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Solar Savings Calculator

Find out how much a solar system will save on your power bills, your payback period, and your 25-year return — based on your bill, system size, and state sunlight.

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Solar Panel Savings Calculator

Estimate your solar savings based on your electricity bill, the system size you're considering, your state's sun hours, and how much energy you use during the day. See your payback period and lifetime savings.

$
Your typical power bill every 3 months.
$
Check your bill — Australian average is ~28–35c/kWh.
Solar saves most when you use power while the sun shines.
Sets average peak sun hours per day for your state.
kW
6.6kW is the most popular residential size in Australia.
$
Typical 6.6kW system is $5,000–$9,000 after the federal STC rebate.
$
What your retailer pays for excess solar exported. Now ~4–8c/kWh.
%
Power prices have historically risen ~3–5% per year.
Estimated First-Year Savings
$0
off your electricity bills in year one
Payback Period
0 yrs
25-Year Savings
$0
Annual Generation
0 kWh
Self-Consumption Saving
$0
Feed-in Earnings
$0
Return on Investment
0%
Year-by-Year Savings & Payback
YearAnnual SavingCumulativeNet Position
⚠️ Estimate only. Real solar savings depend on your exact usage pattern, roof orientation and shading, panel and inverter quality, weather, retailer rates, and feed-in tariff changes. Generation estimates use average state peak-sun-hours and assume a north-facing unshaded roof with ~78% system efficiency. Get quotes from CEC-accredited installers and check current rebates for your state before deciding.
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What is a Solar Savings Calculator?

A solar savings calculator estimates how much money rooftop solar panels will save on your electricity bills, how long the system takes to pay for itself, and your total return over the system's 25-year lifespan. With electricity prices climbing and the cost of solar at historic lows, solar is one of the highest-return investments available to Australian households — but the actual savings depend heavily on your usage pattern, system size, and location.

This calculator cuts through the sales pitches by letting you model your own numbers: your real electricity bill, the system size you're considering, your state's sunlight, and crucially how much power you use during daylight hours — the single biggest factor in solar savings that most quotes gloss over.

How Are Solar Savings Calculated?

Your savings come from two sources: avoiding buying electricity from the grid (self-consumption), and earning a feed-in tariff for excess solar you export. Self-consumption is worth far more — typically 28–35c/kWh saved versus 4–8c/kWh earned for exports.

Annual Generation = System kW × Peak Sun Hours × 365 × 0.78

Self-Consumption Saving = Generation × Daytime Use % × Electricity Rate
Export Earnings = Generation × (1 − Daytime Use %) × Feed-in Tariff

Year 1 Saving = Self-Consumption Saving + Export Earnings
Payback Period = System Cost ÷ Annual Saving
(savings grow each year as electricity prices rise)

How to Use This Solar Calculator

Enter your average quarterly electricity bill and your per-kWh rate (both on your bill). Select how much of your power you use during daylight — this is the most important input, because solar only saves you the full rate on power you use while the sun shines. Pick your state to set sunlight hours, then enter the system size and cost you've been quoted, the feed-in tariff your retailer offers, and an assumed annual price rise. The calculator returns your first-year savings, payback period, and 25-year return.

What Your Results Mean

The first-year savings is what comes off your bills in year one. The payback period is how long until the system has paid for itself — most quality Australian systems pay back in 3–6 years. The 25-year savings is your total benefit over the system's life, accounting for rising electricity prices. The self-consumption vs feed-in split shows why using your own solar matters so much more than exporting it.

☀️ The golden rule of solar savings: use your own power. Running your dishwasher, washing machine, pool pump, and air conditioning during the day — and charging an EV or home battery — dramatically increases savings, because every kWh you self-consume saves the full retail rate instead of the tiny feed-in tariff.

Is This Calculator Accurate?

It uses average state peak-sun-hours and a realistic 78% system efficiency factor (accounting for inverter losses, dirt, temperature, and wiring). Real generation varies with roof orientation (north is best in Australia), tilt, shading, and panel quality. Your actual self-consumption percentage is the biggest variable — the calculator's presets are reasonable averages, but a smart meter or energy monitor gives you the precise figure. Treat the result as a solid estimate for comparing system sizes and deciding whether solar stacks up for you.

How to Choose Your Inputs

Daytime use: Be honest — if the house is empty 9–5, you're closer to 30% unless you shift appliances to daytime. System size: 6.6kW is the sweet spot for most homes (it pairs with a 5kW inverter and maximises the rebate); go bigger if you have an EV, pool, or plan to add a battery. Feed-in tariff: These have fallen sharply — don't rely on high feed-in to justify a system; self-consumption is where the value is. Cost: Use the price after the federal STC rebate, which is automatically applied by most installers.

Australian Solar Rebates and Incentives

The federal Small-scale Renewable Energy Scheme provides Small-scale Technology Certificates (STCs) that reduce the upfront cost of any system under 100kW — typically knocking $2,000–$4,000 off a 6.6kW system, applied automatically as a point-of-sale discount. Several states add their own incentives: interest-free loans, battery rebates, and feed-in tariff schemes that change regularly. The federal government's home battery program also began reducing battery costs from 2025. Always check what's currently available in your state before buying.

