OpenAI just launched an app store inside ChatGPT

OpenAI has introduced an app directory that's now available right inside ChatGPT, the company announced. "Apps extend ChatGPT conversations by bringing in new context and letting users take action like order groceries, turn an outline into a slide deck or search for an apartment," the company wrote in a blog post. OpenAI also noted in a help document that "connector" apps like Google Drive are now simply called "apps."

The new apps section (on iOS, Android and web) is divided into Feature, Lifestyle and Productivity categories, letting you connect to commonly used apps and sites like Booking.com, Spotify and Dropbox. To use an app, simply click on it, hit "Connect" then authorize the app to access ChatGPT. With that done, you can then start a chat related to that app. In the case of Dropbox, for instance, you'll be able to "gather insights, prepare briefs and summarize reports or internal documents," according to the description. Once connected, any app can be accessed by doing an @ mention of it.

A new addition that came along with the store is an Apple Music app that, like Spotify, helps users find music, create playlists and manage their libraries through a chat interface. Another is DoorDash, which lets you transform recipes, meal planning and staples into "an actionable shopping cart."

Along with the app directory, OpenAI is now allowing developers to submit apps for review and publication in ChatGPT according to the company's app submission guidelines. It also published resources to help developers build such apps, including best practices, open-source example apps, an open-sourced UI library for chat-native interfaces and a step-by-step quickstart guide. That's on top of the software developer kit (SDK) that OpenAI introduced in October.

OpenAI noted that for now, developers can only monetize apps by linking out from the ChatGPT app to the native app or website — but the company is exploring internal monetization options as well. Privacy was also emphasized, with companies required to provide "clear" policies.

The new feature is a big part of Sam Altman's promises to make ChatGPT more versatile with the addition of custom "GPT" bots. "Over time, we want apps in ChatGPT to feel like a natural extension of the conversation, helping people move from ideas to action, while building a thriving ecosystem for developers," the company wrote.

This article originally appeared on Engadget at https://www.engadget.com/ai/openai-just-launched-an-app-store-inside-chatgpt-133049586.html?src=rss

The best multi-device wireless charging pads for 2026

There’s a good chance you own a couple of gadgets that support wireless charging now, be it your iPhone or Android phone, wireless earbuds or smartwatch. Multi-device wireless chargers can help power them all up in one place, without the need for a bunch of cords messing up your space. There are dozens of these accessories out there today, and we’ve tested a bunch of the most popular models. You’ll find out top picks below for the best wireless charging pads, plus some advice on how to choose the right one for your needs.

The short answer is no, but the long and more detailed answer starts with it depends. Regular old wireless charging pucks should work with any device that’s compatible with the same wireless charging standard that the charger supports. Smartphones and other mobile devices that support wireless charging nowadays are likely to support the Qi standard, so double check that your phone or gadget fits that bill and it should work with any Qi wireless charging pad (all of our top picks fall into this category).

When it comes to multi-device chargers, things can get a little tricky. Rather than starting your search looking for the most universally adaptable accessory, consider the devices you have and aspire to own in the future. If you’re an iPhone user with an Apple Watch, you may want to look for a wireless charger that has a Watch pad built in. Ditto if you’re a Samsung phone owner and use a Galaxy Watch. Some earbuds support wireless charging, but you’ll only need an open pad or space on your multi-device charger where you can sit the earbuds in their case down for a power-up.

Those with iPhone 12s and newer Apple smartphones can take advantage of MagSafe chargers, which magnetically attach to their handsets. Android devices don’t support Apple’s proprietary MagSafe technology, but you can buy a magnetic adapter for pretty cheap that will allow your Samsung or Pixel phone to work with MagSafe multi-device chargers. You’ll also need that to get full Qi2 goodness with newer Android phones like the Galaxy S25 series, which are “Qi2 ready,” but since they do not have magnets built in, aren’t precisely Qi2 compliant.

Even without a charging cable to worry about, you’re probably buying a multi-device wireless charger with one location in mind. It might sit on your nightstand or on your desk. Not everyone buys a charger just for themselves, though; you might want to use one as a shared station for you and a partner.

If the charger will sit on your nightstand, you’ll likely want a compact, stable unit that won’t swallow all your free space or tumble to the floor (and if it does fall, one with enough durability to survive). Some may prefer a lay-flat design if your phone screen has a tendency to keep you awake at night. Others might use their phone as their alarm clock, in which case you may want a stand that keeps the screen within reach and eyeshot. This is also the preferred design if you use Standby Mode on iPhones.

A vertical orientation may be best for a charger that lives on your desk so you can more easily check notifications throughout the day. Will the charger sit on a low table? Horizontal charger pads may make it easier to grab your devices in a hurry. Travel chargers should fold up or otherwise protect the pads while they’re in your bag. And, yes, aesthetics count. You may want something pretty if it’s likely to sit in a posh room where guests will see it.

For vehicles, consider a wireless car charger if you frequently need to top off your device on the go. These chargers combine convenience with functionality, ensuring your phone stays powered while you’re navigating and taking calls at the same time. We also heavily recommend a magnetic charger so there’s less of a chance your phone will go flying into the passenger’s seat the next time you hit a pothole.

