ECOTOUCH 5029 AI | GROUND SOURCE HEAT PUMP
ECOTOUCH 5029 AI | GROUND SOURCE HEAT PUMP
High performance with minimal noise emission
The EcoTouch 5029 Ai range is suitable for use in buildings with higher heating requirements, with a power range of 5 - 29 kW. At COP values up to 5,1 , the compact heat pump is as quiet as a refrigerator.
INFORMATION
BRAND
Waterkotte
PRODUCT TYPE
Heat Pump
POWER CONSUMPTION OUTPUT B0/W35
21.6 kW
COLLECTION
Ecotouch
PRODUCTION
Made in Germany
FEATURES
-Heat pump for higher power requirements -Power range 2 - 29 kW -Colored 4.3 inch touch display -Integrated web interface for app control -Intuitively operable control software EasyCon -Central power switch -Sensor system with numerous sensors -COP counter and display of all operating data -DHW heating, external storage on site -Integrated electric heater 6 kW -Variable speed circulation pumps (efficiency class A) -Integrated vibration damper Silenter® -Service-friendly device design -Rear mounting of the connections
CONNECTIONS HEAT SOURCE/USE
1 1/4 inch ext. flat-sealing
REFRIGERANT
R410A
UNIT WEIGHT
225 kg
SOUND POWER LEVEL
47
HEAT SOURCE FLOW RATE
5.4 m³/h (Δt=3K)
OPTIONAL EQUIPMENT
- Connection Set
- Natural Cooling (Nc)
- Inrush Current Attenuation (400 V)
- Controller Extension For Additional Mixer Circuits
- External Ecostock Drinking Water Storage Tank
HEATINGWATER FLOW RATE
5.1 m³/h (Δt=5K)
GROUNDWATER FLOW RATE
7.1 m³/h (Δt=3K)
DIMENSIONS
- Width : 600 mm
- Depth : 633 mm
- Height : 1470 mm
COP EN14511 W10/W35
5.5
COP EN14511 B0/W35
4.5
SPACE-SAVING COMPACT HEATING CENTER
By connecting an EcoStock water tank, the EcoTouch 5029 Ai becomes a complete heating system. The footprint of less than 0.38 m² is ideal for a space-saving installation.
AIR CONDITIONING AS NEEDED
The EcoTouch 5029 Ai is available in the versions NC for natural cooling with system separation and RC for air conditioning cooling with reversing circuit. Based on your air conditioning needs, the appropriate model can be determined.
FULLY HIGH END
The EcoTouch 5029 Ai does not only impress with its efficiency, but also with its modern design. The innovative operating software EasyCon also enables intuitive and convenient control of the system.
HIGHLIGHTS
-Low operating costs through COP values up to 6,9 -Low noise emission of 44 dB (A) -Power reserves can be used efficiently -Touch display with innovative EasyCon software -Smartphone control via EasyCon Mobile -Fully connected into the Internet -Display current COP value -Housing in white high gloss -Optimized footprint of 0.38 m²
ROLLING PISTON INVERTER
Fully hermetic scroll
OPERATING LIMIT
B-5/W60; B0/W63; W10/W65
DETAIL
AWARDS
In addition to best performance values and high-quality equipment, many of our heat pumps have already received a number of awards due to their design and efficiency. The successful design and optimised housing dimensions allows seamless integration of our products into every living ambience. Furthermore, all models have excellent COP values. This is our self-concept of uncompromising high-end.
POUR PERFORMANCE
The pour performance is given in the unity litre per hour. She defines the amount of the hot water which can deliver a heat pump, until the heat stock isn´t big enough anymore. The necessary pour performance depends on the fact how many and which hot-water consumers take at the same time warm water.
COP VALUE
The COP value of a heat pump stands for "Coefficient of Performance" and refers to the heat pump efficiency. The COP value indicates the ratio of heat output and the respective drive energy required, the power consumption measured in kW. The COP value is the basis for the Renewable Heat Incentive (RHI) subsidy. A good COP value is between 3 and 5. Heat pumps with a COP value below 2 are usually uneconomical.
REFRIGERATION CIRCUIT
The circuit inside the heat pump has the same structure as a household refrigerator. The evaporator withdraws renewable heat from the ground or the air. During this process the initially liquid refrigerant evaporates completely at low pressure. This refrigerant vapour is pulled in by a compressor and compressed at high pressure.
In doing so, the condensation temperature of the refrigerant vapour shifts to a higher temperature. This vapour condenses in the condenser on the surface of the heat exchanger and in the process delivers the entire renewable energy as well as the electrical energy for the compressor to the heating water. Then the liquid refrigerant is returned again to the low pressure by means of the expansion valve..





















