Running cost, US average rate
$14a year
74 kWh a year · $1.13 a month · 93 W average draw
Rated 90 W, drawing that for 100% of the 4 hours a day it is in service, 200 days a year.
Run the numbers on your own use
Change any of these and the figures update. The defaults are the typical case described above; your rate is the input that moves the answer most.
Divide the total on your bill by the kilowatt-hours it lists. That includes the fixed monthly charge, so it is your true cost — and it is usually a little above the state average.
Residential average for June 2026, from the EIA. Your own tariff may differ; you can read it off your bill.
- A year
- $14
- A month
- $1.13
- Electricity
- 74 kWh
- Average draw
- 93 W
In the US average at 18.34¢ per kWh. Nameplate arithmetic would say 72 kWh — 1× too high.
Why this is lower than the number you will see elsewhere
Almost every published answer to this question multiplies the rating on the label by the hours the appliance is switched on. For an e-scooter charger that gives 72 kWh a year, or $13.
Steady until the pack approaches full, then tapers.
The arithmetic, step by step
Nothing here is hidden, so you can check it or change it. Working in the order the formula runs:
- 90 W — what it draws while it is actually drawing. This is the rating on the plate.
- × 100% — the share of its in-service time it is really pulling that. Steady until the pack approaches full, then tapers.
That gives 90 W averaged across the hours it is on. - × 4 hours a day × 200 days — Charging a mid-size commuter scooter most days in the riding season.
90 × 4 × 200 ÷ 1,000 = 72 kWh a year. - + standby — 0.5 W for the other 20.0 hours a day, which is 2 kWh a year. People leave this out and it is not always small.
- × 18.34¢ — the US average residential rate for June 2026.
74 kWh × 18.34¢ = $14 a year.
Change any assumption in the calculator above and every figure on this page moves with it. The two that matter most are your rate, which varies 4× across the country, and the hours — the duty cycle is a property of the appliance, but the hours are a property of you.
How sensitive is that number?
A single figure invites more confidence than it deserves. Here is the same appliance under assumptions either side of the default, so you can see how much of the answer is the appliance and how much is the guess about how you use it.
Everything else held at the default. The spread here is the honest error bar on the headline figure.
| If… | Electricity | A year | vs default |
|---|---|---|---|
| You use it half as much (2.00 h/day) | 38 kWh | $7.01 | -48% |
| You use it 50% more (6.00 h/day) | 110 kWh | $20 | +48% |
| It is a smaller unit (40 W) | 34 kWh | $6.24 | -54% |
| It is a larger unit (200 W) | 162 kWh | $30 | +119% |
| You are in Nevada (13.11¢) | 74 kWh | $9.70 | -29% |
| You are in Hawaii (52.72¢) | 74 kWh | $39 | +187% |
What it costs per hour, day and month
At 18.34¢ per kWh, the US residential average for June 2026.
| Period | Electricity | Cost |
|---|---|---|
| Per hour in use | 0.1 kWh | 1.7¢ |
| Per day in use | 0.4 kWh | $0.07 |
| Per month | 6.2 kWh | $1.13 |
| Per year | 74 kWh | $14 |
| Over ten years | 740 kWh | $136 |
The thing worth knowing
About the cheapest motorised transport there is. A 500 Wh pack takes roughly 0.6 kWh from the wall including losses, which moves a rider fifteen to twenty-five miles for a handful of cents. The whole season’s charging costs less than one tank of petrol.
What it costs in your state
The appliance is the same everywhere; the rate is not. Running this e-scooter charger costs $39 a year in Hawaii and $9.70 in Nevada — a difference of 4×.
