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I took a Tesla Cybertruck weekend Demo Drive – Here’s what I learned
I had a Cybertruck for 48 hours thanks to Tesla, and here’s what I thought about it.
Tesla was kind enough to offer me a Cybertruck ‘Beast’ for an entire weekend after the company started offering 48-hour test drives of the vehicles across its lineup. I got a call from my local showroom asking if I would like to partake in a weekend of fun with perhaps the coolest truck around, and of course, I said yes.
It was a little different from past weekend Demo Drives in the sense that I picked up the Cybertruck in the morning on Saturday instead of the evening, when the showroom would be closed, and I would have to have it back at open time on Monday. I had my full Saturday with it; I took it for a round of golf, I took it to dinner with my Fiancè and parents, and it truly gave me a full-fledged feel of what it would be like to own one.
There were a lot of things I liked, and there were a handful of things I’d like to change. I’ll go through all of those in this article:
First Impressions
This was the second time I had ever driven Cybertruck, with the first being at early Demo Drives last August when I drove to West Chester, PA.
I picked it up at 10 am on Saturday morning, and the team at Tesla Mechanicsburg had me in and out in less than five minutes. I grabbed my paperwork and was on my way, and I took my best friend with me as he had never been in one. He was never a fan of the Cybertruck’s look, but could not deny the interior’s clean and minimalistic appearance.
This Cyberbeast was in terrific shape. I do wish the inside was vacuumed, the windshield was cleaned, and the wiper fluid reservoir was full, but these were all things I took care of myself after I got home. I would love to know how some Cybertruck owners clean their windshields, as I could get most, but not all. The bottom portion remained a tad smudged-up, but it was nothing unusual.
It was fun to pull into my local diner near my house, and about 45 minutes away from the Mechanicsburg showroom, to see all of the people nearby turn their heads just to get a look at this thing. Of course, I knew it would be soon that I’d get some middle fingers, but for now, it was all friendly. Smiles, waves, and fun. It was genuinely a fun experience.
My Weekend in the Cybertruck
First things first, I had an afternoon tee time with some buddies of mine who did not know that I was getting the Cybertruck for the weekend. They were all surprised to see it, to say the least!
They had never been inside one, and did mention that the interior was just plain awesome. The glass ceiling was among their favorite features of the Cybertruck, but conditioning the cabin to be nice and cool as we finished up on the 18th was awesome too. Their cars do start remotely, but do not feature adjustable climate settings.
This kept me cool on my entire ride home, and is something all Teslas feature. It’s among the best little additions, especially as the Summer months approach.
A reader and follower told me to throw my clubs in the frunk next time. I will do that.
After golf, it was time to pick my Fiancè up from the house and my parents as well, where we drove about an hour to Hampstead, Maryland, for a nice dinner to celebrate my better-half’s graduation from nursing school. My parents were truly blown away by the Model Y a few weekends ago, so this was what I was really looking forward to for them, because their reaction is genuinely so exciting.
My favorite thing about driving this truck was the positive reactions I got from many. I got a lot of waves, a lot of people wanting me to honk the horn, one of my neighbors even said, “Do you mind if I look inside of it?” I showed him all the cool features like the tonneau, the power frunk, and the size of everything.
Of course, I also had a handful of people who made their feelings about the car very apparent with a quick fling of the middle finger toward me as I drove by. I never understood flicking people off over a car: maybe how they drive, or maybe if they have a weird bumper sticker. I wasn’t around any of the middle finger-givers long enough for them to assess my driving, and the Cybertruck was void of any stickers or decals.
Oh well.
Sunday was a lengthy, 300-or-so-mile drive from my house to the Flight 93 National Memorial in Shanksville, PA. I try to go twice a year to pay my respects to the heroes, but I also saw it as a good time to test the range, experience Supercharging, see how the Cybertruck handled a longer day, and see how I felt in the car after the drive.
My first Supercharging stop was in Fort Littleton, PA, where v4 Supercharger stalls were placed in what was very obviously a small, rural, and predominantly blue-collar town. It was pretty fun to see a Supercharger in such a rural area. I had great speeds, as you can see, and we topped out at upwards of 330 kW.
It was nice to sit there and feel what charging would be like as opposed to driving a gas car and having a quick stop at a gas station. I’ll be honest: it’s not at all what a gas station experience is like, which is quick, painless, and easy. However, stopping for ~20 minutes to grab some mileage was also a nice break from the drive. It let me take a few minutes to wind down because the weather was awful, and driving in the rain is never super fun.