It’s no secret that wireless charging is slower than wired, and powering multiple devices adds a new wrinkle. As these chargers often have to support a wide range of hardware, you’ll have to forget about the fastest, device-specific options from brands like Google, OnePlus and Samsung.

Today, most wireless chargers come in at 15W for phones. The latest Qi2 standard can get you up to 25W of power with a compatible smartphone. These speeds are improving bit by bit, but they're still not quite as fast as wired charging. It’s rare that you’ll find a truly slow-as-molasses example, mind you. Even some of the most affordable options we’ve seen will recharge your phone at a reasonable 7.5W or 10W, and the 5W for other devices like wireless earbuds is more than enough.

If you’re only docking overnight or while you work, speed won’t make a huge difference. Just be sure that whatever you buy is powerful enough for a phone in a case. Some chargers may also include an AC adapter in the box. If not, make sure you’re using one with the right power level to get the fastest charge.

This article originally appeared on Engadget at https://www.engadget.com/computing/accessories/best-multi-device-wireless-charging-pads-120557582.html?src=rss

Dolby and LG introduce a modular home audio system for CES 2026

LG is teaming up with Dolby for a new collection of speakers that the companies are unveiling ahead of CES 2026. The LG Sound Suite features a modular lineup the H7 soundbar, M7 and M5 wireless surround speakers and the W7 subwoofer. The speakers can be combined in more than two dozen different configurations, from a pair to a full 13.1.7 channel surround sound home theater setup.

The main pitch of the LG Sound Suite is its application of Dolby Atmos FlexConnect. This is the audio brand's tech for optimizing sound from wherever wireless speakers are placed. It's meant to deliver optimal sound even from unusual locations, even when you're limited by outlet locations, furniture placement or other quirks of a room's layout. The collaboration with LG brings FlexConnect to a soundbar for the first time. When the H7 soundbar is used as the lead device, the suite will bring Dolby Atmos FlexConnect audio to any television. In a future software update, LG will also bring support for Dolby Atmos FlexConnect directly to some of its premium TVs, including select 2025 models.

This article originally appeared on Engadget at https://www.engadget.com/audio/speakers/dolby-and-lg-introduce-a-modular-home-audio-system-for-ces-2026-010000126.html?src=rss

Meta is ‘pausing’ third-party VR headsets from ASUS and Lenovo

Last year, Meta announced that it was opening up its VR operating system to other headset makers, starting with ASUS and Lenovo. Now, it seems that Meta is pumping the brakes on the effort and those third-party Horizon OS headsets might never actually launch.

The company has "paused" the program, Road to VR reported. Meta confirmed the move in a statement to Engadget, saying that it's instead focusing on "building the world-class first-party hardware and software needed to advance the VR market." ASUS and Lenovo didn't immediately respond to a request for comment. Both companies have said little about the headsets since they were first announced in 2024. ASUS' was going to be a "performance gaming" headset under its Republic of Gamers (ROG) brand, while Lenovo's was intended to be a mixed reality device focused on "productivity, learning and entertainment" experiences 

The shift isn't entirely surprising. Meta Connect was very light on virtual reality news this year as smart glasses have become a central focus for the company. Earlier this month, Bloomberg reported that Meta was planning significant cuts to the teams working on virtual reality and Horizon Worlds. The company said at the time it was "shifting some of our investment from Metaverse toward AI glasses and wearables given the momentum there."

Still, Meta is seemingly leaving the door open for third-party VR headsets in the future. "We’re committed to this for the long term and will revisit opportunities for 3rd-party device partnerships as the category evolves," the company said.


This article originally appeared on Engadget at https://www.engadget.com/ar-vr/meta-is-pausing-third-party-vr-headsets-from-asus-and-lenovo-193622900.html?src=rss

This cute little Behringer synthesizer sounds massive and costs just $49

Behringer is no stranger to remaking classic synthesizers and selling them at much cheaper price points. However, this latest release may just take the budget-friendly cake. The company just introduced the UB-1 Micro, previously called the Spirit, a portable analog synth inspired by the Oberheim Matrix line that costs just $49.

Despite the price tag, this thing still manages to sound extremely beefy. It features a pair of digitally controlled oscillators (DCOs) based on the Oberheim Matrix 6 analog chip. The monophonic/duophonic synth boasts two LFOs to control filters and tuning and an arpeggiator with three patterns and a hold function.

It also offers 32 factory presets, which is expandable via the company's SynthTribe software. The UB-1 Micro includes 16 touch-sensitive keys, six function buttons and an OLED display for editing parameters. There's a USB-C port, for connecting to smartphones and computers. To that end, it can do USB/MIDI.

This is just the latest teensy recreation by Behringer. The UB-Xa Mini is a take on another Oberheim classic and a portable version of its own full-size UB-Xa synthesizer. The JT Mini recreates an iconic Roland Jupiter synth, while the Phara-o Mini is primarily based on the Korg Volca Keys.

This article originally appeared on Engadget at https://www.engadget.com/audio/this-cute-little-behringer-synthesizer-sounds-massive-and-costs-just-49-191513007.html?src=rss

Google’s Gemini 3 Flash model outperforms GPT-5.2 in some benchmarks

Almost exactly a month after the debut of Gemini 3 Pro in November, Google has begun rolling out the more efficient Flash version of its latest AI model. According to the company, the new system offers similar "pro-grade" reasoning performance as its flagship model at a fraction of the cost, making it ideal for everyday use. 

