Tech
TechCrunch Space: The dawn of the space age
Hello and welcome back to TechCrunch Space. Flagging again that the final agenda for the Space Stage at TechCrunch Disrupt is now live. I’ll be pushing this event for the next few weeks, given that we’re just a bit over a month away! We’d love for you to join us.
Want to reach out with a tip? Email Aria at aria.techcrunch@gmail.com or send a message on Signal at 512-937-3988. You can also send a note to the TechCrunch crew at tips@techcrunch.com. For more secure communications, click here to contact us, which includes SecureDrop instructions and links to encrypted messaging apps.
Imagine a future where the diurnal cycle, at least in some parts of the world, is adjustable. Where humans are no longer beholden to the 24-hour pattern of daylight and darkness. Instead of being constrained by the physical reality that constrains the sun to its daily cycle, imagine a future where the sun can be turned on and off like a flashlight.
This is the future that Reflect Orbital imagines is possible. The startup is developing satellites that would deploy large mirrors to precisely reflect sunlight onto specific points on the ground. Rings of satellites in sun-synchronous orbit would follow the terminator, or the line that separates night and day, providing additional sunlight before dawn and after dusk.
Their plans generated a lot of ire on the internet. But some of that attention was positive — including from Sequoia investor Shaun Maguire.

Why use a rocket when you could use a giant, miles-long “gun” instead?
That’s the question posed by Longshot Space, a company that’s completely rethinking how to send mass to orbit. The company is developing a kinetic launch system that will gradually accelerate payloads to hypersonic speeds before launching them into orbit. While Longshot’s full-scale system will take up a lot of space, the startup is betting it can achieve very, very low costs to orbit compared to a rocket — as low as $10 per kilogram, which is a staggering reduction compared to the $6,000 per kilogram price of a rideshare on a SpaceX Falcon 9 rocket.
The company raised a $1.5 million pre-seed round in April 2023; now, nearly 18 months later, Longshot closed a little over $5 million in combined venture funding and non-dilutive funding from the U.S. Air Force’s TACFI program. The new capital will be used to build a massive, 500-meter-long gun in the Nevada desert to push 100-kilogram payloads to Mach 5.

This week in space history
This week we’re celebrating two major achievements in space history: the birth of NASA and the launch of Sputnik-1. Both events have changed the course of space exploration — the former, by establishing the organization that would help ensure America’s place as the world’s primary space power; and the latter, by arguably kicking off the Cold War-era space race between the USA and the USSR.
Notably, the Russians launched Sputnik on October 4, 1957, and less than a year later Congress officially established NASA. America was shocked by the USSR’s success in the space domain. President Eisenhower tried to save face, calling the satellite a “useless hunk of iron.” But he also dedicated even more funding for the domestic space program to ensure we caught up.
Here’s NASA: “Immediately after the Sputnik I launch in October, the U.S. Defense Department responded to the political furor by approving funding for another U.S. satellite project. As a simultaneous alternative to Vanguard, Wernher von Braun and his Army Redstone Arsenal team began work on the Explorer project. … The Sputnik launch also led directly to the creation of National Aeronautics and Space Administration.”

Tech
Light made a flip phone. It’s colorful and it’s cheap.
Kaiwei Tang helped create the iconic Motorola Razr over 20 years ago. Now, 10 years into building Light, the startup behind the minimalist smartphone alternative Light Phone, he’s as surprised as anyone that his customers are begging for a flip phone.
“We’ve been interviewing young people that use flip phones for a few years,” Tang told TechCrunch, describing a pattern his team kept running into: Gen Z users love their flip phones but say the build quality is bad. “They’re describing the flip phones in negative language, but they stick with it, and they feel proud.”
So Tang and co-founder Joe Hollier had an idea. What if Light took the fast, custom software from its last three touch screen phones and put it into a flip phone? That’s how they decided to build the Light Flip, the most affordable device that Light has ever released.
“What we’re doing is offering the same Light Phone experience, the same Light Phone OS with our SDK developer program, all of the tools we already have today: alarm, calculator, calendar…” Hollier told TechCrunch. “It’s kind of the exact same experience, just one is fully tactile, no touch screen, and [the other] one is a complete touch screen experience.”

