Yanko Design’s Best of MWC 2026: When Engineering Gets Obsessive

Every year, MWC arrives like a controlled flood of announcements, each one louder than the last. Cameras with more megapixels, batteries with bigger numbers, screens with higher refresh rates than the human eye can meaningfully appreciate. It’s easy to walk away from Barcelona with a head full of specs and no clear sense of what any of it actually felt like to hold, use, or live with. The products that matter don’t always win the spec sheet battle.

The ones worth paying attention to are the ones built around a specific, almost stubborn design conviction. A team that decided thinness wasn’t a compromise but the whole point. Engineers who spent years rethinking how a GPS antenna sits inside a running watch. Designers who asked what a laptop would look like if it finally adapted to the user instead of demanding the opposite. Those are the products that stopped people on the MWC 2026 show floor, and these are the design decisions that made them worth stopping for.

HUAWEI WATCH GT Runner 2 Smartwatch

GPS watches for runners have always played both sides of a strange contradiction: the more seriously you take running, the more you end up wearing a small computer that weighs down your wrist and distracts you with irrelevant notifications. Huawei’s answer to that tension is the Watch GT Runner 2, a dedicated running watch built around the single question of what a wrist-worn device actually needs to do well for someone logging serious miles.

Five years of development went into the GPS architecture, which tells you where Huawei’s engineering priorities landed. The 3D floating antenna design, paired with an intelligent converged positioning algorithm, claims 20% better accuracy than its predecessor, holding signal through tunnels and tree cover where most watches lose the thread. The body itself is nanomolded aerospace-grade titanium at just 34.5 grams, with a 10.7mm profile that doesn’t fight the wrist wearing it.

Designer: Huawei

The Intelligent Marathon Mode is where the Huawei Watch GT Runner 2 really shines. Developed alongside the dsm-firmenich Running Team, it functions as an on-wrist coach with customized training plans, real-time pace charts, a digital pacer showing how far ahead or behind your target you are, and a personalized fueling reminder so you don’t bonk at kilometer 30. Performance prediction uses your Running Ability Index and physical data to estimate finish times, which either motivates you or quietly humbles you.

Health monitoring goes beyond the usual heart rate and step counts. ECG analysis triggers 30 minutes post-exercise, HRV is tracked throughout the day, and the PPG sensor can flag potential atrial fibrillation risks. Battery life reaches 32 hours in outdoor workout mode with GPS active, backed by a cell with 68% higher energy density than the previous generation. Curve Pay integration also lets you leave your phone and wallet behind on long runs entirely.

The Huawei Watch GT Runner 2 covers both ends of the spectrum, from amateurs wanting a smart training companion to athletes chasing records with lactate threshold and power metrics. At 34.5 grams with a breathable AirDry woven strap, it’s built to disappear on your wrist. What remains to be seen is whether marathon coaching calibrated with elite runners translates meaningfully to the rest of us.

MemoMind One AI Glasses

Most AI glasses have made the same mistake: designing around the technology first and hoping the wearability sorts itself out later. The result is eyewear that signals to everyone around you that something unusual is happening on your face. MemoMind, a new AI hardware brand incubated by projector company XGIMI, took the opposite approach with its debut product, building from a decade of optical engineering experience to make glasses that simply look like glasses.

The MemoMind One is the flagship of the lineup, combining integrated speakers with a dual-eye air display that layers information over your field of view without demanding your full attention. The multi-LLM hybrid operating system handles real-time translation, voice summaries, transcription, and contextual reminders, all accessible through head-motion controls and a conversational interface. Since its CES 2026 debut, software updates have expanded navigation integration and refined how the AI delivers information without interrupting natural interaction.

Designer: XGIMI

Personalization sits at the center of the MemoMind design philosophy in a way most wearable tech ignores entirely. Frames are fully customizable, temples are interchangeable, and the glasses support prescription lenses, meaning you can actually wear them as your everyday eyewear rather than carrying a second pair of frames. That design decision alone separates MemoMind from most competitors, where the hardware dictates the look and the wearer adapts accordingly.

The broader MemoMind lineup shows how deliberately the brand has thought through different user needs. The MemoMind Air Display weighs just 28.9 grams and uses a single-eye monocular display for a lighter-touch AI presence, aimed at commuters and minimalists who want information without visual density. The MemoMind Air goes further still, dropping the display entirely for a microphone-only model that makes the AI presence nearly invisible, present when useful and undetectable when not.

MemoMind One is set for preorder in April 2026, with the Air Display and Air models following later in the year. What XGIMI has built here is a clear and considered answer to the question of how AI should sit on your face: quietly, comfortably, and without announcing itself to the room. The design conviction behind MemoMind is that the best wearable AI is the kind you stop noticing you’re wearing.

Honor Robot Phone Concept

Smartphones have been flat rectangles for so long that the design conversation around them has largely shifted to cameras, refresh rates, and how thin the bezels are. Honor arrived at MWC 2026 with a genuinely different question: what if the phone itself could move? The Robot Phone concept puts a 4DoF gimbal system inside a handheld device, built around what Honor calls the industry’s smallest micro motor, with the motor size reduced by 70% compared to existing solutions.

Designer: Honor

The gimbal does two distinct things, and they pull in interestingly different directions. On the imaging side, three-axis mechanical stabilization works alongside an AI stabilization engine to keep footage steady through complex, dynamic movement. A double-tap locks the AI onto any subject, tracking it even through sudden changes or brief obstructions. Honor also introduced an AI Spinshot mode, supporting 90-degree and 180-degree rotations, a move that borrows directly from cinema camera rigs and scales it down to one hand.

The second application is where the concept gets harder to categorize. Honor has designed the gimbal to express what it calls embodied AI interaction, meaning the phone physically responds to what’s happening around it. It nods during agreement in video calls, adjusts its orientation to keep you in frame automatically, and moves to the rhythm of music playing through its speakers. These are features that a spec sheet cannot really describe, and that makes the Robot Phone one of the more genuinely curious things shown at MWC 2026, even as a concept still working toward a commercial release.

Xiaomi Vision Gran Turismo EV Concept

The Vision Gran Turismo program is where car brands go to design without consequences. No production targets, no crash tests, no accountants in the room. Ferrari has done it. Porsche has done it. Now Xiaomi, a company that started by selling smartphones and rice cookers, has become the 36th brand to join and the first technology company ever invited. Gran Turismo producer Kazunori Yamauchi extended the invitation personally at the GT World Series in London.

