ampee

What is dynamic solar charging actually worth?

You probably already charge your EV from solar. The question is whether your charger adjusts to it — or just sits at one fixed amp setting all day.

Your setup
Your ZIP code using CA rates
Enter your ZIP to use your utility's real rates
How many EVs do you charge at home? 1
How many major electrical appliances usually run during the day? None
How big is your solar system? 8.5 kW
4 kW20 kW
Do you have a home battery? No
How many days a week is the car home during the day? 5
1 day7 days
Average weekly mileage 250 mi
50 mi600 mi
Your estimated ampee savings
per month, vs. what you get today with a fixed charge rate
Today vs. with ampee : saved so far
Solar your panels produce Your charger today (fixed rate, no ampee) Captured by ampee Pulled from the grid
The dashed gray line is what your charger already does today — a fixed rate that can't react to the sun. Green band: solar that fixed rate wastes today (sold back for pennies) — ampee puts it in your car instead. Amber band: grid power that fixed rate silently pulls today when solar dips — ampee throttles down instead.
Drag your finger or mouse across the chart to see how savings build up hour by hour.
How this is calculated

The simple version: every kWh of sunshine ampee puts into your car instead of selling it to the grid saves you the difference between the grid price you'd otherwise pay and the small credit you'd get for exporting it. On typical California rates that's about 34¢/kWh to buy vs ~3¢/kWh to sell — so roughly 31¢ saved for every kWh of sun you self-consume. (We value your solar at that gap, not the full retail price, because exporting it would still have earned you the few-cent credit — so this is the true extra you keep.)

A fixed amp setting can't react to the sun, so it loses money two ways:

ampee adjusts your charge rate every few minutes to track actual solar output, so it captures the first kind of waste and avoids the second. Running the AC, a pool pump, or a water heater at the same time makes the second kind worse — every time one cycles on, it eats into what's left for the car, and a fixed setting can't react. Drag across the chart above to see those two effects turn into dollars, hour by hour.

Each vehicle's charging need is calculated from its own weekly mileage at a flat ~300 Wh/mile (a typical EV average — actual efficiency varies by model, roughly 250-450 Wh/mile), spread across the days/week you said that car is home — vehicles with different schedules get different results. Uses the solar system size you set above (the suggested default grows with EV count; set your real size for a better estimate), a single charger shared across all vehicles, charging starting around 8am, and California E-ELEC time-of-use rates ($0.37/kWh daytime, $0.31/kWh overnight, $0.03/kWh solar export). If you have a home battery, we assume it's about 20% charged at sunrise, charges at up to 5kW, and always charges first — neither charging strategy draws anything, from solar or the grid, until the battery reaches full, and it never discharges into the car. A bigger battery delays both equally; it just leaves less of the day for whichever strategy you're using to make its case. Your real numbers depend on your rate plan, vehicles, and battery's own settings — this is an estimate, not a quote.

See how ampee works →
Solar-aware EV charging that adjusts every few minutes, automatically.