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Commercial Air Source Heat Pump

High-efficiency 160kW air source heat pump designed for commercial space heating, centralized hot water and large-scale HVAC projects.

Rated Heating Capacity 216-630 kW
Heating COP Up to 4.5
Maximum Water Temperature Up to 62°C
Operating Ambient Range −36°C to 45°C
Wholesale, OEM and Project Orders Contact us for distributor pricing, customization and project-based model selection.
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High-Capacity Heating for Demanding Commercial Projects

A 160kW air-to-water heat pump platform developed for projects requiring substantial heating output, stable operation and flexible system integration.

A 216-630kW Commercial Heat Pump for Centralized Hydronic Systems

This product is a high-capacity commercial air source heat pump designed to transfer heat from outdoor air into a centralized water heating system.

It can be connected to buffer tanks, fan coil units, underfloor heating, domestic hot water tanks and other hydronic equipment according to the project design.

Product Positioning A large-capacity heating platform for commercial buildings, centralized hot water systems and industrial facilities—not a residential household heat pump.
Commercial Heat Pump

What Project Requirements Does It Solve?

Designed for projects where smaller heating equipment cannot efficiently meet the required load.

  • Large and continuous commercial heating demand
  • Centralized domestic hot water production
  • Boiler replacement and energy-cost reduction
  • Heating-system expansion through cascade operation
  • Lower-carbon heating for commercial facilities

Who Is This Product Designed For?

Suitable for professional buyers who require project-level selection and system support.

  • HVAC distributors and wholesalers
  • Engineering and EPC contractors
  • Commercial property owners
  • Energy solution companies
  • OEM and private-label brands

How Is It Different from Smaller Commercial Units?

01 Higher Single-Unit Output Reduces the number of units required for large projects.
02 Commercial-Grade Operation Designed for longer operating cycles and substantial heating loads.
03 System-Level Integration Supports cascade control, hydronic equipment and BMS integration.
216 - 630kW Need to confirm whether 160kW is suitable? Send us your project location, required water temperature and heating load. Ask an Engineer

Stable Cooling in Summer. Reliable Heat in Winter.

This commercial air source heat pump provides hydronic heating and cooling for hotels, factories, schools and other commercial buildings—addressing unstable water temperature, excessive cycling, winter ice buildup and changing seasonal loads.

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Commercial air source heat pump applications for year-round heating and cooling
Commercial hydronic heating and cooling
01 FULL DC INVERTER

Output That Follows Actual Demand

The full DC inverter commercial heat pump system modulates heating and cooling output to match the building load, maintaining steadier water temperature with less frequent part-load cycling.

02 SUMMER COOLING

Gentler Hydronic Cooling

The commercial air to water heat pump supplies chilled water to compatible terminals for even cooling with fewer cold drafts. Correct water-temperature and dew-point control can reduce excessive dehumidification.

03 AS LITTLE AS 2 MIN

Shorter Defrost Interruptions

Dynamic monitoring identifies actual frost buildup. Parallel capillary and expansion-valve paths redirect refrigerant quickly for rapid defrost under applicable conditions.

04 ANTI-ICING

Less Ice Around the Evaporator

Branch subcooling and dual enhanced-vapor-injection design help defrost water drain before refreezing, reducing base ice and blocked drainage in winter.

05 MULTI-LAYER

Water-Side Freeze Protection

Two-stage circulation and heating protection responds to low water temperature. Flow monitoring, emergency drain-down and a large-volume exchanger add protection during abnormal conditions.

06 ≤78 dB(A)

Commercial Airflow, Controlled Noise

A high-volume fan supports heat exchange at demanding loads, while inverter and soft-start control reduce abrupt speed changes and start-up impact.

Cooling comfort depends on terminal type, chilled-water temperature and dew-point control. Defrost time, noise level and protection functions should be referenced with the selected model, configuration and test conditions.

How a Commercial Air Source Heat Pump Works

A commercial air to water heat pump does not generate all of its heat from electricity. It uses electrical input to operate the compressor, pumps and controls while moving available heat from outdoor air into the building’s water circuit.

The diagram shows heating mode. In cooling mode, the reversible commercial heat pump system removes heat from the water circuit and releases it outdoors.

01

Absorb Outdoor Heat

Outdoor air passes across the evaporator. The low-pressure refrigerant absorbs available heat and changes into a gas.