In benchmarks, the new system performed significantly better than Google's previous generation models, including Gemini 2.5 Pro. More notably, in Google’s testing it managed to trade blows with GPT-5.2, the model OpenAI rushed out to counter Gemini 3 Pro. 

A table comparing Gemini 3 Flash's performance across a variety of AI benchmarks.
A table comparing Gemini 3 Flash's performance across a variety of AI benchmarks.
Google

For example, in the tough Humanity's Last Exam suite, Gemini 3 Flash scored less than a percentage point worse than GPT-5.2 when neither model had access to tools like web search. In a handful of other benchmarks, Google's more efficient system even managed to outperform OpenAI's latest. For instance, in MMMU-Pro, a benchmark designed to test a model's multimodal understanding and reasoning, it edged out GPT-5.2 with a result of 81.2 percent compared to 79.5 percent. Of course, benchmarks only tell a partial story; we'll have to see what people think once both systems are broadly available. Still, the fact Gemini 3 Flash is even close to GPT-5.2, and the "Extra High" reasoning mode at that, is a worrying sign for OpenAI.   

As with Gemini 3 Pro, Google is rolling out the new model to both the Gemini App and AI Mode in Search where it will be the default model for both services. "That means all of our Gemini users globally will get access to the Gemini 3 experience at no cost, giving their everyday tasks a major upgrade," Google explains. While on the subject of AI Mode, it's now possible to access Nano Banana Pro, Google's latest image generator, directly from the chatbot. Provided you live in the US, select "Thinking with 3 Pro," followed by "Create Images Pro" from the model picker.

This article originally appeared on Engadget at https://www.engadget.com/ai/googles-gemini-3-flash-model-outperforms-gpt-52-in-some-benchmarks-160000000.html?src=rss

OnePlus 15R review: A 165Hz display and big battery for $700

I know what you're thinking, didn't OnePlus release a new phone just last month? It did. A little over five weeks after the announcement of the OP15, the company is back with the OnePlus 15R, a more affordable version of its new flagship that starts at $700 (or $200 less than its sibling). Off the top, this will be a shorter review because most of what I said about the OnePlus 15 also applies to the OP15R. It's a great phone that asks you to make one pretty significant compromise. 

Design and display

The OnePlus 15R's screen is slightly cooler than that of the OnePlus 15.
The OnePlus 15R's screen is slightly cooler than that of the OnePlus 15.
Igor Bonifacic for Engadget

Like the OnePlus 15, the 15R looks like the OnePlus 13s and 13T, a pair of smaller, 6.32-inch phones the company released in India and China this past spring. I said the design of the OP15 was boring and derivative of the iPhone 16 Pro. The 15R has done nothing to change that opinion. With one fewer camera, the OP15R doesn't look much different from the iPhone 12 I've been hanging on to since 2020. 

That said, I'm more fond of the 15R's mint breeze color (the phone is also available in charcoal black) than the sand storm shade of my OP15. We're big fans of minty phones here at Engadget, and OnePlus has gone with a particularly pleasing hue of the color with its new phone. With the redesign, OnePlus has also improved the phone's waterproofing, bringing it in line with the OP15. The new handset is IP69K-certified against moisture and dust, meaning it can withstand heated water shot at it at pressure. Like the OP15, the 15R trades OnePlus' old Alert Slider for a new Plus Key. It functions like the iPhone's Action button, allowing you to add a shortcut for a favorite feature. For example, you can configure it to open the camera app or act as a do not disturb toggle, among a few other options.  

One departure from the OP15 is that the 15R has a larger 6.83-inch display, making it slightly taller than its sibling. OnePlus is marketing this as one reason buyers might pick the 15R over the OP15, but holding the phones side by side, there's not much difference between the two. They're both big, and you'll either like that or won't.

On top of being big, the 15R's screen can refresh at a fast 165Hz in games. The two displays are also comparable in terms of resolution and brightness; both can push 1,800 nits of brightness. One difference I noticed is the OnePlus 15 has a warmer panel, even when the two phones are set to the same colorspace. I've reached out to OnePlus to find what might be causing the disparity, but for now it may be due to a quality control issue or oversight in the company's software.  

One last thing, OnePlus has upgraded the 15R to add an ultrasonic fingerprint sensor beneath the screen. This is placed in a nice spot toward the bottom third of the display, and it's fast and accurate.   

Performance and battery

The OnePlus 15R is also slightly thinner than the OnePlus 15.
The OnePlus 15R is also slightly thinner than the OnePlus 15.
Igor Bonifacic for Engadget

The OnePlus 15R is the first phone in North America to arrive with Qualcomm's latest Snapdragon 8 Gen 5 chipset. Not to be confused with the Snapdragon Gen 5 Elite in the OP15, this new chipset is similar to Qualcomm's flagship system-on-a-chip but has a weaker CPU and GPU. This is reflected in benchmarks like Geekbench 6 where the OP15 handily outperforms the OP15R. It's not even close, either, with the OP15 delivering standout single- and multi-core scores of 3,773 and 11,293, while the 15R put up more modest results of 2,857 and 9,512. 

