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Ribind KING PLUS Manuel D'installation page 31

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follows from page 31
B -
OPERATING MICROSWITCH
DIP 1 CHECKING THE ROTATION DIRECTION OF THE
MOTOR (ON) (POINT C)
DIP 2 TIMING (ON) (POINT D)
DIP 3 Pausing time before automatic closing in normal and
pedestrian mode (ON)
DIP 4 Jogging radio receiver (OFF) - automatic (ON)
DIP 5 Single impulse command (K BUTT) jogging (OFF) - automatic (ON)
DIP 6 Photocells always active (OFF) - Photocells active only on closure
(ON)
DIP 7 Encoder for the PLUS model (ON - operated)
DIP 8 Pre-blinking (ON) - Normal blinking (OFF)
DIP 9 Slow speed - only in closing (ON-operated)
DIP 10 Electric Lock (ON-operated)
DIP 11 Release pulse in opening phase (ON- operated)
DIP 12 230V Motor (OFF) 120V (ON)
S1 => "PROG."
Programming button
S2 => Select operation with 1 or 2 motors (default closed track 2 motors)
S3 => Timed operation jumper (OFF) or electric limit switches (ON) (IF
APPLIED)
TORQUE - ELECTRONIC TORQUE REGULATOR
The torque is regulated by rotating the Trimmer TORQUE, varying the output
voltage of motor ends,(when rotated clockwise, more torque Is transmitted to
the motor).
Such torque Is automatically Included 3 seconds after the start of every
operating cycle.
This allows the motor to have the maximum pickup when it starts.
SLOWING DOWN
Use DIP 9 to enable or disable further slowing down. This only takes place
just before final closing by a reduction of the motor voltage (low voltage with
electronic clutch) and is directly proportional to the value set by the electronic
clutch trimmer.
LED SIGNALS
DL1
Photocell contact (NC)
DL2
M1 opening limit switch contact (NC)
DL3
M1 closing limit switch contact (NC)
DL4
M2 opening limit switch contact (NC)
DL5
M2 closing limit switch contact (NC)
DL6
Stop contact (NC)
DL7
M1 encoder operation control
DL8
M2 encoder operation control
DL9
Programming active
DL10 Closing gate M1
DL11 Closing gate M2
C -
MOTOR DIRECTION OF ROTATION CONTROL
This control facilitates installation of the system and allows further checks to
be performed.
1 - Release the motor and move the gate to half open position.;
2 - Put DIP1 in the ON mode => The LED DL9 starts blinking;
3 - Press the PROG button and hold it (the gate now is controlled in a dead
man mode: open, stop, close, stop, open) => THE RED LED DL10 and
the DL11 come on and the gate starts closing. The second leave closes
four seconds after the first one. If this does not happen, invert the wires
of the motors V1,W1 and V2, W2);
4 - Press the PROG button and hold it => the gate starts opening. The two
gate leaves will open with a two second difference;
5 - Adjust the mechanical stoppers in opening;
6 - Press the hold the PROG button until both gate leaves reach the
completely close position and are now ready for the timing programming;
7 - Set the electrical limit switches if provided;
8 - At the end of the procedure, switch DIP1 to OFF. LED DL9 goes off to
confirm exit from the check procedure.
N.B. During this check, the encoder and photocells are not active.
D -
TIME PROGRAMMING FOR TWO MOTORS (#)
THIS CAN BE DONE IN EITHER OF TWO WAYS:
MODE 1 - WITH ENCODER (DIP 7 ON AND JUMPER S3 OPEN)
- WITH ENCODER AND ELECTRIC LIMIT SWITCHES (IF
APPLIED) (DIP 7 ON AND JUMPER S3 CLOSED)
- WITHOUT ENCODER BUT WITH ELECTRIC LIMIT
SWITCHES (IF APPLIED) (DIP 7 OFF AND JUMPER S3
CLOSED)
MODE 2
- TIMED (DIP 7 OFF AND JUMPER S3 OPEN)
MODE 1
1 - Start with the gate completely closed and with mechanical stopper
already regulated like fig.10.
2 - Put DIP 2 in the ON mode => LED DL9 will blink rapidly.
3 - Press PROG. => M1 opens.
4 - When the gate comes into contact with the opening stop, the ENCODER
stops M1 (with storage of the encoder readings and the time) and M2
starts to open simultaneously.
5 - When the gate comes into contact with the opening stop, the ENCODER
stops M1 (with storage of the encoder readings and the time) => the delay
countdown prior
to automatic closing starts simultaneously (max 5
minutes).
6 - Press PROG. => delay countdown prior to automatic closing stops and
M2 closes.
7 - Press PROG. => M1 closes and creates a phase difference between M2
and M1. At the same time LED DL9 stops blinking to signal exit from the
programming mode. At this point, the safety devices and other gate
controls will resume normal operation (inversions, stops, alarms, etc.).
9 - The gate will stop at the end of the ENCODER countdown.
10 - AFTER PROGRAMMING, SWITCH DIP 2 TO OFF.
NOTE: The same procedure applies to electric limit switches (S3 closed).
With S3 closed, gate travel is determined by the electric limit switches
and not by the encoder, which only acts as a safety device.
MODE 2
1 - Start with the gate completely closed.
2 - Put DIP 2 in the ON mode => LED DL9 will blink rapidly.
3 - Press PROG. => M1 opens.
4 - When the gate comes into contact with the opening stop, wait one second
and then press PROG => M1 stops and M2 opens.
5 - When the gate comes into contact with the opening stop, wait one second
and then press PROG => M2 stops and the delay countdown prior to
automatic closing starts simultaneously (max 5 minutes).
6 - Press PROG. => delay countdown prior to automatic closing stops and
M2 closes.
7 - Press PROG. => M1 closes and creates a phase difference between M2
and M1. At the same time LED DL9 stops blinking to signal exit from the
programming mode. At this point, the safety devices and other gate
controls will resume normal operation (inversions, stops, alarms, etc.).
8 - The gate will stop at the end of the ENCODER countdown.
9 - AFTER PROGRAMMING, SWITCH DIP 2 TO OFF.
TIME PROGRAMMING FOR ONE MOTOR (#)
IMPORTANT: CUT OUT S2 TO OPERATE ONE MOTOR.
THIS CAN BE DONE IN EITHER OF TWO WAYS
MODE 3 - WITH ENCODER ONLY (DIP 7 ON AND JUMPER S3 OPEN)
- WITH ENCODER AND ELECTRIC LIMIT SWITCHES (IF
APPLIED) (DIP 7 ON AND JUMPER S3 CLOSED)
- WITHOUT
ENCODER
SWITCHES (IF APPLIED) (DIP 7 OFF AND JUMPER S3
CLOSED)
MODE 4 - TIMED (DIP 7 OFF AND JUMPER S3 OPEN)
MODE 3
1 - Start with the gate completely closed and with mechanical stopper
already regulated like fig.10.
2 - Put DIP 2 in the ON mode => LED DL9 will blink rapidly.
3 - Press PROG. => M1 opens.
BUT
WITH
ELECTRIC
LIMIT
G G
B B

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