INSTALLATION MANUAL
ENGLISH
- Photocell test (
test phot
) [ OFF ]
ON: Activates photocell check (see Fig. 3)
OFF: Deactivates photocell check
- Electric edge test (
test bar
) [ OFF ]
ON: Activates electric edge check (see Fig. 3)
OFF: Deactivates electric edge check
- Fixed code (
fixed code
) [ OFF ]
ON: The receiver is configured for operation in fixed-code mode, see
paragraph on “Radio Transmitter Cloning”.
OFF: The receiver is configured for operation in rolling-code mode, see
paragraph on “Radio Transmitter Cloning”.
- Radio transmitter programming (
radio prog
) [ ON ]
ON: This enables transmitter storage via radio:
1 – First press the hidden key (P1) and then the normal key (T1,
T2, T3 or T4) of a transmitter already memorised in standard mode
by means of the radio menu.
2 – Within 10s press the hidden key (P1) and the normal key (T1,
T2, T3 or T4) of a transmitter to be memorised.
The receiver exits the programming mode after 10s, other new
transmitters can be entered before the end of this time.
This mode does not require access to the control panel.
OFF: This disables transmitter storage via radio.
The transmitters can only be memorised using the appropriate
Radio menu.
12.3) Radio Menu (
radio
)
- Add start (
add start
)
Associates the required key to Start command
- Read (
read
)
Checks one key of a receiver; if stored it displays a message showing
the receiver number in the memory location (from 01 to 64), and the
key number (T1, T2, T3 or T4).
- Eliminate list (
erease 64
)
WARNING! Completely removes all memorised radio control devices
from the receiver memory.
- Receiver code reading (
RX code
)
This displays the code entered in the receiver.
12.4) Language Menu (
Language
)
Allows you to set the language on the display programmer.
5 languages are available:
- ITALIAN (
TA
)
- FRENCH (
FRA
)
- GERMAN (
DEU
)
- ENGLISH (
ENG
)
- SPANISH (
ESP
)
12.5) MENU DEFAULT (
DEFAULT
)
Restores the preset default values on the control unit. After restoring, a
new autoset operation must be carried out.
12.6) DIAGNOSTICS AND MONITORING
The display on the LEO MV D panel shows some useful information, both
during normal operation and in the case of malfunctions.
Diagnostics:
In the case of malfunctions, the display shows a message indicating which
device needs to be checked:
STRT
= START
input activation
STOP = STOP input activation
PHOT
= PHOT input activation
FLT
= FAULT input activation for checked photocells
SWO
= input activation OPENING LIMIT SWITCH
SWC
= input activation CLOSING LIMIT SWITCH
OPEN
= OPEN input activation
CLS
= CLOSE input activation
BAR
= input activation SAFETY EDGE
TIME
= TIMER input activation
In the case where an obstacle is found, the LEO MV D panel stops the
door and activates a reverse manoeuvre; at the same time the display
shows the “BAR” message.
12.7) Statistics
Having connected the
Universal palmtop programmer
to the control unit,
enter the CONTROL UNIT / STATISTICS menu and scroll the screenful
showing the statistical parameters:
- Board microprocessor software version.
- Number of cycles carried out. If motors are replaced, count the number
of manoeuvres carried out up to that time.
- Number of cycles carried out from the latest maintenance operation.
It is automatically set to zero after each self-diagnosis or parameter writing.
- Date of latest maintenance operation. To be updated manually from
the appropriate menu “Update maintenance date”.
- Installation description. 16 characters can be entered for installation
identification.
13) CONNECTION TO PARKY CAR-PARK MANAGEMENT SYSTEM
The board is provided with an output (terminal JP4) for controlling the
barrier status, configured as follows (Fig.22):
contact closed between terminals 19 and 20 with barrier lowered
contact closed between terminals 18 and 20 with barrier raised.
14) SERIAL CONNECTION USING SCS1 BOARD (Fig.21)
The LEO-MV-D control panel allows several automation units (SCS1) to
be connected in a centralised way by means of appropriate serial inputs
and outputs. This makes it possible to use one single command to open
and close all the automation units connected.
