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Visualizing All Electric Car Models Available in the U.S.

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Graphic showcasing all electric car models available in the U.S.

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Visualizing All Electric Car Models Available in the U.S.

America’s electric vehicle (EV) market has surged over the last decade, and it’s only expected to grow further. The Biden administration has allocated billions towards the EV transition in the hopes that by 2030, electric cars make up 50% of all new cars sales in America.

Given the rising demand, what types of electric car models are available for U.S. consumers to choose from today?

This graphic, using data from Car and Driver and EPA, highlights every single EV that’s available for sale across America, showing the wide range of manufacturers, vehicle types, and prices.

What Electric Vehicles Are Available in America?

As of February 2022, there are 28 different electric vehicles available in the U.S., from 18 different manufacturers. Here are their base model statistics:

EV
Model (2022)
Price (MSRP)Max. HorsepowerCombined Fuel EconomyCombined Max. Range
GMC Hummer EV Pickup$110,2951,000N/AN/A
Audi e-tron GT$102,40046982 MPGe238 miles
Mercedes EQS$102,31032997 MPGe350 miles
Tesla Model X$98,940670102 MPGe348 miles
Tesla Model S$94,990670120 MPGe405 miles
Porsche Taycan$82,70032179 MPGe200 miles
Lucid Air Pure$77,400480N/A406 miles
Rivian R1S$72,500600+N/A260+ miles
Jaguar I-Pace*$69,90039476 MPGe234 miles
Rivian R1T$67,500600+70 MPGe260+ miles
Audi e-tron$65,90040278 MPGe222 miles
Volvo C40 Recharge$58,75040287 MPGe226 miles
Volvo XC40 Recharge$55,30040285 MPGe223 miles
Tesla Model Y Long Range$53,940480122 MPGe330 miles
Polestar 2$45,900231107 MPGe270 miles
Tesla Model 3$44,990283132 MPGe272 miles
Audi Q4 e-tron$43,90029595 MPGe241 miles
Ford Mustang Mach-E RWD$43,895266103 MPGe247 miles
Hyundai Ioniq 5$43,650168110 MPGe220 miles
Kia EV6$40,900167117 MPGe232 miles
Volkswagen ID.4*$40,76020199 MPGe260 miles
Kia Niro EV$39,990201112 MPGe239 miles
Hyundai Kona Electric$34,000201120 MPGe258 miles
Chevrolet Bolt EUV$33,500200115 MPGe247 miles
Mazda MX-30$33,47014392 MPGe100 miles
Chevrolet Bolt EV$31,500200120 MPGe259 miles
Mini Cooper SE$29,900181110 MPGe114 miles
Nissan Leaf$27,400147111 MPGe149 miles

As of February 2022. *Indicates EPA data on fuel economy and range was only available for 2021 models.

At less than $30,000, the Nissan Leaf and Mini Cooper SE are currently the most affordable options for Americans.

Released in 2010, the Nissan Leaf is one of the oldest EVs on the market. Widely considered a pioneer in the EV space, it’s one of the top-selling electric cars in the U.S.—in 2021, more than 14,000 cars were sold in America.

While the Leaf’s low price point may be appealing to many, it has the third shortest maximum range on the list at 149 miles before needing a recharge. The only other cars with shorter ranges were the Mini Cooper SE and the Mazda MX-30.

GMC’s Hummer EV pickup is the most expensive EV on the list, with a base price point of $110,295—however, GMC is planning to release less expensive versions of the Hummer EV over the coming years.

The only other EV pickup available in the U.S. market in early 2022 is Rivian’s R1T. However, more manufacturers like Ford and Chevrolet are planning to release their own EV pickups, and Tesla’s Cybertruck has been in the works for years.

And new EVs are quickly entering the market. For example, BMW’s all-electric i4 and iX have only recently become available for sale in the U.S.

The Top EV Manufacturers

There are a number of domestic and international manufacturers that sell EVs in America, including German manufacturer Audi, Swedish carmaker Volvo, and South Korean manufacturer Kia.

