Tech
The Best Phones You Can’t Officially Buy in the US
Other Good International Phones
These phones are worth considering if you have yet to see something you like.
Xiaomi Poco F7 for $366: The latest release from Xiaomi’s Poco brand comes close to a place above, combining the Snapdragon 8s Gen 4 processor with a lovely 6.83-inch AMOLED screen and a big 6,500 mAh battery. There’s no scrimping on the rest of the spec sheet, with Wi-Fi 7 support, an IP68 rating, and 256 GB of UFS 4.1 storage in the base model. The main camera even has a 50-MP Sony IMX882 lens, though the 8-MP ultrawide and 20-MP front-facing cameras aren’t great. I love the silver model, but it also comes in white or black. I think the X7 Pro above, now dropping in price, is a bigger bargain, but the F7 is a better phone and worth considering if you don’t mind spending a bit more.
Photograph: Simon Hill
Oppo Find N5 for $1,265: It’s a real shame that the Find N5 won’t even land in the UK or Europe, because the world’s slimmest book-style foldable (3.6 millimeters open) is a lovely phone. The 6.62-inch cover display and 8.12-inch inner display are excellent, and the Find N5 has top specs all the way (Snapdragon 8 Elite, 16 GB RAM, 512 GB storage, 5,600-mAh battery, 80-watt wired and 50-watt wireless charging). The triple-lens camera (50-MP main, 50-MP telephoto, 8-MP ultrawide) is the most obvious compromise, a necessity for this form factor. The slightly buggy software and bloatware are the only other detractors, but the potential pain of importing will be enough to put most folks off.
Xiaomi Poco F7 Ultra for £569 and F7 Pro for £449: While Poco has traditionally been a budget brand, the aptly named F7 Ultra takes it into new territory. This phone boasts a few flagship-level features, such as the Snapdragon 8 Elite chipset with the VisionBoost D7 for graphics, a powerful triple-lens camera, and a lovely, high-resolution 6.67-inch display with a 120-Hz refresh rate. It also scores an IP68 rating and offers up to 50-watt wireless charging. The catch is a price hike over previous Poco F series releases, but at the early-bird price, the F7 Ultra is a compelling bargain. The F7 Pro is more in line with what we expect from the brand, with an older processor, limited camera, and no wireless charging. Both run Xiaomi’s HyperOS 2 and have too much bloatware, but Xiaomi now promises four Android version upgrades and 6 years of security patches.
Photograph: Simon Hill
Realme 14 Pro+ for €530: The color-changing finish may be gimmicky, but it’s fun, and this phone looks and feels far more expensive than it is. There are more highs than lows on the spec sheet. You get a triple-lens camera, an IP68/69 rating, a 6,000-mAh battery, and a 6.83-inch OLED display with a 120-Hz refresh rate, but the Snapdragon 7s Gen 3 chipset is limited, there’s no wireless charging support, and no charger in the box. It is still quite a bargain and should be landing in the UK soon.
Photograph: Simon Hill
Xiaomi 15 for £899: Folks seeking a more compact phone than the Xiaomi 15 Ultra could do a lot worse than its smaller sibling. The Xiaomi 15 feels lovely, with a 6.36-inch screen, a decent triple-lens camera, and top-notch internals. But it’s a conservative design, kind of pricey, and it has the same software and bloatware issues as the Ultra.
Honor Magic 7 RSR for £1,550: Designed with Porsche, this souped-up version of the 7 Pro above has a fancier design with a hexagonal camera module, a slightly improved telephoto lens, 24 GB of RAM (likely largely pointless), 1 TB of storage, and a bigger battery (5,850 mAh). It’s lovely, but it doesn’t do enough to justify the additional outlay.