Cost of running one e-scooter charger for a year, by state. Residential average price, EIA June 2026.
| State | Rate | Per year | Per month |
|---|---|---|---|
| Hawaii | 52.72¢ | $39 | $3.25 |
| California | 34.74¢ | $26 | $2.14 |
| Massachusetts | 29.61¢ | $22 | $1.83 |
| Maine | 29.59¢ | $22 | $1.82 |
| New York | 29.49¢ | $22 | $1.82 |
| Rhode Island | 29.23¢ | $22 | $1.80 |
| Alaska | 28.21¢ | $21 | $1.74 |
| New Hampshire | 27.01¢ | $20 | $1.67 |
| New Jersey | 24.95¢ | $18 | $1.54 |
| Vermont | 24.44¢ | $18 | $1.51 |
| District of Columbia | 24.39¢ | $18 | $1.50 |
| Connecticut | 24.32¢ | $18 | $1.50 |
| Michigan | 22.99¢ | $17 | $1.42 |
| Maryland | 21.84¢ | $16 | $1.35 |
| Pennsylvania | 21.73¢ | $16 | $1.34 |
| Illinois | 19.89¢ | $15 | $1.23 |
| Wisconsin | 19.56¢ | $14 | $1.21 |
| Delaware | 19.29¢ | $14 | $1.19 |
| Ohio | 19.19¢ | $14 | $1.18 |
| Minnesota | 17.52¢ | $13 | $1.08 |
| Indiana | 17.51¢ | $13 | $1.08 |
| Virginia | 17.22¢ | $13 | $1.06 |
| Colorado | 17.13¢ | $13 | $1.06 |
| Alabama | 16.4¢ | $12 | $1.01 |
| Georgia | 16.36¢ | $12 | $1.01 |
| Oregon | 16.32¢ | $12 | $1.01 |
| Missouri | 16.22¢ | $12 | $1.00 |
| Texas | 15.94¢ | $12 | $0.98 |
| Iowa | 15.93¢ | $12 | $0.98 |
| Kansas | 15.71¢ | $12 | $0.97 |
| South Carolina | 15.55¢ | $12 | $0.96 |
| West Virginia | 15.45¢ | $11 | $0.95 |
| South Dakota | 15.36¢ | $11 | $0.95 |
| Wyoming | 15.24¢ | $11 | $0.94 |
| Arizona | 15.18¢ | $11 | $0.94 |
| Montana | 15.14¢ | $11 | $0.93 |
| Florida | 15.1¢ | $11 | $0.93 |
| New Mexico | 15.06¢ | $11 | $0.93 |
| Washington | 14.91¢ | $11 | $0.92 |
| Mississippi | 14.88¢ | $11 | $0.92 |
| North Carolina | 14.74¢ | $11 | $0.91 |
| Idaho | 14.37¢ | $11 | $0.89 |
| Oklahoma | 14.33¢ | $11 | $0.88 |
| Kentucky | 14.26¢ | $11 | $0.88 |
| Arkansas | 14.12¢ | $10 | $0.87 |
| North Dakota | 14.12¢ | $10 | $0.87 |
| Tennessee | 14.07¢ | $10 | $0.87 |
| Louisiana | 13.49¢ | $9.98 | $0.83 |
| Utah | 13.37¢ | $9.89 | $0.82 |
| Nebraska | 13.25¢ | $9.81 | $0.82 |
| Nevada | 13.11¢ | $9.70 | $0.81 |
Other EV charging costs
- EV charging (Level 1 wall socket)
$687 a year
The same 11,100 miles a year on a standard outlet, including about 15% charging loss.
- EV charging (Level 2 home)
$649 a year
11,100 miles a year at 3.5 miles per kWh on a 32 A charger, including about 10% charging loss.
- Golf cart charger
$133 a year
Charging a 48 V lead-acid pack after most days' use.
- Engine block heater
$110 a year
Plugged in overnight through a cold-climate winter.
- E-bike charger
$12 a year
Charging a 500 Wh battery from low most days through the riding season.
- Battery trickle charger
$6.93 a year
Maintaining a seasonal vehicle’s battery through the off-season.
Questions
How much electricity does an e-scooter charger use?
Is it expensive to run an e-scooter charger?
Why is your figure lower than other sites?
What is the cheapest way to run an e-scooter charger?
Source: U.S. Energy Information Administration, Electric Power Monthly, Table 5.6.A, June 2026. U.S. Government work, public domain.
How every figure on this page is computed · Where the data comes from