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R410A 380~415V 3Ph 50Hz TempMaker Series Split AC MCAC-UTSM-2014-03
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also be applied to the refrigerant joint and the pipe joint.
Note: the heat insulation of drain pipe refer to the installation of indoor unit.
Please use heat-resistant materials as heat insulation material of the air-side pipe. (e.g., EPT)
Cover heat insulation materials separately at the liquid side and the air side. Moreover, perform
heat insulation thoroughly for the air-side pipes of the indoor unit, and prevent water from
dripping outside the unit.
After applying the auxiliary heat insulation materials, use vinyl resin tape to seal refrigerant pipe
and drainage pipe to prevent water leak.
7. Electric Connection
7.1 Caution
Use special power supply for the air conditioner. Design power supplies specific to the indoor
unit and outdoor unit. The supply voltage must comply with the nominal voltage.
The external supply circuit of the air conditioner must have a ground wire, and the power supply
ground wire of the indoor unit must be connected with the external ground wire firmly.
The wiring must be performed by professional technicians according to the circuit diagram
labels.
Distribute the wires according to the relevant electric technical standards promulgated by the
State, and set the Residual Current-operated Circuit Breaker (RCCB) properly.
The power wire and the signal wire shall be laid out neatly and properly, without mutual
interference or contacting the connection pipe or valve.
No power cable is attached to this equipment. The user can select the power cable by reference
to the stipulated power supply specifications. No joint of wires is allowed.
Upon completion of wire connection, double check it and then connect the power supply.
An all-pole disconnection device which has at least 3mm separation distance in all pole and a
residual current device (RCD) with the rating of above 10mA shall be incorporated in the fixed
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...