Designer: Xiaomi

The design problem Xiaomi decided to obsess over is one every hypercar team faces: low drag gives you straight-line speed, high downforce gives you corners, and optimizing hard for either one usually compromises the other. Xiaomi’s answer was to eliminate the trade-off entirely by building aerodynamics into the body itself. No bolted-on wings, no add-on splitters. A teardrop cockpit, airfoil-shaped structural members, and embedded channels that guide air from nose to tail. The Accretion Rims are the detail worth pausing on: magnetically held wheel covers that stay perfectly still while the wheels rotate beneath them, cooling the brakes through internal turbine fins while cutting drag from spinning surfaces.

Inside, Xiaomi replaced the usual carbon-and-leather tension of a hypercar cockpit with something it calls the Sofa Racer, a continuous loop of dashboard, doors, and seating upholstered in 3D-knitted fabric pulled from sportswear manufacturing. The Xiaomi Pulse system reads driver state through sensors and responds through light and sound rather than screens and alerts. It all connects to Xiaomi’s broader Human x Car x Home ecosystem, which is either a genuinely interesting idea about how cars fit into a connected life, or a lot of ecosystem language wrapped around a very beautiful virtual concept car.

TECNO Modular Magnetic Interconnection Technology

The modular phone idea has been attempted before, most famously by Google’s Project Ara, which spent years promising a phone you could rebuild like Lego before quietly disappearing in 2016. The premise was compelling, and the execution proved stubborn. TECNO’s approach at MWC 2026 is different in one important way: rather than replacing the phone’s internal components, the Modular Magnetic Interconnection Technology keeps the phone slim and complete on its own, then lets you snap additional hardware onto it magnetically when you actually need it.

Designer: TECNO

The concept arrives in two visual flavors, ATOM and MODA, but the underlying system is the same across both. Over a dozen modules compose the Customizable Modular Suite, covering stackable battery packs, action cameras, telephoto lenses, and more, each attaching and communicating through the magnetic interconnection system. The scale and visual coherence of the accessory ecosystem is genuinely striking. Everything shares a design language, sits flush when attached, and reads as a single object rather than a phone with things stuck to it.

The ATOM edition makes the clearest design statement of the two, with its white and red palette, ribbed surfaces, and a camera module that looks pulled straight from a mirrorless system. TECNO’s core argument is that keeping the phone genuinely slim in daily use, while letting the modules handle the heavier lifting on demand, sidesteps the trade-off that has defined smartphone design for years. Add what you need, remove what you don’t, and the phone adapts to the moment rather than trying to anticipate every one of them in advance.

T10 Bespoke Luxury Custom IEM

There are 150 of these made each year. That’s it. Each one starts as a conversation, not a product listing, where you sit down with the team and work through finishes, metals, and sculptural forms until the result is entirely yours. The chassis is ceramic zirconium, machined to roughly half the volume of an AirPod and assembled with micro-screws and gaskets the way a Swiss watchmaker approaches a movement. Some configurations arrive in mirror-polished obsidian black YTPZ ceramic with 24k rose-gold plating over solid bronze. Others wear navy-blue Cerakote over polished zirconia with hand-rubbed tung-oil burl wood inserts. The newest collection reaches into diamonds, amethysts, and fine metals, with one-of-a-kind builds priced past $115,000. These aren’t earbuds that happen to look expensive. They’re objects you’d keep in a case and hand down.

Designer: EAR Micro, Klipsch

What separates the T10 Bespoke from anything else isn’t just the materials. It’s what’s packed into that tiny chassis. An ARM primary processor runs alongside a dedicated co-processor, with twin Cadence Tensilica Hi-Fi DSPs handling the signal chain. You get selectable amplifier modes, Class D for efficiency, and Class A/B when you want the fuller analog character. The Sonion Balanced Armature driver, tuned with Klipsch from the X10 lineage, feeds from a signal path that supports Sony LDAC at 24-bit/96kHz. That resolution matters because the hardware can actually deliver it. The PCB inside spans less than 1.13 square centimeters, with folding wings to fit the geometry. It’s the kind of engineering that usually stays behind a rack somewhere. Here it’s in your ear.

The interaction layer is equally thoughtful. Bragi OS powers the whole thing, supporting touch controls, voice commands, and head-motion gestures so you rarely have to reach for your phone. Battery life runs 8 to 9 hours per earbud, stretching past 30 hours with the case, and a 15-minute fast charge gets you to 85%. ANC is tuned in-house, and the founder calls it best in class, which is a claim that holds up in context, given the hardware underneath it. The deeper point is that this isn’t a product built to a price point or a roadmap. The chassis is replaceable. The battery is replaceable. The shell is replaceable. You’re not buying a device with a two-year lifespan. You’re buying something designed to stay with you, improve over time, and still be relevant long after everything else has been recycled.

Lenovo AI Workmate Concept

Most AI assistants live inside a screen, which means interacting with them still involves picking up a device, unlocking it, and navigating to something. Lenovo’s AI Workmate Concept takes a different position, literally: it sits on your desk as a physical object, a spherical head on an articulated arm mounted on a circular base, designed to be always present and always on without requiring you to go looking for it.

Designer: Lenovo

The design is built around natural interaction rather than typed commands or app interfaces. It responds to voice, gesture, and writing, with on-device AI processing inputs locally for privacy. The more distinctive capability is spatial output: the Workmate can project content directly onto a nearby surface, turning a desk or wall into a temporary display for documents, presentations, or notes. It also handles practical business tasks like scanning and summarizing documents and assisting with content creation, positioned as a desk companion rather than a novelty.

The physical form is what makes the concept worth paying attention to as a design argument. The spherical head, articulated arm, and glowing base ring give the device a clear presence and orientation, somewhere between a desk lamp and a friendly robot, without tipping into either. It acknowledges you spatially rather than waiting to be summoned from a notification panel. Whether a desk companion with animated eyes and a projector becomes something people actually want next to their laptops is the real design question Lenovo is exploring here, and MWC 2026 was its first public test of that answer.

Huawei Mate 80 Pro Max

Huawei’s Mate series has always been the line where the company makes its clearest design statements, and the Mate 80 Pro Max carries that further with a body that steps away from the fiber-reinforced plastic back of the standard Pro in favor of an aluminum alloy construction throughout. The result is a phone with more physical presence and a slightly larger footprint. Both share the same Dual Space Rings camera module design that has become the Mate family’s most recognizable feature, two concentric rings framing the rear cameras in a configuration that reads as intentional rather than incidental.

