Terminal Connections - BFT DEIMOS BT Instrucciones De Uso

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The main automation components are (fig.14):
I
Type-approved adequately rated omnipolar circuit-breaker with
at least 3-mm contact opening, provided with protection against
overloads and short circuits, suitable for cutting out automation
from the mains. If not already install ed, place a type-approved
omnipolar circuit-breaker with a 0.03A threshold just before the
automation system.
QR
Control panel with built-in receiver
S
Key selector.
AL
Blinker with tuned antenna.
M
Actuator
P
Wall-mounted pushbutton panel.
Fte, Fre Pair of external photocells.
T
1-2-4 channel transmitter.

12) TERMINAL CONNECTIONS

After adequate electric cables have been made to pass through the raceways
and the various automation components fixed to the chosen points, these
must be connected according to the instructions and diagrams shown in the
relevant instruction manuals. Connect the phase, neutral and earth (com-
pulsory) cables. The mains cable is to be secured in the appropriate cable
clamp (fig.15 - ref. P1), the accessory cables in their cable clamp (fig.15 - ref.
P2), and the protection (earth) wire, having a yellow/green insulating sheath,
must be held in its appropriate wire clamp (fig.15 - ref. S). The automation
device is to be set at work after all the safety devices have been connected and
checked. See the terminal diagram in fig.16.
JP1
1-2
Motor connection (1 Light Blue - 2 Red).
3-4
Secondary transformer connection 24V.
WARNING - If the opening direction is not correct, reverse connections
1 and 2 of the motor and connections 7 and 8 of the opening and closing
limit switches.
JP2
6-7
Closing limit switch SWC (6 Black common - 7 Red).
6-8
Opening limit switch SWO (6 Black common - 8 Brown).
9-10
Blinker 24V max 25W.
JP3
11-12 Antenna (11 signal, 12 braid).
13-14 Supply to accessories 24Vac/dc (13+, 14-).
15-16 Free contact (N.O.).
Gate-Open Warning light SCA (24Vac max 3W) or 2nd Radio channel
output .This option can be set from "menu B" (see programming
page).
JP4
20-21 PED Pedestrian control button (N.O.) Opens the gate for a time of 8
seconds according to the set logic modes (2 or 4 steps).
JP5
22-23 START button and key selector (N.O.).
22-24 STOP button (N.C.). In all cases, it stops automation until a new start
command is given. If not used, leave bridged.
22-25 PHOT Electric edge photocell input (N.C.). If not used, leave bridged.
JP6
28-29 Primary transformer connection 230Vac.
30-31 Single-phase supply 230Vac, 50/60Hz (30N-31L).
13) MANUAL PROGRAMMING OF CONTROL UNIT
13.1) TRIMMER SETTING (Fig.17)
WARNING! Before any setting is made, close jumper JP1.
Set the trimmers to the required value, taking into account that the quantity
set increases as the relevant trimmer is rotated clockwise.
WARNING! The values set by the trimmers must be memorised.
This operation can be carried out in 2 ways:
a) Disconnect and reconnect the mains supply (reset) after each trimmer
correction. At the end of the setting, wait at lest 5 seconds after the system
has been newly supplied before opening jumper JP1.
b) Enter "Menu A" after setting the trimmers (Simultaneously press SW1 and
SW2 once). Check that the LEDs blink according to "Menu A" (the Green
LED blinks constantly). After each trimmer correction, enter "Menu A" to
memorise the newly set value.
AMPC-AMPO) Torque limiters. These set antisquash sensitivity both during
opening and closing manoeuvres. The pushing force at the
edge of the leaf must not exceed the maximum limit provided
for by the current standards.
WARNING: Check that the value of the impact force, measured
at the point s specified by the EN 12445 standard, is lower than
that indicated in the EN 12453 standard.
WARNING! Excessive value setting can jeopardise antisquash safety.
Setting must be calibrated to the minimum value needed to carry out
complete opening and closing strokes.
DANGER - Before the automation system becomes operational, use a
dynamometer to check the value of the pushing force at the edge of
the leaf.
INSTALLATION MANUAL
AMPC) Sets the closing antisquash trigger current. When it is triggered, it
stops the leaf movement and reverses the direction.
AMPO) Sets the opening antisquash trigger current. When it is triggered, it
