Perdea de aer arhitecturala TEDDINGTON ELLIPSE
DESIGN
T E C H N I C A L D ATA
AIR
f o r
C U R T A IN
E X L U S I V E
U NI T S
R E Q U I R E M EN T S
Teddington
TEDDINGTON
Overview of Designer Air Curtain Systems
It depends on the situation.
SWING DOORS
AutomatiC SLIDING DOORS
Swing doors or door systems have
door elements which swing open
either inwards or outwards and can
be opened either manually or
automatically.
S
wing door system with horizontal air curtains
fitted in a row.
Automatic sliding door with vertical air curtain
device.
This includes all doors and door
systems where the door elements
automatically slide to the side by
means of light barriers or movement
sensors.
The swing movement of the door
elements often makes a vertical
arrangement of the air curtain units
next to the doors either difficult or
impossible, as the open door would
block the air curtain. So only
horizontally fitted units are offered
as standard for swing doors. The
devices are mounted above the door
so the air curtain is blown
down
wards.
The air curtain devices can be
mounted horizontally above the
doors. The air curtain is then blown
downwards.
However, exceptions are possible to
suit specific customer requirements.
For example, if the swing doors only
swing outwards. In such cases, the
designer vertical units for automatic
sliding doors can also be used.
If fitting the units above the doors is
either impossible or impractical – for
example if the door systems are
more than 4 meters high – automatic
sliding doors can also easily be
shielded using vertically mounted air
curtains. To do this, attractively
designed slimline column units are
positioned next to the door to create
an air curtain out to the side.
Curved sliding doors
C
urved sliding door with vertical air curtain
device.
Revolving doors with vertical air curtain
systems.
2
REVOLVING DOORS
As with revolving doors, curved
sliding doors are based on providing
a circular air-lock function. However,
instead of revolving panels, curved
slidin
g doors have arc-shaped sliding
door elements adjusted to the radius
of the circle which open automatically to the side. This system is simple to
shield using vertically mounted units
either inside or outside the air-lock.
The panels of a revolving door act like
a paddle wheel pushing untreated
outside air into the building. This
produces an unpleasant “sea of cold”
in the entrance area.
Air curtains can be fitted vertically
next to the door to provide effective
shielding for revolving doors. Horizontal fitting is also an option. To do
this, the air curtain system is adapted
to the radius of the revolving door
and fitted into its ‘roof’. For technical
reasons, EVOLVENT® nozzles cannot
be used when units are fitted in this
way.
Overview of units.
D o o r s i tuat i o n
Unit series
Page
DELTA
4-5
ELLIPSE
6-9
SILENT
10-13
DELTA
4-5
ELLIPSE
6-9
SILENT
10-13
CHARISMA
14-19
TOPAS
20-21
SINTRA
22-23
SINTRA
22-23
SAPHIR
24-25
Vertical
SAPHIR
24-25
Hor
izontal
SWING DOORS
A ss e m b l y
RONDO
26-29
Horizontal / Vertical
ALL
30-35
HORIZONTAL
Horizontal
Automatic sliding doors
VertiCal
Curved sliding doors
VertiCal
REVOLVING DOORS
ACCESSORIES / CONTROLLERS
3
ELLIPSE
S w i n g
Designer Units for Horizontal Fitting
d o o r s
Autom ati c
sli d i n g
