Technology
US Air Force Secretary Kendall flies in cockpit of plane controlled by AI
U.S. Air Force Secretary Frank Kendall rode in the cockpit of a fighter jet on Friday, which flew over the desert in California and was controlled by artificial intelligence.
Last month, Kendall announced his plans to fly in an AI-controlled F-16 to the U.S. Senate Appropriations Committee’s defense panel, while speaking about the future of air warfare being dependent on autonomously operated drones.
On Friday, the senior Air Force leader followed through with his plans, making what could be one of the biggest advances in military aviation since stealth planes were introduced in the early 1990s.
Kendall flew to Edwards Air Force Base – the same desert facility where Chuck Yeager broke the sound barrier – to watch and experience AI flight in real time.
US MILITARY ‘OUT OF TIME’ IN PUSH AGAINST ADVERSARIES’ MODERNIZATION, AIR FORCE SECRETARY SAYS
The X-62A VISTA aircraft, an experimental AI-enabled Air Force F-16 fighter jet, takes off on Thursday, May 2, 2024, at Edwards Air Force Base, Calif. The flight, with Air Force Secretary Frank Kendall riding in the front seat, is serving as a public statement of confidence in the future role of AI in air combat. The military is planning to use the technology to operate an unmanned fleet of 1,000 aircraft. (AP Photo/Damian Dovarganes)
After the flight, Kendall spoke with the Associated Press about the technology and the role it will play in air combat.
“It’s a security risk not to have it. At this point, we have to have it,” the secretary said.
The Associated Press and NBC were granted permission to watch the secret flight with the agreement that neither would report on the matter until the flight was complete, due to security concerns.
AIR FORCE SECRETARY PLANS TO RIDE IN AI-OPERATED F-16 FIGHTER AIRCRAFT THIS SPRING
Air Force Secretary Frank Kendall sits in the front cockpit of an X-62A VISTA aircraft at Edwards Air Force Base, Calif., on Thursday, May 2, 2024. The flight on the Artificial Intelligence-controlled modified F-16, is serving as a public statement of confidence in the future role of AI in air combat. The military is planning to use the technology to operate an unmanned fleet of 1,000 aircraft. Arms control experts and humanitarian groups are concerned that AI might one day be able to take lives autonomously and are seeking greater restrictions on its use (AP Photo/Damian Dovarganes)
The F-16 controlled by AI is called Vista, and it flew Kendall in maneuvers reaching over 550 mph, putting pressure on his body of nearly five times the force of gravity.
Flying alongside Vista and Kendall was a human-piloted F-16, and the two jets raced within 1,000 feet of each other performing twists and loops, in an effort to force their opponent into a place of submission.
Kendall grinned as he climbed out of the cockpit after the hour-long flight, saying he saw enough to trust the AI technology in deciding whether to fire weapons during a war.
PENTAGON SEEKS LOW-COST AI DRONES TO BOLSTER AIR FORCE: HERE ARE THE COMPANIES COMPETING FOR THE OPPORTUNITY
This image from remote video released by the U.S. Air Force shows Air Force Secretary Frank Kendall during his experimental flight inside the cockpit of a X-62A VISTA aircraft autonomous warplane above Edwards Air Base, Calif, on Thursday, May 2, 2024. The AI-controlled flight is serving as a public statement of confidence in the future role of AI in air combat. (AP Photo/Damian Dovarganes)
Many oppose the idea of computers making that decision, fearing AI may one day be able to drop bombs on people without consulting with humans.
The same people who oppose AI-powered war machines are also seeking greater restrictions on its use.
One of the groups seeking stronger restrictions is the International Committee of the Red Cross.
“There are widespread and serious concerns about ceding life-and-death decisions to sensors and software,” the group warned, adding the autonomous weapons “are an immediate cause of concern and demand an urgent, international political response.”
EUROPE SEEKS TO BECOME ‘GLOBAL REFERENCE POINT’ WITH AI OFFICE
An AI-enabled Air Force F-16 fighter jet, left, flies next to an adversary F-16, as both aircraft race within 1,000 feet of each other, trying to force their opponent into vulnerable positions, on Thursday, May 2, 2024, above Edwards Air Force Base, Calif. The flight is serving as a public statement of confidence in the future role of AI in air combat. The military is planning to use the technology to operate an unmanned fleet of 1,000 aircraft. (AP Photo/Damian Dovarganes)
Still, Kendall says human oversight will always be at play when weapons are considered.