From that perspective, you're losing a fair amount of performance, but real-world use tells a different story. Outside of the handful of games such as Call of Duty: Mobile and PUBG that support the OP15 and 15R's 165Hz displays, the Snapdragon 8 Gen 5 offers more than enough muscle for the majority of applications. Even for most games (like the ones I like to play, including Diablo Immortal and League of Legends: Wild Rift), the Snapdragon 8 Gen 5 is a great match. 

OnePlus also hasn't skimped on the 15R's other internal components. You're still getting 12GB of LPDDR5X Ultra RAM and 256GB of UFS 4.1 storage. That's the same configuration as the base model of the OP15. This translates to a phone that doesn't miss a beat when switching between apps and loading files like images and videos.  

The 15R has a slightly bigger battery, coming in at 7,400mAh, up from 7,300mAh on the OP15. In practice, the two phones offer the same amount of battery life. Putting them through both Engadget's video rundown test, they both ran for 38 hours before their batteries died (which makes sense given the OP15R has a bigger screen). Like the OP15, the 15R comes with the OnePlus 55W SUPERVOOC charger in the box. The adapter can get the 15R from dead to 100 percent in less than an hour. If you hate charging your phone, the 15R makes that process as painless as possible, with a battery that both lasts long and won't be at the outlet for hours.            

Cameras

A closeup of the OnePlus 15R's camera module.
A closeup of the OnePlus 15R's camera module.
Igor Bonifacic for Engadget

By this point you're probably wondering what OnePlus cut from the OP15 to make the 15R more affordable. The answer — quite literally — is an entire camera. The new phone is missing a telephoto camera, something you could find on its predecessor, the OnePlus 13R. And as far as I can tell, the two remaining cameras use the same 50-megapixel and 8MP sensors OnePlus shipped on last year's model. The company also hasn't upgraded the glass on either camera. That leaves the selfie camera as the only area to see some change in the form of a sharper 32MP sensor and the addition of autofocus.       

Unfortunately, none of the 15R's cameras stand out. As a whole, they suffer from the same set of problems that plague the OnePlus 15's cameras. They're fine out on a sunny day, but as soon as the light becomes a bit challenging, the 15R struggles with shadow details, resulting in muddy pictures. The more I've used both the OP15 and 15R, the more I've come to the conclusion that OnePlus needs to go back to the drawing board with its new Detail Max Engine. It feels like it's holding back what should, at least on paper, be solid hardware.

Software

Despite it's large size, the OnePlus 15R isn't too heavy.
Despite it's large size, the OnePlus 15R isn't too heavy.
Igor Bonifacic for Engadget

There's not much to say here other than the 15R ships with OxygenOS 16, just like the OP15. OnePlus has also promised to support the 15R for the same amount of time as the OP15: four years with software updates and six years with security patches. That's a shorter window than Google and Samsung, both of which promise seven years on all their latest phones. It's hopefully something that OnePlus decides to change starting with the OnePlus 16. The reason I bring that up is that the company’s version of Android is one I like a lot. OxygenOS is slick, with animations that highlight the speed of the 15R's processor and display. The fact the phone comes with the latest version of OxygenOS means you also get access to all of the company's newest AI features, including its Mind Space hub where you can save screenshots and notes for an on-device model to transcribe and summarize.    

 Wrap-up

The OnePlus 15R comes in a lovely mint color.
The OnePlus 15R comes in a lovely mint color.
Igor Bonifacic for Engadget

In short, the OnePlus 15R is the phone for people who don't care about photos and videos. That's the same conclusion I came to with the OP15. If you're a OnePlus fan, the 15R excels in all the areas you would expect the company's devices to make a good showing: performance, battery life and display responsiveness. Given I wasn't too impressed with the OP15's camera, I would actually recommend the 15R over that model. For $200 off the starting price of the OP15, you're getting a device that has almost all of the same strengths of its more expensive sibling.  

Compared to other phones in its price range, such as the Pixel 10 and Galaxy S25 FE, the 15R is not as well-rounded, and can't compete with those devices in camera quality, but you're getting much better performance, battery life and a display they can't match.  

This article originally appeared on Engadget at https://www.engadget.com/mobile/smartphones/oneplus-15r-review-a-165hz-display-and-big-battery-for-700-150000340.html?src=rss

How a VPN works (and why you should care)

The best VPNs can make your online life more private with software that's convenient and cheap — sometimes even free. While keeping your IP address invisible, you can use your VPN to explore streaming content from all over the world or (virtually) sneak into a sports event that's not available in your area.

However, while VPNs are widely available, there's a strange dearth of information on what they actually do behind the scenes. You may know that a VPN masks your device with a proxy server to make it look like you're somewhere else, and maybe even that encryption is involved. But finding any more details can mean running a gauntlet of misinformation.

That's a shame, because the inner workings of a VPN aren't all that difficult to understand. You may not be able to build one yourself without a degree in computer science, but with a little work, you can understand exactly what it's doing on your computer. That's information you can use to select the right VPN for you, and make the most of it once you've got it.

What is a VPN?

