After spending the past few months sealing a number of connectivity deals with leading global airlines, satellite connectivity leader Starlink has returned to Earth in a strategic partnership with BICS, appointing the Proximus Global company as its preferred IPX provider in Europe for its direct-to-cell satellite connectivity services.
The collaboration will enable Starlink to use the current IPX network to connect mobile network operators, while also paving the way for Starlink’s next-generation network that will be capable of providing broadband service to smartphones.
Starlink’s Direct to Cell is claimed to be the world’s only and largest constellation with more than 650 satellites in low-Earth orbit that delivers data, voice, video and messaging to devices in mobile dead zones.
Connecting more than eight million customers across five continents and counting, Direct to Cell satellites are said to work with existing LTE phones wherever there is a line of sight with the sky. The constellation acts like “a cell phone tower in space”, with phased array antennas connecting across the Starlink network over lasers to any point in the globe, offering network integration similar to a standard roaming partner.
Proximus Global’s IPX network, which functions similarly to a roaming exchange, will act as a bridge to connect Starlink to mobile network operators, which enables standard smartphones to connect directly to satellites in remote areas without terrestrial coverage. In the future, it will support the next iteration of network coverage to optimise smartphone performance in non-terrestrial networks.
The first European operator set to use the offer from the partnership will be Kyivstar, Ukraine’s largest digital and mobile operator, which was serving nearly 22.5 million Ukrainians by the end of September 2025.
Proximus Global and Starlink’s work with Kyivstar demonstrates how critical this service can be, particularly in emergencies when network infrastructure is harmed. Satellite connectivity is playing a vital role in bridging these gaps, ensuring uninterrupted communication during a time when connectivity is crucial.
Proximus Global regards the partnership as representing a significant milestone in its mission to unite satellite companies with terrestrial mobile operators through their extensive roaming network. In addition, it says the collaboration underscores the importance of satellite connectivity as a crucial step towards achieving truly global, ubiquitous coverage – especially in underserved areas where traditional infrastructure is lacking.
“While satellites are a game-changer for global connectivity, it’s not inherently disruptive to existing players in the industry – there’s room for everyone,” said Proximus Global chief revenue officer Ben Vandermeulen.
“With partnerships like this, our IPX acts as a bridge to unlock new opportunities. Satellite providers gain access to broader consumer bases, mobile operators can seamlessly plug coverage gaps, and end users benefit from more reliable and consistent connectivity. It’s a win-win for everyone involved.”
Starlink vice-president of engineering Michael Nicolls added: “We’re excited to work with Proximus Global to ensure Starlink’s next-generation constellation can leverage harmonised spectrum to provide the most powerful satellite-to-mobile service across Europe to further our mission of ending mobile dead zones and providing connectivity when people need it most.
“This partnership is a critical step in preparation to not only advance seamless connectivity, but also interconnect European operators with enhanced data security,” he said.
No doubt looking to find some breathing space after the hubbub of Watches and Wonders last week, TAG Heuer has dropped an update to its 2025 revamped collection of the brand’s iconic plastic-cased 1980s watch, the “Formula 1.”
The five new pieces are called the “pastel collection” by TAG, and all are built on the same solar-powered Formula 1 Solargraph 38 mm that launched in March last year. Two models feature a sandblasted stainless steel case, while the remaining three have cases made from TAG’s proprietary bio-polamide plastic, Polylight.
It’s these Polylight versions that, for WIRED, are the stars of the new mini collection. Coming in pastel blue, beige, and pink, and sporting case-matching rubber straps and bidirectional-rotating Polylight bezels, they reference classic F1 designs that made the line iconic in the first place.
The new Polylight beige.
Courtesy of TAG Heuer
The “pastel green” steel F1 Solargraphs.
