Lifestyle
Tales from a Tesla Model S with 450,000 miles: Battery life, durability, and more
The quality and durability of Tesla’s vehicles are not just talking points for fans of the all-electric car manufacturer – they’re traits that prove themselves time and again as a benefit of the ownership experience. In a recent example, a 2015 Tesla Model S that’s driven almost 450,000 miles shuttling passengers over long distances was shown to be still running strong and ready for more travel, according to a video overview posted by the founder of the company that owns it, Tesloop.
Tesloop is a connected mobility company for Tesla owners that’s currently developing an open-source mobile app called Carmiq. The company previously operated as a Tesla-only ride share service, offering trips between various cities in southern California and Las Vegas. The long distances involved in Tesloop’s operations put its Tesla fleet to incredible endurance tests, and aside from wear-and-tear seen in most vehicles with similar milage or less, the company’s experience with its 2015 Model S was very positive overall and it still drives well today.
“I think this is the only car that I can confidently say drives better today than it did three years ago and after 450,000 miles. And that’s due to the over-the-air software which has updated the car with Autopilot…The general driving feel of it is still really good…I think it would be very hard to tell this car has this many miles on it if you didn’t know,” Haynd Sonnad, founder of Tesloop, commented in the video.
Nicknamed “eHawk”, Tesloop’s Model S was built in June 2015 and has required a few repairs and major services during its lifetime. Some were paid for by Tesloop as part of its day-to-day business needs, such as tire replacement, and several others were paid for by Tesla under the car’s warranty, such as high voltage battery replacement.

A spreadsheet documenting all of the Model S’s service and maintenance experiences was published alongside its video overview for specific details. As listed, the most notable major events over the vehicle’s life time were the front drive unit replacement at 36,404 miles due to a part failure and two main battery replacements, one at 194,237 miles, the other at 324,044 miles. All three replacements were covered under the car’s 8-year, unlimited-mile warranty.
The first battery pack the Tesla Model S had experienced 1.2 miles of range lost per 10,000 miles while being driven about 17,000 miles per month and was replaced due to a battery chemistry issue. The second pack was losing about 4.7 miles every 10,000 miles driven, and its replacement was due to a defect in the battery assembly. The current battery is a 90 kWh pack and showing a loss of about 2.4 miles of range per 10,000 miles driven; however, about midway through the mileage, the car was transitioned from a long distance shuttle to a daily rental car, so the averages may not be a great reflection on its efficiency. At about 126,000 miles into the new pack, eHawk’s battery degradation is around 9%.
Also worth a mention are the brake pad and rotor replacements made for all the Model S’s wheels at 225,351 miles despite the average tire replacement taking place about every 53,000 miles from the long distances driven during regular use. The total owner cost for repairs after nearly 450,000 miles was listed as under $13,000, and general vehicle repairs came in at under $15,000.
During Tesla’s Autonomy Day investor event, CEO Elon Musk estimated that a new battery pack set to go into production next year would operate for one million miles with minimal maintenance, and the improvements are being driven by the company’s march towards its autonomous Tesla Network robo taxi service. Tesloop’s early adoption of Tesla’s vehicles may have meant the company’s most advanced technology wasn’t immediately available to take advantage of, but considering the results seen at 450,000 miles with an older variation, the quality and durability of Tesla vehicles have already proven themselves worth ownership at any stage of development.
To see Tesloop’s full overview of its 450,000-mile, 2015 Tesla Model S’s condition, watch the video below.
https://www.youtube.com/watch?v=rhbD44jXffY
Elon Musk
Elon Musk says he knows how to save Earth for a billion years
Elon Musk says sentient AI satellites launched from the Moon could keep Earth livable forever.
Elon Musk spent part of his weekend describing a plan to keep the planet livable for roughly a billion years, and it starts with satellites that can think for themselves.
In a post on X, Musk argued that swapping fossil fuels for solar and wind power will not be enough to protect humanity from what he called extremely severe extinction events, the kind that occur roughly every 100 million years. His fix is what he called sentient satellites, or solar-powered satellites, controlled by AI, that would sit in a fixed spot between Earth and the Sun after being launched off the Moon using a giant electromagnetic catapult instead of rockets.
The satellites’ onboard AI would make continuous, small adjustments rather than waiting on human instructions. The mass driver is Musk’s proposed way of getting the raw material there cheaply by using an electromagnetic launch track built on the Moon, where lower gravity and no atmosphere make it far easier to fling cargo into space than it is from Earth.
But we do need to act much faster than that if people still want to live where the beach is today. We have about 50 years or so to take action, which should be more than enough time for the space satellites to solve any heating problems. https://t.co/xhrVQALwQw
— Elon Musk (@elonmusk) August 30, 2026
Musk shared a Grok generated estimate suggesting roughly 5 percent of Florida’s land, or about 1.68 million acres, could face regular flooding by 2070 under a high sea level rise scenario, and said humanity has about 50 years to act before coastal living looks very different than it does today.