Pricing has always been Light’s hardest problem as a small hardware startup. How do you sell a “less” phone for a price people will actually pay, when the whole pitch is fewer features? Its previous release, the unlocked Light Phone III, retails at $799. But the Light Flip brings the cost down to $299 by dropping a touch screen, NFC reader, and selfie camera. The Light Flip is also made of plastic, rather than sturdier aluminum, but that means that for the first time, Light can offer one of its phones in a range of colors: black, red, yellow, pink, navy blue, and light grey.
“I thought I was fully QWERTY, but I was having fun with the T9 predictive texting [the old-school method of typing multiple letters per number], so I can see myself going flip phone also for the colors,” Hollier said. “Just having a yellow phone gets me so jazzed.”
Beyond the sticker price, Light is also testing a financing play. It recently piloted phone contracts with Andrew Yang’s anti-doomscrolling carrier Noble Mobile. With Light’s own service plan, customers can get the Light Flip for a two-year contract at $39 per month; the Light Phone III will be available for $59 per month over the same time frame.
The Light Flip only has a 2.8″ OLED screen on the inside and no screen on the outside, as requested by users. There will be a small light on the front of the phone, however, so that you can see if you have notifications without flipping open the device. With 5G and 4GLTE connectivity, the Light Flip can download podcasts online and play music that you upload to your phone, which you can listen to via either a 3.5mm headphone jack or Bluetooth headphones. It charges via USB-C, works with both eSIM and physical Nano SIM cards, and includes a 12-megapixel camera on the back.

The Light Flip is expected to ship in April 2027, which Light acknowledges is a long lead time. To keep preorder customers engaged (and, practically, to keep them from canceling before it ships), the company is launching a new “Flip Your Life” program, including bi-weekly newsletters to help people prepare for the lifestyle adjustment of ditching a smartphone. It’s a community-building move as much as a marketing one. By building a support network around the phone, Light hopes that the transition to using its products will be less jarring and that it sticks.
While Light believes that its phones can help people reclaim the time they may regret spending on mindless scrolling, the founders acknowledge that it’s not easy to quit smartphones cold turkey. It’s hard to sacrifice the convenience of instant internet access, Apple Pay, music streaming, and convenient communication tools like WhatsApp and iMessage, and it’s easier for the flip phone-curious to make this transition when they’re not going through it alone.
“I think something that’s so inspiring about this movement is it’s not coming from a place of just anger and hatred… It’s a movement of optimism, as well as skepticism,” Hollier said. “I think that’s what we’ve always tried to do with Light. We’re anti big tech in all these ways, but we’re always trying to show that the other side of life can be really simple and beautiful.”
When you purchase through links in our articles, we may earn a small commission. This doesn’t affect our editorial independence.
Tech
Can an Apple lawsuit derail OpenAI’s hardware plans?
Apple recently filed a trade secrets lawsuit against OpenAI, accusing the AI company of a pattern of misconduct aimed at getting current and former Apple employees to share confidential information. (In response, OpenAI said it is “not aware of any evidence that this complaint has merit.”)
On the latest episode of TechCrunch’s Equity podcast, Kirsten Korosec, Sean O’Kane, and I debated whether this lawsuit will cast a shadow over OpenAI’s much-discussed plans to get into the hardware business (starting with a mobile smart speaker) and go public.
“Even setting aside whether or not the court grants any kind of injunctive relief or any kind of restraining order over what OpenAI is doing, it just naturally can lead to that sort of situation where it’s going to cause some delays in what OpenAI is working on,” Sean suggested. “Which I’m sure was probably part of the reasoning behind Apple doing this. They don’t do this stuff willy nilly.”
With all those plans on the line, will OpenAI try to settle this as quickly as possible, or did it learn from its recent courtroom victory against Elon Musk that it can endure the cost and embarrassment of a trial? Kirsten, at least, predicts the latter.
Keep reading for a preview of our conversation, edited for length and clarity.
Kirsten: Sean, how do you feel about Sam Altman listening to you with a little device maybe in your pocket?
Sean: I’m good. Maybe that’s predictable, but I’m good. No thanks.
We’ll get into it, I’m sure, but this is allegedly the first product that OpenAI has been working on in its hardware division with Jony Ive and company. They’ve been really coy ever since that weird video they put out last year of them sitting at that coffee shop or bar in San Francisco and sort of talking very vaguely about hardware and legacy devices, meaning laptops and phones. And so if this is the direction they’re headed in, all power to people who want to have somebody like that always listening to them. This is not going to be for me.
