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Tesla Gigafactory 3 in China to finish initial construction in summer after groundbreaking event
Elon Musk has arrived in China for the groundbreaking ceremony of Gigafactory 3. Set to be built in Shanghai’s Lingang Industrial Zone, the upcoming facility is expected to produce both batteries and electric cars for the Chinese market. Vehicles that would be produced in Gigafactory 3 include the Model 3 sedan and the Model Y SUV.
Clues about Tesla’s Gigafactory 3 groundbreaking event emerged this weekend, ironically after Tesla’s critics shared information about the route of Elon Musk’s private airplane. By late Sunday (early Monday morning in China), invitations for the event emerged online. Tesla owner-enthusiast @vincent13031925, for one, shared an image of an invitation for the Gigafactory 3 groundbreaking event, forwarded by a Shanghai Tesla Owner’s Group member.
As could be seen in the event’s invitation, guests for the Gigafactory 3 groundbreaking event can check-in as early as 14:30 local time. The event itself is expected to begin around 15:00-15:30 local time.

On late Sunday US time, Elon Musk confirmed his presence in China, stating that he was looking forward to the Gigafactory 3 groundbreaking ceremony. Musk also provided some details on the project’s timeline, stating that Tesla is aiming to complete the facility’s initial construction this summer, followed by Model 3 production beginning at the end of the year. High-volume Model 3 production in Gigafactory 3 is expected to start sometime next year. In a follow-up tweet, Musk added that the Model 3 and Model Y produced in the facility would serve the greater China region.
Aiming to finish initial construction this summer, start Model 3 production end of year & reach high volume production next year
— Elon Musk (@elonmusk) January 7, 2019
Prior to Elon Musk’s arrival, Gigafactory 3’s site, an 864,885-square meter plot of land in Shanghai’s Lingang Industrial Zone, has already been seeing a lot of activity. Last month, for example, a perimeter fence around the massive site was completed, paving the way for more work to be done. Shanghai Mayor Ying Yong and Vice Mayor Wu Qing also met with Tesla and its construction partners to encourage them to expedite the buildout of the battery and electric car factory.
Earlier this month, documents were shared online pointing to Tesla acquiring a construction permit to start building facilities for Gigafactory 3. Granted by the Shanghai Municipal Government, the permit is good for two stages of construction and effective for 180 days, beginning on December 29, 2018. The contractor listed for the project was China Construction Third Engineering Bureau Co., Ltd., a subsidiary of China Construction, a government-owned construction firm.
Interest in Gigafactory 3 appears to be high among China’s upstart workers. During a job fair that Tesla held for the facility at the Lingang Industrial Zone, the company ended up overwhelmed with applications that it was forced to extend its hiring hours. Some applicants interviewed by local media even revealed that they were from faraway cities, and they traveled hours just to get an opportunity to apply for one of the open positions for the upcoming facility.
Stay tuned for more updates as we follow this developing story.
Getting ready for the Tesla China Shanghai Gigafactory groundbreaking ceremony today!! $TSLA #Tesla #China #GF3 #TeslaChina pic.twitter.com/BnZFvspdfS
— vincent (@vincent13031925) January 7, 2019
Update on 1:55 p.m., Monday local time (8:55 p.m. Sunday PST). Elon Musk appears to have arrived at Gigafactory 3’s location.
Update: Shanghai Tesla owners club member reports: Elon Musk just arrived Shanghai GF3 ground breaking ceremony location. $TSLA #Tesla #China #GF3 #TeslaChina pic.twitter.com/Fc2HG1iFvM
— vincent (@vincent13031925) January 7, 2019
News
Tesla crosses major Unsupervised Self-Driving milestone
Tesla has reached a notable benchmark in its autonomous driving program after its Robotaxi fleet surpassed one million miles of unsupervised operation. The company made the announcement during its Cybercab event in Austin on September 3.
Tesla Vice President of AI Ashok Elluswamy told attendees he was happy to report the fleet had achieved one million miles of unsupervised Robotaxi operation as a testament to safety.
The new total marked a sharp increase from the 380,000 unsupervised miles Tesla disclosed during its second-quarter 2026 earnings update in late July.
In roughly six weeks, the company added about 620,000 miles. That acceleration followed Tesla’s decision to remove in-vehicle safety monitors from most of its operations outside the San Francisco Bay Area.

Credit: Tesla
Tesla first launched Robotaxi service in Austin in June 2025 with safety drivers present. It later began fully unsupervised rides and expanded into Dallas, Houston, Miami, Orlando, and Tampa. The San Francisco Bay Area remains the exception, where a safety monitor still rides in the vehicle under California permitting rules.
The company has not released a city-by-city breakdown of the one million unsupervised miles.
The milestone arrived as Tesla began offering public Cybercab rides in Austin. The purpose-built vehicle has no steering wheel or pedals and is designed only for autonomous ride-hailing. Production versions joined the existing fleet of modified Tesla vehicles already operating in the service.
Tesla’s unsupervised mileage is growing at a double-digit weekly rate according to earlier company comments, yet its fleet size remains modest compared with established competitors. Waymo has accumulated more than 200 million fully autonomous rider-only miles. Tesla has described its own unsupervised operations as having recorded zero notable incidents in the period leading up to the July update.
The one-million-mile figure reflects Tesla’s shift from supervised testing to broader driverless service in multiple states. It also highlights the company’s strategy of using both existing Model Y vehicles and the new Cybercab to scale its network.

