Hassall Grove – NSW

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RESIDENTIAL CASE STUDY

HASSALL GROVE, NSW

INVESTMENT

$19,783.00

PAYBACK PERIOD

70 months

SYSTEM SIZE

13.28kW

CARBON SAVINGS

454 tonnes CO2

Est. LIFETIME SAVING

$100,596.00

This system includes 1 x Goodwe GW10KAU-DT inverter with a maximum AC output of 10 kilowatts. The solar array includes 32 x EGing PV EG-415M54-HL panels with a nominal DC power of 13.28 kW.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
Before Solar
After Solar

Yearly Savings

Before Solar
$1,480.00
After Solar
-$464.00

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Harrington Park – NSW

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RESIDENTIAL CASE STUDY

HARRINGTON PARK, NEW SOUTH WALES

INVESTMENT

$40,000.00

PAYBACK PERIOD

6yrs 2months

SYSTEM SIZE

23.24kW

CARBON SAVINGS

713 tonnes CO2

Est. LIFETIME SAVING

$283,126.00

This system includes 1 x Sungrow SG20RT inverter with a maximum AC output of 20 kilowatts. The solar array includes 56 x AE Solar AE415MD-108BD panels with a nominal DC power of 23.24 kW.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
Before Solar
After Solar
Solar + Storage

Yearly Savings

Before Solar
$4,000.00
After Solar
-$308.00
After Solar + Storage
-$1,500.00

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Mount Eliza – Victoria

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RESIDENTIAL CASE STUDY

MOUNT ELIZA, VICTORIA

INVESTMENT

$21,500.000

PAYBACK PERIOD

83 months

SYSTEM SIZE

10.375kW

CARBON SAVINGS

369 tonnes CO2

Est. LIFETIME SAVING

$128,766.58

This system includes 1 x Fronius 8.2-1 inverter with a maximum AC output of 8.2 kilowatts. The solar array includes 25 x AE Solar AE415MD-108BD panels with a nominal DC power of 10.375 kW.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
Before Solar
After Solar
Solar + Storage

Yearly Savings

Before Solar
$3,390.00
After Solar
$1,540.00
After Solar + Storage
$828.00

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Ringwood North – Victoria

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RESIDENTIAL CASE STUDY

RINGWOOD NORTH, VICTORIA

INVESTMENT

$19,333.00

PAYBACK PERIOD

70 months

SYSTEM SIZE

13.28kW

CARBON SAVINGS

454 tonnes CO2

Est. LIFETIME SAVING

$100,000

We design and install solar for maximum clean energy production to offset your consumption. We used a Goodwe GW10kVA inverter and EGing PV 13.28W for this project for solar panels.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
After Solar
Current Bill

Yearly Savings

Current Bill
$1,480.00
After Solar
-$464.00

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Essendon – Victoria

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RESIDENTIAL CASE STUDY

ESSENDON, VICTORIA

INVESTMENT

$17,755.50

PAYBACK PERIOD

95 months

SYSTEM SIZE

6.4kW

CARBON EMISSION SAVINGS

250 tonnes CO2

Est. LIFETIME SAVING

$77,556

We design and install solar for maximum clean energy production to offset your consumption. For this project we used Fronius 5.0-1 inverter and Hyundai HiE for solar panels.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
Solar + Storage
Bill Before
Bill After

Yearly Savings

Current Bill
$2,000.00
After Solar
$920.00
After Solar + Storage
$647.00

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YEA – Victoria

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RESIDENTIAL CASE STUDY

YEA, VICTORIA

INVESTMENT

$8,986.00

PAYBACK PERIOD

53 months

SYSTEM SIZE

10.375

CARBON SAVINGS

413 tonnes CO2

Est. LIFETIME SAVING

$96,752

We design and install solar for maximum clean energy production to offset your consumption. For this project we used Fronius 5.0-1 inverter and Hyundai HiE for solar panels.

Monthly Savings Summary

MONTHLY BILL ESTIMATE
Bill Before
Bill After

Yearly Savings

Current Bill
$2,440.00
After Solar
$647.00

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Craigeburn – Victoria

Craigeburn VIC 3064

12KW PV System
“Overall, customer was happy with the service and impressed with our installation team. More importantly, he was happy with the system. It continues to amaze him with the power it generates and the greater savings it delivers. This 12kw project with three-phase meter made all this possible. Solar installation is not just about saving money, but making money in the process. So switch so solar as soon as you can.”

Job Summary

Energy Savings*77% reduction
Payback Period35 Months
Annual Energy Savings*13,711kWh
First Year Return on Investment*35%
Greenhouse Gas Reduction*16,042 kg CO2 per annum
Total 10 Year Energy Usage Cost Saving*$39,760
*All the saving calculatoins are estimated using nearmap. Energy Output is calculated based on historical solar irradiance and temperature data at this location, factoring in panel tilt, orientation, and all of the System Parameters including System Efficiency. Emission reduction assumes full output usage and average savings from National Greenhouse and Energy Reporting (Measurement) Determination 2008.

Background

Customer is very interested in the immediate installation of the Solar Pv system on their residential property. Our free assessment walked the customer through the entire process with care and guided then through the specifications and practicality of installation.

The Project

The 12kw PV system alongside with a 3-phase meter is the most suitable for this property. We ensure that our installation meets the customer’s optimal energy requirement and the desired energy output.

Results

Before customer’s annual energy consumption in kWh from the grid was 18000 but after upgrade, an estimated 3,921.95 annual energy consumption is forecasted. That’s a yearly savings of $ 14,078.05.

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Oran Park – New South Wales

Oran Park NSW 2570

15KW PV System
“ It was not the usual residential pv system installation. It was a 15kw project for a home, obviously made possible because the customer got a three-phase meter and a large roof space. As experts, our BDM provided a tailor fit solution that definitely delivered the right results. There is no such thing as a cookie-cut approach or off the shelf advise. We assessed the property and the best offer was this 15kw system that definitely delivered up to 80% savings and Returns on Investment within less than 48 months. Indeed, our system achieved great value for our customers. Talk to our experts on how to save and make money at the same time.”

Job Summary

Energy Savings*77% reduction
Payback Period*51 Months
Annual Lighting Energy Saving*14,368 kWh
First Year Return on Investment*24%
Greenhouse Gas Reduction*12,500 kg CO2 per annum
Total 10 Year Energy Usage Cost Savings*$40,230
*All the saving calculatoins are estimated using nearmap. Energy Output is calculated based on historical solar irradiance and temperature data at this location, factoring in panel tilt, orientation, and all of the System Parameters including System Efficiency. Emission reduction assumes full output usage and average savings from National Greenhouse and Energy Reporting (Measurement) Determination 2008.

Background

It was a 15KW project for a home obviously made possible because the customer got a three-phase meter and a large roof space. Customer was looking for a solution to more than a thousand dollar a quarter electricity bill.

The Project

Before recommending a solution, we undertook a number of site visits to completely understand the client requirements and ensure we delivered the best possible outcome. The majority of the job involved installing 15 KW system.

Results

Following installation, customer has saved on their energy bill, which equates to over $3,447.26 in savings in the first year and completely paid back within 51 months.

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