Courtesy of TAG Heuer
The stainless steel models have a 3-link sandblasted steel bracelet and either a “pastel green” or “lavender blue” dial with matching Polylight bezels. The dials on both watches also see eight diamonds replace the circular hour markers. TAG says these models add “a touch of refinement for those seeking sophistication,” but considering these “luxury” F1s will retail at $2,800, as opposed to the already punchy $1,950 full Polylight versions, our pick is most definitely the plastic pieces.
Not only do these blue, beige, and pink versions pleasingly hark back to vintage F1 designs—though now 38 mm in size instead of the original 35 mm—but also, just like all F1 Solargraphs, they come equipped with screw-down crowns and casebacks, making for 100 meters of water resistance and ensuring these will serve well as dive and sports watches. My recommendation? Go for the pink, it looks superb on the wrist. The beige is a very close second.
Pretty in pink: The new Polylight pink F1 is limited to 1,110 pieces for the 110th anniversary of the Indy 500.
Now, there’s another class of high-end gaming laptop that focuses more on performance than being thin or portable. The Lenovo Legion 7i Gen 10 is one of my favorites in this class, featuring a beautiful white chassis and glossy OLED display. Unlike some OLED displays, the Legion 7i’s screen can be cranked up to over 1,000 nits of brightness. The result is some really splendid HDR performance that brings games to life. HDR is a powerful way of improving the visuals of your games without a performance cost. The Legion 7i Gen 10 is one of the very best in this regard.
It’s still fairly thin at 0.7 inches thick too, while a lot of the ports are found on the back. It’s the definition of a “clean” gaming laptop. It’s no slouch when it comes to performance either, offering either the RTX 5070 Ti or RTX 5080 for graphics.
Cheap Gaming Laptops That Are Worth It
No gaming laptops worth buying are actually cheap. High-refresh rate displays and discrete graphics will always make them more expensive than standard laptops. But as you get closer to $1,000, there is one laptop I always come back to: the Lenovo LOQ 15. Pronounced “Lock,” this Lenovo subbrand is known for cutting the fluff and focusing on giving gamers the performance they need at an affordable price. No laptop does that better than the LOQ 15. Many laptop manufacturers sell their RTX 5060 configurations for hundreds of dollars more. In reality, if you’re shopping around $1,000, there’s no reason to not buy the LOQ 15. Just do it.
If you do want to save some extra cash, there is another option that is cheaper than the LOQ 15 with a few compromises in key areas. The Acer Nitro V 16 is that laptop, which comes with an RTX 5050. This was as affordable as $600 at one point last year—before prices on laptops have risen due to the ongoing memory shortage—but it remains the only laptop cheaper than the Lenovo LOQ 15 that’s actually worth it. It’s fairly powerful for the RTX 5050, and while the screen is pretty shoddy, it’s not a bad-looking laptop. The one big caveat is that the 135-watt power supply it comes with doesn’t deliver quite enough power to keep it charged in Performance mode. Read more about this issue in my review, as it’s important to know about if you’re planning to buy it.
There are other cheap gaming laptops out there I’ve tested, such as the MSI Cyborg A15, but either the Acer Nitro V 16 or Lenovo LOQ 15 are better, cheaper options. You will also find lots of gaming laptops under $1,000 that use older graphics cards, such as the RTX 4050 or 3050. In general, I’d recommend staying away from these. They’re only one or two generations back, but remember: Nvidia only releases new laptop graphics cards every couple of years. So, an RTX 4050 laptop may be well over two years old already, and an RTX 3050 is over five years old. Not only do you get worse graphics performance, these laptops are much more likely to need to be replaced sooner.
Experimental Stuff
One of the exciting things about the world of gaming laptops right now is the experimentation. While clamshell gaming laptops with a conventional Nvidia GPU are the most standard way to go, there’s a few different ways to take your PC games on the go that stretch the boundaries. You might consider a gaming handheld, for example, like the Steam Deck or Xbox Ally X. These handhelds have their fans, and while you can’t also do your homework on these devices, they’re great on couches, trains, and planes.