Credit: Tesla
Whether the rapid recent growth continues will depend on further city expansions, regulatory approvals, and the performance of the purpose-built Cybercab in everyday paid rides. Tesla has not specified how many of the latest miles involved the new vehicle versus the rest of the fleet.
The announcement underscores Tesla’s progress toward a larger robotaxi network while illustrating the remaining gap in total autonomous experience relative to longer-operating rivals.
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Tesla Robotaxi will be a 24/7 service: here’s when
Tesla AI lead Ashok Elluswamy said this week that 24-hour Robotaxi service is close. Replying on X to a rider who wanted Cybercab trips all night, he wrote that the capability would arrive “next month or so” once “the next tech to merge on the v15 plan” is ready.
The comment landed on September 4, one day after Tesla opened public Cybercab rides in Austin. It is the clearest near-term timeline yet for overnight unsupervised operation. Tesla’s paid Robotaxi network currently runs from 6 a.m. to 10 p.m. seven days a week across Austin, Dallas, Houston, Miami, Orlando, and Tampa.
next month or so. the next tech to merge on the v15 plan will enable it.
— Ashok Elluswamy (@aelluswamy) September 4, 2026
That 16-hour window is shorter than the 6 a.m. to 2 a.m. schedule the company used for much of the prior year.
Elluswamy did not name the specific feature or say whether the change would apply first to purpose-built Cybercabs, the existing Model Y fleet, or both. He also offered no city-by-city rollout list. The link to Full Self-Driving v15 is nevertheless significant.
Tesla has described v15 as a step-change architecture with seven parallel improvement tracks and roughly ten times more parameters than earlier builds. Early versions of that software already operate on the Robotaxi fleet and contain about 40 percent of the planned gains.
By July 2026, the unsupervised fleet had logged more than 380,000 miles across six cities in two states with what the company called an impeccable safety record and no notable incidents caused by the vehicles themselves. Tesla has repeatedly argued that camera-based end-to-end neural networks, rather than extra sensors, are the core of the solution.
Overnight service would test that claim in lower-light conditions and would also raise vehicle utilization, a key variable for Robotaxi unit economics. The company has already begun using public Superchargers at night and is building dedicated Robotaxi charging sites.
Riders have asked why software must change if the cars already drive in the dark. The practical answer appears to be reliability and scale: Tesla has held back mass expansion until more of the v15 stack is merged, citing the need for higher confidence before putting thousands of unoccupied vehicles on streets around the clock.
If the next module arrives on the timetable Elluswamy sketched, 24-hour service could begin in October 2026 in at least some markets.
That would mark a shift from a daytime-bounded pilot to a service that can run whenever demand exists, including the late-night hours that have so far remained out of reach.
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Tesla Full Self-Driving will now overtake manual driving to avoid disaster
Tesla is beginning to roll out Full Self-Driving Supervised v14.3.9 with a new active safety layer that can take control even when the driver is operating the car manually.
Tesla AI said the software can activate FSD on the driver’s behalf when an imminent collision is detected and Automatic Emergency Braking may not be enough. It may also engage if the system detects heavy distraction or an accidental FSD disengagement.
FSD Supervised v14.3.9 starting to roll out shortly
This release includes a new active safety feature set: FSD Supervised can now activate on your behalf when an imminent collision is detected and Automatic Emergency Braking (AEB) may not be enough.
It may also engage if we…
— Tesla AI (@Tesla_AI) September 4, 2026
The capability is essentially Automatic Collision Evasion. However, unlike conventional AEB, which mainly applies the brakes in a straight line, this feature can use steering, braking, and acceleration together if the car calculates that stopping alone will not prevent impact and a safer path exists. The system may change lanes or move toward a shoulder when conditions allow, then continue driving after the immediate threat is handled rather than simply coming to a stop.
The intervention is meant as a last-resort safety net, not a replacement for attentive driving.
Tesla Full Self-Driving v14.3.7 early review: FSD saved me from an accident
Tesla’s own description still frames FSD as supervised assistance. Secondary reports on internal release notes say the feature can fire while the car is being driven manually if cabin-camera monitoring suggests the driver is not sufficiently attentive, such as reaching toward the back seat, or if FSD appears to have been turned off unintentionally.
After the emergency maneuver, the car is expected to alert the driver and request a return to manual control.
The safety case is straightforward. Many collisions happen in the last second because a driver is looking away, fumbles a control, or faces an obstacle that braking cannot fully solve. A system that can both recognize that AEB is insufficient and execute a coordinated evasive path can reduce those remaining high-severity events.
Re-engaging after accidental disengagement also addresses a practical failure mode: a small steering nudge that drops FSD at the worst moment. The advantage is a background safety net that uses the same vision stack already running in v14, instead of leaving the car solely to emergency braking once the driver is no longer in command.
The feature still depends on FSD being enabled and, according to reports, an active FSD purchase or subscription. It does not make the vehicle unsupervised. Drivers remain responsible, and Tesla has not published how often the system is expected to intervene or how it will handle false positives.
If the rollout is conservative and the false-alarm rate stays low, the update is a meaningful step: FSD is no longer only a feature the driver turns on. In the rare moments when disaster is already forming, it can step in.