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Product Specifications; Specifications - Mitsubishi Electric E Series Data Book

Air cooled chilling unit
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1. Product Specifications

1-1. Specifications

I. 1. Product Specifications
Model
Power source
Cooling capacity *1
Cooling capacity(EN14511) *2
Heating capacity *3
Heating capacity(EN14511) *4
Current input
Water pressure drop *1
Temp range
Circulating water volume range
Sound pressure level (measured in anechoic room) at 1m *1
Sound power level (measured in anechoic room) *1
Diameter of water pipe
(Standard piping)
Diameter of water pipe
(Inside header piping)
External finish
External dimension H × W × D
Net weight
Design pressure
Heat exchanger
Compressor
Fan
Protection
Refrigerant
Notes:
*1 Under normal cooling conditions at outdoor temp 35°CDB/24°CWB(95°FDB/75.2°FWB) outlet water temp 7°C(44.6°F)
inlet water temp 12°C(53.6°F). Pump input is not included in cooling capacity and power input.
*2 Under normal cooling conditions at outdoor temp 35°CDB/24°CWB(95°FDB/75.2°FWB) outlet water temp 7°C(44.6°F)
inlet water temp 12°C(53.6°F). Pump input is included in cooling capacity and power input based on EN14511.
*3 Under normal heating conditions at outdoor temp 7°CDB/6°CWB(44.6°FDB/42.8°FWB) outlet water temp 45°C(113°F)
inlet water temp 40°C(104°F). Pump input is not included in heating capacity and power input.
*4 Under normal heating conditions at outdoor temp 7°CDB/6°CWB(44.6°FDB/42.8°FWB) outlet water temp 45°C(113°F)
inlet water temp 40°C(104°F). Pump input is included in heating capacity and power input based on EN14511.
*5 Amount of factory-charged refrigerant is 3(kg) × 4. Please add the refrigerant at the field.
*6 IPLV is calculated in accordance with AHRI 550-590.
*7 ESEER is calculated in accordance with EUROVENT conditions.
*Please don't use the steel material for the water piping.
*Please always make water circulate, or pull the circulation water out completely when not in use.
*Please do not use groundwater or well water in direct.
*The water circuit must be closed circuit.
*Due to continuous improvement, the above specifications may be subject to change without notice.
*This model doesn't equip with a pump.
*8 Please refer to 2-1-6. Operation temperature range.
MEES19K040
Power input
EER
IPLV *6
Water flow rate
Power input
EER
Eurovent efficiency class
ESEER *7
SEER
Water flow rate
Power input
COP
Water flow rate
Power input
COP
Eurovent efficiency class
SCOP (Reversible) Low/Medium
Water flow rate
Cooling current 380-400-415V *1
Heating current 380-400-415V *3
Maximum current
Cooling
Heating
Outdoor
Inlet
Outlet
Inlet
Outlet
Standard piping
Inside header piping
R410A
Water
Water side
Air side
Type
Maker
Starting method
Quantity
Motor output
Lubricant
Air flow rate
Type, Quantity
Starting method
Motor output
High pressure protection
Inverter circuit
Compressor
Type × charge
Control
EAHV-P1500YBL(-N)(-BS)
3-phase 4-wire 380-400-415V 50/60Hz
kW
kcal/h
BTU/h
kW
3
m
/h
kW
kcal/h
BTU/h
kW
3
m
/h
kW
kcal/h
BTU/h
kW
3
m
/h
kW
kcal/h
BTU/h
kW
3
m
/h
A
A
A
kPa
°C
°F
°C
°F
°C
°F
3
m
/h
dB (A)
dB (A)
mm (in)
65A (2 1/2B) housing type joint
mm (in)
65A (2 1/2B) housing type joint
mm (in)
150A (6B) housing type joint
mm (in)
150A (6B) housing type joint
Polyester powder coating steel plate
mm
kg (lbs)
kg (lbs)
MPa
MPa
Stainless steel plate and copper brazing
Plate fin and copper tube
Inverter scroll hermetic compressor
MITSUBISHI ELECTRIC CORPORATION
kW
3
m
/min
L/s
cfm
kW
High pres.Sensor & High pres.Switch at 4.15MPa (601psi)
Over-heat protection, Over current protection
150.00
129,000
511,800
45.10
3.33
6.55
25.8
148.58
127,779
506,955
46.52
3.19
A
4.74
4.62
25.8
150.00
129,000
511,800
44.59
3.36
25.8
151.42
130,221
516,645
46.01
3.29
A
3.24/2.85
25.8
77-73-70
76-72-69
111
114
Outlet water 5~30 *8
Outlet water 41~86 *8
Outlet water 30~55 *8
Outlet water 86~131 *8
-15~43 *8
5~109.4 *8
12.9~34.0
66
84
2350 × 3400 × 1080
1310 (2888)
1326 (2923)
4.15
1.0
Inverter
4
11.7 × 4
MEL32
265 × 4
4417 × 4
9357 × 4
Propeller fan × 4
Inverter
0.92 × 4
Over-heat protection
R410A × 15(kg) × 4 *5
LEV
Unit converter
kcal/h
= kW × 860
BTU/h
= kW × 3,412
lbs
= kg/0.4536
3
cfm
= m
/min × 35.31
2

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