Here’s a breakdown of the 18 different manufacturers on the list, six of which are U.S. based:

ManufacturerCountry of HQ# EVs sold in the U.S.
Tesla🇺🇸 U.S.4
Audi🇩🇪 Germany3
Volvo🇸🇪 Sweden2
Rivian🇺🇸 U.S.2
Kia🇰🇷 South Korea2
Hyundai🇰🇷 South Korea2
Chevrolet🇺🇸 U.S.2
Volkswagen🇩🇪 Germany1
Porsche🇩🇪 Germany1
Polestar🇸🇪 Sweden1
Nissan🇯🇵 Japan1
Mini Cooper🇩🇪 German1
Mercedes🇩🇪 German1
Mazda🇯🇵 Japan1
Lucid🇺🇸 U.S.1
Jaguar🇬🇧 UK1
GMC🇺🇸 U.S.1
Ford🇺🇸 U.S.1

Tesla has the highest number of EV models on the market, with four different vehicles available: the Model S, Model X, Model Y, and the Model 3. It’s one of the few manufacturers on the list that exclusively makes electric cars—the only others being Rivian and Lucid.

While anticipation has been building around Tesla’s Cybertruck, and murmurs of a cheaper Tesla have been circulating, Tesla’ CEO Elon Musk has confirmed that there will be no new Tesla models released in 2022. The company will instead focus on its existing models for the time being.

Are U.S. Consumers Ready to Transition to Electric Cars?

It’s important to note that, while EV adoption in America has increased over the years, the U.S. is still lagging behind other countries. Between 2015 and 2020, America’s EV fleet grew at an annual rate of 28%, while China’s grew by 51%, and Europe increased by 41%.

Why are so many Americans dragging their feet when it comes to electric cars? According to a survey by Pew Research Center, the cost is a big barrier, as well as concerns over their reliability compared to gas vehicles.

But with gas prices at all-time highs, and as consumers grow increasingly concerned over the carbon costs of gas vehicles, switching to an electric car may soon be too hard to resist.

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The Carbon Footprint of Major Travel Methods

Going on a cruise ship and flying domestically are the most carbon-intensive travel methods.

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Bar chart showing the carbon footprint of major travel methods.

The Carbon Footprint of Major Travel Methods

This was originally posted on our Voronoi app. Download the app for free on iOS or Android and discover incredible data-driven charts from a variety of trusted sources.

Did you know that transport accounts for nearly one-quarter of global energy-related carbon dioxide (CO₂) emissions?

This graphic illustrates the carbon footprints of major travel methods measured in grams of carbon dioxide equivalent (CO₂e) emitted per person to travel one kilometer. This includes both CO₂ and other greenhouse gases.

Data is sourced from Our World in Data, the UK Government’s Department for Energy Security and Net Zero, and The International Council on Clean Transportation, as of December 2022.

These figures should be interpreted as approximations, rather than exact numbers. There are many variables at play that determine the actual carbon footprint in any individual case, including vehicle type or model, occupancy, energy mix, and even weather.

Cruise Ships are the Most Carbon-Intensive Travel Method

According to these estimates, taking a cruise ship, flying domestically, and driving alone are some of the most carbon-intensive travel methods.

Cruise ships typically use heavy fuel oil, which is high in carbon content. The average cruise ship weighs between 70,000 to 180,000 metric tons, meaning they require large engines to get moving.

These massive vessels must also generate power for onboard amenities such as lighting, air conditioning, and entertainment systems.

Short-haul flights are also considered carbon-intensive due to the significant amount of fuel consumed during initial takeoff and climbing altitude, relative to a lower amount of cruising.

Transportation methodCO₂ equivalent emissions per passenger km
Cruise Ship250
Short-haul flight (i.e. within a U.S. state or European country)246
Diesel car171
Gas car170
Medium-haul flight (i.e. international travel within Europe, or between U.S. states)151
Long-haul flight (over 3,700 km, about the distance from LA to NY)147
Motorbike113
Bus (average)96
Plug-in hybrid68
Electric car47
National rail35
Tram28
London Underground27
Ferry (foot passenger)19
Eurostar (International rail)4.5

Are EVs Greener?

Many experts agree that EVs produce a lower carbon footprint over time versus traditional internal combustion engine (ICE) vehicles.

However, the batteries in electric vehicles charge on the power that comes straight off the electrical grid—which in many places may be powered by fossil fuels. For that reason, the carbon footprint of an EV will depend largely on the blend of electricity sources used for charging.

There are also questions about how energy-intensive it is to build EVs compared to a comparable ICE vehicle.

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