Installing The Radio Control Receiver Board; Operation With Encoder Or Amperometric Operation; Control Leds; Operation Of Display - Genius BRAIN 03 Instrucciones Para El Uso

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4.4.5. O
PENING SAFETY DEVICES
"COM - FSW OP"terminals. Normally closed contact. Connect, to these terminals, any safety device (e.g. photocell,
safety edge, pressure switch etc..) which, by opening a contact, affects the gate's opening motion, causing it to stop
immediately. When the safety device has been reset, the gate resumes its memory-stored cycle. The status of this
input is signalled by LED "FSW-OP".
• If no safety devices are connected, jumper connect the inputs.
• To connect several safety devices, connect the devices in series.

5. INSTALLING THE RADIO CONTROL RECEIVER BOARD

The control unit is designed to house a 5-pin radio-receiver module. Installation procedure: turn off power and fit the
module in connector CN5 on the control unit.
To avoid damaging the receiver and thus irreparably compromising its operation, the receiver must be installed
while observing the fitting direction specified in paragraph 13 (connection lay-out).
This done, observe the radio-receiver instructions to store the radio control in the memory.

6. OPERATION WITH ENCODER OR AMPEROMETRIC OPERATION

The control unit has 4
The control unit has 4 DIP SWITCHES, which enable selection of either amperometric operation or operation with
Encoder.
Operation with encoder provides greater safety in detecting obstacles and greater repeatability of the deceleration
Operation with encoder provides greater safety in detecting obstacles and greater repeatability of the deceleration
point.
Operation with encoder requires mechanical stops, or limit-switches, for both opening and closing.
Operation with encoder requires mechanical stops, or limit-switches, for both opening and closing.
To select operation with encoder, position
To select operation with encoder, position DIP-SWITCHES 1 and 2 to ON and DIP-SWITCHES 3 and 4 to OFF
To select amperometric operation, position
To select amperometric operation, position DIP-SWITCHES 1 and 2 to OFF and DIP-SWITCHES 3 and 4 to ON
For a correct programming procedure of the control
For a correct programming procedure of the control
unit, carry out this operation before programming
unit, carry out this operation before programming
the control unit because it radically modifies its
the control unit because it radically modifies its
operation.
operation.
LEDS
ALIM
Power supply by toroidal transformer
FCC1
Motor 1 closing limit-switch not tripped
FCA1
Motor 1 opening limit-switch not tripped
Motor 2 closing limit-switch not tripped
FCC2
FCA2
Motor 1 opening limit-switch not tripped
STOP
Stop command not activated
FSW-CL
Closing safety device not tripped
FSW-OP
Opening safety device not tripped
• Indicated in bold: status of LEDs with gate closed, control unit powered, and both limit-switches installed.
• If the limit-switches are not used, the relevant contacts must be jumper connected and LEDs FCC1 - FCA1
- FCC2 - FCA2 must be lighted.
• If no STOP devices are connected, jumper connect the input. The STOP LED must be lighted.
The control unit has a handy display for viewing and programming the operating parameters. Furthermore, it constantly
shows gate status during normal operation.
When operating parameters are being displayed and programmed, the display shows the se-
lected parameter on the left, and its set value on the right. Fig. 03 shows the viewing example of
parameter "A" at value "2".
, which enable selection of either amperometric operation or operation with

7. CONTROL LEDS

ON

8. OPERATION OF DISPLAY

16
Operation with
Encoder
Fig. 01
OFF
Power supplied by batteries or no power supplied
Power supplied by batteries or no power supplied
Motor 1 closing limit-switch tripped
Motor 1 opening limit-switch tripped
Motor 2 closing limit-switch tripped
Motor 2 opening limit-switch tripped
Stop command activated
Closing safety device trippedù
Opening safety device tripped
OFF (Fig.01).
ON (Fig.02).
Amperometric
Amperometric
operation
operation
Fig. 02
A2
Fig. 03

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