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English
8
Outdoor Unit Installation
*1. Pipe length vs. vacuum pump run time.
*2. If the compound pressure gauge pointer swings back, refrigerant may have water content or a loose pipe joint may exists.
Check all pipe joints and re-tighten nuts as needed, then repeat steps 2) through 4).
5.
Refilling the refrigerant
Check the type of refrigerant to be used on the machine nameplate.
Fill from the gas pipe in liquid form.
1) Connect projection side of charging hose (which comes from gauge manifold) to gas stop valve’s service port.
2) Fully open gauge manifold’s low-pressure valve (Lo) and completely close its high-pressure valve (Hi).
(High-pressure valve subsequently requires no operation.)
3) Do vacuum pumping and make sure that the compound pressure gauge reads –0.1MPa (–76cmHg).*1
4) Close gauge manifold’s low-pressure valve (Lo) and stop vacuum pump.
(Keep this state for a few minutes to make sure that the compound pressure gauge pointer does not swing back.)*2
5) Remove caps from liquid stop valve and gas stop valve.
6) Turn the liquid stop valve’s rod 90 degrees counterclockwise with a hexagonal wrench to open valve.
Close it after 5 seconds, and check for gas leakage.
Using soapy water, check for gas leakage from indoor unit’s flare and outdoor unit’s flare and valve rods.
After the check is complete, wipe all soapy water off.
7) Disconnect charging hose from gas stop valve’s service port, then fully open liquid and gas stop valves.
(Do not attempt to turn valve rod beyond its stop.)
8) Tighten valve caps and service port caps for the liquid and gas stop valves with a torque wrench at the specified torques.
Pipe length
Up to 15m
More than 15m
Run time
Not less than 10 min.
Not less than 15 min.
6
5
Please fill in with indelible ink,
the factory refrigerant charge of the product,
tCO
2
eq calculation according to the formula (rounded up
to 2 decimal places)
the additional refrigerant amount charged in the field and
the total refrigerant charge
on the refrigerant charge label supplied with the product.
Important information regarding the refrigerant used
This product contains fluorinated greenhouse gases.
Do not vent gases into the atmosphere.
Refrigerant type:
GWP
value:
factory refrigerant charge of the
product:
see unit name plate
additional refrigerant amount
charged in the field
total refrigerant charge
greenhouse gas emissions
of the
total refrigerant charge expressed
as tonnes CO
2
-equivalent
outdoor unit
refrigerant cylinder and manifold
for charging
The filled out label must be adhered in the
proximity of the product charging port
(e.g. onto the inside of the stop valve cover).
GWP = global warming potential
(1)
(1)
Contains fluorinated greenhouse gases
2
1
1
1
2
2
kg
tCO
2
eq
1000
GWP × kg
=
=
+
kg
=
kg
=
GWP: 675
675
R32
R32
NOTE
National implementation of EU regulation on certain fluorinated greenhouse gases may require to provide the appropriate official national language on the unit.
Therefore an additional multilingual fluorinated greenhouse gases label is supplied with the unit. Sticking instructions are illustrated on the backside of that label.
NOTICE
In Europe, the
greenhouse gas emissions
of the total refrigerant charge in the system (expressed as tonnes CO
2
-equivalent)
is used to determine the maintenance intervals. Follow the applicable legislation.
Formula to calculate the greenhouse gas emissions:
GWP value of the refrigerant × Total refrigerant charge [in kg] / 1000
Use the GWP value mentioned on the refrigerant charge label. This GWP value is based on the 4th IPCC
Assessment
Report. The GWP value mentioned in the manual might be outdated (i.e., based on the 3rd IPCC Assessment Report).
6
5
Please fill in with indelible ink,
the factory refrigerant charge of the product,
tCO
2
eq calculation according to the formula (rounded up
to 2 decimal places)
the additional refrigerant amount charged in the field and
the total refrigerant charge
on the refrigerant charge label supplied with the product.
Important information regarding the refrigerant used
This product contains fluorinated greenhouse gases.
Do not vent gases into the atmosphere.
Refrigerant type:
GWP
value:
factory refrigerant charge of the
product:
see unit name plate
additional refrigerant amount
charged in the field
total refrigerant charge
greenhouse gas emissions
of the
total refrigerant charge expressed
as tonnes CO
2
-equivalent
outdoor unit
refrigerant cylinder and manifold
for charging
The filled out label must be adhered in the
proximity of the product charging port
(e.g. onto the inside of the stop valve cover).
GWP = global warming potential
(1)
(1)
Contains fluorinated greenhouse gases
2
1
1
1
2
2
kg
tCO
2
eq
1000
GWP × kg
=
=
+
kg
=
kg
=
GWP: 675
675
R32
R32
NOTE
National implementation of EU regulation on certain fluorinated greenhouse gases may require to provide the appropriate official national language on the unit.
Therefore an additional multilingual fluorinated greenhouse gases label is supplied with the unit. Sticking instructions are illustrated on the backside of that label.
NOTICE
In Europe, the
greenhouse gas emissions
of the total refrigerant charge in the system (expressed as tonnes CO
2
-equivalent)
is used to determine the maintenance intervals. Follow the applicable legislation.
Formula to calculate the greenhouse gas emissions:
GWP value of the refrigerant × Total refrigerant charge [in kg] / 1000
Use the GWP value mentioned on the refrigerant charge label. This GWP value is based on the 4th IPCC
Assessment
Report. The GWP value mentioned in the manual might be outdated (i.e., based on the 3rd IPCC Assessment Report).
3PEN386697-4L.book Page 8 Monday, July 31, 2017 2:37 PM