Control Diagram - Power Request For Analogue Input (Fig. 4); Logic Input Control Diagram (Fig. 5) - LG multi V ARUM Series Installation Manual

A set for the application of an outdoor compressor condensation unit for a nonoriginal evaporation / hvac unit
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"POWER LEVEL REQUEST"
Fig.4 - Control diagram – Power request for analogue input (Operational mode through logic input)
A request for power level may be
executed through an analogue signal
0...10VDC or through 3 logic inputs
(voltage free contacts).
To
directly
influence
(change of evaporating temperature in
cooling mode/change of condensing
temperature in heat pump mode) it is
necessary
to
install
limitation module at the same time.
1. Input terminals "POWER 0...10V"
(terminals
16+17)
signal 0...10V (0 V = no request
for power level, 10 V = maximum
power level request). The current
power request is shown on the
right side of the display module
using 8 codes ("C0...C7" or rather
"H0...H7").
The power request algorithm requires
at least "C1"/"H1" code (i.e. at least
1.5V) to activate the compressor unit.
The power request algorithm requires at least "C0"/"H0" code (that means maximum 1.3V) to stop the
compressor unit.
2. Input
terminals
1ST,2ST,3ST" – logic inputs
(voltage free contacts):
no
contact
closed
power request
contact POWER 1st closed
(terminals
18+20)
power request
contact POWER 2st closed
(terminals 18+21) = higher
power request
both
contacts
1ST+2ST closed (terminals
18+20+21)
=
power request
the current power demand is
displayed on the right position
of the module display via 4
codes ("C0, C1, C3, C7, " or
"H0, H1, H3, H7")
2020/07/23
the
output
a
capacity
analogue
Power control
Level 1 to 7
Cool / Heat
Start / Stop
"POWER
=
no
=
low
POWER
maximum
Cool / Heat
Power level
0,1,4,7
Stop / Start
Fig.5 - Logic input control diagram – free contact type
I&C
I&C
page 11

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