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Electric Car Charging Cost in the UK: Home vs Rapid Charging

Updated 27 July 2026 · 12 min read

"EVs are cheaper to run" holds up in the UK, but the size of the gap depends heavily on where you charge. Between an off-peak home tariff and a motorway ultra-rapid charger, the cost per mile can vary by a factor of eight or more.

The right way to think about it is your charging mix. Home off-peak, home standard rate, public AC, off-motorway rapid DC, and motorway ultra-rapid DC don't weigh anywhere near equally in your annual budget.

Estimating your annual charging budget

Start with an annual ballpark: it mostly depends on your mileage and how much of your charging is cheap, slow, off-peak charging versus rapid/ultra-rapid charging.

Annual Energy Budget

Budgets rounded to £50, excluding charging losses or usage while parked.

mi/yr

Fuel price used for the petrol rows above; adjust it to what you actually pay — it's remembered for your next visits.

£/L

Mostly home charging

£350 – 900/yr

90% home / 10% highway DC

26 kWh/100mi · 2,500 kWh/yr

Realistic mixed use

£500 – 1,000/yr

70% home / 20% public AC / 10% highway DC

26 kWh/100mi · 2,500 kWh/yr

No home charging

£1,300 – 1,800/yr

60% public AC / 30% DC off-highway / 10% highway DC

26 kWh/100mi · 2,500 kWh/yr

Heavy highway driver

£1,200 – 1,700/yr

50% home / 50% highway DC

29 kWh/100mi · 2,700 kWh/yr

Reference petrol vehicle

£1,500/yr

36 MPG at £1.5/L

43 MPG · 980 L/yr

Reference petrol vehicle

60% highway

£1,700/yr

31 MPG at £1.5/L

38 MPG · 1,130 L/yr

The more your habits lean on rapid or ultra-rapid charging, the higher your energy budget climbs. The sections below break down the two variables behind these swings: consumption and the price per kWh.

Where it starts: consumption

To sharpen this budget, start from a realistic consumption figure rather than the WLTP combined number alone — WLTP is useful for comparing two models, but it often understates real-world cost on a motorway run or in cold weather.

Road typeReal-world consumptionWorth knowing
Urban roads20–30 mph16 – 26kWh/100miThe low end assumes an efficient vehicle; short trips in cold weather push it up fast.
A-roads40–50 mph19 – 27kWh/100miOften the most efficient zone for a well-shaped EV.
Dual carriageway50–60 mph23 – 32kWh/100miA reasonable middle ground; aerodynamic drag starts to matter here.
Motorway60–70 mph26 – 39kWh/100miThe low end assumes excellent aerodynamics; at the 70mph limit, expect closer to 32 kWh/100mi and up.
Motorway in winter60–70 mph31 – 48kWh/100miCabin heat, a cold battery, and denser air push up even efficient models; without a heat pump the gap is usually bigger.

The motorway is the most sensitive case: at the 70mph limit, the consumption gap between two models can reach 20% or more. Since rapid/ultra-rapid charging costs more than charging at home, a long motorway trip can easily create a £15–40 difference on the electricity bill alone. A more efficient model also cuts the time spent at rapid chargers, especially when the charger's real output power is limited.

Land's End to John o'Groats by EV: how many kWh?

For a local example, use the RAC's own routing of 837 miles via the A30, M5, M6, A74(M), M74, M73, M80, M9, A9, and A99 — the classic British end-to-end drive, at roughly 14 hours 30 minutes of driving time. See the RAC's Land's End to John o'Groats route for the full turn-by-turn breakdown; other route choices give slightly different totals.