To make sure nobody gets left behind, I'll start from the beginning. A VPN (virtual private network) is a method of securely accessing a network, either a closed network (like you might have at the office) or the internet as a whole. Initially, organizations set up VPNs so remote workers can work with secure files. While this still happens, the last 15 years have seen VPNs increasingly marketed to individuals, with Proton VPN, ExpressVPN and others seeing massive user growth.

Broadly, a VPN consists of two parts: the server, which forwards requests to your chosen destination, and the client, a piece of software that lets you interact with the server. You can find a longer explanation here, but I'll use the two sections below to tell you what you need to know right now.

One more note before that — there are multiple kinds of VPNs, including the remote-access VPNs and site-to-site VPNs commonly used by workplaces. However, for this article, I'll be talking mainly about the commercial VPN services sold to individuals for general security needs. Instead of a specific network, these VPNs are designed to handle all of a user's traffic to any point on the internet.

What happens when you use a VPN?

First, you use the client to connect to a server — either the fastest one available or a particular location you need. Once you've connected, every request you send to the internet goes through the VPN server first. This communication between your device and the web is encrypted so it can't be traced back to you.

The VPN server decrypts your requests and sends them on. The destination then communicates with the VPN server, which relays the information back to you — after re-encrypting it so nobody follows it home.

Since the VPN does everything on your behalf, it's your "mask" online. Your internet service provider (ISP) and third parties can see what's being done, but — so long as you’re not otherwise logged in or identifying yourself — nobody knows that it's you doing it. It's like having a friend order pizza for you so the pizzeria doesn't hear you calling for the third time this week (not that I speak from experience).

What's the point of using a VPN?

Why add an extra step to the already complex process of getting online? The two biggest reasons are maintaining anonymity and changing your virtual location. I've already explained how a VPN keeps you anonymous. Among other things, this prevents your ISP from selling your browsing history to advertisers and protects activists who face government repercussions for what they do online.

Changing your virtual location is part of masking, but it can also be used to see the internet as it's visible in other countries. Streaming services are frequently limited to certain places, and almost all of them change the available content based on their licenses in each nation. You can also use a VPN in a country with a nationwide firewall, like China, to see forbidden outside information sources.

How does a VPN work? The full technical explanation

Most online explanations stop after defining a VPN as an anonymous agent between you and the internet — but I wrote this article to go a little bit deeper. To understand what a VPN is doing on a technical level, we'll need to cover how the internet works, how the VPN knows where to send encrypted information and just what "encryption" actually is.

How the internet transmits data

When you're not using a VPN, internet traffic goes directly from your modem to your ISP, then on to your chosen destination. The key technologies here are IP, which stands for Internet Protocol, and TCP, which stands for Transmission Control Protocol. They're usually combined as TCP/IP.

You may have heard that every online device has an IP address that identifies it to every other device. TCP/IP governs not just those names but how data moves between them. Here's how it works, step-by-step.

  1. You click a link or enter a URL into your web browser.

  2. Your computer sends a request to your modem, asking to see the page associated with the URL. Your modem forwards the request to your ISP.

  3. Your ISP finds a domain name server (DNS) that tells it which IP address is connected to the URL you asked to see. It then sends the request to that IP address along the fastest available route, which will involve being relayed between several nodes.

  4. That IP address is connected with a server that holds the content you're looking for. Once it receives the request, it breaks the data down into small packets of about 1 to 1.5 kilobytes.

  5. These packets separate to find their own fastest routes back to your ISP, your modem and finally your web browser, which reassembles them.

  6. You see a web page, likely no more than a second after you asked for it.

The outgoing requests and inbound packets are key to understanding VPN function. A VPN intervenes during step 2 (when your modem contacts your ISP) and step 5 (when your ISP sends the packets back to you). In the next section, I'll explain exactly what it does during those steps.

How VPN tunneling protects data

You might have heard a VPN's activities described as "tunneling." That term refers to a figurative tunnel being created between your device and the VPN. Data enters the tunnel when it's encrypted by the VPN client and exits when it's decrypted by the VPN server. Between those two points, encryption means nobody can see the true data. It's as though it's traveling through an opaque tunnel.

While the tunnel is a useful metaphor, it may be better to think of VPN encryption as an encapsulation. Each packet of data sent via VPN is "wrapped" in a second packet, which both encrypts the original packet and contains information for reaching the VPN server. However, none of these outer layers have the complete path — each just knows enough to reach the next relay. In this way, the origin point (that's you) remains invisible.

The same thing happens when the internet returns content to show you. Your ISP sends the data to the VPN server, because, as far as it knows, that's where the request came from. The VPN then encrypts each packet and sends them back to you for decryption and reassembly. It takes a little longer with the extra steps; that's why VPNs always slightly slow down your browsing speed, though the best ones don't do that by much (Surfshark is currently the fastest).

You learned in that last section that two protocols, IP and TCP (usually combined as TCP/IP), are responsible for letting online devices talk to each other, even if they've never connected before. In the same way, a VPN protocol is like a shared language that lets VPNs encrypt, move and decrypt information. See the next section to learn how a VPN protocol works in detail.

How VPN protocols encrypt data

VPN protocols are the technology behind VPNs; every other feature of your VPN is just a method of interacting with them. All protocols are designed to encrypt data packets and wrap them in a second layer that includes information on where to send them. The main differences are the shape of that second layer, the types of encryption used and how the client establishes its initial secure connection with the server.

