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PROEM CIR20AV Manuel D'instructions page 3

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INFRARED PHOTOCELLS S20AV
Thank you for your choice of a product PROEM. You are recommended to read
carefully this manual before tinstalling the product.
Description
The infrared photocells PROEM mod. CIR20AV are a security device designed to
the protection of areas in which are operating automatic closing systems.
The alluminium covers allows an antivandalic installation.
The product is composed by a couple of adjustable optic infrared devices TX and
RX, operating at 880 nm wavelength.
The rated range is 20 mt under all whether conditions ( rain, fog, dust ).
The reduced dimensions allow an easy installation procedure on any type of
structure.
The adjustable optic both horizontally (
best alignment in any installation condition.
Technical specifications
Infrared emission with diode:
Continuous modulation:
Wavelength emission:
Power supply:
Current consumption at 12 Vac/dc
- receiver:
- transmitter:
Current consumption at 24 Vac/dc
- receiver:
- transmitter:
Double contact relay with serial exchange: yes
Output contacts:
Max DC power on the relay contacts:
Max AC power on the relay contacts:
Operating temperature:
Best alignment test point.
Base plate in thermoplastic rubber.
IP Grade:
Rated range in all conditions:
Dimensions (mm):
Conformity according to:
Marking:
Packing list
Seals
Transmitter
Receiver
Aluminium covers
Photocell fixing screws
ISO M5 special screws for cover fixing
Plastic plugs Ø5
Fixing aluminium plates
Drilling template
Special tool for M5 antivandalic screws
Installation phases
1 - Mark the location of the fixing holes using the drilling template supplied
with the photocells( Fig. 1);
2 - Drill the 4 fixing holes for the base. (Hole diam: 5mm);
3 - Locate the 4 plugs provided (Fig. 3);
4 - Assemble the fixing plate, the seal and the photocells (Fig. 4);
6 - Mount the photocell with the screws supplied (Fig. 5);
7 - Make the electrical connections and power the receiver
( Fig. 7) and the transmitter ( Fig. 10);
- 12 Vac/dc : terminals 0 - 12;
- 24 Vac/dc : terminals 0 - 24.
8 - After the alignment ( Fig. 6 ) and the adjustment ( Fig. 8), ( see next
paragraph) fit the cover using the special screws with anti-vandalic head
making use of the tool supplied (Fig. 13)
All manuals and user guides at all-guides.com
CIR20AV
±40°
) and vertically ( 1
± 5°
) allows the
GaAlAs
1,5 KHz
880 nm
12 - 24 Vac/dc
34 mA
45 mA
34 mA
42 mA
1 NO / 1 NC
24 W / 48 V
60 VA / 48 V
-10°C /+55°C
IP55
20 m
98x 68 x 51
UNI8612
CE
2
1
1
2
8
4
8
2
1
1
Recommended cable cross-section
- transmitter photocells 2 x 0,6 mm
- receiver photocells 4 x 0,6 mm
Connect the output contact to the terminals C eand NO for a normally open
contact or C and NC for a normally closed contact ( Fig. 7 ).
Alignment
Align the transmitter and the receiver so that the beam is established and the red
led (LR) goes off ( Fig. 6 and Fig. 8 ).
Sensitivity adjustment
If the distance between the transmitter and the receiver is less than 5 metres remove
the bridge on the transmitter ( Fig. 12 ).
Adjust the sensitivity with the trimmer on the receiver ( Fig. 8 ).
The optimum detection is obtained when a voltage of
terminals T and P ( read the voltage with a voltmeter - Fig. 9).
On the transmitter
The green led is ON when the transmitter is powered.
On the receiver
- The green led is ON when the receiver is powered ( Fig. 11 );
- The red led is ON when the beam is
Fig. 1
Fig. 4
Receiver
C NO NC +T. P.
0
12
24
12 Vac/dc
N.A.
24 Vac/dc
N.C.
Fig. 7
Transmitter
0
12
24
LV
12 Vac/dc
LR
24 Vac/dc
Fig. 10
Fig. 11
GUARANTEE
The guarantee period of all PROEM products is 24 months,
beginning from the manufacturer date. During this period, if
the product does not work correctly, due to a defective
component, the product will be repaired or substituted at the
discretion of the producer. The guarantee does not cover the
plastic container integrity. After-sale service is supplied at the
Tel. +33 4 42965873
Fax. +33 4 42964577
E-Mail : info@technoem.com
Web: www.technoem.com
:
2
2
Adjustment
3,2 Vdc
is read across
LED states
not
established (Fig. 11).
Fig. 2
Fig. 5
Fig. 8
Fig. 12
TECHNO-EM
Fig. 3
Fig. 6
Fig. 9
Fig. 13

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