Myson 25-18 Manuel d'utilisateur Page 14

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26
HI-LINE Range Technical Information HI-LINE Range Technical Information
27
HI-LINE Controls
HI-LINE Super RC Performance Data (continued)
HI-LINE RC & HI-LINE Super RC
Units are supplied with an electronic infra-red remote control
system with the following features:
l
Automatic room temperature control.
l
Fan only option for ambient air circulation.
l
Three fan speeds.
l
Unit mounted controls and display.
l
Unit control panel electronic tamper proof lock.
l
Displayed temperature calibration system.
HI-LINE LV
Units are fitted with a switch offering high and low fan speed and
off selection. A low limit thermostat is fitted to the unit to
ensure that the fan stops after the heating system is switched off
and the water flow stops.
Water connections (15mm compression) are on the right-hand
side and the system pipework may be brought in from above
or the rear. Supplied with isolating valves.
HI-LINE Water Connections
A
277
59
73B
94
35
49
HI-LINE RC Dimensions and Fixings
Model
Dimensions (mm)
20-14 1171 1039
15-10 886 754
10-6 682 550
7-4 554 422
AB
l
Maximum installation height is 2.13m to the underside of
the unit.
l
Minimum installation height is 1.8m to the underside of
the unit.
l
Maximum ceiling height is 3m.
l
Minimum clearance each side is 100mm.
l
Minimum top clearance is 50mm.
All HI-LINE models require an electrical supply of 220-240V –
50Hz fused at 3A.
HI-LINE Electrical Data
Air Flow
Fan Speed
Air Flow (m
3
/h) Air Flow (ft
3
/h)
Normal 81 2859
Boost 133 4695
Weight, Water Content and Motor Power
Motor Power
(W)
Water Content
(l)
Unpacked Weight
(kg)
30 0.3 7.4
HI-LINE LV Performance Data (continued)
HI-LINE Super RC Performance Data
The unit must be sized to match the calculated heat loss
requirement of the room with the unit operating at normal fan
speed. The higher fan speeds will be used automatically when
the room temperature is significantly lower than the preset
temperature.
When establishing the temperature difference, i.e. mean water to
room temperature, allowance should be made for temperature
drop in the system. It is the temperature at the convector which
dictates the output.
Heat outputs tested in accordance with BS 4856 Part 1. Flow Rate Correction Factors:
455 ltr/h (100 gal/h) multiply output by 1.03.
227 ltr/h (50 gal/h) multiply output by 0.98.
113 ltr/h (25 gal/h) multiply output by 0.85.
Approximate Hydraulic Resistance
ltr/h
25-18
2095
1282
620
234
29-20
2551
1530
850
245
25-18
20.5
12.6
6.1
2.3
29-20
24.6
15.0
8.3
2.4
455
340
227
113
mm wg kPa
Air Flow
Model
Normal
390
350
Medium
470
430
Boost
540
500
Normal
13772
12360
Medium
16597
15185
Boost
19069
17657
29-20
25-18
Air Flow (m
3
/h) Air Flow (ft
3
/h)
Weight, Water Content and Motor Power
Model
29-20
25-18
Motor
Power (W)
Water
Content (l)
Unpacked
Weight (kg)
80 0.85 21.0
80 0.63 18.0
Model Fan Speed
Heat Output (watts)
Temperature Difference
(°C)
Heat Output (Btu/h)
1858 2870 3906 4962 6033
2234 3462 4723 6011 7319
2599 4040 5526 7045 8591
1709 2563 3417 4270 5123
1962 3030 4124 5238 6369
2172 3454 4800 6200 7600
Normal
Medium
Boost
Normal
Medium
Boost
29-20
25-18
6339 9791 13328 16930 20584
7622 11811 16116 20508 24972
8867 13785 18854 24037 29313
5833 8746 11658 14569 17481
6695 10339 14072 17873 21730
7411 11785 16378 21154 25931
20° 30° 40° 50° 60° 20° 30° 40° 50° 60°
Heating Performance Data
Approximate Hydraulic Resistance
Litres/h
455
341
227
113
mm wg
1084
798
350
134
kPa
9.4
7.7
3.5
1.4
Noise Levels
Fan Speed
Sound Pressures at 2.5m (dBA)
Normal 16.6
Boost 32.5
Noise levels tested in accordance with EN 23741.
24050 Fan Convector bro 06/12/2011 10:53 Page 27
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