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Tesla Model S P85D Destroys Ferrari in Street Race

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“What you got in there?” is heard from the Ferrari in the next lane over. Looking over is the driver of a Ferrari 575 Maranello unaware that he has just pulled up to a rare sighting of one of the first Tesla Model S P85Ds to hit American soil. “691hp” says Allen Wong, a young entrepreneur in his 20’s who made his fortune through a series of successful iOS apps.

Allen, who incidentally drives a Lamborghini Aventador as his other daily driver, has just agreed to an impromptu test of acceleration with the neighboring 12 cylinder Ferrari. “Yo yo, go!” is heard as the ubiquitous vocal cue to signal  for a drag race.

Not to much surprise, the 691HP dual-motor Tesla Model S P85D raged with as much ferocity off the line as any Tesla does. It’s Ozzy Osbourne ripping the head off of a live bat. The P85D has just made minced horse meat out of the legendary brand.

Allen describes the acceleration of the P85D as “the border between fun and frightening”. According to Allen’s Facebook page,

I got a chance to drag race a 691-hp Tesla Model S P85D against a Ferrari and a Lamborghini today, and this is what it felt like…

 

First impressions: The acceleration is ridiculous. I daily drive an Aventador, and I thought I got used to fast accelerations. But no, the Tesla Model S P85D hauled some serious ass. As a passenger, you do not get a chance to get ready for it at all. My internal organs were glued to the back of my body. I’ve done the P85+ test drive before, and it was already pretty fast. But this P85D is on a whole other level.

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We pitted the car’s acceleration against other cars. It pretty much beat everything at the car show (Ferraris and R8s didn’t stand a chance). So I had to pit it against my Aventador, which does 0-60 in 2.8-2.9 seconds. Tesla P85D does it in 3.1-3.2 seconds. Right off the bat, the Tesla got ahead. It gets a good maybe half a car length ahead before the Aventador grips fully and starts hauling. So we decided to make it fairer and only accelerate the Tesla when the Aventador grips and starts moving. That’s when we truly got both cars to start moving at roughly the same time.

 

Drag Race Results (Note: This was completely casual and not in anyway in ideal, scientific conditions – the Aventador was not doing launch control): The Tesla pulled ahead in the beginning by about the hood length. But Tesla never got a chance to pull away. Instead, the Aventador kept up and was slowly cutting the difference between them with each gear shift. By the 50-60 mph, the Aventador caught up. By the 85 mph mark, the Aventador was half a car length ahead and the Tesla was only at 70-75 mph. So from around 0-60, the Aventador and Tesla P85D were pretty much neck and neck. But from 0-30 or so… the Tesla beat the Aventador. This gives you a general idea of how ridiculously fast the P85D is at the jump.

 

More observation: It feels different as a driver. Since I can anticipate the acceleration, I don’t get the same scare/thrill that I get as a passenger. It’s to a point where I actually enjoyed being a passenger rather than a driver. But after about a dozen of those 0-60 accelerations, I felt like I had to puke – probably the first time I felt this way in many years. It was a different feeling than what I got from an internal combustion engine car, because when you hear the engine roar, you can kind of anticipate the acceleration that comes after it. But since the Tesla is silent, there’s no warning. I think I almost got a concussion from my head suddenly banging into the headrest because of how little anticipation the car gives you. At one point I was in mid-sentence when my driver floored it, and I had trouble getting the words out of my mouth. It really takes your breath away (literally). The acceleration is at the border between fun and frightening.

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Gene has been obsessed with cars since before he could legally sit in the front seat. Writer, researcher, unofficial CS support, accountant, native suit guy when needed, and overall stick poker. He approaches every story the way he approaches a road trip: with too much enthusiasm, not enough planning, and a surprisingly good outcome. gene@teslarati.com

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Elon Musk

Elon Musk drops a surprise update on Boring Company’s next big dig

Musk says Boring Company could shrink the Austin to San Antonio drive to just minutes.

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Elon Musk says The Boring Company is working on what he called “a simple, precursor Hyperloop” tunnel connecting Austin and San Antonio, targeting speeds above 200 mph and cutting a drive that can take up to two and a half hours down to a consistent under 30 minutes. Musk posted the idea on X Sunday, in a reply to a repost of an AI generated video imagining a science fiction future with human colonies on other worlds, which he shared with the line “This is the future we shall bring into being.”


The Boring Company’s own account picked up the idea in the same thread, adding a detail about how the trip would actually work: “Because Loop/Hyperloop is express (i.e. no intermediate stops), one could travel from an Austin parking lot to a favorite San Antonio restaurant in about 30 minutes. As long as they both have Loop stations.” That framing ties the proposed intercity link to the same station model the company already runs in Las Vegas, where riders enter the tunnel network through small, garage style stops rather than one central terminal.

This is not the company’s first run at the Austin to San Antonio corridor. Boring Company floated tunnels between the two cities as far back as 2021, and later competed for a separate San Antonio Loop project tied to the airport before that specific bid stalled. Pitches for tunnels in Chicago, Los Angeles, and a New York to Washington corridor have followed a similar pattern of big announcement without a shovel in the ground.