Oppo Find X8 Pro for £800: The last two Oppo flagships didn’t officially make it to the UK and Europe, so the X8 Pro marks a welcome return. This is a polished phone with a quad-lens camera (all 50 MP), but it feels like a downgrade from the Find X7 Ultra I used last year because of the smaller sensor. It is fast, with excellent battery life, speedy wired and wireless charging, IP68/69 protection, and no obvious omissions. But it’s pricey, and flagships should not have bloatware. I’d prefer to wait for the X8 Ultra.
Photograph: Simon Hill
Honor 200 Pro for £360: I don’t love the design of the Honor 200 Pro, but it has a versatile triple-lens camera with a capable portrait mode. There are also some useful AI features, and the battery life is good, with fast wired and wireless charging. It cost £200 more at launch, but at this new lower price, it is a far more attractive option.
Xiaomi Mix Flip for £629: Xiaomi’s first flip phone is surprisingly good, with two relatively bright and roomy screens, solid stamina, fast charging, and snappy performance. It’s a shame Xiaomi didn’t craft more flip-screen-specific features. It doesn’t help that the Mix Flip was too expensive at launch (£1,099), but at this reduced price, it’s a decent shout for folks craving a folding flip phone.
Nubia Z70 Ultra for £649: Much like last year’s Z60 Ultra, the Z70 Ultra is a value-packed brick with an excellent 6.8-inch display, Snapdragon 8 Elite chipset, versatile triple-lens camera, and 6,150-mAh battery. Unfortunately, the camera is inconsistent and poor at recording video, and the software is shoddy (with only three Android version updates promised).
Photograph: Simon Hill
Xiaomi 14T Pro for £465: As the mid-year follow-up to Xiaomi’s flagship 14, the 14T Pro is a bit of a bargain and has dropped in price since I reviewed it. The basics are nailed, with a big screen, good performance, plenty of stamina, and a solid camera. But there is bloatware, Xiaomi’s software, and the lack of wireless charging to contend with.
OnePlus Nord 4 for £310: With a metal unibody, the Nord 4 stands out and also boasts an excellent screen, enough processing power for most folks, impressive battery life, and fast charging. The main camera is fine, and there’s a nifty AquaTouch feature that lets you use the phone with wet hands. But there’s no wireless charging, the ultrawide camera is disappointing, and there’s some bloatware.
Avoid These Phones
These aren’t bad phones necessarily, but I think you’d be better served by something above.
Oppo Reno 13 Pro 5G for £620: This slim, lightweight midranger boasts a 6.8-inch screen (brightness is limited), a triple-lens camera (solid 50-MP main and telephoto lenses with a disappointing 8-MP ultrawide), and an impressive IP69 rating. Battery life is good, and wired charging is fast, but there’s no wireless charging. It’s packed with bloatware but also AI features and tools covering transcription, summarization, image editing, and more that may add value for some folks. Performance-wise, it can’t keep up with the similarly priced Poco F7 Ultra above. After some time with the 13 Pro, I’m not convinced it justifies such a major price bump over last year’s 12 Pro (it costs an extra £150), and you can do better for this money.
Xiaomi Mix Fold 4 for $1,399: Only officially released in China, the Xiaomi Mix Fold 4 is a stylish folding phone with a 6.56-inch outer screen that folds open to reveal a 7.98-inch inner screen. It also offers solid performance and battery life, but despite having a large quad-lens camera module, the camera is underwhelming. The crease is also pronounced, and using a Chinese model is a bit of a pain as various things are not translated, and there’s work in getting the apps you want.
Photograph: Simon Hill
Realme GT7 Pro for $529: This potential flagship killer has a 6.78-inch OLED screen, a Snapdragon 8 Elite chip, and an enormous 6,500-mAh battery. You also get a triple-lens camera, but the 50-megapixel main and telephoto lenses are let down by the 8-megapixel ultrawide. It also lacks wireless charging, and you’ll have to import it to the UK, as it only seems to be on sale in Germany.