02

Raise Its Temperature

The compressor raises refrigerant pressure and temperature. This is where most of the cycle’s electrical input is used.

03

Transfer Heat to Water

The heat exchanger transfers energy from the hot refrigerant to the return water, which then flows to the building or buffer tank.

04

Reduce Pressure and Repeat

The expansion valve lowers refrigerant pressure and temperature before it returns to the evaporator and starts the cycle again.

Key Technical Data

Use these values for preliminary model comparison and project planning. Download the complete datasheet for detailed operating points, electrical data, pressure limits and test conditions.

Refrigerant Options
R290 / R32
Download Full Datasheet
Key technical specifications for the 160kW commercial heat pump
Key Specification Value
Model Commercial Air Source Heat Pump
Refrigerant Options R290 / R32
Rated Heating Capacity 540 (216–630) kW
Heating COP 3.6
Low-temperature Heating Capacity (A−20/W41) 278.88 (210–330) kW
Rated Cooling Capacity (A35/W7) 360 (204–459) kW
Cooling EER 2.86
Maximum Outlet Water Temperature 55°C
Operating Ambient Temperature −36°C to 43°C
Power Supply 380V~ / 50Hz
Maximum Input Power / Current 195 kW / 426 A
Rated Water Flow / Connection 90 m³/h / DN100 flange
Dimensions / Net Weight 4,480 × 2,350 × 2,480 mm / 3,750 kg
Heating / Cooling Noise Level ≤78 dB(A)

Dimensions & Installation Requirements

Review the overall unit dimensions, water connection positions and essential site requirements before planning installation.

commercial heat pump dimensions
4480 mm Length
2350 mm Width
2480 mm Height
DN100 Water Connection

Site Preparation Requirements

Final installation must be reviewed by qualified HVAC, electrical and structural engineers according to local regulations.

01 Installation Clearance Maintain sufficient space around the air inlet and outlet. Prevent discharged air from recirculating back into the unit.
02 Foundation Requirements Install the unit on a level reinforced concrete foundation with adequate load capacity, drainage and vibration isolation. Net Weight: 3750 kg
03 Water Pipe Connections Confirm the inlet and outlet directions before connecting. Use isolation valves, flexible joints, strainers and drainage points where required. DN100 Flange Rated Flow: 90 m³/h
04 Electrical Requirements Provide a dedicated power circuit, suitable breaker, grounding and cable sizing based on maximum current and local regulations. 380V~ / 50Hz Maximum Current: 426A Maximum Input: 195 kW
05 Maintenance Clearance Reserve unobstructed access to the electrical panel, compressors, heat exchanger, pumps and service panels.
Important Installation Note The drawings and requirements shown here are for preliminary planning. Confirm the final foundation, clearance, water and electrical design with our engineering team before installation.

Frequently Asked Questions

Common questions about sizing, installation, performance, wholesale orders and OEM customization.

Still need technical confirmation? Send us your project location, heating load and required water temperature. Ask an Engineer

The coverage area depends on climate, insulation, building height and design heat load. For example, at a design load of 80 W/m², 160kW corresponds to approximately 2,000 m². A professional heat-load calculation is required before final model selection.

Yes. Multiple units can be connected through a cascade control system for staged capacity, operating rotation and backup. The final unit quantity and hydraulic arrangement should be confirmed according to the total project load.

The maximum outlet water temperature is 55°C. Actual achievable temperature and heating capacity depend on ambient temperature, inlet water temperature and system operating conditions.

Heating capacity and COP generally decrease as outdoor temperature falls. This model uses low-temperature operation and automatic defrost control, but project selection should be based on the capacity data at the site’s winter design temperature.

The standard power supply is 380V / 50Hz. Maximum input power is 195kW and maximum current is 426A. Cable sizing, circuit protection and grounding must be designed by a qualified electrical engineer according to local regulations.

MOQ depends on the product configuration, destination market and customization requirements. Standard products may support lower initial quantities, while customized OEM orders require separate quantity confirmation.

Yes. OEM options can include logo, rating label, cabinet color, controller interface, packaging and documentation. Available options depend on order quantity and certification requirements.

Production time depends on order quantity, component availability and customization. Standard and OEM lead times will be confirmed in the quotation after the technical configuration has been approved.

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