5.1 Device control system
Purpose of control
Use
Cooling operation
Heating operation
Defrost mode
Compressor control frequency
with Inverter
Frequency control is determined with
the following parameters:
•
Difference between the air inlet
temperature and the set air
temperature.
•
Calculate the width of the
change using the amount of the
change.
Frequency control is determined with
the following parameters:
•
Difference between the air inlet
temperature and the set air
temperature.
•
Calculate the width of the change
using the amount of the change.
Fixed frequency (stop the compressor
for 30 s. once defrost is complete).
Degree of opening of the
outdoor unit expansion valve
Fully open
The control range for the degree of
opening of the expansion valve is
determined
to
optimise
the
temperature at the top of the
compressor.
Fully open
Degree of opening of the
indoor unit expansion valve
The control range for the degree of
opening of the expansion valve is
determined to optimise the difference
in temperature of the I.U. gas pipe
(Tg) - the temperature of the I.U.
liquid piping (Tl).
Degree of opening specified at the
start of normal control. Then
controlled to optimise the temperature
of the I.U. liquid pipe (Tl).
Specified
degrees
of
opening
controlled by the temperature at the
top of the compressor. (Td).
Outdoor fan
The fan speed operates to control the
stabilisation of the O.U. liquid pipe
temperature (Te); (Te) stabilisation
control
The fan speed is controlled in line with
the temperature of the O.U. liquid pipe
and the temperature at the top of the
compressor.
Fan stoppage.
4-way valve (RVR)
Off
On
Off
Solenoid
valve
(SVS)
(Balanced pressure valve)
Enabled
on
starting
(4-10)H(V)RNSE
Enabled on starting (4-10)H(V)RNSE
Enabled by defrost
High/low pressure balance
•
Control by the indoor expansion
valve (2-3 HVRN(1)(S)
•
SVA activation before the
compressor
is
started
(4-10)H(V)RNSE
•
Control by the outdoor expansion
valve (2-3 HVRN(1)(S)
•
SVA activation before the
compressor
is
started
(4-10)H(V)RNSE
I.U.: indoor unit.
Tc/Te: condensing temperature / evaporating temperature.
Td: Discharge temperature.
Tl: liquid temperature.
Tg: gas temperature.
Cap: capacity.
5 Control system
160
SMGB0063 rev. 1 - 10/2010
Summary of Contents for Econofresh
Page 2: ......
Page 4: ...Index ii SMGB0063 rev 1 10 2010 ...
Page 12: ...Index x SMGB0063 rev 1 10 2010 ...
Page 24: ...1 General information 12 SMGB0063 rev 1 10 2010 ...
Page 88: ...2 Unit installation 76 SMGB0063 rev 1 10 2010 ...
Page 169: ... KPI 3002H2E heat recovery unit 4 Electrical wiring 157 SMGB0063 rev 1 10 2010 4 ...
Page 170: ...4 Electrical wiring 158 SMGB0063 rev 1 10 2010 ...
Page 192: ...5 Control system 180 SMGB0063 rev 1 10 2010 ...
Page 234: ...6 Optional functions 222 SMGB0063 rev 1 10 2010 ...
Page 252: ...9 1 RCD 1 0 3 0 FSN2 9 Spare parts 240 SMGB0063 rev 1 10 2010 ...
Page 254: ...9 2 RCD 4 0 5 0 FSN2 9 Spare parts 242 SMGB0063 rev 1 10 2010 ...
Page 256: ...9 3 RPC 4 0 6 0 FSN2E 9 Spare parts 244 SMGB0063 rev 1 10 2010 ...
Page 258: ...9 4 RPI 0 8 1 5 FSNE 9 Spare parts 246 SMGB0063 rev 1 10 2010 ...
Page 260: ...9 5 RPI 8 0 10 0 FSN2E 9 Spare parts 248 SMGB0063 rev 1 10 2010 ...
Page 262: ...9 6 RPIM 0 8 1 5 FSNE DU 9 Spare parts 250 SMGB0063 rev 1 10 2010 ...
Page 264: ...9 7 RPK 1 0 1 5 FSN2E 9 Spare parts 252 SMGB0063 rev 1 10 2010 ...
Page 268: ...9 9 RPK 2 0 FSN2E 9 Spare parts 256 SMGB0063 rev 1 10 2010 ...
Page 270: ...9 10 RPK 2 5 4 0 FSN2E 9 Spare parts 258 SMGB0063 rev 1 10 2010 ...
Page 272: ...9 11 RPF 1 0 2 5 FSN2E 9 Spare parts 260 SMGB0063 rev 1 10 2010 ...
Page 274: ...9 12 RPFI 1 0 2 5 FSN2E 9 Spare parts 262 SMGB0063 rev 1 10 2010 ...
Page 276: ...9 Spare parts 264 SMGB0063 rev 1 10 2010 ...
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