Following the diagram in Fig.21, proceed to connecting all the LEO-MV-D
control panels, exclusively using a telephone-type line.
Should a telephone cable with more than one pair be needed, it is indis-
pensable to use wires from the same pair.
The length of the telephone cable between one appliance and the next
must not exceed 250 m.
At this point, each of the LEO-MV-D control panels must be appropriately
configured, by setting a MASTER unit first of all, which will have control
over all the others, to be necessarily set as SLAVE (see logic menu).
Also set the Zone number (see parameter menu) between 0 and 127.
The zone number allows you to create groups of automation units, each
one answering to the Zone Master unit. Each zone can only be assigned
one Master unit, the Master unit in zone 0 also controls the Slave
units in the other zones.
14.1) Opposite Barriers (Fig.21A)
Only with 3.7 or later microprocessor version.
By means of a serial connection, it is also possible to obtain centralised
control of two opposite barriers/gates.
In this case, the Master M1 control panel will simultaneously manage
closing and opening for the Slave M2 control panel.
SETTING REQUIRED FOR OPERATION:
- MASTER board:
zone
=128,
master
=ON
- SLAVE board:
zone
=128,
master
=OFF
WIRING REQUIRED FOR OPERATION:
- The MASTER and SLAVE control units are interconnected through the
4 wires (RX/TX) for the SCS1 interface boards;
- All the activation controls, as well as the remote controls must refer to
the MASTER board;
- All the photocells (checked or unchecked) must be connected to the
MASTER control panel;
- The safety edges (checked or unchecked) of the MASTER leaf must be
connected to the MASTER control unit;
- The safety edges (checked or unchecked) of the SLAVE leaf must be
connected to the SLAVE control unit.
15) LIMIT SWITCH SETTING
WARNING: before opening the door, make sure that the spring has
been unloaded (rod at 43°). The barrier is provided with electrical limit
switches and end-of-stroke mechanical stop devices. There must be a
rotation margin (about 1°) on closing and opening between the electrical
limit switches and mechanical stop devices (fig.11). The adjustment is
carried out as follows:
- Activate the manual release, bring the bar to its completely open posi-
tion (perfectly vertical).
- Manually advance the bar by about 2° with respect to the vertical
position.
- Set the opening microswitch (fig.12 ref. SWO) by loosening the dowel
(fig. 13 ref. G) and moving the cam (fig.13 ref. C) until the microswitch
trip is heard (or checking that the respective control unit LED switches
off).
- Manually bring the bar to its completely closed position resting onto
the fork (fig.11 ref. F). Check that the bar is perfectly horizontal using
a level (fig.11 ref. L).
- Set the closing microswitch (fig.12 ref. SWC) by loosening the dowel
(fig.13 ref. G) and moving the cam (fig.13 ref. C) until the microswitch
trip is heard (or check that the respective control unit LED switches
off).
- Set the closing microswitch (fig.12 ref. SWC) so that the bar stops a
few millimeters before hitting the fork (fig.11 ref. F).
- Activate the motorised operation and run a few cycles.
- Check that the electrical limit switch stops the bar before it reaches its
vertical open position.
- Check that the electrical limit switch stops the bar before it reaches its
MOOVI 30S-30RMM-50RMM Ver. 06 -
21
D81
1480_07
Содержание MOOVI 30S
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Страница 13: ...Fig 7 Fig 5 Fig 6 Fig 4 1 2 6 3 SX DX 80Nm 4 5 58 MOOVI 30S 30RMM 50RMM Ver 06 D811480_07 ...
Страница 14: ...MOOVI 30S 30RMM 50RMM Ver 06 59 D811480_07 ...
Страница 15: ...Fig 13 Fig 14 2 G C Fig 11 Fig 12 SWC SWO SWC SWO 60 MOOVI 30S 30RMM 50RMM Ver 06 D811480_07 ...
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