The Air Force is planning to have an AI-enabled fleet of over 1,000 AI-operated drones, with the first being in operation by 2028.
In March, the Pentagon said it was looking to develop new artificial intelligence-guided planes, offering two contracts for several private companies to compete against each other to obtain.
The Collaborative Combat Aircraft (CCA) project is part of a $6 billion program that will add at least 1,000 new drones to the Air Force. The drones will be designed to deploy alongside human-piloted jets and provide cover for them, acting as escorts with full weapons capabilities. The drones could also act as scouts or communications hubs, according to a report from The Wall Street Journal.
WHAT IS ARTIFICIAL INTELLIGENCE (AI)?
Air Force Secretary Frank Kendall smiles after a test flight of the X-62A VISTA aircraft against a human-crewed F-16 aircraft in the skies above Edwards Air Force Base, Calif., on Thursday, May 2, 2024. The flight on the Artificial Intelligence-controlled VISTA is serving as a public statement of confidence in the future role of AI in air combat. The military is planning to use the technology to operate an unmanned fleet of 1,000 aircraft. (AP Photo/Damian Dovarganes)
The companies bidding for the contract include Boeing, Lockheed Martin, Northrop Grumman, General Atomics and Anduril Industries.
Cost-cutting is one of the elements of AI that appeals to the Pentagon for pursuing the project.
In August 2023, Deputy Secretary of Defense Kathleen Hicks said deploying AI-enabled autonomous vehicles would provide “small, smart, cheap and many” expendable units to the U.S. military, helping overhaul the “too-slow shift of U.S. military innovation.”
But the idea is to not fall too far behind China, which has modernized its air defense systems, which are much more sophisticated and put manned planes at risk when they get too close.
Drones have the potential of interrupting such defense systems and could be used to jam them or provide surveillance for crews.
The Associated Press contributed to this report.
Technology
Samsung’s Digital Home Key lets you use your phone as your key
Just days after showing off the Galaxy S26, Samsung is finally rolling out the ability for users to unlock their home with a tap of their phone or by simply approaching their door. The new feature, called Digital Home Key, will live inside Samsung Wallet and is powered by the Aliro smart home standard.
Samsung first teased its Digital Home Key feature in 2024 and said the feature would be available in 2025. That didn’t pan out, as the CSA’s Aliro standard — which will let users unlock smart locks with any phone — only arrived in February of this year. The new standard uses near-field communication (NFC) for its tap-to-unlock technology. It also supports ultra-wideband (UWB), giving users the ability to unlock their door as they approach and without pulling out their phone.
To add a Digital Home Key to your wallet, you’ll need to set up a compatible smart lock through SmartThings using Matter. Only some Galaxy smartphones support both NFC and UWB, including the Galaxy Z Fold 4 and up, as well as the Galaxy S22 Ultra and up. You can view the full list of compatible devices on Samsung’s website.
Technology
China’s ultrasound brain tech race heats up
NEWYou can now listen to Fox News articles!
When you hear “brain-computer interface,” you probably picture surgery, wires and a chip in your head. Now picture something quieter. No implant. No incision. Just sound waves directed at the brain.
That is the approach behind a new wave of ultrasound brain-computer interface companies in China. One of the newest is Gestala, founded in Chengdu with offices in Shanghai and Hong Kong. The company says it is developing technology that can stimulate and eventually study brain activity using focused ultrasound.
Yes, the same basic technology is used in medical imaging. But this time, it targets neural circuits.
Sign up for my FREE CyberGuy Report
Get my best tech tips, urgent security alerts, and exclusive deals delivered straight to your inbox. Plus, you’ll get instant access to my Ultimate Scam Survival Guide – free when you join my CYBERGUY.COM newsletter.
Brain imaging highlights the regions researchers study as companies explore noninvasive ultrasound brain-computer interface technology. (Kurt “CyberGuy” Knutsson)
What is an ultrasound brain computer interface?
Most brain-computer interface systems rely on electrodes that detect electrical signals from neurons. Neuralink is the most visible example. It places tiny threads inside the brain to record activity. Ultrasound works differently.
Instead of measuring electrical signals directly, it uses high-frequency sound waves. Depending on intensity and focus, those waves can:
- Create images of internal tissue
- Destroy abnormal tissue such as tumors
- Modulate neural activity without open surgery.
