.0
25.0
29.0
Recommended area (m )
Up to 4
Up to 6
Up to 9
Up to 11
Up to 14
Up to 16
Up to 19
1.7
1.7
1.7
1.7
1.7
1.7
1.7
UK 3 pin
UK 3 pin
UK 3 pin
UK 3 pin
UK 3 pin
UK 3 pin
UK 3 pin
2
Cable length (m)
Plug type
Product includes
Brackets, template + user manual
Compatible accessories
Protection grills/covers - RKY**** / RDB****, Wheel kit - RIR*01
Finishes
White RAL 9010
EAN13
8435556138723 8435556138730 8435556138747 8435556138754 8435556138761 8435556138778 8435556138785
DIAGRAMS
BRI0330RAD
BRI0550RAD
BRI0770RAD
BRI0990RAD
340
500
660
820
BRI1210RAD
BRI1430RAD
BRI1600RAD
1,140
1,300
min 100
23
575
118
Dimensions in mm.
980
1) Compatible with 2.4 GHz WiFi networks. 2) Available from Q3/Q4 2023. 3) Data may vary depending on the circumstances of the electrical installation. 4) In tests carried out by independent
laboratories comparing under the same parameters a radiator with Fuzzy Logic Energy Control tech and another with Optimizer Energy Plus (the first Rointe energy control tech), a difference
in energy consumption of 6.3% was obtained. This saving allows radiators with Fuzzy Logic Energy Control to use an average power of only 38% of nominal power, which we define as the
equivalent consumption coefficient. If we multiply the nominal power by the equivalent consumption coefficient, we obtain the effective power.
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