RESIDENTIAL MONOBLOCK INVERTER HEAT PUMP
Unlike fixed-speed ones, inverter systems adjust their output using a variable-speed compressor to minimize energy consumption and maintain optimal temperature.This leads to higher energy efficiency, effective heating/cooling, and hot water production even in cold climates, significantly reducing energy costs and electricity bills.
inverter HEAT PUMP
AIR-TO-WATER
Exinda air-to-water inverter heat pump efficiently heats, cools, and provides hot water by transferring outdoor air heat to water, adjusting output to save energy.
Heating, Cooling, and Domestic Hot Water
Capacity: 14kW [4 Tons]
Application: Small House, Residential Buildings
Advantages:
- High efficient refrigerant (R32)
- Low noise
- DC inverter compressor
- Monoblock hydronic system
Item | Unit | Details |
Nominal heating capacity | Tons [kW] | 4 [14] |
Min/max heating capacity (1) | Tons | 1.87-4.39 |
EL heating power input min/max (1) | Tons | 0.35-1.14 |
C.O.P min/max (1) | 3.83-5.33 | |
Min/max heating capacity (2) | Tons | 1.48-4.13 |
EL heating power input min/max (2) | Tons | 0.34-1.31 |
C.O.P min/max (2) | 3.14-4.32 | |
Min/max cooling capacity (3) | Tons | 1.99-3.57 |
EL cooling power input min/max (3) | Tons | 0.45-1.1 |
E.E.R min/max (3) | 3.23-4.34 | |
Min/max cooling capacity (4) | Tons | 1.4-2.89 |
EL cooling power input min/max (4) | Tons | 0.46-1.06 |
E.E.R min/max (4) | 2.72-3.05 | |
Workable Ambient Temperature Range | F | -13 to 109 [-25C to 43] |
Power Supply | V / Hz / ph | 208-240 / 60 / 1ph |
Max flow temp. in heating mode | F | 140 [60] |
Min flow temp. in heating mode | F | 68 [20] |
Min flow temp. in cooling mode | F | 44 [7] |
Noise Level (Sound power) | dB(A) | 42 |
Refrigerant | R32 / 3.9 lbs | |
Water Connection | Inch | G1″ |
Item | Unit | Details |
Net Dimension (L×D×H) | inches | 47.2×21.6×33.7 |
Net Dimension (L×D×H) | cm | 120x55x85 |
Net Weight | lbs [Kg] | 260 [118] |
inverter HEAT PUMP
AIR-TO-WATER
Exinda air-to-water inverter heat pump efficiently heats, cools, and provides hot water by transferring outdoor air heat to water, adjusting output to save energy.
Heating, Cooling, and Domestic Hot Water
Capacity: 21kW [6 Tons]
Application: Small House, Residential Buildings
Advantages:
- High efficient refrigerant (R32)
- Low noise
- DC inverter compressor
- Monoblock hydronic system
Item | Unit | Details |
Nominal heating capacity | Tons [kW] | 6 [21] |
Min/max heating capacity (1) | Ton | 2.13-5.74 |
EL heating power input min/max (1) | Ton | 0.39-1.51 |
C.O.P min/max (1) | 3.8-5.35 | |
Min/max heating capacity (2) | Ton | 2.1-5.48 |
EL heating power input min/max (2) | Ton | 0.48-1.75 |
C.O.P min/max (2) | 3.13-4.35 | |
Min/max cooling capacity (3) | Ton | 2.75-4.51 |
EL cooling power input min/max (3) | Ton | 0.63-1.4 |
E.E.R min/max (3) | 3.21-4.35 | |
Min/max cooling capacity (4) | Ton | 1.91-4.13 |
EL cooling power input min/max (4) | Ton | 0.63-1.52 |
E.E.R min/max (4) | 2.71-3.00 | |
Workable Ambient Temperature | F | -13 to 109 [-25C to 43] |
Power Supply | V / Hz / ph | 208-240 / 60 / 1ph |
Max flow temp. in heating mode | F | 140 [60] |
Min flow temp. in heating mode | F | 68 [20] |
Min flow temp. in cooling mode | F | 44 [7] |
Noise Level (Sound power) | dB(A) | 42 |
Refrigerant | R32 / 4.8 lbs | |
Water Connection | Inch | G1″ |
Item | Unit | Details |
Net Dimension (L×D×H) | inches | 49.2×21.6×55.9 |
Net Dimension (L×D×H) | cm | 124x55x142 |
Net Weight | lbs [Kg] | 313 [142] |