d o o r s
Technical data
Type
Max. installation height
Ellipse 1 Flat
2.75
[m]
Ellipse 2 Flat
3.25
Width
[cm]
100
150
200
250
300
100
150
200
250
300
Max. air discharge speed
[m/s]
10.5
10.5
10.5
10.5
10.5
10.8
11.3
11.3
11.3
11.3
Nominal volume flow
[m³/h]
2100
3150
4200
5250
6300
2100
4200
5250
6300
7450
Active volume flow
[m³/h]
1500
2250
3000
3800
4500
1900
3000
4000
5000
6000
[dB(A)]
54
56
58
60
61
54
56
58
60
62
Air volume
Noise level in a distance of 3m
Electrical data
Voltage
[V]
230
230
230
230
230
230
230
230
230
230
Power output
[kW]
0.38
0.56
0.75
0.94
1.13
0.39
0.75
0.94
1.13
1.32
Current
[A]
1.64
2.46
3.28
4.10
4.92
1.71
3.28
4.10
4.92
5.74
[kg]
50
72
86
102
130
56
84
110
130
158
Approximate weight
Heater battery technical data
PWW 70/50 at air intake temperature of 20°C and air discharge temperature at 37°C (Installation Type IDW)
Heater power
[kW]
8.6
12.9
17.1
21.7
25.7
10.9
17.1
22.9
28.6
34.3
Through flow rate
[m³/h]
0.38
0.56
0.75
0.95
1.14
0.48
0.76
1.00
1.25
1.50
Water resistance
[kPa]
1.99
1.92
1.46
1.58
1.65
3.05
3.16
2.41
2.60
2.70
PWW 70/50 at air intake temperature of 5°C and air discharge temperature at 32°C (Installation Type ADW)
Heater power
[kW]
14.3
21.5
28.7
36.3
43.1
18.2
27.7
38.3
47.8
57.3
Through flow rate
[m³/h]
0.63
0.94
1.26
1.60
1.89
0.80
1.26
1.68
2.10
2.52
Water resistance
[kPa]
5.06
4.66
3.60
4.00
4.04
7.50
7.70
6.00
6.10
6.70
30.1
37.6
45.2
PWW 70/50 at air intake temperature of 15°C and air discharge temperatur
e at 37°C (Installation Type ADW, windcatcher)
Heater power
[kW]
11.3
16.9
22.6
Through flow rate
[m³/h]
Water resistance
[kPa]
0.50
0.74
0.99
3.27
3.05
2.40
28.6
33.9
14.3
22.6
1.25
1.49
0.63
0.99
1.32
1.65
1.98
2.59
2.62
5.00
5.00
3.93
4.19
4.38
PWW 60/40 at air intake temperature of 20°C maximum air discharge temperature (Installation Type IDW)
Heater power
[kW]
10.1
15.5
21.6
28.6
33.6
11.9
18.9
26.6
33.9
41.2
Air discharge temperature
[°C]
40.0
40.5
41.5
42.4
42.2
38.6
38.8
39.8
40.2
40.5
Through flow rate
[m³/h]
0.44
0.68
0.95
1.25
1.46
0.52
0.83
1.16
1.48
1.80
Water resistance
[kPa]
2.75
2.69
2.27
2.67
2.68
3.68
3.84
3.27
3.62
3.87
Pipe connections
Upstream
[inch]
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
Downstream
[inch]
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
Electrical heater (three-step, 400 V 3Ph, 50 Hz)
Step 1
[kW]
3.0
4.5
6.0
6.0
9.0
3.0
6.0
6.0
12.0
12.
0
Step 2
[kW]
6.0
9.0
12.0
18.0
18.0
9.0
12.0
18.0
18.0
24.0
Step 3
[kW]
9.0
13.5
18.0
24.0
27.0
12.0
18.0
24.0
30.0
36.0
∆t max.
[K]
16.7
16.7
16.7
17.6
16.7
17.6
16.7
16.7
16.7
16.7
[mm]
1000
1500
2000
2500
3000
1000
1500
2000
2500
3000
Dimensions
Width BL
Height H
6
[mm]
290
290
290
290
290
290
290
290
290
290
Depth T
[mm]
800
800
800
800
800
800
800
800
800
800
Female thread M10
for installation
A
A
BL
Suction grid
Downstream
Upstream
H
Air discharge
nozzle
M10
T
M10
Inspection door
Sectioned view A-A
Filter
Suction
grid
Dimensions -Type Flat
7
ELLIPSE
S w i n g
Designer Units for Horizontal Fitting
d o o r s
Autom ati c
sli d i n g
d o o r s
Technical data
Type
Ellipse 1 Oval
Ellipse 2 Oval
Ellipse 3 Oval
2.75
3.25
4
Max. installation height
[m]
Width
[cm]
100
150
200
250
300
100
150
200
250
300
100
150
200
250
300
Max. air discharge speed
[m/s]
10.5
10.