stops the leaf movement.
TCA)
Sets the dwell time after which the gate is automatically closed.
TW)
Sets the motor operation time, after which the motors stop. The value
set must be slightly greater than the time needed to close the gate.
13.2) Setting of programmable parameters and functions
To program the required functions, closely follow the sequence described
in the "PROGRAMMING" pages. These include a "LEGEND" which ex-
plains the types of signal indications provided by the green and red leds. For
"Menu B", the on/off condition is specified for each individual function.
N.B. To enable function setting or modification, you must close
jumper J1 (fig.17).
Programming is divided into three menus:
A) Radio control storage.
B) Function logic setting.
C) Memory cancellation.
To gain access to each individual programming menu, simultaneously
press keys SW1 and SW2 for a short time, and precisely: once for menu A,
twice for menu B and three times for menu C. If you do not make any
selection within a working time of 60 seconds after entering the program-
ming mode, you will automatically exit programming. When setting is
completed, set J1 to Off (open the jumper). To initialise the control unit
with the required setting, disconnect the mains supply for a few
seconds, and then reconnect it.
13.3) Transmitter storage
See the "Menu A" diagram shown on the "PROGRAMMING" page.
13.4) Function logic setting
See the "Menu B" diagram shown on the "PROGRAMMING" page.
The red LED (DL1) condition (on/off) shows the function selected. The
value given within square brackets [ ] is the value predefined by the
manufacturer. Here follows a detailed explanation of "Menu B"
programmable functions:
Opening photocell [ Red LED Off ]
Red DL1 on:
when obscured, it excludes photocell operation on opening. Immediately
reverses during the closing phase.
Red DL1 off:
when obscured, the photocells remain active during both opening and
closing. If the photocell is obscured during closing, it only reverses the
movement after the photocell has been disengaged.
Opening impulse blocking [ Red LED Off ]
Red DL1 on:
the start impulse has no effect during the opening phase.
Red DL1 off:
accepts start commands during opening.
Automatic closing [ Red LED On ]
Red DL1 on:
activates automatic gate closing after a dwell time set by trimmer TCA.
Red DL1 off:
excludes automatic closing.
4 or 2 step logic [Red LED Off ]
Red DL1 on: ........ 2 step logic. A start impulse has the following effects
gate closed: ..................................................................................... opens
on opening: .............................................. stops and activates TCA, if set
gate open: ........................................................................................ closes
on closing: ........................................................................................ opens
after stopping: .................................................................................. opens
Red DL1 off: ....... 4 step logic. A start impulse has the following effects
gate closed: ..................................................................................... opens
on opening: ............................................... stops and activates TCA, if set
gate open: ........................................................................................ closes
on closing: ................................ locks (stops and does not activate TCA)
after stopping: .................................................................................. opens
Gate-open or 2nd radio channel warning light [ Red LED On ]
Red DL1 on:
operation as gate-open warning light (fig.16). This warning light is off when
the gate is closed, blinks when it is closing and stays on when the gate is
open or being opened.
Red DL1 off:
operation as 2nd radio channel (fig.16). Allows other devices to be controlled
through the second radio channel of the receiver.
13.5) Cancellation storage
See the "Menu C" diagram shown on the "PROGRAMMING" page.
14) UNIPRO UNIVERSAL PROGRAMMER (Fig.17)
The QSC control unit can be programmed by means of the UNIPRO program-
mer in the following modes:
http://www.bakonline.net/
ENGLISH
17
DEIMOS BT Ver. 04 -

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