background image

POWER SUPPL

Y, polarity irrelevant

CONTROL

 SIGNAL

 1

CONTROL

 SIGNAL

 2

Fig. 3  

Wiring diagram to connect the photocell without synchronization (1 pair) 

           

and using the synchronization function (two pairs of photocells).

receiver - RX

NC

C

NO

12-24V 

AC/DC

1

Sygnalization:

POWER

terminal

no. “1”

*

jumper ZW

ZW

1

1

T

ransmitter - 

TX

sygnalization:

POWER

RX

*

jumper ZW

 

T

erminal

numer “1”

ZW

Receiver - RX

1

1

1

1

1

1

T

ransmitter - 

TX

terminal

no. “1”

ZW

Receiver - RX

Pair 2

*

jumper ZW

Pair 1

For the

 synchronation function

, use only the power supply voltage alternating current (AC) and cut the ZW jumper in transmitter and receiver of both pairs of photocells. 

Swap wires in the supply line in one pair of photocell.

When using photocells in a place where interfere due to reflections from walls or other items reduce the power of the transmitter

T

o do this, cut the LO POWER jumper in transmitter

.

*

 wires swap in the supply line 

   between two pair of photocell

CONNECTION SCHEME

signal  INPUT 2

photocell 2 (NC)

terminal description

**

    LO POWER

terminal

singal INPUT 1

photocell 1 (NC)

accessories supply OUTPUT

12-24V AC/DC

transmitter - 

TX

12-24V 

AC/DC

1

terminal

numer “1”

*

jumper ZW

ZW

*

*

**

**

    LO POWER

jumper

Control board

Содержание SLIM 2

Страница 1: ...er distance not less than 1 m Photocell has angle of view adjustment in receiver and transmitter Coaxial mounting is unnecessary Give consideration to electric boards maximum angle of rotation inside transmitter and receiver enclosure Because of photosensitive elements it is recommended to mount receiver on less sun exposure side Both receiver and transmitter must be mounted vertically Terminal bl...

Страница 2: ...al sensors in the NC With the use of synchronization function Using synchronization function you can install two pairs of photocells with the overlapping area of the optical range To use the synchronization function you must cut the ZW jumper in photocell transmitter and receiver and supply them with alternating voltage 12 24VAC Connect the same wire to the terminal marked 1 on the transmitter and...

Страница 3: ... control NC or NO required in the control panel The standard solution for gate automation is the work in optical sensors in the NC 5 Receiving tests After photocell connection is done it is recommended to check receiver RX reaction on Irfarared signal breaks Gate automation systems must be tested conformity to EN 12445 standard Photocell test 4 Supply power to receiver only and check if RX diode o...

Страница 4: ...tion use only the power supply voltage alternating current AC and cut the ZW jumper in transmitter and receiver of both pairs of photocells Swap wires in the supply line in one pair of photocell When using photocells in a place where interfere due to reflections from walls or other items reduce the power of the transmitter To do this cut the LO POWER jumper in transmitter wires swap in the supply ...

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