It's extremely common for VPNs to advertise protocols with "bank-grade" or "military-grade" encryption. This is talking about the 256-bit Advanced Encryption Standard (AES-256), a symmetric encryption algorithm, which is used by financial institutions and the US government and military. AES-256 is indeed some of the strongest available encryption, but it's only part of the story. As a symmetric algorithm, it's not fully secure on its own, because the same keys are used to encrypt and decrypt it — and those keys can be stolen.

For that reason, most VPN protocols use AES-256 (or a similarly strong cipher like ChaCha20) to encrypt the data packets themselves, then combine it with a larger suite of multiple encryption algorithms. One of the most reliable and popular protocols, OpenVPN, uses the asymmetric TLS protocol to establish a secure relationship between client and server, then transmits packets encrypted with AES-256 across that channel, knowing the keys will be safe.

Explaining this could easily reach the length of a book, but the basic principle isn't complicated. In asymmetric encryption, a sender encodes data with a unique key, then a recipient decodes it with a different paired key. The keys are provided by a trusted third party. In a maneuver called a TLS handshake, the server and client send each other encrypted data. If each can decode the other's test data, they know they have a matched pair of keys, which proves that both are the same client and server that got the keys from the trusted authority.

Why not just use asymmetric encryption for the data itself, if it's more secure? Mainly, protocols don't do this because it's a lot slower. Asymmetric encryption requires a lot of resource-heavy math that makes connections drag. That's why OpenVPN and others use the asymmetric-to-symmetric two-step instead.

To summarize, a VPN protocol is a complex set of instructions and tools that control encryption and routing via VPN servers. Protocols still in use include OpenVPN, WireGuard, IKEv2, SSTP and L2TP. PPTP, one of the oldest protocols, is no longer considered secure. On top of these, VPNs often build their own proprietary protocols, such as ExpressVPN's Lightway.

Putting it all together

Now that we've hit all the relevant information, let's revisit that step-by-step from earlier, this time with a VPN in the mix. Here are the steps, starting with establishing the VPN connection and ending with anonymously viewing a website.

  1. You open your VPN client, choose a server location and connect. The VPN client and server authenticate each other with a TLS handshake.

  2. The client and server exchange the symmetric keys they'll use to encrypt and decrypt packets for the duration of this session (i.e. until you disconnect). Your VPN client tells you that it's established a secure tunnel.

  3. You open your web browser and enter a URL. Your browser sends a request to view the content at that address.

  4. The request goes to your VPN client, which encrypts it and adds an outer layer of information with directions to the VPN server.

  5. The encrypted request reaches the VPN server, which decrypts it and forwards it to your ISP.

  6. As normal, your ISP finds the IP address associated with the URL you entered and forwards your request along.

  7. The destination server receives the request and sends all the necessary packets of information back to your ISP, which forwards it to the VPN server.

  8. The VPN server encrypts each packet and adds a header directing it to the VPN client.

  9. The client decrypts the packets and forwards them to your web browser.

  10. You see the web page you opened.

Because of the encrypted tunnel, the request arrives at the VPN server without any information on where it came from. Thus, the VPN doesn't actually encrypt your activity on the websites themselves — for the most part, the HTTPS protocol does that. Instead, a VPN gives you a false name to put in the register, with no information that could be traced back to your real identity.

How to use this information

Now that you know how a VPN works on a technical level, you're better equipped to choose one for yourself. You can cut through marketing hype statements like:

  • "Military-grade encryption!" (It's the same algorithm everybody uses)

  • "Stay completely anonymous online!" (Plaintext you post on social media is not encrypted)

  • "Dodge ISP throttling!" (If your ISP is throttling you based on your IP address, this works — but if you're being slowed down because of your moment-to-moment activity, your identity doesn't matter)

A VPN is just one important part of a complete cybersecurity breakfast. While hiding your IP address, make sure to also use strong passwords, download updates immediately and remain alert for social engineering tactics.

This article originally appeared on Engadget at https://www.engadget.com/cybersecurity/vpn/how-a-vpn-works-and-why-you-should-care-143000250.html?src=rss

Samsung will show off its expanded Micro RGB TV series at CES

Last year at CES, Samsung debuted its first mainstream Micro RGB TV, a 115-inch model that surprised us with its rich, vivid colors and $30,000 price tag. Now, the company has announced that it will be showing off an entire lineup of Micro RGB TVs at CES 2026 ranging from 55- to 115-inch models, promising to set "a new standard for premium home viewing." 

As a reminder, Micro RGB is a unique new technology similar to Mini LED displays. Unlike the white backlights used on Mini LEDs, though, it uses tiny red, green and blue LEDs that produce more accurate colors and offer smaller and more controllable dimming zones. However, because pixels can't be turned on and off individually like Micro LED or OLED, Micro RGB contrast ratios aren't as high. They promise to be brighter and more color accurate than other technologies, though, hence the high prices and "premium" branding. 

