EEGREEN SOLAR INVERTER AIRCONDITIONER & HEATER 
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EEGREEN SOLAR INVERTER AIRCONDITIONER & HEATER

eepage

   S AC

     Toshiba  

THIS IS AN AWESOME PRODUCT, SAVE 40% MORE OF ENERGY COSTS & GREENHOUSE GAS EMMISSIONS THAN A CONVENTIONAL SPLIT SYSTEM 

These are 3.5kW, 5 kW & 7.2kW Solar Hybrid Air Conditioner Split Systems which utilises a solar heating panel generating savings of up to 40% of the power cost compared to a conventional split system air conditioner/heater.They are ideal for areas up to 100m2 (or more if your home is energy efficient). As there is no other product like it on the Australian Market and there is no existing category for a solar hybrid, its performance (star rating) has been assessed on the split system only without the added advantage of the solar panel. Not only do you achieve great savings on power bills but you enjoy greater performance with rapid temperature response and super quiet running. Simply, its cleaner, cheaper and better.

THE BENEFITS

 Around 40% more efficient & cheaper to run than traditional comparitive split system - less on your power bills!
Highest Performance Rating Available in Australia
Cooling Old 6.5 Star New Rating 2.5 Star | Heating Old 5.5 Star New Rating 2.5 Star
Super Quiet
Quicker temperature response
Friendly to our precious environment
Easy to use remote control
Easy to install
5 year warranty

HOW IT WORKS

Working principle of Solar Inverter Air Conditioner

The Solar Air Conditioner system is a system that utilizes the sun as a heat source to assist the energy needed to drive the cooling process of a typical air conditioning system which in turn reduces the electrical consumption required to run the Toshiba DC Inverter Compressor.

The Solar Air Conditioner system is similar to a regular air conditioner in that the refrigeration takes place by evaporating liquid with a very low boiling point. In both cases, when a liquid evaporates or boils, it takes some heat away with it, and can continue to do so, either until the liquid is all boiled, or until everything has become so cold that the sub-zero boiling point has been reached.


The difference between the two is how the gas is changed back into a liquid so that it may be used again. A regular air conditioning system uses a compressor to increase the pressure on the gas, forcing it to become a liquid again through the use of a condenser coil. The change of state of the refrigerant starts to take place approximately 2/3rd’s of the way down the condenser. The Solar Air Conditioning system uses a different method. It uses the solar heat from the sun to superheat the refrigerant which enables the refrigerant to begin changing state at the top 2/3rd’s of the condenser coil. By using this method it reduces the superheat of the compression required to achieve the cooling process in the conventional cooling system as well as utilizing more of the condenser cooling face to the coil. The conventional air conditioning system is only able to change a portion of the gas into a liquid state so as when the refrigerant enters into the system it is a saturated vapor. The Solar Air Conditioning process allows more of the refrigerant to change state back into liquid faster as well as allowing the transformation of more liquid into the system.

In summary the Solar Air Conditioner utilizes solar power thus saving approximately 37.5%-67.5% of electricity consumption that is consumed by a regular air conditioner, it has an awesome operating temp range of -8 degrees C to 55 degrees C, contact us today for a free installation quote.

ENERGY SAVINGS

Electricity Consume of DC Solar AC VS Normal AC(18000BTU) On cold or hot days.

Hour

Electricity Consume of Normal AC

Electricity Consume of Solar AC

Electricity Saved

Electricity Saved

1 hour

2.0kw

1.25kw

0.75kw

37.50%

10 hours

20kw

12.5kw

7.5kw

37.50%

1 month

600kw

375kw

225kw

37.50%

3 months

1800kw

1125kw

1050kw

37.50%

6 month

3600kw

2250kw

1350kw

37.50%

1 year

7200kw

4500kw

2700kw

37.50%

 Remarks:   The above test  data are based on the AC works under intermediate frequency.

 

Electricity Consume of DC Solar AC VS Normal AC(18000BTU) on milder days

Hour

Electricity Consume of Normal AC

Electricity Consume of Solar AC

Electricity Saved

Electricity Saved

1 hour

2.0kw

0.65KW

1.35KW

67.50%

10 hours

20kw

6.5KW

13.5KW

67.50%

1 month

600kw

195KW

405KW

67.50%

3 months

1800KW

585KW

1215KW

67.50%

6 month

 

1170KW

2430KW

67.50%

1 year

 

2340KW

4860KW

67.50%

 REMARKS:  The above data are based on the AC works under low frequency 

CERTIFICATION

 PDF: download

CLICK HERE to download specifications (pdf)

3.5kW and 7.2kW models available EARLY APRIL 2011, 5kW model available now. 

 

SUPPLY ONLY PRICES LISTED BELOW (AFTER MANUFACTURERS $1000 REBATE HAS BEEN DEDUCTED)

 Best Price

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Warranty 5 years
PDF: download
Price (each):
EEG-35, 3.5kW.  $1,945.00 
EEG-50, 5.0kW.  $2,090.00 
EEG-72, 7.2kW.  $2,290.00 

Quantity   for 
EEGREEN SOLAR INVERTER AIRCONDITIONER & HEATER 


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