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Comparison Gree Versati III GRS-CQ10Pd/NhH-M 10 kW vs Panasonic Aquarea T-CAP KIT‑WXC09H3E5 9 kW

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Gree Versati III GRS-CQ10Pd/NhH-M 10 kW
Panasonic Aquarea T-CAP KIT‑WXC09H3E5 9 kW
Gree Versati III GRS-CQ10Pd/NhH-M 10 kWPanasonic Aquarea T-CAP KIT‑WXC09H3E5 9 kW
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Heat sourceair-waterair-water
Suitable forheating and DHWheating and DHW
In box
In box
indoor unit (hydromodule)
outdoor unit
indoor unit (hydromodule)
outdoor unit
Specs
Operating modeheating and coolingheating and cooling
Max. heat output10 kW9 kW
Heat output (~ 0 °C)9 kW
Max. cooling output10 kW7 kW
Power consumption (heating)2.06 kW1.85 kW
Power consumption (cooling)2.33 kW
EER4.9
Power source400 V230 V
Electric heater6 kW3 kW
Minimum operating temperature-25 °C-28 °C
Max. water temperature60 °C60 °C
Compressor
inverter
inverter
Energy efficiency
t°C outside77
Supply t°C30 °C35 °C
COP5.24.84
SCOP (W35)4.6
Energy efficiency class (W35)A+++
SCOP (W55)3.33
Energy efficiency class (W55)A++
t°C outside7-7
Supply t°C40 °C35 °C
COP42.85
More specs
Control via smartphone+
RefrigerantR32R410A
Noise level42 dB33 dB
Outdoor unit noise level55 dB
Country of brand originChinaJapan
Dimensions915x460x318 mm892x500x340 mm
Outdoor unit dimensions982x787x427 mm900x1340x320 mm
Hydromodule weight60 kg43 kg
Outdoor unit weight88 kg101 kg
Added to E-Catalogoctober 2022april 2020
Glossary

Max. heat output

The maximum heat output generated by a heat pump is the amount of heat it can transfer from the outdoors into the heating system and/or domestic hot water.

The heat output is the most important spec of a heat pump. It directly determines its efficiency and ability to provide the required amount of heat. Note that this spec is shown for optimal operating conditions. Such conditions are rare, so the actual output heat is usually noticeably lower than the maximum; this must be taken into account when choosing. There are special formulas for calculating the optimal value of the maximum heat output, depending on the specific condition.

Heat output (~ 0 °C)

Heat output is the amount of heat generated by a heat pump at a source temperature (air or ground - see above) of about 0 °C. This indicator is more visual and closer to reality than the maximum heat output (see above), so it is often indicated in the characteristics as the main one.

The required heat output depends on the area and some features of the room, on the need for hot water and a number of other factors; for its calculation in special sources, you can find the appropriate formulas.

Max. cooling output

Maximum cooling output delivered by the pump.

The pump operates in the cooling mode removing excess heat from the room to the environment — it plays the role of an air conditioner. The required cooling capacity depends on the area of the building, the specs of its thermal insulation and some other factors; methods of its calculation can be found in special sources. Also note here that conventional heating equipment (radiators, underfloor heating) is not suitable for cooling, for this it is necessary to use special equipment (for example, fan coil units).

Power consumption (heating)

Electric power consumed by the heat pump when operating only for heat transfer, without the use of an additional heating element (if any, see below). The ratio of thermal power to power input determines the thermal coefficient COP (see below) and, accordingly, the overall efficiency of the unit. It also affects overall power consumption (and therefore electricity bills), as well as some power and connection requirements — for example, models powered by 230 V and with a power of more than 5 kW cannot work from an outlet and require a special connection to the mains.

Power consumption (cooling)

For more information on power consumption, see the paragraph above. Here is indicated the consumption of electricity during operation in the cooling.

EER

EER is the ratio of the heat pump's output cooling energy to the input electrical energy.

The higher this parameter, the more economical the device is and the higher its energy efficiency class when cooling. Each class has clear requirements for EER.

Power source

Type of power supply used by the heat pump.

- Single-phase (230 V). Many models with such a power supply can operate from a conventional outlet, which makes it much easier to connect. However, high power consumption (3.5 kW and above) requires connection to the mains via a distribution board .

- Three-phase (400 V). Power supply from 400 V mains is suitable for heat pumps of any power, including for models equipped with high-consumption heating elements. In addition, devices with such a supply during continuous operation consume less energy than single-phase devices of similar power consumption. Thus, this option can be envisaged even in heat pumps of low power. The disadvantage of three-phase mains is the necessity to ask for the help of a professional electrician to connect the unit.

Electric heater

The power of the heating element installed in the device (if such a function is available).

It isan electric heater in the form of a tube with an incandescent filament inside. Such a heater plays an auxiliary role; it is used when the heat output of the pump itself is not enough — for example, with a significant drop in temperature outside. The main advantage of heating elements is that their efficiency does not depend on outdoor conditions. And the main disadvantage is the high energy consumption. If the heat pump can transfer much more heat energy than it consumes electricity, then the heat output of the heating element is approximately equal to the consumed one. That is why the specs indicate the power of the heating element in general, without specifying what it is about: the indicated figure corresponds to both the heating power and energy consumption. These parameters are similar to those of the heat pump itself; see above for more details.

Minimum operating temperature

The lowest ambient temperature (air or ground, see Heat source) at which a heat pump can safely and reasonably efficiently perform its functions. Efficiency at minimum temperature, of course, is noticeably reduced, but the device can still be used as a heat source.

The data on the minimum operating T allows you to evaluate the suitability of the pump for the cold season.
Panasonic Aquarea T-CAP KIT‑WXC09H3E5 often compared