Xiaomi Redmi Note 14 Pro+ for £309: An attractive, durable design (IP68), a 200-megapixel Samsung camera sensor, and decent battery life with superfast charging (120-watts) must be balanced against middling performance, poor ultrawide (8 MP) and macro (2 MP) lenses, and a ton of bloatware. Ultimately, there’s little improvement over last year’s Redmi Note 13 Pro+, and it’s not just that there are better phones for the same money; there are better Xiaomi phones.
Photograph: Simon Hill
Xiaomi Poco F6 for £270: A real bargain when first released, the Poco F6 series is still tempting with a big screen, decent performance, and a pretty capable camera, but there’s bloatware, shoddy software, and limited long-term support. The F6 is a better value than the Pro.
Photograph: Simon Hill
Motorola Edge 50 Pro for £285: It may be falling in price, but the Motorola Edge 50 Pro (7/10, WIRED Review) only has a couple of Android upgrades to go. While the design is compact and there’s a lovely display, I found it lacked processing power, with sometimes sluggish camera performance, and there are better options above.
Nubia Flip 5G for £346: I had some fun with the Nubia Flip 5G (6/10, WIRED Review), and it was the cheapest flip foldable available for a while. The circular cover screen is cute, but it can’t do much. The performance was average a year ago, and the annoying software and update policy are major strikes against it.
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Tech
Top Design Within Reach Promo Codes for March 2026
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Get 15% Off Furniture With Design Within Reach Promo Codes
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Our Favorite Design Within Reach Gear
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Tech
A Billionaire-Backed Startup Wants to Grow ‘Organ Sacks’ to Replace Animal Testing
As the Trump administration phases out the use of animal experimentation across the federal government, a biotech startup has a bold idea for an alternative to animal testing: nonsentient “organ sacks.”
Bay Area-based R3 Bio has been quietly pitching the idea to investors and in industry publications as a way to replace lab animals without the ethical issues that come with living organisms. That’s because these structures would contain all of the typical organs—except a brain, rendering them unable to think or feel pain. The company’s long-term goal, cofounder Alice Gilman says, is to make human versions that could be used as a source of tissues and organs for people who need them.
For Immortal Dragons, a Singapore-based longevity fund that’s invested in R3, the idea of replacement is a core strategy for human longevity. “We think replacement is probably better than repair when it comes to treating diseases or regulating the aging process in the human body,” says CEO Boyang Wang. “If we can create a nonsentient, headless bodyoid for a human being, that will be a great source of organs.”
For now, R3 is aiming to make monkey organ sacks. “The benefit of using models that are more ethical and are exclusively organ systems would be that testing can be meaningfully more scalable,” Gilman says. (R3’s name comes from the philosophy in animal research known as the three R’s—replacement, reduction, and refinement—developed by British scientists William Russell and Rex Burch in 1959 to promote humane experimentation.)
New drugs are often tested in monkeys before they’re given to human participants in clinical trials. For instance, monkeys were critical during the Covid-19 pandemic for testing vaccines and therapeutics. But they’re also an expensive resource, and their numbers are dwindling in the US after China banned the export of nonhuman primates in 2020.
Animal rights activists have long pushed to end research on monkeys, and one of the seven federally funded primate research facilities across the country has signaled it would consider shutting down and transitioning into a sanctuary amid growing pressure. The US Centers for Disease Control and Prevention is also winding down monkey research, part of a bigger trend across the government to reduce reliance on animal testing.
As a result, Gilman says, there aren’t enough research monkeys left in the US to allow for necessary research if another pandemic threat emerges. Enter organ sacks.
Organ sacks would in theory offer advantages over existing organs-on-chips or tissue models, which lack the full complexity of whole organs, including blood vessels.
Gilman says it’s already possible to create mouse organ sacks that lack a brain, though she and cofounder John Schloendorn deny that R3 has made them. (For the record, Gilman doesn’t like the term “brainless” to describe the organ sacks. “It’s not missing anything, because we design it to only have the things we want,” she says.) Gilman and Schloendorn would not say how exactly they plan to create the monkey and human organ sacks, but said they are exploring a combination of stem-cell technology and gene editing.
