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Appendix IV – Wiring Information
89
Appendix IV – Wiring Information
1.1 Cable
Use alarm cable AZ6360 or AZ6361 for
connecting the auxiliary modules and the sensors.
1.2 Cable length
For correct operation of a Terxon L burglar alarm
system, a voltage of at least 10.5V is necessary
for all system components.
Before installing the system with long cable
lengths, you should be aware of potential voltage
losses so that you can take action against them
in advance.
The AZ6360/AZ6361 alarm cable has a
resistance of 10.5 Ohm per hundred metres.
Values that require an auxiliary power supply are
underlaid grey.
If you duplicate the voltage-carrying wires without
an auxiliary power supply, as described in
Method 1, the grey underlaid and the bold printed
values apply.
10 m 20 m 30 m 40 m 50 m 60 m 70 m 80 m 90 m 100 m
60 mA 0,13 V 0,25 V 0,38 V 0,50 V 0,63 V 0,76 V 0,88 V 1,01 V 1,13 V 1,26 V
80 mA 0,17 V 0,34 V 0,50 V 0,67 V 0,84 V 1,01 V 1,18 V 1,34 V 1,51 V 1,68 V
100 mA 0,21 V 0,42 V 0,63 V 0,84 V 1,05 V 1,26 V 1,47 V 1,68 V 1,89 V 2,10 V
120 mA 0,25 V 0,50 V 0,76 V 1,01 V 1,26 V 1,51 V 1,76 V 2,02 V 2,27 V 2,52 V
140 mA 0,29 V 0,59 V 0,88 V 1,18 V 1,47 V 1,76 V 2,06 V 2,35 V 2,65 V 2,94 V
160 mA 0,34 V 0,67 V 1,01 V 1,34 V 1,68 V 2,02 V 2,35 V 2,69 V 3,02 V 3,36 V
180 mA 0,38 V 0,76 V 1,13 V 1,51 V 1,89 V 2,27 V 2,65 V 3,02 V 3,40 V 3,78 V
200 mA 0,42 V 0,84 V 1,26 V 1,68 V 2,10 V 2,52 V 2,94 V 3,36 V 3,78 V 4,20 V
220 mA 0,46 V 0,92 V 1,39 V 1,85 V 2,31 V 2,77 V 3,23 V3,70 V4,16 V4,62 V
240 mA 0,50 V 1,01 V 1,51 V 2,02 V 2,52 V 3,02 V 3,53 V4,03 V4,54 V5,04 V
260 mA 0,55 V 1,09 V 1,64 V 2,18 V 2,73 V 3,28 V 3,82 V 4,37 V 4,91 V 5,46 V
280 mA 0,59 V 1,18 V 1,76 V 2,35 V 2,94 V 3,53 V 4,12 V 4,70 V 5,29 V 5,88 V
300 mA 0,63 V 1,26 V 1,89 V 2,52 V 3,15 V 3,78 V 4,41 V 5,04 V 5,67 V 6,30 V
320 mA 0,67 V 1,34 V 2,02 V 2,69 V 3,36 V 4,03 V 4,70 V 5,38 V 6,05 V 6,72 V
340 mA 0,71 V 1,43 V 2,14 V 2,86 V 3,57 V 4,28 V 5,00 V 5,71 V 6,43 V 7,14 V
360 mA 0,76 V 1,51 V 2,27 V 3,02 V 3,78 V 4,54 V 5,29 V 6,05 V 6,80 V 7,56 V
380 mA 0,80 V 1,60 V 2,39 V 3,19 V 3,99 V 4,79 V 5,59 V 6,38 V 7,18 V 7,98 V
400 mA 0,84 V 1,68 V 2,52 V 3,36 V 4,20 V 5,04 V 5,88 V 6,72 V 7,56 V 8,40 V
420 mA 0,88 V 1,76 V 2,65 V 3,53 V 4,41 V 5,29 V 6,17 V 7,06 V 7,94 V 8,82 V
440 mA 0,92 V 1,85 V 2,77 V 3,70 V 4,62 V 5,54 V 6,47 V7,39 V8,32 V9,24 V
460 mA 0,97 V 1,93 V 2,90 V 3,86 V 4,83 V 5,80 V 6,76 V7,73 V8,69 V9,66 V
480 mA 1,01 V 2,02 V 3,02 V 4,03 V 5,04 V 6,05 V 7,06 V 8,06 V 9,07 V 10,08 V
500 mA 1,05 V 2,10 V 3,15 V 4,20 V 5,25 V 6,30 V 7,35 V 8,40 V 9,45 V 10,50 V
520 mA 1,09 V 2,18 V 3,28 V 4,37 V 5,46 V 6,55 V 7,64 V 8,74 V 9,83 V 10,92 V
540 mA 1,13 V 2,27 V 3,40 V 4,54 V 5,67 V 6,80 V 7,94 V 9,07 V 10,21 V 11,34 V
560 mA 1,18 V 2,35 V 3,53 V 4,70 V 5,88 V 7,06 V 8,23 V 9,41 V 10,58 V 11,76 V
580 mA 1,22 V 2,44 V 3,65 V 4,87 V 6,09 V 7,31 V 8,53 V 9,74 V 10,96 V 12,18 V
600 m
A
1,26 V 2,52 V 3,78 V 5,04 V 6,30 V 7,56 V 8,82 V 10,08 V 11,34 V 12,60 V
Cable length
Operating
current
1.3 Reducing voltage loss – method 1
The easiest way to reduce voltage loss is to
duplicate power lines. This halves the voltage
loss. You can simply halve the values in the table
to calculate the resulting voltage loss.
1.4 Reducing voltage loss – method 2
Use a separate power line for voltage to sensors
connected to auxiliary modules.
We recommend this way of reducing voltage loss
since it enables you to achieve greater ranges
due to the low minimal voltage of most sensors
(ca. 9.5V).
95


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