Designer: Huawei

The display on the Pro Max stretches farther to 6.9 inches while keeping the same LTPO OLED panel with 1440Hz PWM dimming and Kunlun Glass 2 protection. Powered by the same Kirin 9030 Pro chipset in their top configurations, the Max differentiates itself through physical scale and materials rather than raw internals. The battery also steps up to 6000mAh, though paired with the same 100W wired charging. The color options shift too: where the Pro comes in Black, White, Green, and Gold, the Max trades the softer tones for Black, Silver, Blue, and Gold.

What the Mate 80 Pro Max represents is a familiar kind of product logic: take the established design, make it bigger, make the materials more premium, and add the battery capacity to match the larger chassis. The Dual Space Rings identity carries across both models intact, so the design conversation between the two is less about direction and more about degree. With a significantly higher price tag, the Pro Max is considered step up for buyers who want the full physical expression of what the Mate 80 series is about.

Honor Magic V6 Foldable phone

Foldable phones have spent years promising the future while feeling fragile, bulky, and anxious about rain. Honor’s design obsession with the Magic V6 was to solve all three problems at once without letting any of them compromise the others. The result is an 8.75mm folded profile, putting it in iPhone-thin territory, paired with a 6,660mAh silicon-carbon battery, the largest ever fitted into a foldable at this thickness.

Designer: Honor

That battery figure is where the real engineering story lives. Silicon-carbon cells pack more energy into less space than conventional lithium-ion, but higher silicon content creates expansion stress that can crack cells over charge cycles. Honor’s fifth-generation silicon-carbon material, developed with ATL, reaches 25% silicon content. That’s what allows the capacity and the thinness to coexist without one compromising the other.

The Magic V6 also carries both IP68 and IP69 ratings, a first for any foldable. IP68 handles submersion; IP69 covers high-pressure, high-temperature water jets. Getting both on a device with a moving hinge, a crease depth reduced by 44% over the previous generation, and a display reflectivity as low as 1.5%, reflects how much structural engineering went into something that still opens and closes hundreds of times daily.

Lenovo ThinkBook Modular AI PC Concept

Laptops have been making the same basic promise for decades: here is one device that does everything, carry it everywhere. The trade-off has always been that “everything” means compromises, a screen too small for real work, a body too thick for a bag, a keyboard that disappears when you want a tablet. Lenovo’s ThinkBook Modular AI PC Concept at MWC 2026 takes a different position entirely, built around a “carry small, use big” philosophy that lets a single 14-inch base system reconfigure itself depending on where you are and what you’re doing.

Designer: Lenovo

The modularity here is practical rather than speculative. A secondary display attaches to the top cover for face-to-face sharing or closed-lid use, sits alongside the base on an integrated kickstand as a portable travel monitor in portrait or landscape, or swaps with the keyboard to create a dual-screen setup stretching the combined workspace to roughly 19 inches. The Bluetooth keyboard detaches entirely. IO ports, including USB Type-A, USB Type-C, and HDMI, are interchangeable depending on what a given day requires. Pogo-pin connectors handle power and data transfer between modules, keeping the system stable and self-contained throughout all the rearranging.

What makes the ThinkBook Modular concept worth paying attention to as a design argument is the restraint behind it. Rather than trying to anticipate every scenario inside one fixed chassis, Lenovo accepted that the device itself should be the smallest possible useful thing and let the user decide what gets added to it. A laptop that adapts to the workflow instead of the other way around is an old idea that has never quite landed in a form people actually use. This concept is still exactly that, a proof of concept with no confirmed release date, but the underlying logic is more considered than most modular hardware that has come before it.

Leica Leitzphone by Xiaomi

Xiaomi has made plenty of capable camera phones, but the Leica Leitzphone takes a different approach entirely, treating the smartphone less like a spec competition and more like an extension of Leica’s century-old obsession with optical craft. The silver aluminum frame carries tactile knurling, a rotatable camera ring, and the iconic Leica Red Dot, sitting against a black fiberglass back pulled directly from classic Leica rangefinder design language.

Designer: Xiaomi x Leica

That camera system is where the conviction becomes most legible. A 1-inch sensor with LOFIC HDR technology handles the main shooting duties, alongside a 200MP telephoto at 75 to 100mm and a 14mm ultra-wide. The rotatable physical camera ring, assignable to focal length, focus, or bokeh, gives the experience a tactile dimension that touchscreen sliders simply cannot replicate. Thirteen Leica color styles and a dedicated Essential Mode recreating the Leica M9 and M3 look complete the package.

The rest of the hardware keeps pace: Snapdragon 8 Elite Gen 5, a 6.9-inch 3500-nit OLED display, and a 6000mAh battery with 90W wired charging. The Leica UX layer goes further than a cosmetic theme, reshaping system fonts, icons, and widgets into a coherent visual identity rooted in Leica’s design language. For anyone who has wanted smartphone photography to feel less like operating software and more like handling a real camera, this is the most direct answer yet.

TCL Tbot Smartwatch Desktop Companion for Kids

Kids’ smartwatches have gotten good at keeping children connected to parents while they’re out, but they go dark the moment they come off the wrist. That’s the gap TCL is trying to close with the Tbot, a magnetic desktop dock that pairs with TCL’s kids’ watches, like the MoveTime MT48, to keep the experience going at home during charging. Rather than letting the device sit idle on a nightstand, the Tbot turns that downtime into something more purposeful.

Designer: TCL

The companion functions as an AI assistant shaped around a child’s daily rhythm, setting wake-up alarms, bedtime reminders, and Pomodoro-style study timers through age-appropriate guidance. It also doubles as a learning partner for guided discovery, a sleep companion that tells bedtime stories, and a parental alert hub that sends configurable notifications when parents need to stay in the loop. The idea is continuity between the outdoors and the home, with the watch and dock working as two parts of the same connected experience.

TCL is positioning the Tbot as a concept for now, still in its development phase while the company works through applicable regulations around AI features for children. That measured approach actually makes sense given the audience, since parental permission and age-appropriate guardrails are built into its design from the start. Getting that balance right between a helpful AI companion and appropriate boundaries for kids is exactly the kind of design problem worth taking slowly.

