- Product Details
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Quick Details
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Brand Name:
-
Copeland
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Product name:
-
scroll compressor
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Model:
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ZF13KQE-TFD-551
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Color:
-
Black
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MOQ:
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1pcs
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Refrigerant:
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R404A
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Package:
-
Wodden Case
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Brand:
-
copeland
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Voltage:
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380v-420v /3 Ph / 50Hz
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Horse Power:
-
4HP
Quick Details
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Type:
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Refrigeration Compressor
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Application:
-
Refrigeration Parts
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Place of Origin:
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China
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Brand Name:
-
Copeland
-
Product name:
-
scroll compressor
-
Model:
-
ZF13KQE-TFD-551
-
Color:
-
Black
-
MOQ:
-
1pcs
-
Refrigerant:
-
R404A
-
Package:
-
Wodden Case
-
Brand:
-
copeland
-
Voltage:
-
380v-420v /3 Ph / 50Hz
-
Horse Power:
-
4HP
Copeland Refrigeration Compressor ZF13KQE-TFD-551 with R404a refrigerant
1. Product introduction:
brand name |
copeland |
Voltage |
380/420V ,50Hz, 3phase |
Refrigerant |
R22 |
Weight |
39kg |
Dimension |
0.025 cbm/pc |
2. Product parameter(Specification):
Model No. | Nom HP | Displ. cc/rev | evaporating temperature: °c | |||||
-40 | -35 | -25 | -15 | -5 | 0 | |||
ZF06KQE TFD550 | 2 | 34 | 900 | 1134 | 1600 | 2450 | 3300 | 3960 |
ZF08KQE TFD550 | 2.5 | 41.9 | 1100 | 1433 | 2100 | 3150 | 4200 | 5040 |
ZF09KQE TFD550 | 3 | 46.4 | 1200 | 1500 | 2300 | 3300 | 4700 | 5600 |
ZF11KQE TFD550 | 3.5 | 57.5 | 1500 | 1800 | 2800 | 4100 | 5800 | 7000 |
ZF13KQE TFD551 | 4 | 67.8 | 1700 | 2100 | 3200 | 4800 | 6900 | 8200 |
ZF15KQE TFD551 | 5 | 83.3 | 2100 | 2600 | 3900 | 5800 | 8300 | 10000 |
ZF18KQE TFD551 | 6 | 98.8 | 250 | 3100 | 4800 | 6900 | 10000 | 12000 |
ZF24KQETWD551 | 7.5 | 126 | 3060 | 3800 | 580 | 8500 | 12300 | 14700 |
ZF33KQETWD551 | 10 | 166 | 4350 | 5300 | 8200 | 12200 | 17500 | 20800 |
ZF40KQETWD551 | 13 | 204 | 5200 | 6400 | 10000 | 14800 | 21300 | 25500 |
ZF48KQETWD551 | 15 | 244 | 6000 | 7400 | 11400 | 16900 | 24500 | 29300 |
ZF Compressor Specifications:
- Refrigerant: R404/R22 50Hz
- Low Temperature
- 2-15HP
- One model for multi-refrigerants R-404A, R-407A, R-134A certain models and R-22
- High tolerance to liquid slugging thanks to its axial and radial scroll compliance
- Large Operating envelope and low condensing capabilities down to 10° C
- Easy, efficient and reliable liquid injection with Discharge Temperature Control Valve (DTC)
- Availability of Copeland Scroll Digital® Technology
Description:
ZF range to provide the best performance in low temperature. The range has a wide application envelope as it can operate from -40°C evaporating temperature to +7°C. They have been optimized in their scroll compliance mechanism, these scroll compressors feature particularly high tolerance to liquid slugging.
1.Wide operating envelope with 10 C low condensing temperature to minimize energy consumption.
2.One model to multiple refrigerants
3.Lightweight and compactness, more than half the weight of the equivalent semi-hermetic compressor.
4.Optional sound shell allowing 10 dB A sound attenuation
High efficiency all year round
• The unique Copeland Compliant Scroll design patented by Emerson operates under continuous scroll flank
contact, maintained by centrifugal force. This minimizes gas leakage while maximizing efficiency.
• With its capability for condensing operation down to 4°C on low temperature applications, Copeland
Scroll technology provides the best seasonal efficiencies.
• Equipped with dynamic discharge valve that allows the discharge gas to reach desired pressure. This helps reduce
efficiency loss by preventing gas re-compression.
• The vapor injection technology allows ZFI*KQE compressors to perform higher efficiency than single-stage
compressors at low temperature operation condition. Thus makes ZFI*KQE the best in-class performance.
Temperature sensors:
The EVI kits include 3 temperature sensors. Please ensure all sensors are mounted in the correct locations, fastened, and
insulated properly.
The discharge temperature sensor should be installed approximately 178mm (7 inches) from discharge tube outlet. If a service
valve is installed at the discharge tube, the sensor should be located 127mm (5 inches) from the valve braze.
The vapor-in sensor is connected to the pipe between the EXV and PHE. The vapor-out sensor is connected to the pipe from
the PHE to the compressor vapor injection port. Don’t make the vapor-in and vapor-out sensor location reversed.