5
10.5
10.5
10.5
10.8
11.3
11.3
11.3
11.3
14.5
14.7
15.3
15.3
15.3
Nominal volume flow
[m³/h]
2100
3150
4200
5250
6300
2100
4200
5250
6300
7450
3800
5400
7600
9700 11400
Active volume flow
[m³/h]
1500
2250
3000 3800
4500
1900
3000 4000 5000 6000 3000
4700
6400
8100
9500
[dB(A)]
54
56
60
61
54
57
59
60
61
62
Air volume
Noise level in a distance of 3m
58
56
58
60
62
Electrical data
Voltage
[V]
230
230
230
230
230
230
230
230
230
230
230
230
230
230
230
Power output
[kW]
0.38
0.56
0.75
0.94
1.13
0.39
0.75
0.94
1.13
1.32
0.57
1.15
1.72
2.30
2.87
Current
[A]
1.64
2.46
3.28
4.10
4.92
1.71
3.28
4.10
4.92
5.74
2.70
5.40
8.10
10.80
16.20
[kg]
50
72
86
102
130
56
84
110
130
158
125
160
200
230
250
Approximate weight
Heater battery technical data
PWW 70/50 at air intake temperature of 20°C and air discharge temperature at 37°C (Installation Type IDW)
Heater power
[kW
]
8.6
12.9
17.1
21.7
25.7
10.9
17.1
22.9
28.6
34.3
17.1
26.9
36.6
46.3
54.3
Through flow rate
[m³/h]
0.38
0.56
0.75
0.95
1.13
0.48
0.76
1.00
1.25
1.50
0.76
1.20
1.60
2.00
2.40
Water resistance
[kPa]
1.52
1.43
1.54
1.58
1.53
3.05
3.16
2.41
2.60
2.70
2.27
2.59
2.50
2.39
2.50
PWW 70/50 at air intake temperature of 5°C and air discharge temperature at 32°C (Installation Type ADW)
Heater power
[kW]
14.1
21.5
28.6
36.3
43.0
18.2
27.7
38.3
47.8
57.3
28.7
44.8
61.1
77.5
90.9
Through flow rate
[m³/h]
0.62
0.94
1.26
1.59
1.89
0.80
1.26
1.68
2.10
2.52
1.26
1.96
2.68
3.40
3.98
Water resistance
[kPa]
3.64
3.54
3.80
3.88
3.80
7.50
7.70
6.00
6.10
6.70
5.55
6.59
6.29
6.00
6.32
45.2
22.6
35.3
47.9
61.1
71.5
PWW 70/50 at air intake temperature of 15°C and air discharge temperature at 37°C (Installation Type ADW, windcatcher)
Heater power
[kW]
11.0
16.9
22.6
28.6
Through flow rate
[m³/
h]
Water resistance
[kPa]
33.9
14.3
22.6
0.48
0.74
0.99
2.36
2.30
2.48
30.1
37.6
1.26
1.48
0.63
0.99
1.32
1.65
1.98
0.99
1.55
2.10
2.68
3.13
2.55
2.50
5.00
5.00
3.93
4.19
4.38
3.69
4.21
4.10
3.93
4.08
38.5
49.1
59.0
PWW 60/40 at air intake temperature of 20°C maximum air discharge temperature (Installation Type IDW)
Heater power
[kW]
6.3
9.8
14.5
Air discharge temperature
[°C]
32.5
32.9
34.4
Through flow rate
[m³/h]
0.28
0.43
0.63
Water resistance
[kPa]
0.91
0.91
1.18
Upstream
[inch]
3/4
3/4
Downstream
[inch]
3/4
3/4
18.7
22.6
11.9
18.9
26.6
33.9
41.2
16.5
26.5
34.7
35.0
0.82
0.99
38.6
38.8
39.8
40.2
40.5
36.4
36.8
37.9
38.0
38.5
0.52
0.83
1.16
1.48
1.80
0.72
1.16
1.68
2.15
2.58
1.25
1.27
3.68
3.84
3.27
3.62
3.87
2.18
2.64
2.88
2.76
3.00
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
3/4
Pipe c
onnections
Electrical heater (three-step, 400 V 3Ph, 50 Hz)
Step 1
[kW]
3.0
4.5
6.0
6.0
9.0
3.0
6.0
6.0
12.0
12.0
6.0