The Sans Institute, one of the world’s pre-eminent cyber security certification and training bodies, is to play a key role in the annual Nato Cooperative Cyber Defence Centre of Excellence (CCDCOE) Locked Shields exercise, held in Tallinn, Estonia, through the provision of a fully functional power generation system that participating teams will attempt to defend during the game.
This year marks the 16th running of the Locked Shields live fire security defence exercise, which unites blue teams from across Nato’s 32 member states, as well as other allies and observers.
This year, however, Sans has been entrusted with the task of building a genuine, operational cyber range, as opposed to creating a simulation. It is using real industrial control systems (ICSs) and physical equipment that 16 teams of defenders will have to protect while under live cyber attack, with the decisions they make having an immediate physical impact on a national-scale power grid.
Nato and Sans said the aim of the game is to close the gap between sandboxed, classroom-based cyber security training and real-world operational readiness, which, amid the cyber dimension to the energy crisis precipitated by the war in Iran and spillover from the ongoing war in Ukraine, has never been more important.
“We are putting teams in an environment where cyber decisions directly impact physical operations,” said Felix Schallock, who leads the initiative at the Sans Institute. “If you lose visibility, if you lose control, the power generation can be affected. That’s the reality operators face every day. That’s what we’re training for.”
Nato CCDCOE director Tõnis Saar added: “Locked Shields is a technically advanced exercise that challenges participants to defend the critical infrastructure systems modern societies depend on. As much of this critical infrastructure is owned and operated by the private sector, strong public-private collaboration is essential. Industry partners such as Sans Institute play a vital role in making the exercise as realistic and impactful as possible.”
Hybrid architecture
The Sans Institute’s cyber range comprises close to 70 physical ICS devices, with programmable logic controllers (PLCs), human-machine interfaces (HMIs), operator and engineering workstations, 100 virtual machines (VMs) and interconnected systems within the wider CCDCOE environment, all supported by live network infrastructure, the whole forming a hybrid information and operational technology (IT/OT) architecture.
During the exercise, blue teamers will be set the task of defending the “energy provider” while coming under sustained attack from opposing red teams.
The goal is to effectively demonstrate how maintaining a reliable generation system isn’t some metric on a scorecard, but rather the core mission, so success will entail more than just spotting and arresting threats – it will also demand operational discipline, maintaining uninterrupted power generation, preserving comms between IT and OT networks, guaranteeing visibility and control of ICS technology, and avoiding any destabilising disruptions.
The people defending our critical infrastructure deserve training that takes the threat as seriously as they do James Lyne, Sans Institute
Actions will be visible, rippling through the systems in real time, so participants won’t just see alerts, they will see turbines being throttled, breakers being opened or closed, and generation capacity being affected. As such, failure will be immediate and visible – missteps will degrade system performance, disrupt or halt power generation, or simulate national-level consequences.
Tim Conway, Sans Institute fellow and ICS curriculum lead, explained: “We’re showing teams how to defend infrastructure that can’t simply be rebooted or patched on the fly. You have to think like an operator, not just a defender. That mindset shift is what makes this environment so powerful.”
Sans Institute CEO James Lyne expressed great pride in what the Sans team has built for Locked Shields this year. “The scenarios these critical initiatives prepare for are playing out in the world – national espionage, cyber integrated to kinetic attacks and warfare, and retaliation attacks,” he said.
“Throw in AI or machine speed attackers and the need for defenders to adapt, and you have the most disruptive period in cyber security in 20 years. We are privileged to help our allies be ready and continuously improving to secure the future. The people defending our critical infrastructure deserve training that takes the threat as seriously as they do,” he added.
Schallock said the exercise was about preparing teams for protecting the systems that matter most. “Cyber security training must reflect the environment defenders are protecting. We’re not just teaching cyber security, we’re showing how to defend a nation’s infrastructure when it counts.”