Technical Details - DITEC OLLYC Manuel D'installation

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  • FRANÇAIS, page 16
1.

TECHNICAL DETAILS

GB
Power supply
Absorption
Accessories power supply
Thrust
Opening speed
Closing speed
Intermittence
Max load
Dimensions
Max run
Temperature
Degree of protection
2.
REFERENCE TO ILLUSTRATIONS
The given operating and performance features can only be guar-
anteed with the use of DITEC accessories and safety devices.
2.1 Standard installation references (fig. 1-4)
[1]
Actuator
[2]
Radar
[3]
Push-button panel
[4]
Connect the power supply to a wall socket
2.2 Automation references (fig. 2-5)
[5]
Gearmotor with control panel
[6]
Transmission
[7]
Door wing connection bracket
[8]
Belt
[9]
Door wing blocking device (OCLOKA)
[10] Radio receiver (OCL)
3.
INSTALLATION
Unless otherwise specified, all measurements are expressed
in millimetres (mm).
3.1 Case fastening
-
If necessary shorten the length of the case (transmission
side) to the dimension of the door passage opening.
Attention: reposition the components correctly inside the case
after cutting. The transmission pulley [6] and the gearmotor pulley
[5] must be behind the heads. Suitably tension the belt [8].
-
Fix the case to the upper guide of the door as shown in
fig. 7 (Scrigno model) or in fig. 9 (Eclisse model).
3.2 Door wing fastening
-
Place the door wing in the closure position.
-
Position the door wing connection bracket [7] as close as
possible to the pulley and fix it to the door wing as shown
in fig. 7-9.
Attention: if the thickness of the door is different from 40 mm,
use suitable spacers that are not supplied.
Attention: the door wing connection brackets for double door auto-
mations must be positioned flush with the door as shown in fig. 5.
-
Open and close the door to ensure that the door wing is
sliding correctly.
Attention: open the door wing completely and check that the
connection bracket [7] does not hit against the pulley.
OLLYC - IP1879
OLLYC
230 V~ / 50-60 Hz
0.2 A
24 V= / 0.3 A
30 N
0.4 m/s
0.2 m/s
S2 = 30 min
S3 = 50%
40 kg
115 x 67 x 1000 [DOITOC10]
115 x 67 x 2000 [DOITOC20]
910 mm [DOITOC10]
1860 mm [DOITOC20]
-20 °C / +55 °C
IP20
3.3 Close stop fastening
For correct working, it is necessary to stop the sliding door wing
about 90mm before it reaches the fully opened position.
Fasten the close stop bracket (supplied) as shown in fig.11.
-
-
-
-
3.4 Fastening door wing blocking device OCLOKA
The door wing blocking device can be fitted to keep the door
closed. The automation automatically recognises the blocking
device and acts properly.
-
-
-
-
-
-
3.5 Fastening of the radio receiver OCL
It is possible to install the radio receiver that allows the door to
be activated by means of wireless commands.
-
-
-
12
120 V~ / 60 Hz
24 V= / 0.3 A
S2 = 30 min
115 x 67 x 1000 [DOITOC10J]
115 x 67 x 2000 [DOITOC20J]
910 mm [DOITOC10J]
1860 mm [DOITOC20J]
-20 °C / +55 °C
The close stop bracket can be fastened on the inner or ou-
ter side of the door. Choose the most suitable position.
Close the door completely and fasten the close stop bracket
using the slots, without tightening the screws.
Open the door as far as the stop, leaving ~90mm within
the doorway.
Close the door completely, tighten the screws, and perma-
nently fasten the close stop bracket using a third screw on
the non-slotted hole.
Fasten the door wing blocking device [9] inside the box by
means of the supplied screws.
Place the door wing in the closure position.
Mark the contact point of the blocking device on the door wing.
Fasten the blocking device connection bracket to the door
wing as shown in fig. 8-10. Drill the door wing if necessary.
Check that when the door is closed the blocking device cor-
rectly enters the appropriate hole on the blocking device con-
nection bracket, thereby blocking the movement of the door.
Carry out the electrical connections as shown in chapter 4.
Fasten the radio receiver [10] inside the box by means of
the supplied screws.
Carry out the electrical connections as shown in the related
manual.
Memorise the transmitters as shown in the related manual.
OLLYC J
0.4 A
30 N
0.4 m/s
0.2 m/s
S3 = 50%
40 kg
IP20

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