Mitsubishi Electric PUHZ-W50VHA-BS Service Manual page 17

Air to water heat pump
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PUHZ-HW112YHA2R3
P
o
w
r e
s
u
p
p
y l
P (
h
a
s
, e
V
l o
a t
g
, e
Nominal water flow rate (Heating mode)
C
a
p
a
c
y t i
Heating
(A7/W35)
C
O
P
P
o
w
r e
n i
p
t u
Heating
C
a
p
a
c
y t i
(A2/W35)
C
O
P
P
o
w
r e
n i
p
t u
Pressure difference (water circuit)
Heating pump input (based on EN14511)
N
o
m
n i
l a
w
a
e t
f r
o l
w
a r
e t
(
C
o
o
n i l
Cooling
C
a
p
a
c
y t i
(A35/W7)
EER
(COP)
Power input
Cooling
C
a
p
a
c
y t i
(A35/W18)
EER
(COP)
P
o
w
r e
n i
p
t u
Pressure difference (water circuit)
Cooling pump input (based on EN14511)
Note: "COP" and "Power input" in the above table are values that contains the "pump input (based on EN 14511) ".
O
u
d t
o
r o
u
n
t i
s
p
e
i c
c i f
t a
o i
n
s
Service ref.
Running current
Heating
Cooling
Power factor
Heating
Cooling
M
a
. x
c
r u
e r
t n
B
e r
a
k
r e
s
z i
e
O
t u
r e
c
a
s
n i
g
E
x
e t
n r
a
f l
n i
s i
h
Refrigerant control
Compressor
Model
Motor output
Start type
P
o r
Oil (Model)
C
a r
n
c k
a
s
e
h
e
t a
r e
Heat exchanger
Air
Water
F
a
n
F
a
( n
Fan motor output
Air flow
Defrost method
Noise level
Heating
(SPL)
Cooling
Dimensions
Width
Depth
Height
W
e
g i
t h
Refrigerant
Quantity
Guaranteed operating
Heating
range (Outdoor)
Cooling
Outlet water temp.
Heating
Cooling
(Max in heating, Min in cooling)
Heating
Nominal return water
temperature range
Cooling
W
a
e t
f r
o l
w
a r
e t
a r
n
g
e
OCH439H
PUHZ-HW112YHA2R3-BS
3
F
e r
q
u
e
n
c
) y
L/min
k
W
(Min. 3.40
k
W
(Min. 3.40
k
W
k
W
k
P
a
kW
g
m
o
d
) e
/ L
m
n i
k
W
kW
k
W
k
W
kPa
kW
PUHZ-HW112YHA2R3
PUHZ-HW112YHA2R3-BS
A
(A7/W35)
A
(A35/W7)
%
(A7/W35)
%
(A35/W7)
A
A
Galvanized plate
Munsell 3Y 7.8/1.1
Linear expansion valve
Hermetic scroll
kW
e t
t c
o i
n
d
e
v
c i
e
s
Discharge thermo
Comp. surface thermo
L
W
Plate heat exchanger
r d
v i
e
× )
N
. o
Propeller fan × 2
kW
3
m
/min
(CFM)
Reverse cycle
dB
dB
mm (in.)
mm (in.)
330 +30
mm (in.)
k
g
(
b l
) s
kg (lbs)
/ L
m
n i
, 400V, 50Hz
N
o
m
n i
32.1
Heating(A7/W35)
) 11.20
O
u
s t
d i
4.42
O
u
s t
d i
2.53
W
t a
r e
) 11.20
Heating(A2/W35)
3.11
O
u
s t
d i
O
u
s t
d i
3.60
6.3
W
t a
r e
0.01
Cooling(A35/W7)
28.7
O
u
s t
d i
10.00
O
u
s t
d i
2.78
Water temperature (inlet/outlet)
3.60
Cooling(A35/W18)
10.00
O
u
s t
d i
Outside air temperature (Wet-bulb)
4.10
W
t a
r e
2.44
5
0.01
P
a l
e t
h
MITSUBISHI
MWA2-46LM
4.0
5.6
A
5 :
0
m
95
B
4 :
6
6
95
13.0
W
1 :
0
8.6
16
H
5 :
2
2.6
: D
129.1
46
p
a l
ANB33FJJMT
2.5
Inverter
HP switch
M
a
i x
m
LP switch
65
0.9 (FV50S)
60
-
Plate fin coil
55
0.074 × 2
50
100
(3,530)
45
*1
*2 *3
53
*2
53
40
-25
1020 (40-3/16)
*4
(13+1-3/16)
1350 (53-1/8)
*1 Hot gas with four-way valve
148 (326.3)
*2 at distance of 1m from outdoor unit
R410A
*3 A weighted sound power level in accordance with ISO9614-1
4.0 (8.8)
for EN14511 testing is 67 dBA.
-25
*5
+35
*4 grille
*5 Lower limit of use is - 5 °C for EN14511 testing purposes.
-5
*6
+46
+60
*6 With the optional air outlet guide, the operation at -15 °C
outdoor temperature is possible.
+5
*7 Lowest entering temperature is 12 °C for EN15411 testing
+5
*7
+59
purposes.
+8
+28
*8 For details of the min. return water temperature at
14.4
32.1
each water flow rate, refer to the chapter 3-2.
17
l a
o
p
r e
t a
n i
g
c
o
n
d
t i
o i
n
e
a
r i
e t
m
p
e
a r
u t
e r
(
D
y r
b -
l u
) b
e
a
r i
e t
m
p
e
a r
u t
e r
(
W
t e
b -
l u
) b
e t
m
p
e
a r
u t
e r
(
l n i
t e
o /
t u
e l
) t
e
a
r i
e t
m
p
e
a r
u t
e r
(
D
y r
b -
l u
) b
e
a
r i
e t
m
p
e
a r
u t
e r
(
W
t e
b -
l u
) b
e t
m
p
e
a r
u t
e r
(
l n i
t e
o /
t u
e l
) t
e
a
r i
e t
m
p
e
a r
u t
e r
(
D
y r
b -
l u
) b
e
a
r i
e t
m
p
e
a r
u t
e r
(
W
t e
b -
l u
) b
e
a
r i
e t
m
p
e
a r
u t
e r
(
D
y r
b -
l u
) b
e t
m
p
e
a r
u t
e r
(
l n i
t e
o /
t u
e l
) t
e
t a
e
c x
h
a
n
g
r e
W
Ref. IN
m
(Heating)
m
m
B
m
m
m
m
A
m
m
Ref. OUT
e t
s
(Heating)
Thermistor
(TH32)
D
u
m
o
u
l t
t e
w
t a
r e
e t
m
p
e
a r
u t
e r
-20
-15
-10
-5
Ambient temperature [ ]
+
7
+
6
+
3
0
+ /
3
5
+
2
+
1
/+35
+
3
5
+
2
4
+12/+7
+
3
5
+ 24
+
2
3
+ /
1
8
Water OUT
H
Water IN
0
5
10

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