Is Solar Worth It in North Carolina?
North Carolina averages 13¢/kWh for electricity and 1300 kWh of annual production per kW installed. On the illustrative system below, that means payback in about 10.2 years.
Illustrative system, identical in every state so they're comparable: 8 kW at $3/watt ($22,000 gross), 30% incentives, 0.5% annual degradation, 3% annual utility rate increase, over 25 years. Only the electricity rate and solar production change between states. Install prices vary by installer and market — use the calculator with your real quote.
Why North Carolina lands where it does
Two things decide solar payback almost entirely: what you pay for grid electricity, and how much sun your roof gets. Everything else — install cost, degradation, incentives — adjusts the result at the margins.
| North Carolina | National avg. | |
|---|---|---|
| Electricity rate | 13¢/kWh | 16¢/kWh |
| Production per kW | 1300 kWh/yr | 1300 kWh/yr |
| Year 1 savings | $1,352 | $1,664 |
| Effective cost of solar | 6.3¢/kWh | 6.3¢/kWh |
| Payback period | 10.2 yrs | 8.4 yrs |
| 25-year net gain | $30,692 | $41,328 |
Good sun with below-average rates; a large solar state overall, driven more by utility-scale than residential.
The number that actually matters
Your solar electricity effectively costs 6.3¢/kWh — the net system price spread across the 244,982 kWh it will generate over 25 years. Set that against the 13¢ you currently pay North Carolina's utilities. Every kWh the system produces saves you about 6.7¢, which is where the $30,692 of lifetime gain comes from.
Use your real quote. Open the Solar Payback Calculator pre-filled with North Carolina's electricity rate and sun — then enter the actual system size and price you've been quoted.
What this page doesn't tell you
There are no North Carolina incentive amounts or net-metering terms here, deliberately. Those change with legislative sessions and utility rate filings, and a stale figure could cost you real money. The 30% used above is a placeholder you should replace with what you actually qualify for.
Net metering deserves particular attention: what your utility pays for exported power varies enormously and has been getting less generous in several states. If your utility credits exports well below retail, lifetime savings will be lower than shown here unless you consume most of your production directly or add storage.
A projection, not a quote. Electricity rates are state averages and vary by utility, plan, and season; production is a statewide approximation that ignores roof orientation, tilt, and shading. Excludes maintenance, inverter replacement, and net-metering structure. General information, not financial advice.
Related calculators
- Solar Payback Calculator — the full model, every assumption editable
- Solar System Size Calculator — what size you actually need
- Solar Loan vs Cash — what financing really adds
- EV Charging Cost — charging off your own production
Frequently asked questions
Is solar worth it in North Carolina?
On an 8 kW system at $3 per watt, solar in North Carolina pays back in roughly 10.2 years and returns about $30,692 over 25 years. That is a reasonable result — driven by 13¢/kWh electricity and 1300 kWh of annual production per kW installed.
How much does electricity cost in North Carolina?
The average residential rate in North Carolina runs about 13¢/kWh, below the national average of roughly 16¢. Your rate is the single biggest driver of solar payback — the more expensive your utility, the more each kWh your panels make is worth. Check your own bill rather than relying on a state average, especially in deregulated markets.
How much solar power can I generate in North Carolina?
Roughly 1300 kWh per year for each kW of panels installed, which is near the national average of about 1300. An 8 kW system would produce around 10,400 kWh in its first year. Roof orientation, tilt, and shading move this substantially — NREL's free PVWatts tool gives a site-specific estimate.
What is the effective cost per kWh of solar in North Carolina?
About 6.3¢/kWh — the net system cost divided by everything it produces over its life. Compare that against the 13¢ you currently pay: every kWh the system makes saves you roughly 6.7¢.