Anthony: Part of what we have to remember about those kinds of devices is also that, depending on how mobile it is, it’s not just listening to you, it’s listening to the people around you. I might be fine with it — I’m not fine with it, but let’s say I was — but then if we met up in-person at Disrupt, then suddenly it might be listening to all of us.
There are all kinds of social norms that are going to have to be renegotiated if these things become widespread. I think we should make fun of and criticize people who record other people without consent.
Kirsten: Well, I bring up the device that has been speculated about for a really long time, and we’ll see what it really ends up being once it’s officially introduced, but it’s important in the context of this lawsuit that Apple filed last Friday.
It was the biggest news of the week, certainly, and this is a trade secret lawsuit. It has some pretty wild allegations and we should very much emphasize these are allegations that have been filed in a complaint by Apple. But what it is accusing OpenAI of is a pattern of misconduct at the highest levels, specifically directed towards OpenAI employees who used to work at Apple. And in fact they’ve named the chief hardware officer Tang Tan in this lawsuit.
This is all important because Apple is accusing OpenAI of essentially stealing their trade secrets, but in the context of that, this could be then used for a competing hardware product. I’m wondering if maybe we don’t get into whether this lawsuit has merits, because we haven’t gone through full discovery, but what are your initial impressions of the lawsuit aside from the fact that wow, this is going to be entertaining?
Sean: Two things. One, this is a pretty big risk potentially to whatever it is OpenAI is working on. Even setting aside whether or not the court grants any kind of injunctive relief or any kind of restraining order over what OpenAI is doing, it just naturally can lead to that sort of situation where it’s going to cause some delays in what OpenAI is working on, which I’m sure was probably part of the reasoning behind Apple doing this. They don’t do this stuff willy nilly.
The other is that we think that OpenAI is — we know that they’ve filed confidentially for an IPO. We think it might happen as early as the end of this year, or early next year, if you believe Sam Altman’s cautious language around the IPO. And this just raises a whole bunch of questions around that because, on the one hand, we think their business right now is probably overwhelmingly the software; they’re not really factoring in any hardware business into that picture at the moment.
They’re about to go to the markets and they’re going to be pitching bankers and investors on where they think their addressable market should be, and if they have a big amount of that pegged to a potential hardware division and hardware products, this could be a huge risk to that and changes a lot of the calculus of sort of how the IPO gets priced. So that’s where my head’s at.
Anthony: One [allegation] that I assume that Apple must have pretty solid numbers on is, they said more than 400 Apple employees now work at OpenAI. Granted, both of them are very large companies with many thousands or tens of thousands of employees. So as a percentage, it’s not necessarily huge. But that seems like a lot of people and a pretty serious talent drain.
And the other thing I’m wondering is related to Sean’s point. With the context of the potential IPO, how much damage did OpenAI ultimately take from a marketing and brand perspective from the trial it already went through? That it seemed to basically win, but there was a lot of not-terrible-but-kind-of-embarrassing dirty laundry that came out in the testimony. To what extent are they just like, “We do not want to go through that again”? Or did they take the lesson of, “Hey, we went through it and we survived and we’ll be okay if we have to do another trial with Apple”?
Kirsten: I fully predict the latter, by the way.
When you purchase through links in our articles, we may earn a small commission. This doesn’t affect our editorial independence.
Tech
What to watch for after Jensen Huang’s Japan visit
Nvidia’s chief Jensen Huang spent two days — July 15 and 16 — in Tokyo, courting Japan’s industrial and chip-supply elite, weeks after a keynote in Taiwan, and months after a visit to South Korea. He left with deals spanning Japan’s entire tech ecosystem: a national AI factory, partnerships with the country’s leading robotics companies, and agreements with the chip-material suppliers powering Nvidia’s next generation of AI chips. His message was clear. Nvidia is targeting Japan’s factory floor, and many of the country’s biggest manufacturers are joining in. AI’s next chapter, Huang said, belongs to factory floors, robots, and machines, and he wants Japan to build it.