Focused ultrasound treatments are already approved for Parkinson’s disease, uterine fibroids and certain tumors. That clinical history gives companies like Gestala a foundation to build on. However, studying or interpreting brain signals with ultrasound is far more complex than delivering targeted stimulation.
WHAT TRUMP’S ‘RATEPAYER PROTECTION PLEDGE’ MEANS FOR YOU
Unlike implant-based systems such as Neuralink, ultrasound brain computer interface research focuses on stimulating the brain without surgery. (Neuralink)
How Gestala plans to treat chronic pain with focused ultrasound
Gestala’s first product is focused on chronic pain. The company plans to target the anterior cingulate cortex, a brain region linked to the emotional experience of pain. Early pilot studies suggest that stimulating this area can reduce pain intensity for up to a week in some patients. The first-generation device will be a stationary system used in clinics. Patients would visit a hospital for treatment sessions. Later, the company plans to develop a wearable helmet designed for supervised use at home. Over time, Gestala says it wants to expand into depression, other mental health conditions, stroke rehabilitation, Alzheimer’s disease and sleep disorders. That is an ambitious roadmap. Each condition involves different brain networks and clinical hurdles.
Can ultrasound read brain activity without implants?
Like other brain tech startups, Gestala is also exploring whether ultrasound could help interpret brain activity. The long-term concept is straightforward in theory. A device could detect patterns linked to chronic pain or depression, then deliver stimulation to specific regions in response.
Unlike traditional brain implants, which capture electrical signals from limited areas, an ultrasound-based system may have the potential to access broader regions of the brain. That possibility is one reason researchers are paying attention. Still, translating that concept into reliable data is a major engineering challenge.
The global race to build noninvasive brain interfaces
China is not alone in exploring ultrasound brain-computer interface systems. Earlier this month, OpenAI announced a significant investment in Merge Labs, a startup cofounded by Sam Altman along with researchers linked to Forest Neurotech.
Public materials from Merge Labs mention restoring lost abilities, supporting healthier brain states and deepening human connection with advanced AI. That language signals long-term ambitions. Yet experts caution that real-world applications are still years away.
GOOGLE DISMANTLES 9M-DEVICE ANDROID HIJACK NETWORK
Researchers use MRI guidance to precisely target the anterior cingulate cortex with focused ultrasound during chronic pain studies. (Gestala)
The technical limits of ultrasound brain interfaces
Ultrasound faces technical limits. First, the skull weakens and distorts sound waves. That makes it harder to obtain precise signals. In research settings, detailed readouts of neural activity have required special implants that allow ultrasound to pass more clearly than bone.
Second, ultrasound measures changes in blood flow. Blood flow shifts more slowly than electrical firing in neurons. That delay may limit applications that require fast, detailed signal decoding, such as real-time speech translation. In short, stimulation is one challenge. Accurate readout is another level entirely.
What this means to you
Right now, this technology is experimental. You are not about to buy a brain helmet at your local electronics store. Still, the direction matters. If noninvasive ultrasound devices can reduce chronic pain or support mental health treatment, more patients may consider therapy without facing brain surgery.
At the same time, devices that analyze brain states introduce new privacy questions. Brain-related data is deeply personal. Regulators, hospitals and companies will need clear rules about how that data is stored, shared and protected. Finally, the link between AI companies and brain interface startups shows how closely digital intelligence and neuroscience are becoming intertwined. That connection could reshape medicine, wellness, and even how we interact with technology.
Take my quiz: How safe is your online security?
Think your devices and data are truly protected? Take this quick quiz to see where your digital habits stand. From passwords to Wi-Fi settings, you’ll get a personalized breakdown of what you’re doing right and what needs improvement. Take my Quiz here: Cyberguy.com.
CLICK HERE TO DOWNLOAD THE FOX NEWS APP
Kurt’s key takeaways
Brain-computer interfaces used to feel far off and experimental. Now they are a serious focus of global research and investment. China’s push to develop an ultrasound-based brain-computer interface adds momentum to a field already shaped by companies like Neuralink and new ventures backed by OpenAI. Progress is steady but measured. The potential is significant. The technical hurdles are real. What happens next will depend on whether researchers can turn promising lab results into safe, reliable treatments people can actually use.
If sound waves could one day interpret your mental state, who should decide how that information is used? Let us know by writing to us at Cyberguy.com.
