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Mitsubishi Electric Y Series Manual page 234

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SPECIFICATIONS
234
Model
Power Source
SCOP(TDesign60kW):EN14825
Average climate conditions
Capacity1 *1
Capacity2 *1
Seasonal space heating energy efficiency class for medium-temperature application
Seasonal space heating energy efficiency class for low-temperature application
Maximum current input
Heat source fluid type
Water pressure drop
Temp range
Circulating water volume range
Sound pressure level (measured in anechoic room) at 1m *3
Sound power level (measured in anechoic room) *3
Installation location*5
Diameter of water pipe
(hot water side)
Diameter of water pipe
(heat source side)
External finish
External dimension H × W × D
Net weight
Design Pressure
Drawing
Heat exchanger
Compressor
Protection
Control
Type
GWP *8
Original charged
*1 Under Normal heating conditions at outlet hot water temp 35ºC(95ºF) outlet heat source temp
-3ºC(26.6ºF) inlet hot water temp 30ºC(86ºF) inlet heat source temp 0ºC(32ºF).
Heating performance indicates the performance with counter flow of brine and refrigerant at the
heat source HEX. (Standard pipe connection)
*2 Includes pump input based on EN14511.
*3 Under Normal heating conditions at outlet hot water temp 35ºC(95ºF) outlet heat source temp
-3ºC(26.6ºF) inlet hot water temp 30ºC(86ºF) inlet heat source temp 0ºC(32ºF) capacity 60kW hot
water flow rate 10.3m
3
/h heat source flow rate 14.7m
Heating performance indicates the performance with counter flow of brine and refrigerant at the
heat source HEX. (Standard pipe connection)
*4 When using in inlet heat source temp is more than 27ºC, please change to parallel piping at the
heat source side.
* Please don't use the steel material for the water piping material.
* Please always make water circulate or pull out the circulation water completely when not using it.
* Please do not use groundwater and well water in direct.
* The water circuit must use the closed circuit.
* Due to continuing improvement, the above specifications may be subject to change without notice.
*5 Install the unit indoors only. Do not install outdoors.
Heat source temp 0/-3, Hot water temp 30/35
Heat source temp 0/-3, Hot water temp 47/55
kW
kcal/h
BTU/h
Power input *2
kW
Current input 380-400-415V
A
COP (kW / kW)
Hot water flow rate
m
/h
3
Heat source flow rate
m
/h
3
kW
kcal/h
BTU/h
Power input *2
kW
Current input 380-400-415V
A
COP (kW / kW)
Hot water flow rate
m
/h
3
Heat source flow rate
m
/h
3
A
Hot water side *3
kPa
Heat source side *3
kPa
Hot water side
ºC
ºF
Heat source side *4
ºC
ºF
Hot water side
m
/h
3
Heat source side *7
m
/h
3
dB (A)
dB (A)
Inlet
mm (in.)
Outlet
mm (in.)
Inlet
mm (in.)
Outlet
mm (in.)
mm
kg (lbs)
R410A
MPa
Water
MPa
Wiring
External
Hot water side
Heat source side
Type
Maker
Starting method
Case heater
kW
Lubricant
High pressure protection
Inverter circuit
Compressor
Weight
CO
equivalent
2
3
/h
CRHV-P600YA-HPB
3-phase 4-wire 380-400-415V 50Hz
24.0 - 22.8 - 22.0
17.2 - 16.4 - 15.8
ethylene glycol 35WT% (freezing point -18ºC (-0.4ºF))
(inlet) less than 55, (outlet) 30~65 *6
(inlet) less than 131, (outlet) 86~149 *6
(inlet) less than 45, (outlet) -8~27
(inlet) less than 113, (outlet) 17.6~80.6
Indoor use only
50.8 (R2") screw
50.8 (R2") screw
50.8 (R2") screw
50.8 (R2") screw
Unpainted steel plate
1,561 × 934 × 780
KC94L652X01
KC94L810X01
stainless steel plate and copper brazing
stainless steel plate and copper brazing
Inverter scroll hermetic compressor
MITSUBISHI ELECTRIC CORPORATION
High pres.Sensor & High pres.Switch at 4.15MPa (601psi)
Over-heat protection, Over current protection
Over-heat protection
LEV and HIC circuit
*6
Temp Range
Counter
158
70
Parallel
60
140
50
122
40
104
86
30
68
20
-20
-10
0
10
20
30
40
Heat source inlet(ºC)
-4
14
32
50
68
86
104
Heat source inlet(ºF)
Unit converter
kcal/h =kW × 860
BTU/h =kW × 3,412
lbs =kg/0.4536
*8 This table is based on Regulation(EU) No517/2014
4.33
2.86
60.0
51,600
204,720
14.2
4.23
10.3
14.7
45.0
38,700
153,540
10.2
4.41
7.7
11.2
A++
A++
44
14
38
3.2 - 15.0
2.0 - 16.0
50
66
413 (910)
4.15
1.0
Inverter
0.035 × 2
MEL32
R410A
2,088
9.0
232
*7
Flow Range
18
16
14
12
10
8
6
4
2
0
50
-20
-10
0
10
20
30
Heat source inlet (
122
-4
14
32
50
68
Heat source inlet (
ºC)
86
ºF)
Counter
Parallel
40
50
104
122

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