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Tesla Cybertruck futuristic aero wheel makes debut in Los Angeles unveiling event on Nov. 21, 2019 (Photo: Teslarati) Tesla Cybertruck futuristic aero wheel makes debut in Los Angeles unveiling event on Nov. 21, 2019 (Photo: Teslarati)

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Tesla Cybertruck poised to start trial production runs in Giga Texas in May 2021

Tesla Cybertruck futuristic aero wheel makes debut in Los Angeles unveiling event on Nov. 21, 2019 (Photo: Teslarati)

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Tesla’s Gigafactory Texas is being built in an incredibly rapid manner, seemingly matching or perhaps even exceeding the pace of Gigafactory Berlin, which is looking to start Model Y production next year. If a recent presentation from Tesla is any indication, it appears that the expedited activities in the Giga Texas complex are intended, as the company seems to be looking to start the Cybertruck’s trial production as early as May 2021. 

Tesla recently presented its “Travis County Colorado River Project Partner Pre‐Qualification Presentation,” which included a rough timeframe for the upcoming Cybertruck and Semi factory. The presentation, which was posted on the website of the City of Austin and shared by Tesla Motors Club member hridge20, revealed that Giga Texas’ “First Dry-In” is set for December 30, 2020, and its “First Substantial Completion” is scheduled for May 1, 2021. 

As noted in an Inspectapedia post, “dry-in” typically means that a building’s shell has been completed to a sufficient degree, allowing the facility and its interior to avoid damage from rain, wind, and other weather-related factors. At the dry-in stage, the installation of weather-sensitive materials and equipment could commence, which, in Tesla’s case, may refer to the Cybertruck’s production equipment. 

Tesla’s Texas Gigafactory progress as of August 16, 2020 (Credit: Joe Tegtmeyer/YouTube)

“First Substantial Completion,” on the other hand, refers to the stage when a construction project is completed to a degree where it could be used for its intended purpose. With this in mind, it appears that Tesla is looking to have the installation of the Cybertruck’s production equipment done by May, allowing the company to start trial runs of the all-electric pickup truck before the end of the second quarter of 2021. 

Granted, this is a very aggressive target. However, the equipment for the Cybertruck’s production line may require less time to set up compared to the Model 3 and Model Y line in Fremont and Shanghai, since the vehicle will use no stamping machines due to its XY design. The Cybertruck will not need a paint shop either, thanks to its steel exoskeleton. 

If Tesla’s recent presentation proves accurate, the company could definitely be on pace to hit its self-imposed target for the start of Cybertruck deliveries. Currently, Tesla estimates that Cybertruck deliveries could begin in late 2021, with the Tri-Motor AWD and Dual-Motor AWD variants being rolled out first. The base Cybertruck, which will cost less than $40,000, is expected to be rolled out the following year. 

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Considering the targets outlined in Tesla’s recent Travis County presentation and the Cybertruck’s estimated delivery dates, it appears that the electric car maker is actually adopting a pretty conservative rollout target for the all-electric pickup. If trial production could begin in May 2021, after all, Tesla will have the rest of the year to refine and release the Cybertruck. Starting trial production in the second quarter of 2021 also allows the company to gain some momentum in the EV market, which could be strategic considering that the first all-electric pickup, the Rivian R1T, is poised to start deliveries in June 2021. 

Tesla’s “Travis County Colorado River Project Partner Pre‐Qualification Presentation” could be accessed below. 

Tesla Partner Prequalification Presentation- August 27 2020 by Simon Alvarez on Scribd

Simon is an experienced automotive reporter with a passion for electric cars and clean energy. Fascinated by the world envisioned by Elon Musk, he hopes to make it to Mars (at least as a tourist) someday. For stories or tips--or even to just say a simple hello--send a message to his email, simon@teslarati.com or his handle on X, @ResidentSponge.

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Elon Musk

Elon Musk’s xAI brings 1GW Colossus 2 AI training cluster online

Elon Musk shared his update in a recent post on social media platform X.

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Credit: xAI

xAI has brought its Colossus 2 supercomputer online, making it the first gigawatt-scale AI training cluster in the world, and it’s about to get even bigger in a few months.

Elon Musk shared his update in a recent post on social media platform X.

Colossus 2 goes live

The Colossus 2 supercomputer, together with its predecessor, Colossus 1, are used by xAI to primarily train and refine the company’s Grok large language model. In a post on X, Musk stated that Colossus 2 is already operational, making it the first gigawatt training cluster in the world. 

But what’s even more remarkable is that it would be upgraded to 1.5 GW of power in April. Even in its current iteration, however, the Colossus 2 supercomputer already exceeds the peak demand of San Francisco.  

Commentary from users of the social media platform highlighted the speed of execution behind the project. Colossus 1 went from site preparation to full operation in 122 days, while Colossus 2 went live by crossing the 1-GW barrier and is targeting a total capacity of roughly 2 GW. This far exceeds the speed of xAI’s primary rivals.

