
Air Conditioning Refrigeration Compressors For Bitzer
1.Product introduction Compressor model:2FES-3Y Mode:Refrigeration and Air conditioning Refrigerant:R404A Reference temperatureL:Dew point temp. Evaporating SST:-10,00 °C Condensing SDT:45,0 °C Liq. subc. (in condenser) 0 K Suction gas temperature 20,00 °C Operating mode:Auto Power supply:400V-3-50Hz Capacity Control:100% Useful superheat:100%
Description
1.Product introduction
Compressor model:2FES-3Y
Mode:Refrigeration and Air conditioning
Refrigerant:R404A
Reference temperatureL:Dew point temp.
Evaporating SST:-10,00 °C
Condensing SDT:45,0 °C
Liq. subc. (in condenser) 0 K
Suction gas temperature 20,00 °C
Operating mode:Auto
Power supply:400V-3-50Hz
Capacity Control:100%
Useful superheat:100%
2.Technical Data:
Connection suction line:16 mm - 5/8''
Connection discharge line:12 mm - 1/2''
Oil type:R134a/R407C/R404A/R507A/R407A/R407F
BSE32(Standard) / R134a tc>70°C: BSE55 (Option)
Oil type R22 (R12/R502) B5.2 (Option)
Motor data:Motor version 1 Motor
voltage (more on request) 380-420V Y-3-50Hz
Starting current (Rotor locked):25.5 A
Max. Power input:3.4 kW Extent of delivery (Standard)
Motor protection:SE-B1
Enclosure class:IP65
Vibration dampers Standard Oil charge 1,00 dm³
|
Brand |
Bitzer |
|
Model no. |
2FES-3Y |
|
Motor Size( HP) |
3 |
|
Displacement Type(m 3/h) |
1136 |
|
oil charge (dm3) |
1.55 |
|
No of cylinders |
2 |
|
Refregrant |
R407C |
|
weight(kg) |
47 |
|
packing |
wooden case |

3.General remarks regarding sound data:
Listed sound data were measured under testing conditions in our laboratory. For this purpose the free-standing test sample is mounted on a solid foundation plate and the pipework is connected vibration-free to the largest extend possible. Suction and discharge lines are fixed in a flexible configuration, such that a transmission of vibrations to the environment can be largely excluded. In real installations considerable differences might be observed, compared to the measurements in the laboratory. The airborne sound emitted by the compressor can be reflected from surfaces of the system and this may increase the airborne sound level measured close to the compressor. Vibrations caused by the compressor are also transferred to the system by the compressor feet and piping depending on the damping ratio of the fixings. Thus, the vibrations can induce other components to such an extent that these components contribute to an increase in airborne sound emission. If required, the transfer of vibrations to the system can be minimized by suitable fixing and damping elements.
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