Samsung's upcoming Micro RGB lineup will be available in 55-, 65-, 75-, 85-, 100- and 115-inch models and use the next evolution of the company's technology. The main claim to fame is near broadcast monitor-like color accuracy, covering 100 percent of the demanding BT.2020 HDR standard. That new standard now has a name and VDE certification: Micro RGB Precision Color 100. 

Other key features include Samsung's "Micro RGB AI Engine Pro" for more precise frame-by-frame clarity and realism, new color enhancement functions, Samsung's glare free tech and enhanced audio features including Dolby Atmos and Adaptive Sound Pro. 

Yesterday, LG announced that it would also show off new televisions using Micro RGB technology, with 75-, 86- and 100-inch models coming next year. What remains to be seen, however, is pricing. Given the $30,000 cost of the 115-inch model, you can likely expect the first Micro RGB televisions to be among the most expensive in the lineups of both LG and Samsung. 

This article originally appeared on Engadget at https://www.engadget.com/home/home-theater/samsung-will-show-off-its-expanded-micro-rgb-tv-series-at-ces-141716449.html?src=rss

Alexa Home Theater: Everything you need to know about Amazon’s newest Echo feature

When Amazon’s latest Echo speakers arrived in October, a feature the company spent time hyping during its fall devices event was missing. Alexa Home Theater arrived in late November, allowing owners of a recent Fire TV device and either of the new Echo speakers the ability to use up to five units and an Echo Sub as a surround sound setup. The main selling point is that the underlying tech allows you to put the speakers wherever you want and Alexa Home Theater will handle the rest. A robust array of speakers is a considerable investment, though, and there are limitations to Amazon’s latest play for your living room.

What is Alexa Home Theater?

At the most basic level, Alexa Home Theater is an automatic room calibration tool that’s akin to Trueplay from Sonos, SpaceFit Sound from Samsung or Sound Field Optimization from Sony. The feature, no matter which company builds it, is designed to automatically tune the acoustics of a soundbar or other speakers to the acoustics of the room. These tools allow companies to account for things like high ceilings and weird angles, adjusting audio performance so things sound their best no matter how your home is designed. 

Like similar technologies from other companies, Alexa Home Theater and the latest Echo speakers also support spatial awareness. This allows you to position the speakers however they best fit in your living room and the underlying tech will balance the sound based on their proximity to each other. Gone are the days when you have to put rear speakers in a specific spot in order for them to work. 

For the latest Echo speakers, Amazon overhauled Alexa Home Theater to accommodate more devices in a single setup. Now you can use up to five Echo Dot Max or second-generation Echo Studio units and a subwoofer at the same time. Of course, this means you can put the compact speakers around the perimeter of your home theater space, providing more immersive surround sound than a single speaker or two can muster. Alexa Home Theater recognizes each Echo speaker and adjusts the system accordingly. 

What hardware do I need to use it?

My test setup was four Echo Studio speakers and a Fire TV Stick 4K Max.
My test setup was four Echo Studio speakers and a Fire TV Stick 4K Max.
Billy Steele for Engadget

If you want to use more than two Echo speakers and a subwoofer in your Alexa Home Theater setup, you’ll need the latest Amazon devices to make that happen. That list includes the Echo Dot Max and second-gen Echo Studio, along with the Echo Sub if you crave more bass. You’ll also need a Fire TV streaming gadget for the multi-speaker option, but it has to be one of the following:

  • Fire TV Cube (3rd gen)

  • Fire TV Stick 4K Max (2nd gen)

  • Fire TV Stick 4K (2nd gen)

  • Fire TV Stick 4K Plus

You might be wondering why Alexa Home Theater isn’t supported on other (older) Amazon streaming and audio models. Well, it is… but you’ll only be allowed to pair just two Echo speakers of the same model with an optional subwoofer for a total of three devices. That list of supported models is quite long, but it accounts for the two most recent generations of both the Echo and Echo Dot in addition to the Echo Pop, Echo Plus (2nd gen) and the original Echo Studio. This two-speaker method is also supported on more Fire TV devices, including some standalone TVs with Amazon’s streaming platform built in. 

In that scenario, it means you could pair two Echo speakers with a subwoofer, for example, and have them play the same audio content with Alexa Home Theater.

Currently, Amazon says these are Fire TV devices that don’t support Alexa Home Theater: 

  • Fire TV Stick 4K Select

  • Amazon Fire TV 2-Series

  • Fire TV 4-Series (2025 Release, newest model)

  • Fire TV Omni QLED Series (2025 Release, newest model)

  • Fire TV Omni Mini-LED Series (2024 Release, newest model)

How to set up Alexa Home Theater

Like nearly all home theater speakers and soundbars these days, setting up Alexa Home Theater is easy once you have the required hardware in place. Unlike a lot of the competition, this initial configuration isn’t done in a mobile app — it’s handled by the Settings menu on a compatible Fire TV device. Before you initiate the setup process, you’ll want to make sure your Echo speakers and Fire TV device are up to date. You can ask Alexa to check for updates to the speakers, while you’ll need to check the Device & Software section of the Fire TV Settings menu for those gadgets. Once everything is current, here are the steps to follow to get started with Alexa Home Theater: 

  1. Go to Settings on your Fire TV.

  2. Select Display & Sounds. 

  3. Select Alexa Home Theater.

  4. Select Create Alexa Home Theater

  5. Select the compatible Echo speakers. You can also add an Echo Sub during this step. 

  6. Follow the on-screen instructions to configure the system. After you select either the second-gen Echo Studio or the Echo Dot Max, hit Next and the system will calibrate automatically. If you select other Echo speakers, hit Next and then confirm the placement of the speakers before calibration. 