It’s plausible that organ sacks could be grown from induced pluripotent stem cells, says Paul Knoepfler, a stem cell biologist at the University of California, Davis. These stem cells come from adult skin cells and are reprogrammed to an embryonic-like state. They have the potential to form into any cell or tissue in the body and have been used to create embryo-like structures that resemble the real thing. By editing these stem cells, scientists could disable genes needed for brain development. The resulting embryo could then be incubated until it grows into organized organ structures.
Tech
A Mysterious Numbers Station Is Broadcasting Through the Iran War
“Tavajoh! Tavajoh! Tavajoh!” a man’s voice announces, before going on to narrate a string of numbers in no apparent order, slowly and rhythmically. After nearly two hours, the calls of “Attention!” in Persian stop, only to resume again hours later.
The broadcast has been playing twice a day on a shortwave frequency since the start of the US-Israel attack on Iran on February 28.
According to Priyom, an organization which tracks and analyses global military and intelligence use of shortwave radio, using established radio-location techniques, the broadcast was first heard as the US bombing of Iran began. It has since played on the 7910 kHz shortwave frequency like clockwork—at 02.00 UTC and again at 18.00 UTC.
Over the weekend, Priyom said it had identified the likely origin of the broadcast. Using multilateration and triangulation techniques, the group traced the signal to a shortwave transmission facility inside a US military base in Böblingen, southwest of Stuttgart, Germany.
The site lies within a restricted training area between Panzer Kaserne and Patch Barracks, with technical operations possibly linked to the US army’s 52nd Strategic Signal Battalion, headquartered nearby.
That identification narrows the field, but it does not reveal who is behind the transmissions or who they are meant for.
The two-hour-long transmission is divided into five to six segments, each lasting up to 20 minutes. Each opens with “Tavajoh!” before shifting into a string of numbers in Persian, sometimes punctuated with an English word or two. Five days into the broadcast, radio jammers were heard attempting to block the frequency. The following day, the transmission shifted to a different frequency—7842 kHz.
Radio communication experts believe the broadcast is likely part of a Cold War–era system known as number stations.
The Return of the Numbers
Number stations are shortwave radio broadcasts that play strings of numbers or codes that sound random—like the one now heard in Iran. “It is an encrypted radio message used by foreign intelligence services, often as part of a complex operation by intelligence agencies and militaries,” says Maris Goldmanis, a Latvian historian and avid numbers stations researcher.
Number stations are most commonly associated with espionage. “For intelligence agencies, it is important to communicate with their spies to gather intelligence,” says John Sipher, a former US intelligence officer who served 28 years in the CIA’s National Clandestine Service. “This is not always possible in person due to political constraints or conflict. This is where number stations come in.”
While the use of number stations can be traced back to the First World War, they gained prominence during the US-Soviet Cold War. As espionage grew more sophisticated, governments used automated voice transmissions of coded numbers to communicate with agents, Goldmanis says. Citing declassified KGB and CIA documents, he adds that number stations were widely used during this period, often as Morse code transmissions and, in many cases, as two-way communications, with agents reporting back using their own shortwave transmitters.
“Nowadays, you have various satellite and encrypted communications technologies,” Sipher says. “But during the Cold War and even before that, governments had to find ways to do this without being noticed, and broadcasting coded messages was one way to communicate with your assets discreetly.”
The apparent randomness of the numbers means they can be understood only with a codebook, Sipher adds. “Nobody can make heads or tails of it or understand what it says unless you have the codebook that can give you hints to decrypt the code,” he says, noting that such systems must be set up and coordinated in advance.
A Signal Without a Sender
While the likely origin of the signal may now be clearer, its purpose and intended recipient remain unknown.
Because the broadcasts are encrypted and designed to be covert, those details may remain unclear for years, Goldmanis says. The structured nature of the transmission—its fixed schedule and consistent use of frequencies—further suggests it is part of a planned operation.
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