Thirty years ago, a $5 million Sega investment helped keep a near-bankrupt Nvidia afloat; today, Nvidia and Japan’s industrial giants need each other again — this time to build the physical-AI era, starting with these three projects:
Noetra — Japan’s sovereign-AI play. The country doesn’t want to run its factories and robots on American or Chinese AI. So, the government pulled together roughly 44 domestic firms, with SoftBank, Sony, NEC, and Honda at the core, to build its own AI for robots, vehicles, and factory floors. Tokyo is committing up to 1 trillion yen ($6.2 billion) over five years, a bet on homegrown “physical AI,” foundation models built to run machines. Japan wants to own the software brain. The hardware to build it, though, still comes from Nvidia. The U.S. chip giant is building “a Vera Rubin AI factory,” a massive data center packed with its next-generation chips, expected to launch in 2028, with 13,750 Vera CPUs and 27,500 Rubin GPUs, delivering 140 megawatts. Noetra will oversee the effort, with plans to build the data center. Noetra’s plan runs in three stages: a reasoning model heavy on Japanese-language skills starting in fiscal 2026; an omni-modal version handling text, images, video, and audio by 2028; and “Real-world Native AI” built to run robots by 2030, released to outside Noetra developers in phases.
The robotics coalition — Japan’s industrial giants line up behind Cosmos. Nvidia is targeting Japan’s factory floor, and many of the country’s top robotics and manufacturing players are signing on. Fanuc, Yaskawa, Kawasaki Heavy, Fujitsu, Hitachi, NEC, Sony, SoftBank, Kubota, and robotics group AIRoA say they plan to build on Nvidia’s Cosmos models, an open-model effort Nvidia started in May with a handful of global AI labs. In Tokyo, Nvidia gave them a reason to commit, unveiling Cosmos 3 Edge, a version of the model that runs on its Jetson Thor chips inside the machines themselves. Some are already testing a shared control system; others, like Honda R&D and Omron, are building on the tools now. “The next frontier of AI is in the physical world, and this is a once-in-a-generation opportunity for Japan,” Huang said in the company’s statement. “Japan invented modern manufacturing. Now, it has the opportunity to reinvent it for the age of intelligent industries.”
Toyota — cars and physical AI. Toyota uses Nvidia chips across much of its stack. It committed its next-generation vehicles to Nvidia’s Drive platform at CES in January 2025; the newer work extends Nvidia into its manufacturing, where simulations are used to design production lines, into the software that runs its vehicles, and into systems that read road traffic. Toyota’s cars will run advanced driver assistance, which steers and brakes but still requires a driver, a more conservative approach than Waymo and Tesla, which are developing systems that rely less on a human driver.
Huang’s visit put physical AI at the center of Japan’s industrial strategy, and Tokyo is spending to back it. Facing a shrinking workforce, Japan wants 10 million AI-equipped robots across 18 sectors by 2040, backed by $65 billion in public and private physical-AI investment.
The longer game is bigger. Japan’s AI Robotics Strategy, released in March, aims to capture more than 30% of the global AI robotics market by 2040, a market Tokyo values at roughly ¥20 trillion, or about $133 billion. METI is funding a domestic foundation model to run the machines, and Noetra’s Nvidia-powered factory is where models of that scale, into the trillions of parameters, would be trained.
Underneath the industrial case is a sovereign one. As the U.S. and China pull ahead in large-scale AI, Tokyo wants its own data, its own compute, and less dependence on infrastructure it doesn’t control. Huang appeared on July 16 alongside trade minister Ryosei Akazawa at the government’s physical-AI launch, with Prime Minister Sanae Takaichi joining by video. The Takaichi administration has made AI and semiconductors the centerpiece of a growth plan chasing ¥370 trillion ($2.3 trillion) in public and private investment by 2040. Noetra’s factory — which Nvidia bills as “the world’s first national AI infrastructure” — is the clearest bet yet. Japan’s push for independence, at least for now, rests on American chips.
In two days, Huang sat across from nearly every name that matters in Japanese tech — the CEOs of Toyota, Fanuc, Yaskawa, Fujitsu, and Kawasaki over lunch, and dozens of supply-chain chiefs over skewers and whisky in a Kanda izakaya.
It’s the same playbook he ran weeks earlier — a homecoming keynote in Taiwan, fried chicken, and a 50,000-GPU deal in Seoul last fall. This time, it was Tokyo’s turn, with the robots, the supply chain, and the chips underneath.
When you purchase through links in our articles, we may earn a small commission. This doesn’t affect our editorial independence.