This was one of two charging stops, the other being in Breezewood, PA, using V3 Superchargers. This was a stop that was more congested than the Fort Littleton charger, but there was much more to offer, like a Dunkin Donuts, a pizza shop, and even a Starbucks down below. It was a quick stop, but the charging experience was very sound. I would say that if you are someone who wants to get from Point A to Point B as fast as possible, the charging experience might not be for you.
I tend to be one of those people, but I didn’t feel like it disrupted my drive or ruined anything. There was plenty to do, and it was 20 minutes maximum before I was back on the road and heading back to my destination, whether it was the Memorial or home.
Why I Didn’t Use Full Self-Driving
I didn’t use Full Self-Driving at all during my weekend with the Cybertruck. There are two reasons for this.
The first is that I know what FSD is capable of. I know it’s great, and I know I love it. This weekend was a very quick one, and my time with the car was limited. I wanted to have as much hands-on experience with the Steer-by-Wire and four-wheel steering as I could. I had an extremely fast and powerful vehicle that was faster than anything I’ve ever had the pleasure of driving. I wanted to have fun with it.
The second was that I genuinely LOVED driving the Cybertruck. I will admit, I think I am one of those people who is not in love with driving, so I was really happy to have a car that made me want to drive.
My Final Thoughts
Share this article so I can afford to buy one. Just kidding (or am I?).
It was genuinely one of my favorite weekends in recent memory. I really loved a lot about the truck. It was fast, it was fun to drive, and it is a high-tech car. It’s never fun going back to my car when I have to drop off whatever Tesla I have for the weekend back at the showroom.
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SpaceX readies Starship Flight 14 for a historic journey into uncharted territory
SpaceX finished Starship’s Flight 14 rehearsal, clearing the way for its first orbital flight Monday.
SpaceX has cleared one of the last hurdles before Starship’s first trip to orbit. The company posted on X Thursday afternoon that its launch rehearsal for Flight 14 was complete, keeping the mission on track for Monday, September 28. The launch window opens at 7:15 a.m. CT at Starbase, Texas, and runs for 75 minutes.
A wet dress rehearsal is essentially launch day without the launch. Crews fill Booster 21 and Ship 41 with thousands of tons of extremely cold propellant, run the countdown nearly to ignition, then drain everything back out. It lets engineers catch leaks or equipment problems before anything leaves the pad. SpaceX still needs a launch license from the FAA before the stack, which stands 407 feet tall, can fly.
Flight 14 matters because of where it is going. All 13 previous Starship flights followed a suborbital path, which works like throwing a ball extremely high and far: the vehicle reaches space, but it is always on a course that brings it back down within about an hour. This time, Ship 41 will perform a short engine firing called an orbital insertion burn roughly 25 minutes after liftoff, giving it enough speed to keep falling around Earth instead of back into it. SpaceX plans about six laps at an altitude near 275 kilometers (171 miles) over nearly 10 hours, as Teslarati detailed when the mission was first announced.
Launch rehearsal complete ahead of Starship Flight 14 pic.twitter.com/h5LBYyBqi4
— SpaceX (@SpaceX) September 24, 2026
Getting into orbit also means Starship has to prove it can get back out. The ship must relight a single Raptor engine in space to slow down for reentry. SpaceX says it will only attempt the orbital insertion burn after flight controllers confirm the hardware needed for that return burn has enough backup, and its flight plan includes health checks that could shorten the mission to two or five orbits.
Flight 14 is also the first to put working satellites into service. Flight 13 carried 20 Starlink V3 satellites in July, but they came back down with the ship because that mission never reached orbit. This time, 26 V3 satellites are meant to stay up and join the constellation within a few weeks. Together they add about 26 terabits per second of network capacity, which SpaceX says is roughly 10 times what a single Falcon 9 launch of older V2 Mini satellites adds. Three of them carry cameras that will photograph Starship’s heat shield in orbit to check for tile damage before reentry.
The hardware has changed too. Ship 41 flies with extra fasteners on tiles in the most vulnerable areas, fixes for gaps where superheated plasma slipped behind tiles, and curved tiles designed to reduce heating between them. Two tiles recovered from Ship 40 will fly again, the first reuse of any part of a Starship heat shield. Booster 21 carries better engine filtering and new relight software after ice clogged three center engines on the previous booster, leaving only eight of 13 engines to restart for its landing burn.
Ship 41 is targeting a splashdown in the Pacific Ocean west of Chile, a new recovery zone after several Indian Ocean landings, while Booster 21 aims for the Gulf. Neither will be caught by the tower on this flight. Elon Musk said in August that a ship catch was likely “in a few months.”
Elon Musk
Google just picked SpaceX for its first step into orbital AI
Google will launch its first Project Suncatcher AI satellite on SpaceX’s Transporter-18 rideshare next week.
Google is about to put its own AI chips into orbit for the first time, and it is paying SpaceX to get them there.
