Power Supply To The Lmv5 - Siemens LMV51 Series Basic Documentation

Burner control with integrated fuel / air ratio control and load control, load control including o2 trim control for forced draft burners
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Example 1
Power supply
max. 3 m
AC1 12 V
12 V
12 V
12 V
230 V
Power trafo 1
AGG5.2...
Note on example 1
192/301
Siemens Building Technologies
HVAC Products
12.1 Power supply to the LMV5... system
In principle, the CAN bus topology always has a line structure and, therefore, has a
start and an end node.
The individual CAN bus users are connected in series, whereby the respective end nodes
are terminated by CAN bus terminating resistors.
The basic unit is a component of the communication line and is looped in between the
AZL5... and the actuators.
In the system, the AZL5... always assumes the function of a CAN bus end node. The
required CAN bus terminating resistor is already integrated in that case.
With the actuators, the last user becomes the CAN bus end node (here, the internal
CAN bus termination must be activated via a connecting plug).
The other node users within the line structure are configured without terminating resis-
tor.
Installation of all components in the burner;
CAN bus cable «LMV5... ↔ ACT» < 20 m
Fixed internal
bus termination
AZL5...
Sub-D
connector
Max. bus cable length
LMV5...-AZL51...: 80 m
AGG5.630 / 631
RAST3.5
AC2 12 V
Trafo
M
X52
X51
F3 T4
F2 T4
X10-01
F1 T6.3
CANL
CANH
LMV5... basic unit
X3-04
N L
Total length of CAN bus cable ≤ 100 m
Basic Documentation LMV5...
12 Mounting, electrical installation and service
ACT 1
SQM4...
No bus
termination
X50
7550a03e/0304
Jumper
ACT 3
ACT 2
SQM4...
SQM4...
No bus
No bus
termination
termination
Max. bus cable length
LMV5...-SQM4...: 20 m
AGG5.640 / 641
CC1P7550en
13.08.2004
ACT 4
SQM4...
Bus
termination

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