Planning scenarios over 837 miles — energy used by the car before charging losses.
Speed and efficiencyConsumption assumptionOne-way (837 mi)
60 mph · efficient EV23 kWh/100mi193 kWh
60 mph · average EV27 kWh/100mi230 kWh
60 mph · high-consumption EV32 kWh/100mi270 kWh
70 mph · efficient EV27 kWh/100mi230 kWh
70 mph · average EV32 kWh/100mi270 kWh
70 mph · high-consumption EV38 kWh/100mi320 kWh
Cold-weather motorway stress test31 – 48 kWh/100mi260 – 400 kWh

The formula is 837 × consumption ÷ 100. In the average-EV scenario, moving from 60 to 70 mph adds about 42 kWh one way. At 70 mph, the gap between the efficient and high-consumption cases reaches 92 kWh. Double the figures for a round trip (1,674 miles), and always follow the posted speed limit — the A9's Perth–Inverness stretch is a 60mph single carriageway, not the 70mph you'll have run on most of the M-road legs further south.

The table shows energy used by the vehicle. With 8% charging losses, 270 kWh of driving consumption means roughly 290 kWh drawn from chargers. These are planning cases, not model-specific test results: weather, wind, rain, traffic, tyres, and payload all change the outcome.

What you pay per kWh, by charging location

Ranges reviewed 26 July 2026 — actual rates depend on your energy supplier, tariff, and the charging network's own pricing.
Charging locationIllustrative kWh priceCost per 100 miPetrol-equivalent (at £1.5/L)
Rooftop solar at home3 – 9 kW installed£0.05 – £0.15/kWh£1.29 – £3.926 kWh/100mi177 – 530 MPG
Home, off-peak EV tariff2.3 – 7.4 kW AC£0.05 – £0.09/kWh£1.29 – £2.326 kWh/100mi294 – 530 MPG
Home, standard tariff2.3 – 7.4 kW AC£0.24 – £0.28/kWh£6.1 – £7.226 kWh/100mi94 – 112 MPG
Public AC charge point7 – 22 kW AC£0.45 – £0.60/kWh£11.6 – £15.426 kWh/100mi44 – 59 MPG
Rapid charging, off-motorway50 – 150 kW DC£0.56 – £0.85/kWh£14.5 – £2226 kWh/100mi31 – 47 MPG
Motorway ultra-rapid charging150 – 350 kW DC£0.79 – £0.93/kWh£25 – £3032 kWh/100mi23 – 27 MPG

The math is simple: cost per 100 mi = consumption × price per kWh. The last column then translates that cost into the MPG a petrol car would need to match it, assuming petrol at £1.5/litre.

For comparison, a petrol car averaging 43 MPG costs about £15.7 per 100 mi. Home charging stays clearly cheaper; leaning heavily on motorway ultra-rapid charging brings an EV close to that same cost.

Ofgem's price cap sets the standard home-tariff figure used here (26.11p/kWh, 1 July–30 September 2026); off-peak EV tariffs such as Octopus Go or Intelligent Octopus Go can run well below that overnight. Public and motorway rates vary by network and membership — check the operator's app before you plug in.

The extra costs people forget

At home, installing a 7kW charger typically runs £800–£1,200 including installation — more if you need a consumer-unit or supply upgrade. The old EV Homecharge Scheme (EVHS) grant for homeowners with off-street parking closed in 2022; a narrower grant now covers renters and flat/leaseholders in some cases, plus a separate Workplace Charging Scheme for employers. Check current eligibility before assuming any grant applies to your own installation.

ItemBallparkEffect on the calculation
Charging losses5 – 10% between battery and meterCharger/cable losses plus the car staying awake during charging; more in winter.
Rapid-network membership/app£0 – £8/monthSubscription plans (e.g. IONITY, InstaVolt) usually undercut PAYG if you charge rapidly often.
Session / connection fees£0 – £1 per sessionBarely noticeable on a big charge, a real bite on small top-offs.
Idle / overstay feesBilled after your charge finishesBest avoided: they exist to free up busy rapid chargers, not to nickel-and-dime you.
Electrical supply capacitySometimes needs upgradingAn older consumer unit or limited supply can require an upgrade before a 7kW charger goes in.
Idle consumption (optional)0.2 – 2 kWh/h depending on useCabin preheating and climate control while parked add to the kWh drawn from the charger.

Sources and method

Data and rules checked 27 July 2026.

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This article is provided for informational and educational purposes. The amounts, rates, and incentives mentioned are indicative and change regularly: verify them with official sources before making any decision. It does not constitute financial advice.