9.0
12.0
12.0
12.0
Step 2
[kW]
6.0
9.0
12.0
18.0
18.0
9.0
12.0
18.0
18.0
24.0
12.0
18.0
24.0
24.0
24.0
Step 3
[kW]
9.0
13.5
18.0
24.0
27.0
12.0
18.0
24.0
30.0
36.0
18.0
27.0
36.0
36.0
36.0
∆t max.
[K]
16.7
16.7
16.7
17.6
16.7
17.6
16.7
16.7
16.7
16.7
16.7
16.0
15.7
12.4
10.6
Width BL
[mm]
1000
1500
2000
2500
3000
1000
1500
2000
2500
3000
1000
1500
2000
2500
3000
Height H
[mm]
450
450
450
450
450
525
525
525
525
525
750
750
750
750
750
Depth T
[mm]
620
620
620
620
620
715
715
715
715
715
1000
1000
1000
1000
1000
Dimensions
8
Female thread M10
for installation
BL
Suction grid
Upstream
Downstream
A
A
H
Air discharge
nozzle
M10
T
M10
Sectioned view A-A
Inspection door
Filter
Suction
grid
Dimensions -Type Oval
9
TEDDINGTON
Designer Uni
ts for Horizontal / Vertical Fitting
Acce sso r i e s
/
Co ntro lle r s
Teddington Control Unit TCU
The TCU Controller Unit (for hot water devices) is a 5-step
or stepless speed controller with additional functions, to
enable adjustments in the air volume depending on the
various climatic weather conditions.
Functions / Properties:
• Release from the DDC/BMS
(direct digital control/building
management system)
• On/Off switch
• Integrated clock with
programmed switching time
periods
• Integrated room thermostat
• Potential free change-over contacts,
operational- and collective
disfunction message (16A)
• Integrated filter monitoring via
operating time or an external
signal
•
Manual and automatic function;
automatic e.g. door contact,
room thermostat, infrared
sensor, exterior thermostat
• Full motor protection; electronic
processing and signalling in cases
of motor failure
• Option: speed regulation through
external signal
ts for Horizontal / Vertical Fitting
Acce sso r i e s
/
Co ntro lle r s
Teddington Control Unit TCU
The TCU Controller Unit (for hot water devices) is a 5-step
or stepless speed controller with additional functions, to
enable adjustments in the air volume depending on the
various climatic weather conditions.
Functions / Properties:
• Release from the DDC/BMS
(direct digital control/building
management system)
• On/Off switch
• Integrated clock with
programmed switching time
periods
• Integrated room thermostat
• Potential free change-over contacts,
operational- and collective
disfunction message (16A)
• Integrated filter monitoring via
operating time or an external
signal
•
Manual and automatic function;
automatic e.g. door contact,
room thermostat, infrared
sensor, exterior thermostat
• Full motor protection; electronic
processing and signalling in cases
of motor failure
• Option: speed regulation through
external signal
... ascunde
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