
Technical data
detection zones
for different objects:
The dark grey areas represent the zone
where it is easy to recognise the normal
reflector (round bar). This indicates the typical
operating range of the sensors. The light
grey areas represent the zone where a
very large reflector – for instance a
plate – can still be regognized. The
requirement here is for an optimum
alignment to the sensor. It is not
possible to evaluate ultrasonic
reflections outside this area.
no-load current consumption
±1 % (temperature drift internally compensated)
10 - 30 V DC, reverse polarity protection
±1 % (temperature drift internally compensated)
10 - 30 V DC, reverse polarity protection
max. tightening torque of nuts
brass sleeve, nickel-plated, plastic parts: PBT;
ultrasonic transducer: polyurethane foam,
brass sleeve, nickel-plated, plastic parts: PBT;
ultrasonic transducer: polyurethane foam,
epoxy resin with glass content
15 Nm
epoxy resin with glass content
15 Nm
class of protection per EN 60 529
5-pin M12 circular plug
5-pin M12 circular plug
LED yellow (state of output)
LED yellow (state of output)
internal synchronisation up to 10 sensors
internal synchronisation up to 10 sensors
switchable NOC/NCC, short-circuit-proof
switchable NOC/NCC, short-circuit-proof
time delay before availability
1)
order no. directly radiating
1) Can be programmed with LinkControl
±1 % (temperature drift internally compensated)
10 - 30 V DC, reverse polarity protection
±1 % (temperature drift internally compensated))
10 - 30 V DC, reverse polarity protection
brass sleeve, nickel-plated, plastic parts: PBT;
ultrasonic transducer: polyurethane foam,
brass sleeve, nickel-plated, plastic parts: PBT;
ultrasonic transducer: polyurethane foam,
epoxy resin with glass content
15 Nm
epoxy resin with glass content
15 Nm
5-pin M12 circular plug
5-pin M12 circular plug
LED yellow (state of output)
LED yellow (state of output)
internal synchronisation up to 10 sensors
internal synchronisation up to 10 sensors
switchable NOC/NCC, short-circuit-proof
switchable NOC/NCC, short-circuit-proof
+U
B
-U
B
F
Com
1
2
4
5
3
Push-Pull output in pnp circuit
U
+U
B
-U
B
F
Com
1
2
4
5
3
Push-Pull output in npn circuit
U
8 cm
4 cm
0 cm
4 cm
8 cm
0 cm
4 cm
8 cm
12 cm
16 cm
20 cm
24 cm
Rohr ø 10 mm
ausgerichtete Platte
Plate
Rohr ø 10 mm
8 cm
0 cm
4 cm
8 cm
4 cm
8 cm
4 cm
0 cm
4 cm
8 cm
0 cm
4 cm
8 cm
12 cm
16 cm
20 cm
24 cm
Rohr ø 10 mm
ausgerichtete Platte
Round bar ø 10 mm
8 cm
0 cm
4 cm
8 cm
4 cm
0 cm
4 cm
8 cm
12 cm
16 cm
20 cm
24 cm
0 cm
5 cm
10 cm
15 cm
20 cm
25 cm
30 cm
35 cm
Plate
Round bar ø 10 mm
10 cm
5 cm
0 cm
5 cm
10 cm
0 cm
10 cm
20 cm
30 cm
40 cm
50 cm
60 cm
Plate
Round bar ø 27 mm
20 cm
10 cm
0 cm
10 cm
20 cm
35 cm
0 m
0,2m
0,8 m
1,0 m
1,3 m
0,4 m
0 m
0,4 m
0,6 m
0,4 m
1,0 m
1,4 m
0,2 m
0,2 m
Round bar ø 27 mm
Plate
■ In the »Set detect point – method
A« Teach-in procedure the actual
distance to the object is taught to
the sensor as the detect point. If
the object moves towards the
sensor (e.g. with level control) then
the taught distance is the level at
which the sensor has to switch the
output.
If the object to be scanned moves
into the detection area from the
side, the »Set detect point +8 % –
method B« Teach-in procedure
should be used. In this way the
switching distance is set 8 % fur-
ther than the actual measured dis-
tance to the object. This ensures a
reliable switching distance even if
the height of the objects varies
slightly.
Fig. 4: Setting the detect point for different
directions of movement of the object
If synchronization is activated the
Teach-in is disabled (see »Further
settings«).
The sensor can be reset to its fac-
tory setting (see »Further set-
tings«).
Using the LinkControl adapter (op-
tional accessory) and the LinkCon-
trol software for Windows, all
Teach-in and additional sensor pa-
rameter settings can be optionally
undertaken.
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