How Long Does a Tesla Battery Last? - Their Rated Lifetime Mileage

By Nuno Cristovao

Electric vehicles like Tesla replace the traditional combustion engine with electric motors and batteries.

Tesla's batteries are integrated into their chassis
Tesla's batteries are integrated into their chassis
TechCrunch

Since electric motors have just a fraction of the moving parts of a combustion engine, the maintenance for electric vehicles is almost non-existent when compared to traditional vehicles.

Electric motors are extremely reliable and last a long time. So when someone is considering a Tesla or another electric vehicle, a common question is how long do the batteries last.

Teslas have large battery packs that give them a longer range than most electric vehicles. A Tesla battery pack can range from 65 kWh up to 100 kWh, giving some Teslas as much as 375 miles of range.

Factors That Affect Battery Life

How long an electric vehicle battery lasts will vary. There are various factors that will affect the lifespan of a battery. These factors fall into one of two categories, those under an owner’s control and those that are outside of our control, such as battery aging.

Lets first discuss those factors that we are in control of. A well maintained and cared for battery will increase its lifespan.

Avoid Low and High-State of Charges

Lithium-ion batteries, which most Teslas use degrade faster when they are left at a very low state, or a very high state of charge for long periods of time. That means that an owner should avoid using the battery all the way down or charging it to 100% on a regular basis.

Most Teslas should also not be charged to 100% for everyday use. Charging a battery to 80 or 90% for day-to-day use will greatly increase the life of the battery. This doesn’t mean that you can’t charge the battery all the way to 100% occasionally. A good example of when you’d want to charge your battery all the way would be when going on a road trip. However, it should not be done on a regular basis.

The exception to this rule is electric cars with lithium iron phosphate batteries (LFP). LFP batteries use a different chemistry and are not affected by very low or high state of charges. Tesla currently uses LFP batteries in their standard range Model 3 and Model Y vehicles.

Tesla's feature thousands of small lithium-ion batteries
Tesla's feature thousands of small lithium-ion batteries
Electrek

Temperature and Climate

The temperature of a battery will also affect its battery life. There is a certain temperature range that a battery should stay within to prevent degradation.

The safe temperature range will vary based on whether the battery is being actively used.

This is one area where Tesla sets itself apart from the competition. Some EVs do not have thermal management systems for their batteries, letting the battery get as hot or cold as its environment.

This puts a great deal of stress on the battery and will cause degradation if the battery is left in cold or hot environments for prolonged periods.

Lithium-ion batteries will start to degrade when exposed to temperatures under 32°F or above 80°F.

Without a thermal system the power output of the car is also limited in order to prevent the battery from overheating.

Teslas have the best thermal management in any car. What this means for you is not only will the battery last much longer than in other EVs, but it will also allow the car to charge quicker and have higher performance.

Tesla battery management is fantastic and it is completely automatic. In fact, owners can’t even tell when their car is managing their battery’s temperature. It happens all automatically, while driving, charging or even while their car is sitting in a parking lot.

Reducing Fast Charging

Another factor that plays a role in battery life is extremely fast charging. Charging the battery at lower voltages is generally better for the battery than higher voltages.

Although the negative effects of fast charging are less severe than leaving your battery with a high state of charge, they should be limited if possible. We would recommend not using Tesla Superchargers as your main form of charging your Tesla.

Fast Discharging

In a similar manner in which fast charging routinely can decrease battery life, fast discharging on a daily basis will also have an affect on battery life.

Everyday driving with the occasional spirited drive is unlikely to have any affect on your car’s battery life. However, if a vehicle is raced on a track on a regular basis, it could lead to some negative effects.

Although fast charging or discharging can affect a battery’s lifespan, they are not major contributors.

Battery Aging

There are various other factors that will affect the lifespan of a Tesla battery pack. Factors that we won’t have any control over.

The biggest one of these factors is the age of the battery. The age of the chemicals inside of the battery will play a large role in determining the battery’s usable life.

Although lithium-ion batteries start to age the day they’re created, they can last up to 20 years.

Charge Cycles

Charging and discharging a battery is known as a charge cycle. Charge cycles are a large contributor to the lifespan of a battery. It’s why many batteries are rated by the number of charge cycles they can support.

One charge cycle is equivalent to using an amount of energy that is equal to 100% of the battery capacity.

For example, if you charged a battery to 100% and discharged it down to 50% twice, then that would be equivalent to one charge cycle.