Sign up for my FREE CyberGuy Report
Get my best tech tips, urgent security alerts, and exclusive deals delivered straight to your inbox. Plus, you’ll get instant access to my Ultimate Scam Survival Guide – free when you join my CYBERGUY.COM newsletter.
Copyright 2026 CyberGuy.com. All rights reserved.
Technology
This Windows gaming handheld has a screen that folds in half
Lenovo put a foldable display on a gaming handheld. The Legion Go Fold Concept is a Windows-based handheld with a flexible POLED display, detachable Joy-Con-like controllers, and a folio case to turn the whole thing into a mini laptop.
You can use it as a standard Steam Deck-esque handheld with the display folded down to 7.7 inches and controllers attached at its sides, or you can unfold it for a bigger experience. When unfolded, the controllers can be repositioned to all four sides, allowing you to play with the screen in vertical or horizontal orientations.
In vertical splitscreen mode, you can put your game on one half of the screen and a second window (like your chat or game guide) on the other half. Horizontal fullscreen mode gives your game the full 11.6 inches of real estate in a 16:10 aspect ratio. To go into laptop mode, you remove the controllers and mount the handheld into a folio case with a stand, built-in keyboard, and trackpad. The controllers can be put into a separate grip mount to unify them as one gamepad.
There are a lot of ways you can use this folding handheld, including turning one of its controllers into a vertical mouse like on other Legion Go handhelds, but there’s one thing it doesn’t do: fold down to close and protect its screen. The Go Fold only folds outwards, so don’t expect a Nintendo DS or GameBoy Advance-like clamshell that closes for portability. Instead, it’s all about getting bigger than your average gaming handheld and offering more. (Though we’ve tried bigger before.)
The Legion Go Fold has some formidable specs: an Intel Core Ultra 7 258V Lunar Lake processor, 32GB of RAM, 1TB of storage, and a 48Whr battery. The plastic-covered OLED has a resolution of 2435 x 1712 and 165Hz refresh rate. And there’s even a second, circular toushscreen on the right controller, under the face buttons. It doubles as a touchpad and can be a support display, allowing you to swipe between extracted UI elements from a game (which I wouldn’t expect to be widely supported), a clock, system monitoring, or an animated GIF (just for fun).
During my brief in-person demo I didn’t get to play any graphically-intense games — just Balatro, which can practically play on a potato. The screen looked plenty sharp, but like any foldable there’s a crease down the middle; it’s very visible, but you learn to look past it and ignore it after just a bit. The build and feel of the whole thing felt a little fragile, and detaching and reattaching the controllers was definitely janky. Build quality will hopefully be improved if this device ever actually makes it to market.
The laptop mode was a pleasant surprise for me though. I did not expect a gaming handheld to double as a conventional computer you could get work done on. The Legion Go Fold’s case took quite a bit of fumbling before I set it up correctly, but it shouldn’t take too long to get used to if you actually lived with it.
Then again, I don’t know if anyone is going to be able to live with this thing — ever. I’d love for the Legion Go Fold to go from concept to real product like other out-there Lenovo ideas, but I shudder to think what it might cost. The Legion Go 2 is already priced well over $1,000. And with the ongoing RAMageddon crisis we’re living through, there’s no telling how much more expensive an actual Legion Go Fold would be if it came out in a year or more.
But even if it’s not the kind of foldable I expected, and even though it may never come out, it’s certainly cool. Now somebody please make a folding PC handheld that goes from kinda-big to really small. I think that’d be the one for me.
Photography by Antonio G. Di Benedetto / The Verge
-
World5 days agoExclusive: DeepSeek withholds latest AI model from US chipmakers including Nvidia, sources say
-
Massachusetts5 days agoMother and daughter injured in Taunton house explosion
-
Denver, CO5 days ago10 acres charred, 5 injured in Thornton grass fire, evacuation orders lifted
-
Louisiana1 week agoWildfire near Gum Swamp Road in Livingston Parish now under control; more than 200 acres burned
-
Technology1 week agoYouTube TV billing scam emails are hitting inboxes
-
Politics1 week agoOpenAI didn’t contact police despite employees flagging mass shooter’s concerning chatbot interactions: REPORT
-
Technology1 week agoStellantis is in a crisis of its own making
-
News1 week agoWorld reacts as US top court limits Trump’s tariff powers