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Dante offers OEM R410A commercial geothermal heat pumps designed for applications where operational stability, proven technology and long service life are key priorities.
· GS60 – Heating-only model
· GS60/B – Heating & cooling model
These units deliver the full benefits of renewable ground-source energy, supporting low-carbon building solutions with consistent performance and dependable operation.
Proven constant-speed technology
Unlike inverter-driven systems that prioritise modulation, the GS60 adopts a constant-speed compressor platform based on well-established technology.
This approach offers clear advantages for large-capacity systems:
· Stable and predictable operation
· High reliability under continuous load
· Simple control logic
· Low failure risk and reduced lifecycle cost
· Minimal maintenance requirements
For commercial projects where systems run for long hours at steady load, this proven design remains a trusted solution.
Efficient and reliable renewable heating
Compared with conventional heating and cooling systems, the GS60 geothermal heat pump provides:
· Significantly higher system efficiency
· Lower operating costs
· Reduced carbon emissions
· Long-term operational stability
The system is especially suitable for applications such as:
· Commercial buildings
· Industrial facilities
· District or centralized heating systems
· Retrofit projects requiring robust, non-complex solutions
Heat pump | Type | GS60 | |
Dimensions,weights,connection dimensions | |||
Dimensions | HxWxD | 1620x590X1270 | |
Weight | kg | 350 | |
Refrigerant | Type | R410A | |
Pipe connector-Indoor side | Inch | G21/2” | |
Pipe connector-Outdoor side | Inch | G21/2” | |
Evaporator | Type | Brazed plate heat exchanger | |
Condenser | Type | Brazed plate heat exchanger | |
Compressor | 2 x Copeland Scroll | ||
Performance Heat pump | |||
Heat output | at B0/W35(1) | kW | 62.6 |
Power consumption | kW | 16.2 | |
Performance factor | 3.86 | ||
Indoor side volume flow | m3/h | 10.8 | |
Outdoor side volume flow | m3/h | 14.7 | |
Heat output | at W10/W35(2) | kW | 90.2 |
Power consumption | kW | 15.88 | |
Performance factor | 5.68 | ||
Indoor side volume flow | m3/h | 15.5 | |
Outdoor side volume flow | m3/h | 21.3 | |
Power | Type | Triple phase | |
ErP Level(35℃) | A++ | ||
Energy efficiency ns (35℃) | 151% | ||
Rated heat output Prated (35℃) | kW | 70 | |
Sound power level (3) | dB(A) | 69 | |
(1)B0/W35=Brine water inlet temperature 0℃,heating flow 35℃ | |||
(2)W10/W35=Well water inlet temperature 10℃,heating flow 35℃ | |||
(3)The Sound power level is tested by EN12102 | |||
Data Sheet Download:
With rising energy costs and increasing environmental awareness, many homeowners are looking for more efficient and sustainable heating solutions. Residential heat pumps offer an effective alternative to traditional gas or oil boilers, helping reduce energy bills while lowering carbon emissions. In
With rising energy costs and increasing environmental awareness, many homeowners are looking for more efficient and sustainable heating solutions. Residential heat pumps offer an effective alternative to traditional gas or oil boilers, helping reduce energy bills while lowering carbon emissions. In
With rising energy costs and increasing environmental awareness, many homeowners are looking for more efficient and sustainable heating solutions. Residential heat pumps offer an effective alternative to traditional gas or oil boilers, helping reduce energy bills while lowering carbon emissions. In
With rising energy costs and increasing environmental awareness, many homeowners are looking for more efficient and sustainable heating solutions. Residential heat pumps offer an effective alternative to traditional gas or oil boilers, helping reduce energy bills while lowering carbon emissions. In