Although Tesla doesn’t specify the exact number of charge cycles for their batteries, it is believed that they will last up to 1,500 charge cycles.

What Happens When a Battery Ages

As a battery ages and degrades, it will start to hold less of a charge. A battery that has degraded, may only hold 90% of its original capacity and that capacity will continue to drop as the battery continues to age.

Eventually, the battery will no longer have a practical use in the vehicle and will need to be replaced after many years.

It’s normal for a new Tesla to lose some capacity in its first year. We’ve seen degradation rates of up to 5%. However the battery degradation will generally stabilize after the first year and the degradation rate will drop.

Conclusion

There are many factors that go into how long a Tesla lithium-ion battery will last. Mindful owners can reduce battery degradation and increase their lifespan properly maintaining their battery.

Owners can let Tesla manage their battery state by leaving the vehicle plugged in and not charging their cars all the way to 100% on a daily basis, unless of course they have a LFP battery.

However, there are other factors that will also have a big part in how long a Tesla battery lasts.

Since there are many factors that go into how long a Tesla battery will last, the exact mileage someone gets out of a Tesla battery will vary.

Since we know that newer Tesla batteries have a lifespan of about 1,500 charge cycles, we can use that to estimate the battery's lifetime mileage.

Taking charge cycles and the car's EPA mileage into account, we estimate that the lower range Model 3's battery will last about 400,000 miles.

While at the higher end, the Model S has a 375 mile range according to the EPA, bringing the battery's lifetime mileage up to 560,000 miles.

In 2019, Elon Musk commented on the Model 3's battery longevity, saying that the Model 3 has a battery that should last 300,000 to 500,000 miles.

Although the car's battery may last only 300,000 miles, other parts of the car are designed to last much longer. The car’s body and drive unit are made to last one million miles. So even after the battery needs to be replaced, the car still has a lot of life left.

The average person in the US drives an average of 14,000 miles per year. If a Tesla battery only lasted 300,000 miles, it would still last approximately 21 years for the average driver.

Although Tesla is at the forefront of electric vehicles and battery development, work continues to find batteries that last longer, are cheaper to produce and have higher capacities.

Battery Warranty

All Teslas come with the typical new car warranty. However, Tesla offers a separate, longer, battery and drive unit warranty.

The exact battery warranty will vary slightly by model, but their terms are fairly similar. The warranties range from an 8 year or 100,000 mile warranty, all the way up to an 8 year or 150,000 mile warranty, whichever comes first.

The warranty is based on the battery holding a minimum of 70% of its capacity over the course of the 8 years.

Future

Battery technology has stayed stagnant for a long period of time. It’s only more recently that electronics and now electric vehicles are pushing for improved battery technology.

We’re likely to see tremendous improvements in battery technology over the coming years as companies figure out how to produce batteries with higher capacities and reduced weight.

Electric cars, boats and even planes will continue to push for improved battery technology.

Million Mile Battery

Tesla is currently developing higher capacity, structured battery packs that will decrease the weight of a vehicle, leading to better efficiency.

Tesla is developing their new structured battery packs
Tesla is developing their new structured battery packs
Electrek

One of Tesla’s goals with its new battery technology is to have a battery that will last one million miles.

Real World Battery Lifespan

Tesla released their first Model S in 2012, so there are now various Teslas with high mileage that give us a better idea of how long a Tesla battery will last in the real world.

Tesloop, a company that offers one-way Tesla rentals between major cities has several Teslas with high mileage. One of their vehicles racked up more than 400,000 miles, although the battery did need to be changed at 317,000 miles.

Another owner, Hansjörg Gemmingen has almost 900,000 miles on his 2013 Model S. His car has gone through two battery replacements during this time, but it’s a true testament to the longevity of Tesla’s batteries.

Keep in mind that these vehicles are 8 and 9 years old now and Tesla had only been creating cars for a few years when the vehicles were built.

Tesla has undoubtedly learned and improved their products since these early vehicles. We'd expect newer batteries to last even longer.

Tesla Update 2025.20 Tear Down Reveals Grok Personalities and Icons

By Karan Singh
@greentheonly on X

While most automakers are adding basic and un-integrated AI assistants to their vehicles, Tesla appears to be working hand-in-hand with xAI to build out an entire cast of characters for in-vehicle Grok. In the latest dive into Tesla’s firmware, Tesla hacker @greentheonly uncovered a few new details about the upcoming Grok feature.

