BTL6-A/G301-M_ _ _ _-A1-S115
Magnetostrictive Linear Position Sensor – Profile Style
4
Installation and connection (continued)
4.2
Electrical Connection
The BTL is connected using a plug connection (see
Accessories on page 17).
Pin
BTL6-A301-...
1
2
3
0...10 V
(Output 2)
3)
4
5
0...10 V
(Output 1)
3)
6
7
8
1)
After programming, the programming inputs should be connected to Pin
2 (0 V).
2)
Reference potential for output
When there is no magnet within the measuring area, a voltage of approx.
3)
10.5 V is output as an error signal.
Reference potential for supply voltage and EMC-GND.
4)
Unassigned leads that are not used can be connected to the GND on the
5)
controller side but not to the shield.
Tab. 4-2:
Pin assignment of S115 connector
5
A1
2
0 V
3
A2
1
La
6
GND
7
+24 V
4
Lb
8
Fig. 4-4:
Connection example BTL6-A/G301...A1-S115 to controller
4.3
Shielding and cable routing
Defined ground!
The BTL and the control cabinet must be at the
same ground potential.
Shielding
To ensure electromagnetic compatibility (EMC), observe
the following:
–
Connect BTL and controller using a shielded cable.
Shielding: Braided copper shield with minimum 85%
coverage.
–
Shield is internally connected to connector housing.
8
english
BTL6-G301-...
La
(communication line)
1)
0 V
2)
–10...+10 V
Lb
(communication line)
1)
–10...+10 V
GND
4)
18...30 V DC
Not used
5))
(Output 2)
3)
(Output 1)
3)
Pin assignment of S115 (view
from above on BTL
connector), 8-pin M12
circular plug
Magnetic fields
The position measuring system is a magnetostrictive system.
Be sure to provide sufficient distance of the BTL from
strong external magnetic fields.
Cable routing
Do not route the cable between the BTL, controller, and
power supply near high voltage cables (inductive stray noise
is possible).
The cable must be routed tension-free.
Cable length
BTL6-A/G...
Longer cables may be used if their construction, shielding and routing
1)
prevent noise interference.
Tab. 4-3:
Cable length BTL6-A/G301-...
Max. 20 m
1)