  7. When the setup is complete, the Alexa Home Theater system is ready to use. To do so, select either Home or Watch Preview

Using Alexa Home Theater with four Echo Studio speakers

The two Echo Studio speakers that flanked my TV primarily handled dialogue.
The two Echo Studio speakers that flanked my TV primarily handled dialogue.
Billy Steele for Engadget

Like most home theater gear, the Fire TV will play short audio clips through each Echo speaker and your TV speakers to determine their location and to calibrate the group to the room. From start to finish, the setup process takes about five minutes — so long as your Fire TV and all speakers are running up-to-date firmware. It’s a quick and straightforward process, which meant I was watching Fallout soon after putting all of the speakers in place. 

While streaming that video game-inspired original series, the Echo Studios provided an immersive audio experience with directional sound and crisp, clear dialogue. The front two speakers handle speech, but there’s some nuance in what direction it’s coming from on screen. Rear speakers are tasked with the bulk of the environmental noise, whether that’s nearby water, passing cars, rain or gunfire — just to name a few. I was also pleasantly surprised by how much bassy rumble these speakers produced during movies and shows. I didn’t think a single unit was particularly adept at low-end tone during my review, but I think it would be just fine to use a collection of Echo Studios without having to add the Echo Sub. 

The overall audio performance here is certainly a boost over any TV’s built-in speakers, but the sense of immersion isn’t as complete as what a soundbar and a pair of rear satellite speakers can provide. Specifically, I felt like the foursome of Echo Studio speakers in my test setup stumbled with the height channels. Despite the angled design of the devices and their multi-driver configurations, the effect of overhead and aerial sounds was quite subdued. 

And the worst part about this is that there’s no way to try to fix it with settings. That’s because there are minimal settings to adjust once Alexa Home Theater is set up. There are two features — dialogue boost and volume leveler — but those are both Fire TV settings rather than items meant for any connected speakers. In the Alexa Home Theater menu, there’s a lip sync tool to address any audio lag, which is a standard item for any soundbar. I would’ve loved to see some kind of channel adjustment at the very least, so that I could dial in the mix a bit rather than relying on Amazon’s preferences. 

If you turn to Alexa for help, the assistant can only change bass, treble and midrange, and it can only do so when prompted by voice commands. When I asked for it to turn up the dialogue, it seemed to just increase the volume. If I asked it to adjust the height channels, Alexa responded affirmatively, but it didn’t sound like any tweaks were applied. Amazon later confirmed that those basic EQ changes are Alexa and actually do here.

Another gripe I have with Alexa Home Theater is the inability to connect my phone or another device to the entire group for music. You can still sync with individual Echo Studio speakers for music via Bluetooth, but if you want to use the whole shebang, you’ll have to play your tunes from the Fire TV or ask Alexa to help. 

The Fire TV platform has plenty of audio streaming apps, but Apple Music isn’t there and that’s where my monthly subscription resides. You have to add the Apple Music skill to the Alexa app on your phone first, then you can stream content from the service by asking Amazon’s assistant. For other services with Fire TV apps, you’re using your TV to play music, and most of the time I want the TV off and to just pick up my phone to blast some Spiritbox. I also like to control the queue from my phone, but alas that’s not an option here. 

Wrap-up

Amazon's new Echo Studio is a complete redesign from the 2019 model.
Amazon's new Echo Studio is a complete redesign from the 2019 model.
Billy Steele for Engadget

The main issue with using four Echo Studios and a Fire TV is the cost. For the speakers alone, you’re looking at nearly $900 for the setup I tested. When the new Echo speakers were announced in September, Amazon said it would offer Alexa Home Theater bundles with multiple speakers, but I couldn’t find those on the company’s website.

For comparison, Sonos currently offers multiple configurations of the Beam soundbar and either Era 100 speakers or a sub for less than $800. For the same price as four Echo Studio speakers, you can get Sony’s Bravia Theater System 6, which comes with a soundbar, rear speakers and a subwoofer. There are other options from other companies as well in the $800 range, and most people will likely be happier with a dedicated soundbar-based setup than four Echo units and a subwoofer. Hello, AirPlay and Google Cast.

From an aesthetic perspective, I can see why someone might opt for multiple Echo speakers instead of a mid-sized (or larger) soundbar. Two Echo Studios on either side of my TV with the two rear units tucked away on a shelf certainly creates a clean look. And in terms of sound, using two Echo Studio speakers, let alone four like I tested, will provide a noticeable boost over a TV’s built-in speakers. However, the lack of customization and the inability to control music from my phone for an Alexa Home Theater group makes it hard to recommend Amazon’s latest for shoppers looking for more immersive audio in the living room. Hopefully the company will continue to refine this feature so that it’s more capable in the future.

This article originally appeared on Engadget at https://www.engadget.com/audio/speakers/alexa-home-theater-everything-you-need-to-know-about-amazons-newest-echo-feature-130000328.html?src=rss