Suitable for Renters and Apartments

Rooftop solar generally suits owner-occupiers of freestanding homes. Renters can't usually install panels, though some states have solar-for-renters schemes and rent-to-own arrangements. Apartment dwellers face the challenge of shared roofs and body corporate approval, but embedded networks and community solar projects are emerging. If you can't install solar, focusing on an efficient electricity plan and shifting usage to off-peak periods is the next-best saving strategy.

Should You Add a Battery?

A home battery stores excess daytime solar to use at night, increasing your self-consumption from ~30–50% to potentially 80%+. The trade-off is cost: batteries have historically added $8,000–$15,000 and lengthened payback considerably. With the federal battery rebate from 2025 and rising electricity prices, the economics are improving. As a rule of thumb, batteries make most sense for households with high evening usage, frequent blackouts, or a strong preference for energy independence — run the panel-only numbers first, then assess whether a battery's extra savings justify its cost.

Common Mistakes to Avoid

  • Overvaluing the feed-in tariff. Feed-in rates have collapsed to 4–8c/kWh — don't let a salesperson justify a system on export earnings.
  • Buying too small to save on cost. The incremental cost of going from 5kW to 6.6kW is small, but the extra generation significantly improves returns.
  • Ignoring self-consumption. A system is only as good as how much of its output you actually use — shift appliances to daytime.
  • Choosing the cheapest quote. Bargain panels and inverters fail early; quality gear with a real warranty pays off over 25 years.
  • Forgetting orientation and shading. North-facing unshaded panels generate far more than east/west or shaded arrays — get a proper site assessment.

Limitations of This Calculator

This calculator estimates savings using average state sun hours and standard efficiency assumptions. It doesn't model your exact roof orientation and tilt, panel degradation over time (~0.5% per year), inverter replacement costs (typically once in 25 years), time-of-use tariffs, demand charges, or battery storage. It also can't predict future feed-in tariff or electricity price changes with certainty. For a precise assessment, get quotes from Clean Energy Council accredited installers who will model your specific roof. See the federal government's solar guidance for more.

Frequently Asked Questions

How much can solar panels save me?
A typical 6.6kW system in Australia saves $1,000–$2,500 per year off electricity bills, depending on your usage and state. Households that use most of their power during the day save at the top of that range. Over 25 years, accounting for rising electricity prices, total savings commonly reach $30,000–$50,000+ — making solar one of the highest-return home investments available.
What is the payback period for solar in Australia?
Most quality residential solar systems pay for themselves in 3–6 years. With the federal STC rebate reducing upfront costs and electricity prices rising, payback periods have shortened considerably. Systems with high self-consumption (power used during the day) pay back fastest. After payback, the system generates essentially free electricity for the remainder of its 25+ year life.
Is solar still worth it with low feed-in tariffs?
Yes — arguably more than ever, because the value of solar now comes from self-consumption, not exports. Avoiding buying grid power at 28–35c/kWh is worth far more than the 4–8c/kWh feed-in tariff. The key is using your own solar: running appliances during the day, and ideally adding a battery or EV to soak up excess generation rather than exporting it cheaply.
What size solar system do I need?
6.6kW is the most popular size and suits most Australian homes — it pairs with a 5kW inverter and maximises the federal rebate. Choose larger (8–13kW) if you have high usage, a pool, ducted air conditioning, an EV, or plan to add a battery. The incremental cost of going bigger is relatively small, and excess capacity becomes valuable as you electrify more of your home.
How does the solar rebate work?
The federal Small-scale Renewable Energy Scheme issues Small-scale Technology Certificates (STCs) based on your system size and location. These are typically assigned to your installer, who applies them as an upfront discount — usually $2,000–$4,000 off a 6.6kW system. The rebate reduces slightly each year until the scheme ends in 2030, so installing sooner captures a larger rebate. It's not means-tested.
Do solar panels work on cloudy days?
Yes, but at reduced output — typically 10–25% of peak generation on heavily overcast days. Solar panels work on daylight, not direct sunlight, so they still produce power in cloud. This calculator uses average annual peak-sun-hours for your state, which already accounts for cloudy and rainy days across the year, so your real-world annual generation is reflected in the estimate.
How long do solar panels last?
Quality solar panels last 25–30+ years, with most carrying a 25-year performance warranty guaranteeing around 80–85% of original output by year 25. Panels degrade slowly (~0.5% per year). The inverter is the component most likely to need replacement, typically once during the system's life at around year 10–15, costing $1,000–$2,500. Factor one inverter replacement into long-term calculations.
Will solar increase my home value?
Generally yes — multiple studies and real estate surveys indicate solar adds value and appeal to a property, particularly as buyers increasingly factor in running costs. A paid-off, quality solar system is a selling point that can speed up a sale and add a premium. The value added depends on the system's age, size, and condition, but owned (not leased) systems are viewed most favourably by buyers.
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