Lenovo Yoga Book Pro 3D Concept

3D creation on a laptop has always involved a certain amount of peripheral management, between mice, styluses, and the occasional spacemouse bolted to the side of the desk. The Yoga Book Pro 3D Concept takes aim at that setup by building a glasses-free 3D display directly into a dual-screen laptop, letting creators view depth, form, and spatial relationships on screen without any additional equipment. Lenovo’s AI software handles 2D to 3D conversion on the upper PureSight Pro Tandem OLED display, and can even generate an environment around the converted object on command.

Designer: Lenovo

The dual-screen concept laptop also offers a rather interesting interaction feature. Zero-touch gestures read hand movements in front of the RGB camera, letting users zoom and rotate 3D objects without touching the screen at all. The lower display acts as a touch surface with snap-on physical pads that pop up adjustment controls, like lighting and viewing angle, wherever they’re placed. It’s a workflow designed to keep creators in the work rather than hunting through menus.

As a concept, the Yoga Book Pro 3D is still a proof of intent rather than a product you can buy, but it represents a genuinely specific design problem solved with unusual conviction. Glasses-free 3D displays have struggled to convince outside of niche applications, so how well the actual display holds up for extended professional use will be the real test when this moves closer to production.

Vivo X300 Ultra and Camera Cage

Most smartphone camera rigs are an afterthought, a collection of third-party mounts and adapters held together by optimism. Vivo is taking a different approach with the X300 Ultra’s dedicated Camera Cage, a pro-grade frame designed specifically around the phone rather than adapted from generic cinema accessories. Dual grip handles, cold shoe mounts, quick-release ports, and dedicated physical buttons for shutter and zoom come built into one coherent system.

Designer: vivo

The cage is also where the ZEISS Telephoto Extender Gen 2 Ultra slots in, an APO-certified lens co-engineered with ZEISS that pushes the X300 Ultra to a 400mm equivalent focal length with full 200MP optical output. Gimbal-grade optical image stabilization and motion-tracking focus sit underneath all of that reach. An integrated multi-level cooling fan handles thermal load during extended video shoots, solving the problem that turns most “pro mobile video” sessions into a race against an overheating warning.

What makes the setup genuinely interesting is the conviction behind it. Vivo isn’t treating the cage as a novelty accessory but as the central argument for how a smartphone can function as a serious production tool. The phone alone is one thing; inside this cage, with the extender attached and physical controls in hand, it becomes a fundamentally different experience.

TECNO x Tonino Lamborghini TAURUS Mini Gaming PC

Gaming PCs have never been shy about their presence, big towers, aggressive angles, and enough RGB to illuminate a small runway. The Tonino Lamborghini TECNO TAURUS compresses all of that energy into a mini PC chassis, with an all-metal body, red-accented lighting, and see-through panels that put the water-cooling loop on full display. It’s unapologetically theatrical, and that’s clearly the entire point of the exercise.

Designer: TECNO

Under that showpiece exterior sits an Intel Core i9-13900HK with 14 cores running up to 5.4GHz, alongside an NVIDIA GeForce RTX 5060 on the Blackwell architecture at 145W total graphics power. A roughly 10,000mm² pure copper water-cooled cold plate and triple-fan setup handle thermals in that compact body. A real-time performance monitor on the chassis lets you watch CPU and GPU loads without opening a single app, which feels very on-brand for a machine this self-aware.

TECNO’s first collaboration with Tonino Lamborghini positions this as a desktop you’d put on your desk rather than under it, treating the machine as a design object as much as a gaming rig. Fifteen ports and WiFi 6E keep the practical side well covered. What’s genuinely interesting is how much of the design budget went into making the cooling system the visual centerpiece, turning thermal engineering into the main aesthetic argument.

Unihertz Titan 2 Elite QWERTY Phone

Physical keyboard phones never really died; they just quietly retreated to a corner of the internet where people complained loudly about touchscreen autocorrect. Unihertz has been serving that corner for years with its Titan series, and the Titan 2 Elite is the most refined version yet. Gone is the chunky frame of its predecessor; in its place comes a slimmer 75mm-wide body, a 4.03-inch 120Hz AMOLED display with a punch-hole camera, and the same four-row QWERTY keyboard that the series built its following on.

Designer: Unihertz

The keyboard itself doubles as a touchpad, letting you scroll and navigate with a thumb swipe across the keys, a trick carried over from earlier Titans that still feels genuinely useful. Although nothing’s confirmed yet, it’s expected to run on a MediaTek Dimensity 7300 with 12GB of RAM and 512GB of storage, which is a solidly capable mid-range setup for a phone that’s really selling you on input, not raw performance. More notable is the software commitment: Android 16 out of the box, updates promised through Android 20, and security patches running until 2031, a rare five-year horizon for a device in this price range.

The Titan 2 Elite arrives at an interesting moment, with the Clicks pulling attention toward keyboard accessories for iPhones and Unihertz countering with a dedicated standalone device instead. There’s a meaningful difference between treating the keyboard as an add-on and building an entire phone around it, and that’s the bet Unihertz is making here.

The post Yanko Design’s Best of MWC 2026: When Engineering Gets Obsessive first appeared on Yanko Design.

RayNeo Just Put Batman on $299 AR Glasses (And They’re Brilliant)

At some point between CES announcements and MWC reveals, someone at RayNeo had a genuinely inspired idea. They had built the world’s first AR glasses with HDR10 support, partnered with Bang & Olufsen on the audio, and engineered a display that could hold its own against high-end monitors. The product was technically impressive, competitively priced, and ready to ship. Then they added a Batman mask to it. Not a sticker, not a themed wallpaper, but an actual light-blocking cover that makes you look like you are about to patrol Gotham while watching movies on a 201-inch virtual screen.

This is the Air 4 Pro, unveiled at MWC 2026 in Barcelona, and it represents something rare in the wearables market: a product that takes itself seriously enough to deliver legitimate specs, but not so seriously that it forgets to be fun. The hardware alone would make this newsworthy. The fact that it comes with the option to cosplay as either Batman or the Joker while using it makes it irresistible.

Designer: RayNeo

Start with what matters most: the display. The Air 4 Pro is the world’s first AR glasses with HDR10 display support, which is a genuinely significant leap. Powered by RayNeo’s custom Vision 4000 chip, the display hits 1,200 nits of peak brightness, renders 10.7 billion colors with near-professional color accuracy (ΔE < 2), and runs at a smooth 120Hz refresh rate. We're talking about a 201-inch virtual screen that sits in front of your eyes, with a 200,000:1 contrast ratio. That is the kind of color performance you would expect from a high-end monitor, not from something you're wearing on your face.