This is not the first time Musk has floated the idea. He raised a similar concept in November, describing a solar powered AI satellite constellation that could make tiny adjustments to incoming sunlight to fine tune Earth’s temperature. Musk has also tied planetary risk to his broader vision at SpaceX, where his compensation package is explicitly linked to establishing a self-sustaining Mars colony, one he has described as an insurance policy against the kind of extinction event he referenced this weekend, and where he has said humans could set foot within five to seven years.
Lifestyle
Police sergeant recounts his Neuralink journey with Elon Musk’s brain chip
A former Vancouver police sergeant with ALS accounts his journey to become a patient for Elon Musk’s Neuralink wireless brain-computer interface technology.
“I’m texting you from my brain right now.” That was the first message Lee Marten sent after waking up from Neuralink surgery, five hours and one migraine after dozens of threads were stitched into his motor cortex.
Marten, a former Vancouver police sergeant, is one of the first Canadian ALS patients to receive Neuralink’s N1 brain implant, and the 26th recipient overall. He tells his story in a first-person account published by Maclean’s.
Marten recounts how he was a healthy, athletic Vancouver police sergeant until April 2022 when symptoms of muscle twitching and balance loss, were followed by a bad fall that broke his leg. He would eventually be diagnosed with ALS in early 2025 at the age of 47. ALS, also known as Lou Gehrig’s disease, is a fatal neurodegenerative disease that progressively destroys the motor neurons controlling voluntary muscle movement, eventually taking away a patient’s ability to walk, speak, swallow and breathe. There’s no cure, and most patients live two to five years after diagnosis.
He describes the devastation of the diagnosis and how he began preparing for it while connecting with other young ALS patients through a WhatsApp group called Young Guns. Through that group he learned about a Neuralink clinical trial at Toronto Western Hospital and, after a roughly seven-month vetting process (physical assessments, psychiatric evaluation, a final interview with the Neuralink team), was accepted this past April as the trial’s 26th recipient and the first Canadian ALS patient to get the N1 implant. He recounts the May surgery in detail, including the robotic system that stitched 64 threads into his brain, and describes the app, Link, translating his neural signals into cursor control, which he was using within hours of waking up.
Marten walks through what daily use looks like, including weekly “brain training” exercises, a real-time neural-activity display, charging the implant via a beanie-mounted MagSafe charger, and using the implant for emailing, texting, social media, and gaming via a “Magic Box” that connects it to other devices. He also gives brief context on brain-computer interface history and quite candid about Musk, calling him “divisive” but saying he found him “easy to admire.
The piece closes on a heavier note, with Marten seeking to pursue medical assistance in dying as his symptoms progressed, noting that he’ll be able to communicate his final words to his family through Neuralink rather than facing a silent decline. He expresses hope the data from his case will help future ALS patients, even without a cure in his own lifetime.
Investor's Corner
Tesla Robotaxi gets a massive upgrade in Nevada
Nevada regulators just approved a massive expansion of Tesla’s robotaxi fleet across the entire county.
Tesla’s robotaxi footprint in Nevada just grew by roughly 500 times in a single regulatory vote.
The Nevada Transportation Authority approved Tesla’s full Autonomous Vehicle Network Company permit on Thursday, clearing the way for the company to deploy up to 5,000 driverless vehicles across Clark County over the next 12 months. The decision came during a four hour general session meeting that Tesla investor Sawyer Merritt watched live and reported on X, noting the vote replaces the interim order that had limited Tesla to just 10 robotaxis on a narrow stretch of the Las Vegas Strip.
EXCLUSIVE: Tesla has just officially received approval for its full Autonomous Vehicle Network Company permit in Nevada, clearing the way for Tesla to launch a paid public Robotaxi service in Las Vegas.
This officially allows @Tesla to deploy up to 5,000 robotaxis over the next… pic.twitter.com/DPs5UtUlrE
— Sawyer Merritt (@SawyerMerritt) August 20, 2026
That earlier cap, covered here after it surfaced on August 13, came with restrictions that looked stricter than what Tesla runs in Austin: a 45 mph speed ceiling, no airport pickups, and a geofence confined to the Strip corridor. The new approval extends Tesla’s operating authority to all of Clark County, with room to request an even wider geofence across the state.
Tesla representatives at the meeting said they have no intention of putting 5,000 cars on the road right away. Commercial rides are expected to start within 30 days, pending vehicle inspections, insurance filings, and fare approval, the standard steps every robotaxi operator in Nevada has had to clear.
Tesla’s own Robotaxi account replied to the news with a short line, The golden future is upon us.
The timing lines up with Tesla’s broader robotaxi push this month. The company is preparing to open Cybercab rides to the public in Austin as soon as this month, and it opened a sweepstakes for riders to win a seat at the launch event. Tesla filed its original application for a 5,000 vehicle Nevada fleet back in June, a request regulators trimmed to 10 vehicles when they issued the interim order in July. Thursday’s vote effectively grants the number Tesla asked for from the start.
Zoox, the Amazon owned robotaxi operator, has run in Nevada since 2025 and was capped at 100 vehicles before Thursday’s decision. Tesla’s new ceiling puts it well ahead of that comparison on paper, though the company has said its actual fleet size will depend on how quickly FSD v15 rolls out, the software update executives have called the gateway to scaling unsupervised robotaxi operations nationwide.