The company said Thursday that the first in-orbit test of Project Suncatcher, its research effort to find out whether space can host large-scale AI computing, will fly next week on SpaceX’s Transporter-18 rideshare mission.
The satellite, called MVP, is about the size of a refrigerator and carries four of Google’s Tensor Processing Units, the same chips Google runs in its ground data centers. Google originally planned to launch two custom satellites in 2027, but chose to move faster by integrating its chips into a satellite.
MVP’s solar panels supply about one kilowatt of power, and Google will run Gemini models on the TPUs only in bursts of roughly 15 minutes before the chips shut down so the radiators can shed heat. In a blog post, Google said its Trillium TPUs survived vibration testing that mimicked sustained launch loads of up to 10g, with individual components seeing 50 to 100g, and handled a radiation dose greater than a five year mission would deliver.
SpaceX and Google mull massive partnership on Musk’s orbital data dream: report
Next week’s flight, slated for October 1, follows a relationship that became public in May, when Teslarati reported that Google was in talks with SpaceX for a launch deal tied to orbital data centers. Google also holds a stake of roughly 6% in SpaceX.
The two companies are chasing the same idea from very different starting points. SpaceX’s own orbital compute program is built around the AI1 satellite, a roughly 70 meter structure derived from Starlink V3 hardware that is designed for 150 kW of peak compute, about 150 times the power MVP will draw. Elon Musk has brushed off concerns about crowding orbit with those satellites, and SpaceX is building its Gigasat factory in Bastrop, Texas, to produce them, targeting an annualized rate of about 1 GW of space compute by the end of 2027.
Musk also posted on X on Thursday that “the amount of compute in space will obviously round up to 100% of all compute.”
Google has been more cautious in public. Its research estimates that launch prices need to fall below about $200 per kilogram before an orbital data center can compete with a ground facility on energy cost, a threshold the company believes could be reached around the mid 2030s. The Suncatcher team has said it expects the effort to remain a project rather than a product for years, which leaves the first real test of its hardware riding on a rocket from the company with the most aggressive timeline in the field.
Elon Musk
Tesla Cybercab gets initial tie-in to localized, in-house cathode plant
Tesla has taken another concrete step toward owning its battery supply chain, and it’s doing so with what is perhaps the most important vehicle in its short-but-storied history.
On September 23, Tesla announced that it has officially built the first Cybercab with cathode material produced in-house at the company’s first cathode plant in the U.S., and the first in the U.S. overall.
First Cybercab made using our in-house cathode material – from the first cathode plant in the Americas pic.twitter.com/X95aVXsT9H
— Robotaxi (@robotaxi) September 23, 2026
Active cathode material is the most expensive piece of a lithium-ion battery cell, and it often accounts for more than a third of cell cost. For years, the industry sourced a majority of it from Asia, but Tesla’s decision to make it in the United States bodes well for the Cybercab project. This is the latest chapter in Tesla’s vertical integration strategy, which began in public at Battery Day in 2020.
At the Battery Day Event, Elon Musk said the company would build a North American cathode plant and overhaul the process to cut costs and waste, while also making some of the most powerful and long-lasting cells in the industry.
The Austin facility took years to appear. Tesla filed permits for “Project Cathode” in 2022 on land near Giga Texas. By mid-2022, the building frame was up and Tesla later invested hundreds of millions of dollars as part of a larger expansion of the Giga Texas plant. The company stated it was operating the first large-scale cathode production facility in North America to supplement 4680 cell production.
One month later, that material reached a finished Cybercab.
Made with nickel cathode manufactured locally at Gigafactory Texas! https://t.co/DqMm5fZV3n
— Elon Musk (@elonmusk) September 24, 2026
The timing of this breakthrough is monumental for the Cybercab program. As Tesla officially launched the first Cybercab rides to the public earlier this month, production of the ride-hailing-geared vehicle is moving forward on the planned S-curve that CEO Elon Musk told everyone to expect.
Nevertheless, packs of Cybercab units have been spotted throughout the United States, in an effort to potentially activate the fleet as soon as the company gains regulatory approval in various geographic areas.
On top of that, Tesla owning the cathode step and pairing it with its own in-house lithium from the Gulf Coast refinery shortens the supply chain that once stretched thousands of miles and subjects every pack to fewer external price shocks and geopolitical risks.
Tesla is not yet independent of all of its foreign suppliers, as some precursor metals come from mines and chemical plants. But the first in-house cathode Cybercab shows the company is closing the most expensive and most concentrated gap in its battery production efforts. For a vehicle like Cybercab to operate at a high utilization within the Robotaxi network, that control over cost is so crucial.
It is arguably as important as the software that drives it.