The HDR10 support matters more than it might seem at first. It means that when you’re watching a movie or gaming with these on, the image is not being compressed into mediocrity. The Vision 4000 chip can also upgrade standard SDR content to HDR in real time, and there is an AI algorithm onboard that converts 2D content into 3D. These are not gimmick features. For anyone who has tried AR glasses before and felt vaguely disappointed by the visual output, this is the version that corrects the course.

Audio-wise, RayNeo partnered with Bang & Olufsen on a self-developed sound tube design with a dual opposing acoustic chamber system. The result is reportedly an 80% reduction in sound loss compared to previous models. That is a partnership that immediately signals intent. Bang & Olufsen does not lend their name to anything half-hearted, and the presence of that collaboration here suggests that RayNeo is going after people who care about the full sensory experience, not just the display numbers.

The glasses weigh 76 grams, which is no small achievement given everything packed inside. They include interchangeable nose pads, TÜV SÜD certification for low blue light and flicker-free performance, and a 3,840Hz PWM hybrid dimming system for eye protection. It is the kind of spec sheet that feels increasingly grown-up.

And then there is the Batman Edition. RayNeo unveiled two limited versions at MWC 2026: the Limited Justice Edition, which is the Batman variant, and the Limited Chaos Edition, styled after the Joker. Both come with a light-shield cover that doubles as a cosplay accessory, blocking ambient light to sharpen your viewing experience while also making you look like you are about to interrogate someone in Gotham City. The packaging is loaded with DC-themed details, and buyers get to literally pick a side.

Is this a marketing stunt? Partially, yes. But it is a clever one, because the light-shield cover is functional, not just decorative. It actually solves a real problem AR glasses have always had in bright environments. The fact that it also looks incredible is a bonus that makes this feel less like a product and more like a collectible.

My honest take is that the Batman collaboration is what will get people through the door, but the hardware is what will make them stay. At $299, with an early bird price of $249 through March 28, the Air 4 Pro is not cheap, but it is positioned well against the competition. It works with iPhones, Android flagships, PS5, Nintendo Switch 2, and most modern devices, which removes a lot of the friction that has held wearables back.

RayNeo has clearly done its homework. The Air 4 Pro is not trying to replace your phone or your TV. It is offering a better version of the portable screen experience, and the Batman costume is just the perfect way to announce it.

The post RayNeo Just Put Batman on $299 AR Glasses (And They’re Brilliant) first appeared on Yanko Design.

Meta Wants to Put an AI Health Tracker on Your Wrist in 2026. What Could Go Wrong??

Meta is building a smartwatch, and it wants to know your heart rate, your sleep patterns, your activity levels, and whatever else it can pull from a sensor pressed against your skin all day. The device is codenamed Malibu 2, it’s targeting a 2026 launch, and by most accounts it sounds like a perfectly competent health wearable. The problem isn’t the hardware. The problem is the company attached to it.

This is the same Meta that just faced congressional scrutiny over social media addiction today. The same Meta whose smart glasses are reportedly inching toward facial recognition. The same Meta that filed a patent for Project Lazarus, a system designed to generate posthumous content from deceased users, because apparently your data doesn’t stop being useful to them just because you do. Handing your most intimate biometric information to that company is a case study in one.

Designer: Meta

To be fair, the product itself has a coherent logic behind it. Meta’s Ray-Ban Display glasses have been received surprisingly well by the press, and the neural wristband that ships with them, which uses electromyography to read muscle signals and translate them into gestures, only works with those glasses. That’s a real limitation. A smartwatch that absorbs that gesture-control functionality while adding health tracking and a persistent AI assistant would close a gap that currently makes the whole setup feel incomplete. From a pure product strategy standpoint, Malibu 2 makes sense.

The hardware ambitions have also matured since Meta’s first attempt at a smartwatch, which was scrapped in 2022 after accumulating plans for detachable cameras and metaverse tie-ins that never quite added up to a coherent device. Malibu 2 is reportedly focused on health tracking and Meta AI integration, which is a much cleaner pitch. The company already has a working partnership with Garmin, visible in the Oakley Vanguard sports glasses and a neural band demo at CES 2026 inside a Garmin-powered car concept. If there’s a natural manufacturing and platform partner for this watch, Garmin is the obvious candidate.

Meta is also reportedly developing the watch to sit alongside updated Ray-Ban Display glasses, internally called Hypernova 2, with both devices likely to be unveiled at Meta Connect in September. The Phoenix mixed reality glasses, meanwhile, have been pushed to 2027 partly because Meta’s executives were concerned about releasing too many devices at once and confusing consumers. That’s a reasonable concern. It’s also a little rich coming from a company whose current product lineup already includes smart glasses with a separate neural band that only controls one device.

The wearables market is genuinely ready for a credible third competitor alongside Apple and Samsung, and Meta has the AI infrastructure and the existing glasses ecosystem to make Malibu 2 compelling from launch. But compelling and trustworthy are different things, and Meta has spent twenty years demonstrating which one it prioritizes. Your Apple Watch data sits in Apple’s ecosystem, behind a company that has made privacy a marketing pillar and a legal battleground. Your Malibu 2 data sits with a company that patented a way to keep monetizing you after you die.

The post Meta Wants to Put an AI Health Tracker on Your Wrist in 2026. What Could Go Wrong?? first appeared on Yanko Design.

Meta Wants to Put an AI Health Tracker on Your Wrist in 2026. What Could Go Wrong??

Meta is building a smartwatch, and it wants to know your heart rate, your sleep patterns, your activity levels, and whatever else it can pull from a sensor pressed against your skin all day. The device is codenamed Malibu 2, it’s targeting a 2026 launch, and by most accounts it sounds like a perfectly competent health wearable. The problem isn’t the hardware. The problem is the company attached to it.

This is the same Meta that just faced congressional scrutiny over social media addiction today. The same Meta whose smart glasses are reportedly inching toward facial recognition. The same Meta that filed a patent for Project Lazarus, a system designed to generate posthumous content from deceased users, because apparently your data doesn’t stop being useful to them just because you do. Handing your most intimate biometric information to that company is a case study in one.

