TryBuildCalc

EV Charging Solar Panel Calculator (Home Usage + EV Charging Offset)

Size solar for your home plus EV charging.

Inputs

kWh

ℹ️From your utility bill — average several recent months for a representative figure.

hrs/day

ℹ️Your location's average daily peak sun hours — varies significantly by climate. See the reference table below for typical ranges.

%

ℹ️100% covers your current usage. Use a higher target for a known future load addition, or lower for a partial/budget system.

%

ℹ️Combined real-world loss factor — inverter, wiring, soiling, mismatch. 77% is a standard estimate; use a lower figure for a shadier or less-than-ideal installation.

W

ℹ️The specific panel model's rated wattage — common residential panels range roughly 300-550W.

%

ℹ️Used to estimate roof area needed — check your specific panel's datasheet, typically 15-23% for common panels.

Cost

Enable Cost Estimation?

Recommended Solar Array: 11.20 kW (28 panels)

Covers 101% of your 42.7 kWh/day usage

Sizing Calculation

Daily energy usage: 42.7 kWh (from 1,300 kWh/month)

Target offset: 100% of usage

Required array size: 11.09 kW

Rounded up to: 28 × 400W panels = 11.20 kW

Estimated Production

Daily production: 43.1 kWh

Annual production: 15,750 kWh

Actual offset achieved: 101% of your usage

Roof Area Needed

56.0 (603 sq ft)

Based on 20% panel efficiency — confirm against your specific panel model's actual dimensions.

Assumptions Used

Uses a single system-efficiency factor (default 77%) covering inverter losses, wiring, soiling, and mismatch combined — not a detailed shading/tilt/orientation model. Peak sun hours must reflect your specific location. This is a reference estimate — confirm with a licensed solar installer before purchase.

Sizing a battery bank to store this array's energy? UPS Battery Capacity Calculator →

Checking your panel/service has capacity for this array? Panel Size Calculator →

Solar Array SizingArray Size11.20 kWPanels28 panelsRoof Area Needed603 sq ftDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Solar Panel Size Calculator.

Solar sizing with EV charging included

Adding an EV charger to a home typically adds a substantial amount of monthly usage — this page is pre-set to a combined household-plus-EV usage figure, roughly 400-500 kWh/month higher than a typical home without an EV.

Add your actual EV's typical monthly charging energy to your existing usage above for an accurate combined figure.

  • A typical EV commonly adds roughly 300-500 kWh/month depending on driving distance and vehicle efficiency — check your specific vehicle and driving pattern.
  • If you're planning to add an EV later, consider sizing above 100% offset today to avoid a costly system expansion later.
  • Cross-check your home's electrical panel capacity for both solar interconnection and EV charger circuits using the Panel Size Calculator.

Solar Panel Size Formula: How Is It Calculated?

The standard formula converts your energy need into a required array capacity, accounting for real-world system losses.

Step 1 — Daily Energy Target

Daily Usage (kWh) = Monthly Usage ÷ 30.4375

Target Daily Energy = Daily Usage × Offset Target %

Converts your monthly bill figure to a daily target, scaled by how much of it you want the solar array to cover.

Step 2 — Required Array Size

Required Array (kW) = Target Daily Energy ÷ (Peak Sun Hours × System Efficiency)

Dividing by peak sun hours and system efficiency accounts for both your location's solar resource and real-world losses between the panel's rated output and usable electricity.

Step 3 — Panel Count and Roof Area

Panel Count = ROUND UP(Required Array × 1,000 ÷ Panel Wattage)

Roof Area = Panel Count × (Panel Wattage ÷ (Panel Efficiency × 1,000))

Panel count always rounds up to a whole panel; roof area is derived from panel efficiency rather than a fixed lookup, so it scales correctly for any wattage/efficiency combination.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValueWhy it is used
Monthly Usage1,300 kWhSets the daily energy target
Peak Sun Hours5.0 hrs/daySets required array size for your location
Panel400W, 20% efficientSets panel count and roof area

Step 1 — Daily Energy Target

StepCalculationResult
Daily usage1,300 ÷ 30.437542.7 kWh
Target daily energy42.7 × 100%42.7 kWh

Step 2 — Required Array Size

Required array42.7 ÷ (5.0 × 77%)11.09 kW

Step 3 — Panel Count and Roof Area

Panel countROUND UP(11.09 × 1000 ÷ 400)28 panels
Actual array size28 × 400W11.20 kW
Roof area28 × (400 ÷ (20% × 1000))56.0 m² (603 sq ft)

Therefore, to cover 100% of your 42.7 kWh/day usage at 5.0 peak sun hours, you need 28 × 400W panels (11.20 kW), needing about 603 sq ft of roof area.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

It depends on the vehicle and how much you drive, but commonly 300-500 kWh/month for typical daily driving — add your specific EV's estimated monthly charging energy to your existing household usage for an accurate combined figure.
It's a common strategy — sizing for future EV charging today (a higher offset percentage or explicitly adding estimated future EV usage) can avoid a more costly system expansion later, though it does mean a larger upfront system than your current usage alone would require.