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DC Inverter Air Source Heat Pump

DC Inverter Air Source Heat Pump

DC Inverter Air Source Heat Pump is an energy efficient heating and cooling system that uses electricity to transfer hot and cold air between the interior and exterior of a building. It is a clean and renewable technology that reduces energy consumption and environmental impact.
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Description
Technical Parameters
Advantages

 

1. Energy savings: DC Inverter technology automatically adjusts the compressor speed to match the heating or cooling load, resulting in up to 30% more energy savings than non-inverter systems.

2. Environmental benefits: By using renewable energy from the air, the heat pump reduces CO2 emissions and helps to mitigate climate change.

3. Comfortable indoor environment: The heat pump provides both heating and cooling modes, making it ideal for year-round comfort. It can operate at low noise levels and with precise temperature control.

4. Long lifespan: The heat pump has a long lifespan with low maintenance requirements, providing a reliable and cost-effective solution for many years.

 

Effects On Society

 

The use of DC Inverter Air Source Heat Pump has significant positive effects on society. By reducing energy consumption and mitigating climate change, it helps to create a more sustainable future. It also provides a comfortable indoor environment, which can improve people's quality of life and enhance productivity. The technology can be used in a wide range of applications, including residential, commercial, and industrial buildings.

 

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Applications

 

DC Inverter Air Source Heat Pumps are suitable for a wide range of applications, including:

1. Residential buildings, such as single-family homes, apartments, and condominiums.

2. Commercial buildings, such as offices, hotels, and retail stores.

3. Industrial buildings, such as warehouses and factories.

4. Public buildings, such as schools, hospitals, and government facilities.

 

Unit Model

DKX(L)RS-11l/CC

DKX(L)RS-18I/CC

DKX(L)RS-18Ⅱ/CC

Power supply specifications

220V~50Hz

220V~50Hz

380V/3N~50Hz

Nominal heat production
Dry bulb -12 degrees
Wet bulb-14 degrees
 

Nominal heat production(KW)

5.8

10.5

10.77

Nominal heating input power(KW)

2.52

4.2

4.04

Nominal current(A)

11.65

20.5

8.08

Energy efficiency ratio

2.3

2.5

2.67

Nominal cooling
Dry bulb 35 degrees
Wet bulb 24 degrees

Nominal cooling capacity(KW)

7.3

12

12.5

Nominal refrigeration input power(KW)

2.85

4.4

4.5

Nominal current(A)

12.98

20

9.8

Energy efficiency ratio

2.52

2.73

2.78

Heat production

Rated water discharge temperature℃

41

41

41

Max. water discharge temperature℃

60

60

60

Refrigeration

Rated water discharge temperature℃

7

7

7

Max. Power Input(kW)

3.7

5.8

5.85

Max. Current Input(A)

16.8

27

11.7

Waterproof grade

IPX4

IPX4

IPX4

Compressor

Copeland 34KS Scroll

Copeland 52KS Scroll

Copeland 61KS Scroll

Refrigerant (charge quantity)

R22/2.8

R22/4.6

R22/4.8

Waterway side

Type

High efficiency tank

High efficiency tank

High efficiency tank

Inlet and outlet water pipe size

1.2" / DN32 internal teeth

1.2" / DN32 internal teeth

1.2" / DN32 internal teeth

Circulating water flow(m³\h)

2.3

3.5

3.5

Main pipe diameter

DN32

DN32

DN32

Water-side pressure loss(kPa)

≤42

≤50

≤50

Power cord specifications

4 square copper wire

6 square copper wire

4 square copper wire

Dimension

822x344x1300

1125x410x1535

1125x410x1535

Net weight of the unit(kg)

100

170

170

Gross weight of the unit(kg)

120

195

195

Operating noise(dB(A))

<54dB(A)

<56dB(A)

<56dB(A)

 

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Overall, the DC Inverter Air Source Heat Pump is an innovative and energy-efficient solution that provides both heating and cooling modes for a wide range of applications. Its major advantages include energy savings, environmental benefits, comfortable indoor environment, and a long lifespan. Its use can produce a positive impact on society by reducing energy consumption, mitigating climate change, and improving quality of life.

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