Designer: Meta

To be fair, the product itself has a coherent logic behind it. Meta’s Ray-Ban Display glasses have been received surprisingly well by the press, and the neural wristband that ships with them, which uses electromyography to read muscle signals and translate them into gestures, only works with those glasses. That’s a real limitation. A smartwatch that absorbs that gesture-control functionality while adding health tracking and a persistent AI assistant would close a gap that currently makes the whole setup feel incomplete. From a pure product strategy standpoint, Malibu 2 makes sense.

The hardware ambitions have also matured since Meta’s first attempt at a smartwatch, which was scrapped in 2022 after accumulating plans for detachable cameras and metaverse tie-ins that never quite added up to a coherent device. Malibu 2 is reportedly focused on health tracking and Meta AI integration, which is a much cleaner pitch. The company already has a working partnership with Garmin, visible in the Oakley Vanguard sports glasses and a neural band demo at CES 2026 inside a Garmin-powered car concept. If there’s a natural manufacturing and platform partner for this watch, Garmin is the obvious candidate.

Meta is also reportedly developing the watch to sit alongside updated Ray-Ban Display glasses, internally called Hypernova 2, with both devices likely to be unveiled at Meta Connect in September. The Phoenix mixed reality glasses, meanwhile, have been pushed to 2027 partly because Meta’s executives were concerned about releasing too many devices at once and confusing consumers. That’s a reasonable concern. It’s also a little rich coming from a company whose current product lineup already includes smart glasses with a separate neural band that only controls one device.

The wearables market is genuinely ready for a credible third competitor alongside Apple and Samsung, and Meta has the AI infrastructure and the existing glasses ecosystem to make Malibu 2 compelling from launch. But compelling and trustworthy are different things, and Meta has spent twenty years demonstrating which one it prioritizes. Your Apple Watch data sits in Apple’s ecosystem, behind a company that has made privacy a marketing pillar and a legal battleground. Your Malibu 2 data sits with a company that patented a way to keep monetizing you after you die.

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Smart Ring With A Built-in Screen Also Doubles As An AI-Assistant Pendant Wearable

Technology often evolves in dramatic spikes – brighter displays, sharper cameras, smarter assistants – but the real breakthroughs are usually quieter. As our devices become smaller and more personal, the focus shifts from adding features to removing friction. The most compelling wearables are the ones that disappear into your routine, responding instinctively without demanding attention. Dribble explores exactly that future, transforming subtle human expression into a seamless digital command system.

Dribble is a pill-shaped wearable built around silent speech recognition. Instead of relying on audible voice commands, the AI-powered gadget interprets lip movements and whispered articulations through integrated microphones and an under-display front camera sensor. It focuses on the physical mechanics of speech rather than the sound itself, allowing users to communicate with digital systems without speaking out loud or lifting a hand.

Designer: Kangmin Park

The vision is straightforward but ambitious: a smartphone-free lifestyle driven by subtle interaction. With gentle touches and silent articulation, users can reply to messages, take calls, or initiate pre-programmed email responses. Everything happens discreetly through the wearable, eliminating the awkwardness of wake words or public voice commands. In professional settings or crowded environments, this approach prioritizes privacy while maintaining efficiency.

Form plays a crucial role in making this concept believable. Dribble is designed to sit comfortably on the index finger, maintaining a compact and ergonomic presence that doesn’t compete with daily wear. Its minimal aesthetic reinforces the idea of technology that blends rather than dominates. A subtle integrated screen reduces visual dependency, encouraging users to stay engaged with their surroundings instead of constantly glancing at a phone.

Versatility is another defining element. Beyond its ring-like configuration, Dribble can shift into a necklace mode, taking on a gem-like appearance that doubles as a fashion accessory. It can also be worn on the wrist or attached to a backpack, adapting to personal style and functional needs. This flexibility positions it not just as a utility device, but as an extension of identity.

The wearable extends its capabilities beyond communication. Built-in sensors monitor vital health parameters, including heart rate, blood oxygen saturation, and stress levels. Pleasant vibration alerts notify users discreetly, reinforcing its role as both a lifestyle and wellness companion. The integration of health tracking adds depth to the concept, aligning it with the broader direction of modern wearable technology.

Dribble also carries meaningful implications for accessibility and safety. Hands-free, silent interaction could benefit individuals with limited mobility or those working in hands-busy environments, such as driving or technical operations. By removing the need for touchscreens or audible speech, it introduces a new layer of intuitive control.

Although still a concept, the project is presented with product-level detailing. Size options ranging from 40mm to 50mm suggest adaptability for different users, while a Plus model promises enhanced ergonomics and advanced features.

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Forget Step Counters: Dreame’s New Smart Rings Focus On ECG Reports, Sleep, And Real-Time Emotion Data

On any given game day, millions of us become amateur analysts, dissecting every play and scrutinizing every statistic that flashes across the screen. We track player performance with an almost scientific rigor, celebrating the numbers that signal a win and debating the metrics that lead to a loss. This deep dive into data has fundamentally changed how we watch sports, turning passive viewing into an interactive, analytical experience. Yet, for all the attention we pay to the athletes’ performance, our own physiological journey as spectators has remained completely invisible.

Dreame’s new AI Smart Ring proposes a fascinating shift in perspective, turning the sensor technology usually reserved for athletes inward on the audience. The ring’s most ambitious feature, an AI-powered emotion index, aims to quantify the rollercoaster of being a fan, tracking how your body reacts to every thrilling victory and agonizing fumble. It represents a new frontier for wearables, one less concerned with counting your steps and more interested in mapping your heart’s response to the passions that drive you. It is pro-level analytics for the rest of us.

Designer: Dreame

Instead of launching just one device, Dreame is splitting its ambition into a two-ring strategy, which is a seriously interesting market play. The company is effectively acknowledging that “health tracking” means different things to different people. For some, it is about hard, clinical data and safety nets. For others, it is about lifestyle, self-awareness, and emotional insight. So, rather than making one ring that tries to do everything, they have created two distinct products: the Dreame Health Ring, launching in early March, and the Dreame AI Smart Haptic Ring, which is slated for the second half of the year.

The Dreame Health Ring is the more advanced and serious of the two. This is the one aimed squarely at users who want professional-grade monitoring and peace of mind. Its headline feature is the ability to generate ECG reports on demand, moving it closer to a medical-grade device than a typical fitness tracker. It is built around a core of accurate health monitoring and safety alerts, using AI-driven analysis to flag potential issues. Think of this as the quiet, reassuring guardian, focused on delivering vital health data you can potentially share with a doctor, rather than tracking your mood during a movie.