This discovery, part of a larger batch of changes found in Tesla update 2025.20, also offers a hint at the hardware required for the Grok.

A Dozen Groks

While we knew from previous firmware teardowns that Tesla was adding various Grok personalities to the vehicle UI, this update introduces a new one called Language Tutor, which may allow users to learn and practice a new language. 

These are the different personas that will be included in Grok:

  • Argumentative

  • Assistant

  • Conspiracy

  • Doctor

  • Kids’ Stories

  • Kids’ Trivia Games

  • Meditation

  • Motivation

  • Romantic

  • Sexy

  • Storyteller

  • Therapist

  • Language Tutor

  • and the Grok Classic - Unhinged Mode

Release Date

Icons for these personalities have been added to the firmware for the first time, leading us to think Tesla is getting close to releasing the feature. However, even after the feature is developed and included in vehicle software, Tesla may only enable it selectively — such as for select employees for testing.

Grok is expected to be one of the largest vehicle features added via a software update, so it’ll be a big deal when it’s finally released. While we know more or less what to expect from Grok, what we don’t know is about vehicle requirements or whether it’ll require a subscription beyond Premium Connectivity.

Grok Requirements

While subscriptions required are anyone’s guess, vehicle requirements may be a little clearer now, thanks to Green’s discovery that Grok is only being added to AMD-based vehicle software builds.

Unfortunately, this likely means that older, Intel-based vehicles will not receive Grok support, at least for the time being. When Tesla introduced a voice assistant in China, they also started off with AMD-only support but later added Intel support, so it’s possible that the same could happen with Grok.

Energy Saving

Green also found a new undocumented navigation feature in 2025.20.3. This one focuses on leveraging Tesla’s vast amounts of data in an interesting way and offers drivers proactive advice to save energy on a well-traveled route. 

In the Energy App, your vehicle will display, “This route is typically driven at X mph. Slow down by Y mph to save Z% for the rest of this trip.’ 

As you can see in the photo below, Tesla recognizes that vehicles typically drive at 66 mph on the route being driven and offers the driver the option to go five mph slower to save 1% of range. While this example doesn’t provide much incentive to slow down, it could be useful for someone with a low state of charge or if the savings are more significant.

The new line in the Energy App
The new line in the Energy App
Not a Tesla App

In the future, Tesla could even use this, alongside the road surface data they’re gathering, to help plan routes for Robotaxi and Unsupervised FSD.

NHTSA to Streamline Approvals for Control-Free Vehicles Like Tesla’s Cybercab

By Karan Singh
Not a Tesla App

In a letter to industry, the National Highway Traffic Safety Administration (NHTSA) has announced that it is overhauling its approvals process for vehicles designed without human controls.

The change addresses a regulatory bottleneck that has slowed down American companies like Tesla from deploying purpose-built Robotaxis, rather than relying on using traditional vehicles with steering wheels and pedals. The policy shift is outlined in a letter posted to the NHTSA’s website, which you can find here.

Reducing Approvals From Years to Months

Under the existing rules today, any vehicle that is built without a steering wheel or brake pedals must receive a special exemption from federal safety standards.

Obtaining exemptions for a particular vehicle was a time-consuming process for both the companies requesting exemptions and the NHTSA. The process was often a black box—nobody knew when an exemption might be granted, and approvals could take years.

The NHTSA, under the new administration’s guidelines for autonomous vehicle development, is now committed to streamlining this process. The agency will be implementing a new, faster approach immediately for receiving exemptions for autonomous vehicles without standard controls. The NHTSA expects decisions on exemption requests to be determined within months rather than years. 

Accelerating the Cybercab

This change has massive implications for Tesla, which is banking on the production of the simplified and easy-to-maintain purpose-built Cybercab. The Cybercab is developed from the ground up as an autonomous Robotaxi and will be one of the key beneficiaries of this move by the NHTSA.

Knowing that a final design won't be caught in a multi-year regulatory limbo provides a level of certainty that has been missing. It allows Tesla to confidently plan the manufacturing, development, and deployment processes without worrying whether the project will get stuck in regulatory approvals.

According to the letter, the agency will publish its improved instructions for the streamlined process "shortly." With Tesla already having begun Cybercab pre-production and the goals for its deployment as soon as late 2026, there’s still a lot to be done to make autonomy a part of Tesla’s new sustainable abundance mission statement.

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