Mitsubishi Electric PQHY-P200YHM-A Data Book page 68

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Model
Power source
Cooling capacity
(
N
o
m
n i
a
) l
Power input
Current input
COP
Temp. range of
Indoor
cooling
Circulating water
Heating capacity
(Nominal)
Power input
Current input
C
O
P
Temp. range of
Indoor
heating
Circulating water
Indoor unit
Total capacity
connectable
Model / Quantity
Sound pressure level (measured in anechoic room)
High pressure
R
e
r f
g i
r e
a
t n
piping diameter
Low pressure
Circulating
Water flow rate m
water
Pressure drop kPa
Operating volume range
Type x Quantity
Compressor
Manufacture
Starting method
Motor output
Case heater
Lubricant
External finish
External dimension HxWxD
High pressure protection
Protection
n I
v
e
t r
r e
i c
c r
d
e
v
c i
e
s
Compressor
Type x original charge
Refrigerant
Control
Net weight
Heat exchanger
Water volume in plate
Water pressure Max.
HIC circuit (HIC: Heat Inter-Changer)
Drawing
External
Wiring
Document
Standard attachment
Accessory
Optional parts
Remarks
●Turn DipSW 3-9 ON before power ON.
●Details on foundation work, duct work, insulation work, electrical wiring, power source switch, and other items shall be refer
●The ambient temperature of the heat source unit needs to be kept below 40 °C D.B.
●The ambient relative humidity of the heat source unit needs to be kept below 80%.
●The heat source unit should not be installed at outdoor.
●Be sure to mount a strainer (more than 50 meshes) at the water inlet piping of the unit.
●Be sure to provide interlocking for the unit operation and water circuit.
●Add brine to circulating water when a unit is operating at water temperature below 10°C.
Notes:
1.<Standard CITY MULTI indoor unit>
Nominal cooling conditions(subject to JIS B8615-1)
Indoor:27°CDB/19°CWB(81°FDB/66°FWB)
Water temperature:30°C(86°F)
Pipe length:7.5m(24-9/16ft.), Level difference:0m(0ft.)
Brine concentration 0%
2.<PWFY-P100/200VM-E-AU>
Nominal cooling conditions
Circulating water Temp. : 30°C (86°F)
Pipe length : 7.5 m (24-9/16 ft)
Level difference : 0m (0ft)
Inlet water Temp 23°C, Water flow rate : 1.93m
Brine concentration 0%
3.<PWFY-P100VM-E-BU>
Nominal heating conditions
Circulating water Temp. : 20°C (68°F)
Pipe length : 7.5 m (24-9/16 ft)
Level difference : 0m (0ft)
Inlet water Temp 65°C, Water flow rate 2.15m
Brine concentration 0%
kW
*1
*1
c k
a
/ l
h
*1 BTU / h
kW
A
kW / kW
W.B.
°C
kW
*2
*2
kcal / h
*2 BTU / h
kW
A
kW / kW
D.B.
°C
dB <A>
m
m
(
n i
) .
mm(in.)
3
/ h
L/min
cfm
3
m
/ h
kW
kW
mm
in.
i u
( t
C
O
M
P
) .
kg(lbs)
l
MPa
3
3
/h (P100) / 3.86m
/h (P200)
3
/h
PQRY-P250YHM-A(For Ground source)
3-phase 4-wire 380-400-415V 50/60Hz
24,100
95,500
9.3-8.8-8.5
15.0~24.0°C(59~75°F)
-5.0~45.0°C(23~113°F)
27,100
107,500
9.7-9.3-8.9
15.0~27.0°C(59~81°F)
-5.0~45.0°C(23~113°F)
50~150 % of heat source unit capacity
P15~P250 / 1~25
19.05(3/4) Brazed
22.2(7/8) Brazed
4.5 ~ 7.2
Inverter scroll hermetic compressor
AC&R Works, MITSUBISHI ELECTRIC CORPORATION
Inverter
0.035(240 V)
MEL32
Acrylic painted steel plate
1,160(1,100 without legs) x 880 x 550
45-11/16(43-5/16 without legs) x 34-11/16 x 21-11/16
High pressure sensor, High pressure switch at 4.15MPa (601 psi)
O
v
r e
h -
e
t a
p
o r
e t
t c
o i
, n
Over-heat protection
R410A x 5.0kg (12lbs)
Indoor LEV and BC controller
181(400)
plate type
KB94T146
KE94C302
Installation Manual
Refrigerant conn. pipe
Joint: CMY-Y102S-G2,CMY-Y102L-G2,CMY-Y202-G2,CMY-R160-J
BC controller: CMB-P104, 105, 106, 108, 1010, 1013, 1016V-G
Main BC controller: CMB-P108,1010,1013,1016V-GA
Sub BC controller: CMB-P104,108V-GB,CMB-P1016V-HB
Nominal heating conditions(subject to JIS B8615-1)
Indoor:20°CDB(68°FDB)
Water temperature:20°C(68°F)
Pipe length:7.5m(24-9/16ft.), Level difference:0m(0ft.)
Brine concentration 0%
Nominal heating conditions
Circulating water Temp. : 20°C (68°F)
Pipe length : 7.5 m (24-9/16 ft)
Level difference : 0m (0ft)
3
Inlet water Temp 30°C, Water flow rate : 2.15m
Brine concentration 0%
- 64 -
28.0
5.51
5.08
31.5
5.80
5
4 .
3
49
5.76
96
3.4
17
6.3
O
v
r e
c -
r u
e r
t n
p
o r
e t
t c
o i
n
5.0
1.0
-
red to the Installation Manual.
Unit converter
kcal
=kW x 860
BTU/h
=kW x 3,412
cfm
=m
lb
=kg / 0.4536
3
/h (P100) / 4.30m
/h (P200)
*The specification data is
subject to rounding variation.
3
/min x 35.31

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