R410A 380~415V 3Ph 50Hz TempMaker Series Split AC MCAC-UTSM-2014-03
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must be filled in. Otherwise, the oxidized chips may block refrigerating circulatory system.
Trash and foreign matters may come into the pipe in the process of installing the refrigerant pipe.
Be sure to blow them off with nitrogen before connecting the pipe to the outdoor units.
Use high-pressure nitrogen to clean the pipelines. Do not use the refrigerant of the outdoor unit
for cleaning.
Pipes size of the units.
Outdoor units
Liquid pipe
Gas pipe
MOV-76HN1-R
Φ9.52mm
Φ22mm
MOV-96HN1-R
Φ9.52mm
Φ25mm
MOV-120HN1-R
Φ12.7mm
Φ28.6mm
MOV-150HN1-R
Φ16mm
Φ32mm
MOV-192HN1-R
Φ16mm
Φ32mm
All connections between indoor unit and outdoor unit are copper-to copper and should be brazed
with a phosphorous-copper alloy material such as Silfos-5 or equivalent.
Do not
use soft solder.
The outdoor units have reusable valves on both the liquid and vapor connections. The total
system refrigerant charge is retained within the outdoor unit during shipping and installation. The
reusable valves are provided to evacuate and charge per the instruction.
Dry nitrogen should always be supplied through the tubing while it is being brazed, because the
temperature required is high enough to cause oxidation of the copper unless an inert
atmosphere is provided. The flow of dry nitrogen should continue until the joint has cooled.
Always use a pressure regulator and safety valve to insure that only low pressure dry nitrogen is
introduced into the tubing. Only a small flow is necessary to displace air and prevent oxidation.
Install the connective pipe only after fixing the indoor unit and outdoor unit. Keep dry when
installing the connective pipe. Do not let moist intrude into the pipeline system.
Содержание TempMaker Series
Страница 26: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 25 Top view 4 Service Spaces Top view...
Страница 28: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 27 6 Wiring Diagrams MHB 76HWN1 MHB 96HWN1...
Страница 29: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 28 MHA 150HWN1 MHA 192HWN1...
Страница 39: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 38 MHA 150HWN1 MHA 192HWN1...
Страница 45: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 44 3 Dimensions Unit mm...
Страница 46: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 45 4 Service Spaces Top view Front view...
Страница 47: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 46 5 Refrigerant circuits...
Страница 48: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 47 6 Wiring Diagrams...
Страница 59: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 58 MOV 120HN1 R Top view...
Страница 60: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 59 MOV 150HN1 R Top view MOV 192HN1 R...
Страница 63: ...MCAC UTSM 2014 03 R410A 380 415V 3Ph 50Hz TempMaker Series Split AC 62 MOV 150HN1 R...
Страница 64: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 63 MOV 192HN1 R...
Страница 94: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 93 Floor standing type...
Страница 110: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 109 System high pressure protection...
Страница 150: ...R410A 380 415V 3Ph 50Hz TempMaker Series Split AC MCAC UTSM 2014 03 149 3 The wire connection...