Vehicles & TravelCanada versionFormula-based · Runs in your browser

EV Charging Cost and Time Calculator — Canada

Separate energy arriving in the battery from energy bought at the meter, and compare annual energy spending on the same driving distance. CAD planning view; stated limitations apply.

Preparing saved example…

Inputs

Enter the values you know. Optional fields may be left empty.

Local save controls below
Optional
Required
Required
%
Required
%
Required
Required
km
Required
kWh/100 km
Required
%
Required
CAD
Required
L/100 km
Required
CAD/L

Result

Updates as valid inputs change.

Calculated locally
Illustrative defaults are not local quotes or verified legal rules. Dated reference components and user-entered assumptions are explicitly distinguished. Professional review is pending.
Annual energy-cost saving
—
Energy added to battery, kWh
—
Purchased wall electricity, kWh
—
Modeled charging-session cost
—
Idealized charging time, hours
—
Annual wall electricity, kWh
—
Annual EV charging cost
—
Annual comparison fuel cost
—

Saved locally, explained clearly

Drafts, calculations, scenarios, and workflow progress stay in this browser unless you export them.

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Calculation steps

Follow what happened from the selected formula to the displayed answer.

Show substituted values and intermediate working
Calculate current inputs to see the working.
  1. 1

    Formula selected

    The calculator uses the following formula or method.

    wall energy = usable battery capacity × state-of-charge increase ÷ charging efficiency.

    Inputs are converted to canonical units before evaluating this stated formula.

  2. 2

    Values entered

    Your values are placed into the calculation.

    Enter values to see what is used in this step.

  3. 3

    Result calculated

    The formula or method produces the following result values.

    Results will appear after a successful calculation.

  4. 4

    Answer formatted

    Displayed values are rounded and formatted using each output’s configured precision.

Scenario comparison

Save working scenarios, then select two or three to compare. Formula versions and inputs remain visible.

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Recent calculations

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Data and privacy

How it works

Separate energy arriving in the battery from energy bought at the meter, and compare annual energy spending on the same driving distance.

This is the Canada planning view, with monetary inputs and outputs in CAD. A currency label does not establish that a tax rate, construction price, coverage rule or legal limit has been verified locally. The inputs and limitations below describe the actual scope.

Input query strings and outputs

Use an input name in this page’s URL as ?name=value, and join additional inputs with &. Portable shared links may instead use the compact ?ac= state parameter.

Input query strings

11
  • ?unitSystem= Measurement system

    Choice · Optional · Default: metric · Accepted values: imperial, metric

  • ?batteryCapacity= Usable battery capacity, kWh

    Number · Required · Default: 60

  • ?startPercent= Starting state of charge

    Percentage · Required · Default: 20

  • ?endPercent= Target state of charge

    Percentage · Required · Default: 80

  • ?wallPower= Average sustained wall charging power, kW

    Number · Required · Default: 7

  • ?annualDistance= Annual driving distance

    Number · Required · Default: 20,000

  • ?evConsumption= Vehicle battery consumption

    Number · Required · Default: 18

  • ?chargeEfficiency= Wall-to-battery charging efficiency

    Percentage · Required · Default: 90

  • ?electricityRate= Electricity price per wall kWh

    Money · Required · Default: 0.2

  • ?fuelConsumption= Comparison fuel consumption

    Number · Required · Default: 7

  • ?fuelPrice= Fuel price per volume unit

    Money · Required · Default: 1.6

Outputs

8
  • batteryAdded Energy added to battery, kWh

    Number

  • wallEnergy Purchased wall electricity, kWh

    Number

  • chargeCost Modeled charging-session cost

    Currency · Currency: CAD

  • hours Idealized charging time, hours

    Number

  • wallKwh Annual wall electricity, kWh

    Number

  • evEnergyCost Annual EV charging cost

    Currency · Currency: CAD

  • fuelEnergyCost Annual comparison fuel cost

    Currency · Currency: CAD

  • energySaving Annual energy-cost saving

    Currency · Primary output · Currency: CAD

Formula

wall energy = usable battery capacity × state-of-charge increase ÷ charging efficiency.