Landing later this year, the Dreame AI Smart Haptic Ring is the lifestyle-focused sibling. You are looking at a 2.5 mm thin body that is about 7.5 mm wide and weighs a featherlight 5.2 grams. The outside is a microcrystalline zirconia nano-ceramic with a Mohs hardness of 8, while the inner band is a slick antibacterial alloy. This ring is all about AI-driven health and sleep tracking, but with a focus on interpretation and daily living. It is designed to be the wearable you forget you are even wearing.

Packed inside that tiny frame is the trifecta of modern health sensors: PPG for heart rate and SpO₂, a temperature sensor, and an accelerometer. This all feeds into the AI sleep algorithms that Dreame claims can nail your REM, deep, and light sleep stages with less than a 5 percent error rate. The AI ring tracks all your key vitals 24/7 and holds about a week of data offline, which is exactly how these trackers should work. But where the Health Ring focuses on ECGs, the AI ring uses this data to power its more experimental features.

This is where we get to the AI ring’s headline feature: the emotion sensing. It claims it can generate a real-time emotion index with 92 percent accuracy. Now, is it going to replace your therapist? Absolutely not. But that is not the point. The real value is in the biofeedback. It is a tool for spotting patterns, for seeing a data-driven trace of how your body reacted to a stressful day while your brain was telling you everything was fine. It is a fascinating, and potentially humbling, new layer of self-awareness that separates it from the more advanced Health Ring.

The design of the AI ring is meant to be invisible. It is a screenless, silent loop of ceramic. Instead of a screen, you get a tiny vibration motor inside for its AI Haptic Alerts, a subtle tap on your finger for a call or message, not a jarring buzz that makes everyone in the room look at you. Those haptics also support tap gestures for controlling music or snapping a photo. The battery life reflects this always-on philosophy, with about a week on the ring itself and a charging case that gives you a claimed at least a 100 days of use before you need a wall outlet.

So why are we seeing this two-ring strategy pop up around the Championship Sunday? It is a smart move. It frames the brand not as just another gadget maker, but as a company thinking deeply about the future of personal health. We are obsessed with the analytics of pro athletes, tracking every metric to understand their performance. Dreame is betting that we are finally ready to apply that same level of nerdy obsession to ourselves, and by offering two distinct paths, they are letting us choose just how deep we want that data to go.

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PlayStation XR Glasses Concept Makes a Strong Case for Gaming-Focused AR Wearables

Meta talks about XR glasses as companions for your social life. Snap a photo, answer a call, ask an AI what you are looking at. The PlayStation XR Glasses concept spins that idea toward a different center of gravity. Here, the glasses are not about broadcasting your world. They are about pulling the PlayStation universe closer, shrinking the distance between you, your console, and the screen that usually sits across the room.

Here, XR is not a spectacle. It is a subtle layer that folds into your existing PlayStation life. Imagine a virtual screen hovering above your TV stand, system notifications floating at the edge of your vision, a familiar PS logo resting by your temple like the Start button you have pressed a thousand times. The fantasy is not about replacing your PS5, but about letting its world follow you from couch to desk to bed, quietly, through something that looks like ordinary eyewear.

Designer: Shirish Kumar

The frames carry the same visual language as the PS5 and DualSense controller, all smooth curves and deliberate angles that look cohesive sitting next to your console. That blue accent lighting running along the temples is pure PlayStation branding, the kind of detail that works because it feels earned rather than slapped on. The folding hinge reveals those iconic button symbols when you open the arms, which is a nice touch that reinforces you are holding a gaming device that happens to look like eyewear. Whether Sony’s actual industrial design team would ever build something this sleek is another question entirely, but as a design exercise, it holds together.

There is a front-facing camera tucked under the lenses for object tracking and AR overlays, auto-adjusting lenses that darken outdoors and clear indoors, embedded sensors for a heads-up display, gesture controls for navigation. The PS logo on the temple supposedly works like a button, tap for Start and hold for Home, mirroring your muscle memory from the controller. All of that sounds good on paper. The real question is what you actually do with these once they are on your face. Existing PlayStation games would almost certainly run as a virtual screen floating in your field of view, basically a private monitor you wear instead of stare at. True AR gameplay where Aloy from Horizon is dodging around your coffee table requires games built specifically for that, and Kumar does not show or describe any of those experiences.

What this concept does well is stake out a different philosophy for XR glasses. Where Meta wants social connectivity and Apple is aiming for spatial computing as a productivity play, this imagines gaming-first hardware that extends an existing ecosystem rather than trying to create a new one. Whether that is enough to justify another screen in your life is the question every XR device has to answer eventually. For now, it is a polished look at what Sony could build if they decided lightweight AR glasses were the next logical step after VR headsets and portable screens.

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Forget CarPlay: Sherpa’s AR Glasses Decode Road Signs and Dashboard Icons For Nervous New Drivers

The AR glasses market keeps promising us augmented productivity and enhanced experiences, then delivering expensive ways to check notifications without pulling out your phone. Sherpa takes a different approach by targeting a specific moment of genuine incompetence: those first few months behind the wheel when every intersection feels like a pop quiz you didn’t study for. The concept uses heads-up displays to overlay directional cues and translate dashboard indicators, theoretically keeping your eyes on the road instead of darting between the windshield and that mysterious warning light.

What makes this Hongik University project interesting isn’t the hardware, which looks like standard-issue smart glasses in white plastic. It’s the learning system built around it. After each drive, the companion app analyzes your performance and identifies patterns in your mistakes. Miss the same type of turn signal three times? The AI notices. Struggle with a particular intersection? It breaks down what went wrong. Most new drivers get feedback in the form of angry horns and passenger-seat panic. This proposes something more useful, assuming you’re willing to let an algorithm critique your lane changes.

Designers: Yeongjun Yun, Jaeyun Lee

The hardware itself follows the current playbook for consumer AR: rounded frames thick enough to house display optics, visible sensor cutouts on the nose bridge (likely cameras for environmental and eye tracking), and an adjustable temple mechanism that looks borrowed from premium eyewear design. They’ve skipped the usual temptation to make it look aggressively futuristic, which matters when your target audience already feels self-conscious about their driving abilities. The cylindrical charging case suggests they’re thinking about daily use patterns rather than occasional deployment, treating this like essential equipment you grab before every drive during those first nervous months.