What is different this time is the balance sheet, especially since The Boring Company closed a 3 billion dollar funding round led by investors in the United Arab Emirates earlier this month at a valuation near 23 billion dollars, giving the tunneling company more capital to chase speculative projects than it had during its earlier Texas pitches. The company is also mid-build on two other intercity systems it has actually broken ground on, inc;luding a Nashville tunnel linking downtown to the airport, where a second boring machine finished commissioning in June, and its Las Vegas network, where the station count keeps climbing on paper faster than tunnels get dug.

That gap between announcement and execution is the reason to treat Sunday’s post as an opening bid rather than a project. A tunnel spanning roughly 80 miles between two metro areas, running at speeds Boring Company has not demonstrated over any real distance, would dwarf anything the company has built. For now, the Austin to San Antonio Hyperloop exists as a caption under an AI generated space video.

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Tesla eyes supply partners for Optimus mass production

Tesla certified three Chinese suppliers for Optimus mass production, signaling its robot timeline is accelerating.

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Concept rendering of Tesla Optimus in mass production

Tesla’s robotics team traveled to Ningbo, in China’s Zhejiang province, on September 16 and spent the following day auditing component suppliers for Optimus, according to a Bloomberg report cited by RobotAIGeek. The visit moved three manufacturers from provisional status to certified mass production partners: Tuopu Group, which handles actuators and chassis components, Ningbo Joyson Electronic, a sensor supplier, and Zhejiang Sanhua Intelligent Controls, which builds thermal management systems. All three already supply parts to Tesla’s electric vehicles, and the audit reportedly came with fresh orders that supply chain reports put at an initial batch of roughly 5,000 units.

Tuopu, Joyson, and Sanhua built their manufacturing base serving the automotive industry, where tolerances and volume requirements are already close to what a mass produced humanoid robot demands. Sanhua in particular has history here. Teslarati reported last October that the company had received a roughly $685 million order for linear actuators tied to Optimus, a volume industry watchers estimated could cover around 180,000 robots once production ramped.

Supply chain reports tied to this week’s audit put Tesla’s near term production goal at about 1,000 Optimus units a week by late September, rising to 2,000 to 2,500 units a week by the end of the year. That pace would put real weight behind the timeline Tesla has been building toward since May, when it wound down Model S and Model X production at Fremont to convert that floor space into a dedicated Optimus line targeting one million units annually. JPMorgan analysts who toured the factory in August confirmed the conversion took roughly four months, a pace Musk has called unprecedented for a facility that size.

New drone video shows Tesla’s Optimus Factory reaching a turning point

Fremont is only the first phase. A second, larger Optimus plant is rising at Gigafactory Texas, where drone footage shared by Joe Tegtmeyer last week showed the structural steel nearing completion on the north end of the building. Tesla has said that facility is meant to eventually support production of up to 10 million units a year, though volume output there is not expected before 2027.

Commercial sales of Optimus are still targeted for the second half of 2027, but production is expected to start well before then. JPMorgan analyst Rajat Gupta has said Tesla’s “Optimus Academy” program, which uses early units to collect real world training data inside Tesla’s own facilities, is expected to be running later this year. Bloomberg Intelligence analyst Ian Ma described the Ningbo audits as “a positive commercialization signal for China’s humanoid supply chain,” noting that sentiment could improve further if the visit leads to confirmed supplier nominations and larger orders. The Solactive China Humanoid Robotics Index rose about 1.4% on the news, though it remains down roughly 30% for the year.

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Tesla primes Cybercabs for 4K streaming and high bandwidth gaming with Starlink integration

Tesla is now shipping Cybercabs from Giga Texas with Starlink hardware built in as standard.

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tesla cybercab with no manual controls showing a movie with two employees inside

Tesla’s Cybercabs are now leaving Gigafactory Texas with Starlink hardware on the rear hatch in significant numbers, according to drone footage captured Tuesday by longtime Austin drone observer Joe Tegtmeyer. Production at the factory ramped back up after the Labor Day weekend, and his flyover of the outbound lot showed rows of gold Cybercabs alongside Model Y Long Wheelbase units, many carrying the satellite module for the first time as standard equipment rather than a one off retrofit.

Tesla first showed Starlink built into an actual Cybercab on August 10, when the Robotaxi account posted images of a single gold unit with the antenna integrated into the roofline above the taillights and called it the first Cybercab with Starlink integration. That followed a July reveal where Tesla and Starlink jointly posted a cutaway diagram of the antenna placement without a working vehicle to back it up. Ashok Elluswamy, Tesla’s VP of AI software, said at the time that the connection isn’t required for the car to drive itself. It exists mainly for navigation, customer service and keeping tabs on the fleet.

Musk has made a different case in public. During Tesla’s Q2 earnings call, he said the company can’t afford robotaxis stranded in what he called “Bermuda Triangles of lack of cellular connectivity,” and he separately claimed on X that Starlink will eventually reach every Tesla built, calling it the only way to deliver high bandwidth to billions of vehicles. He has also pitched the antenna as an entertainment upgrade, telling riders they would be able to stream 4K video or play games during a trip.

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The rollout has moved fast since. Robotaxi service opened to the public in Austin on September 3, and Cybercabs had already been spotted with Starlink hardware in Houston and near Miami International Airport in the weeks before Tuesday’s factory footage showed the module shipping at volume rather than on scattered test units. Whether the satellite link earns its keep is still an open question. Tesla’s unsupervised service currently runs in dense metro geofences in Texas and Florida, markets where cellular coverage is already strong, which is not where the rural dead zones Musk describes tend to show up.

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