Calculations retain numeric precision internally. Displayed values are rounded for readability. Quantities that must be purchased as whole units are rounded up only where the formula explicitly requires it.

Read the inputs before calculating

  • Usable battery capacity, kWh: Enter the quantity described by the label.
  • Starting state of charge: Enter the quantity described by the label.
  • Target state of charge: Enter the quantity described by the label.
  • Average sustained wall charging power, kW: Enter the quantity described by the label.
  • Annual driving distance: Enter the quantity described by the label. The measurement selector converts this physical quantity; it does not change the underlying scenario.
  • Vehicle battery consumption: Enter the quantity described by the label. The measurement selector converts this physical quantity; it does not change the underlying scenario.
  • Wall-to-battery charging efficiency: Enter the quantity described by the label.
  • Electricity price per wall kWh: Enter the quantity described by the label.
  • Comparison fuel consumption: Enter the quantity described by the label. The measurement selector converts this physical quantity; it does not change the underlying scenario.
  • Fuel price per volume unit: Enter the quantity described by the label. This is a price per displayed unit, so the price converts inversely to the physical quantity.

Reproducible worked example

The following is a fictional arithmetic example, not a local quote, a verified claimant or a market forecast. Its values are included so the formula can be checked. The form does not automatically confirm any verification checkbox.

InputExample value
Usable battery capacity, kWh60
Starting state of charge20
Target state of charge80
Average sustained wall charging power, kW7
Annual driving distance (km)20,000
Vehicle battery consumption (kWh/100 km)18
Wall-to-battery charging efficiency90
Electricity price per wall kWh0.2
Comparison fuel consumption (L/100 km)7
Fuel price per volume unit (/L)1.6
OutputCalculated result
Energy added to battery, kWh36
Purchased wall electricity, kWh40
Modeled charging-session costCAD 8
Idealized charging time, hours5.7143
Annual wall electricity, kWh4,000
Annual EV charging costCAD 800
Annual comparison fuel costCAD 2,240
Annual energy-cost savingCAD 1,440

Interpreting a changed assumption

Start with one complete scenario and change only one input when diagnosing a difference. Recheck units, the period of every rate, whether an amount is recurring or one-off, and whether a cost is already included elsewhere. A larger calculated benefit is not evidence that an assumption is more likely to occur.

Limitations

  • Prices, consumption and contract terms are entered scenarios. This is not a retail quote, tax eligibility determination or vehicle safety certification.
  • Charging time assumes the entered sustained average wall power, not the charger peak rating. Tapering, battery conditioning, standby, session fees and time-based billing need separate allowances. Imperial fuel quantities are US gallons, never UK imperial gallons.

Frequently asked questions

What does this EV Charging Cost and Time result represent?

Separate energy arriving in the battery from energy bought at the meter, and compare annual energy spending on the same driving distance. It applies the displayed formula to your inputs; it does not infer omitted facts.

No. Numeric defaults are illustrative unless an input or dated reference explicitly identifies a researched component. Currency is CAD; local quotes, eligibility and unsupported rules must be entered and verified separately.

What must I check before relying on the result?

Prices, consumption and contract terms are entered scenarios. This is not a retail quote, tax eligibility determination or vehicle safety certification.

Can I compare or share different assumptions?

Change one assumption at a time and use the browser-local project or share controls. A shared URL contains the encoded input values; do not include information you do not wish to disclose.

Sources and reference scope

  • DOE energy-use arithmetic — retrieved 2026-09-24. Energy consumption versus power; not a local tariff or an approval of this implementation.
  • NIST unit conversion guidance — retrieved 2026-09-24. Unit definitions; geometry and financial arithmetic in these worksheets are explicitly stated.
  • CFPB loan-estimate explanation — retrieved 2026-09-24. US cost components; the general amortization formula is stated separately.

These references support only their stated scope. They are not evidence that every local rule or price needed by the master expansion has been loaded.

Sources
Limitations
  • Illustrative defaults are not local quotes or verified legal rules. Dated reference components and user-entered assumptions are explicitly distinguished. Professional review is pending.
  • Inputs are converted to canonical units before evaluating this stated formula.
  • Real costs and performance can differ with road conditions, usage, local prices, and vehicle specifications.
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