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Mitsubishi Heavy Industries FDC508HES3 User Manual

Mitsubishi Heavy Industries FDC508HES3
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719
V MULTI
(3)After completion of
vacuuming, remove the
cap nut for the valve
stem and fully open the
service valve (for both
of liquid and gas) as
shown in the right
illustration.
After confirming that
the valve is fully open,
tighten the cap nuts (for
valve stem and charge
port).
Air purge
(2)While holding the
service valves (both
of liquid and gas
sides) of the Outdoor
unit at fully closed
position, perform
vacuuming at 0.1
MPa (76 cmHg) or
under from the servi-
ce valve charge port.
Leak test
(1) The unit's air-tightness test has been conducted but after completing
the piping connections conduct an air-tightness test of the connected
piping and the indoor units using the outdoor gas side service valve
check joint. Be sure to conduct this test with the service valve closed.
1 When the pressure has been increased to 0.5 MPa stop increasing
the pressure and maintain this state for at least 5 min. to check if
the pressure drops.
2 Next, increase the pressure to 1.5 MPa and again maintain this
state for at least 5 min. to check if the pressure drops.
3 Then increase the pressure to 3.0 MPa and maintain this state for
approx. one day to check if the pressure drops.
Use nitrogen gas for the air-tightness check.
Open
Hexagonal Head Wrench
(Size 4)
Liquid service valve Gas service valve
Handle
Pin
Open state
Models FDC808HES3, 1008HES3
(d) Charging with additional refrigerant
The length of piping will require charging with additional refrigerant. Refer to the table below for making the additional charge. If
your calculations show that the additional charge amount is a minus number, charging is not required.
Notes (1) Use the table above to find the amount of additional charge (kg/m)
C per 1 meter of piping.
(2) The value in ( ) indicates the amount of additional charge per 1
meter of piping for main piping up to 30 meters.
Method of Calculation
Refer to the example of calculation on the next page for the piping length code in the formula (L,
1, ~ 3).
For additional charging G = Amount of additional charge (kg.)
Twin and triple specifications
G = main piping L (m) × C + branch piping length
1
(m) × f + branch piping length
2
(m) × f + branch piping
3
(m) × f (D B)
(only for triple specifications)
Confirm for additional charge volume (FDC508HES3 only)
If the calculated required charge is greater than the maximum permissible charge volume shown in the table above, use the
following formula to find the amount of the insufficient refrigerant amount for the weight of the additional charge.
G (kg) = E (kg)
_
D (kg)
If the calculated required charge is less than the maximum permissible charge volume shown in the table above as well as greater
than amount of charge at the time of shipment, use the following formula to find the amount of the insufficient refrigerant
amount for the weight of the additional charge.
G (kg) = Reguired charge amount (kg)
_
D (kg)
¡ f = Additional charge amount per 1 meter of
branch piping
208, 258, 308: 0.025kg/m
408, 508: 0.035kg/m
FDC508
Amount
Piping length already
charged with refrigerant.
Standard refrigerant volume.
(When piping is 0 meters.)
Additional charge volume
per 1 meter of main piping.
Amount of charge
at time of shipping
Maximum permissible
charge volume.
Item
FDC808 FDC1008
555
1.73 5.11 7.25
0.02
(0.035)
0.045 0.07
1.90 5.33 7.60
3.18
A (m)
B (kg)
C (kg/m)
D (kg)
E (kg)
__

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Mitsubishi Heavy Industries FDC508HES3 Specifications

General IconGeneral
BrandMitsubishi Heavy Industries
ModelFDC508HES3
CategoryAir Conditioner
LanguageEnglish

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