Where this gets genuinely clever is the integration with what they’re calling SDV, or software-defined vehicles. Modern cars already collect absurd amounts of data through their sensor arrays. Sherpa appears designed to tap into that information stream and translate it into actionable guidance. The system knows when you’ve entered a complex intersection, can read your hesitation through eye tracking, and overlay exactly what you’re supposed to watch for at that moment. Then it remembers that you struggle with this specific scenario and adjusts future guidance accordingly.

Unlike entertainment-focused AR wearables, this actually solves a real use case, which puts it ahead of most AR glasses the industry is trying to push down our throats. Driving schools teach you mechanics but abandon you at the precise moment when contextual learning would help most. If Sherpa can fill that gap between instruction and competence, it might be the first consumer AR application that people actually need rather than tolerate. Whether novice drivers will adopt glasses that broadcast their inexperience is a different question entirely, but at minimum someone’s finally asking AR to do actual work.

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Samsung’s New Wearable Audio Concept Looks More Like Jewelry Than Tech

Wearable technology has spent too long looking like wearable technology. Slac breaks that mold with a refreshingly honest approach: if something lives on your body all day, it should look like it belongs there. The circular ear ring and accompanying wrist piece read more like contemporary jewelry than consumer electronics, which is exactly the point.

This concept taps into how Gen Z actually relates to their audio devices. These aren’t tools you begrudgingly carry. They’re expressions of taste, mood shapers, and now with Slac, genuinely attractive accessories. The open hoop design that hugs your ear offers a sculptural quality that traditional earbuds simply can’t match. When paired with the sleek wrist component, you get a cohesive audio system that understands fashion and function aren’t opposing forces. They’re partners in creating technology people actually want to wear.

Designers: Youngha Rho, Minchae Kim, Doa Kim, Si Heon Song, Seunghee Kim

Three components make up the full system: an open ear ring handling audio output, a wrist-worn ring tracking your listening data, and a home charging station. That circular form factor pulls double duty in ways most earbud designs completely miss. Wrapped around your ear, it creates this architectural presence without jamming anything into your ear canal. You stay aware of conversations, traffic, your entire sonic environment while your music layers on top. When you’re done listening, the ear ring snaps magnetically onto the wrist component, transforming the whole setup into what reads as a chunky watch band or bracelet. Nobody’s shoving these into a pocket case like loose change.

The AI running behind the scenes tracks your full 24-hour audio cycle and starts building preference profiles automatically. Machine learning analyzes sound intensity, pitch variations, and tonal characteristics from everything flowing through those ear rings. Cycling to work means you probably want traffic noise punched up alongside your playlist. Grinding through spreadsheets at a coffee shop means the background chatter gets filtered while your focus playlist stays crisp. The system generates these sound filtering categories in real time, and you can tweak individual layers through sliders in the app. Boost voices, drop mechanical hum, amplify nature sounds, whatever combination your brain needs in that specific moment.

They’ve included this gesture control called “Slate” that actually seems thought through. You rotate your hand in a circular motion while wearing both rings, mimicking that clapperboard snap before a film take. One rotation flips you between content-focused mode and environment-focused mode. Your podcast drops to background levels while street sounds come forward, or vice versa. No app diving, no button fumbling, just a quick physical gesture.

The aesthetic commits fully to the jewelry angle without hedging. Both black and metallic colorways show up in the renders, and that wrist component carries enough visual mass to register as intentional rather than apologetic. You could wear this setup to contexts where regular earbuds feel socially awkward. Dinner with your partner’s parents, a work presentation, anywhere those telltale white stems signal that you’re half-checked-out. This project emerged from a design team working within Samsung’s development programs, and you can feel years of wearable experience informing every choice. Slac points toward where personal audio needs to go: context awareness, all-day wearability, and designs that enhance your aesthetic rather than forcing compromises.

Will this exist any time soon? I honestly doubt it. A lot of these large-scale internship/incubation programs are aimed at imagining an alternate reality or future and working to build the technology in that direction, in the hopes that insights and innovations will trickle into existing products. The Slac, as we see it, probably won’t exist… but its overarching theme of technology as jewelry is already fairly popular. Smartwatches and AI Pins are a great example of this, and given how often we already wear TWS earbuds, the idea of an earbud that also masquerades as jewelry seems like a fairly clever route…

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Meta Quest 3 feature turns any flat surface into functional Surface Keyboard with trackpad

Meta may have discontinued the Quest for Business program intended for its Quest 3, but the Horizon OS v85 is planning on introducing some niche features to the VR headset, which, of course, will start with the replacement of Horizon Feed with the Navigator UI as the default. In addition to that, if the new Horizon OS v85 Public Test Channel (PTC) is considered, the Meta headset will be able to turn any flat surface – a table or a desk – into a virtual keyboard you can type on like a physical keyboard.

The PTC for Quest OS v85 has started rolling out and initial YouTube hands-on reviews and forum discussions reveal it’s available as an experimental feature exclusively on Quest 3. The Quest 3S may have been left out of the virtual keyboard (the reason is not apparent at the time of writing), which appears like magic on a table and turns it into a keyboard complete with a trackpad.

Designer: Meta

The feature is called Surface Keyboard and it adds a keyboard on top of any surface you want. With the tap on the handheld controllers, you can switch back from the virtual keyboard to controllers and back seamlessly. If mixed reality and hand tracking have always excited you, with v85 of its operating system, the Quest 3 is going to take that experience to a new level.

To be able to truly live this fiction, where you place your hands on a table for a couple of seconds and a keyboard appears out of nowhere (where your hands were), and you can start typing – no buttons, no configuration, just hands and the virtual keyboard to type on. You will be required to opt in to the PTC of the Horizon OS, and receive the pre-release version to toil with.

If we remember correctly, Meta has been working on creating a virtual keyboard of this kind for a better part of the decade. In fact, it was in 2023 that Mark Zuckerberg demoed it and claimed he could reach 100 words per minute. Going by the videos and reviews floating online, the keyboard will take some getting used to. That said, the setup is easy and straightforward.

When you have opted in for the PTC, you can go to Movement Tracking and enable hand movement and body and double-tap controllers for hand tracking (to be able to switch between controller and keyboard). Now, to the Experimental and Unstable Surface Keyboard under the head. Once that’s done, go to devices, click keyboard, and setup and you’re set. Place your hands flat on a surface, and in seconds, a keyboard will appear where your hands are.

 

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