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Funding fuels rapid expansion

xAI’s Colossus 2 launch follows xAI’s recently closed, upsized $20 billion Series E funding round, which exceeded its initial $15 billion target. The company said the capital will be used to accelerate infrastructure scaling and AI product development.

The round attracted a broad group of investors, including Valor Equity Partners, Stepstone Group, Fidelity Management & Research Company, Qatar Investment Authority, MGX, and Baron Capital Group. Strategic partners NVIDIA and Cisco also continued their support, helping xAI build what it describes as the world’s largest GPU clusters.

xAI said the funding will accelerate its infrastructure buildout, enable rapid deployment of AI products to billions of users, and support research tied to its mission of understanding the universe. The company noted that its Colossus 1 and 2 systems now represent more than one million H100 GPU equivalents, alongside recent releases including the Grok 4 series, Grok Voice, and Grok Imagine. Training is also already underway for its next flagship model, Grok 5.

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Tesla AI5 chip nears completion, Elon Musk teases 9-month development cadence

The Tesla CEO shared his recent insights in a post on social media platform X.

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Credit: Tesla

Tesla’s next-generation AI5 chip is nearly complete, and work on its successor is already underway, as per a recent update from Elon Musk. 

The Tesla CEO shared his recent insights in a post on social media platform X.

Musk details AI chip roadmap

In his post, Elon Musk stated that Tesla’s AI5 chip design is “almost done,” while AI6 has already entered early development. Musk added that Tesla plans to continue iterating rapidly, with AI7, AI8, AI9, and future generations targeting a nine-month design cycle. 

He also noted that Tesla’s in-house chips could become the highest-volume AI processors in the world. Musk framed his update as a recruiting message, encouraging engineers to join Tesla’s AI and chip development teams.

Tesla community member Herbert Ong highlighted the strategic importance of the timeline, noting that faster chip cycles enable quicker learning, faster iteration, and a compounding advantage in AI and autonomy that becomes increasingly difficult for competitors to close.

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AI5 manufacturing takes shape

Musk’s comments align with earlier reporting on AI5’s production plans. In December, it was reported that Samsung is preparing to manufacture Tesla’s AI5 chip, accelerating hiring for experienced engineers to support U.S. production and address complex foundry challenges.

Samsung is one of two suppliers selected for AI5, alongside TSMC. The companies are expected to produce different versions of the AI5 chip, with TSMC reportedly using a 3nm process and Samsung using a 2nm process.

Musk has previously stated that while different foundries translate chip designs into physical silicon in different ways, the goal is for both versions of the Tesla AI5 chip to operate identically. AI5 will succeed Tesla’s current AI4 hardware, formerly known as Hardware 4, and is expected to support the company’s Full Self-Driving system as well as other AI-driven efforts, including Optimus.

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Tesla Model Y and Model 3 named safest vehicles tested by ANCAP in 2025

According to ANCAP in a press release, the Tesla Model Y achieved the highest overall weighted score of any vehicle assessed in 2025.

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Credit: ANCAP

The Tesla Model Y recorded the highest overall safety score of any vehicle tested by ANCAP in 2025. The Tesla Model 3 also delivered strong results, reinforcing the automaker’s safety leadership in Australia and New Zealand.

According to ANCAP in a press release, the Tesla Model Y achieved the highest overall weighted score of any vehicle assessed in 2025. ANCAP’s 2025 tests evaluated vehicles across four key pillars: Adult Occupant Protection, Child Occupant Protection, Vulnerable Road User Protection, and Safety Assist technologies.

The Model Y posted consistently strong results in all four categories, distinguishing itself through a system-based safety approach that combines structural crash protection with advanced driver-assistance features such as autonomous emergency braking, lane support, and driver monitoring. 

This marked the second time the Model Y has topped ANCAP’s annual safety rankings. The Model Y’s previous version was also ANCAP’s top performer in 2022.

The Tesla Model 3 also delivered a strong performance in ANCAP’s 2025 tests, contributing to Tesla’s broader safety presence across segments. Similar to the Model Y, the Model 3 also earned impressive scores across the ANCAP’s four pillars. This made the vehicle the top performer in the Medium Car category.  

ANCAP Chief Executive Officer Carla Hoorweg stated that the results highlight a growing industry shift toward integrated safety design, with improvements in technologies such as autonomous emergency braking and lane support translating into meaningful real-world protection.

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“ANCAP’s testing continues to reinforce a clear message: the safest vehicles are those designed with safety as a system, not a checklist. The top performers this year delivered consistent results across physical crash protection, crash avoidance and vulnerable road user safety, rather than relying on strength in a single area.

“We are also seeing increasing alignment between ANCAP’s test requirements and the safety technologies that genuinely matter on Australian and New Zealand roads. Improvements in autonomous emergency braking, lane support, and driver monitoring systems are translating into more robust protection,” Hoorweg said.

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