Google rolls out Wear OS 7 for Pixel Watch with a refreshed UI


Google has started rolling out Wear OS 7 to Pixel Watch users. This brings what is arguably the biggest software update of the year to the company’s smartwatch lineup.

The update introduces new Gemini-powered features, redesigned widgets, and battery life improvements. However, it won’t be coming to the original Pixel Watch.

According to Google, the rollout is now underway for the Pixel Watch 2, Pixel Watch 3, and Pixel Watch 4. Availability is expected to expand gradually over the coming days. Alongside a refreshed interface, Wear OS 7 is designed to improve efficiency. Google claims battery life could increase by up to 10%. This depends on how the watch is used.

One of the most noticeable changes is the shift from full-screen tiles to a new widget system. This system looks much closer to Android’s smartphone widgets. The update also adds live notifications. This allows users to see real-time updates directly on their watch. It works in a similar way to Android’s Live Updates feature.

Google has also focused on improving how the Pixel Watch works with other devices. After updating, users will be able to interact more seamlessly with compatible accessories. For example, photos captured with supported AR glasses can be viewed directly on the watch. Meanwhile, a redesigned audio panel makes it easier to switch playback between speakers and headphones.

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The biggest additions, however, come from Gemini Intelligence. A new feature called Create My Widget lets users generate personalised dashboards using voice commands. In addition, Gemini-powered automations can trigger actions across multiple apps from a single request.

Google is also giving its voice assistant deeper access to personal data, including Gmail and previous conversations. This allows it to provide more contextual responses and complete tasks more intelligently.

While many smartwatch updates focus on a handful of new features, Wear OS 7 appears to be a broader overhaul. There are battery gains, Gemini integrations and a redesigned interface. As a result, it could end up being one of the most significant Pixel Watch updates Google has delivered so far.



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It’s easy to assume that vehicles all had internal combustion engines until very recently. Gasoline and petrol engines were the standard for decades, after all, so why would early vehicles be any different? In reality, the early days of the automobile era were more varied than you might expect, and even featured a range of electric cars. Yes, despite electric vehicles not truly taking off until the 21st century, the first electric vehicles are much older than you think; drivers in the 1900s were going around town in electric vehicles — and where there are EVs, there are charging stations.

One such station, visible in the image above, was the creation of General Electric. Formally called the mercury arc rectifier, it took alternating current and sent it through vaporized mercury in a glass tube. This converted it into direct current, which powered up the EV’s battery. The woman in the image, who’s charging a Columbia Mark 68 Victrola, is standing at the control panel, which allowed a user to adjust power levels. 

These chargers could be installed everywhere, including homes, businesses, and public parking garages, supporting the electric vehicle boom of the early 20th century. While 21st-century EV chargers have come a long way from where they were, the basic building blocks are all still there, and it’s fascinating to see.

How EV chargers have evolved since the early 20th century

EV charging has changed a lot in some ways — but not in others. At the core of it all is the aforementioned conversion from AC to DC, which still happens when you charge modern EVs at standard charging stations. The difference is that your vehicle’s on-board charger performs the conversion, not the charger. Old EV chargers took between several hours and a day to charge, and current-day units can similarly take a few hours to well over a day from empty, depending on the charger’s speed. Fast chargers, which provide DC directly, can cut this down to around an hour or less.

Old-school and modern EV chargers also differ in how they provide power to the vehicle. Mercury arc rectifiers connected directly to the negative terminal of the lead-acid battery that needed charging. Nowadays, EVs use dedicated charging ports. Battery swapping was also commonplace in the early 1900s, and companies like General Electric tried to cash in by offering to replace drivers’ old, run-down batteries with new ones for a fee. That’s not yet possible with most mainstream EVs, although companies like Stellantis have tried to introduce EV battery swapping with moderate success.

Even if they were unrefined compared to today’s models, early EVs seemed to be on to something. Why, then, did electric cars fail, and how did gasoline end up becoming the predominant power source for vehicles?

What led to the downfall of the original wave of electric cars

EVs were no mere fad in the 1900s and 1910s. According to the 1900 United States census, 1,575 of the 4,192 vehicles sold that year were electric, with the value of these early EVs — $2,873,464 — accounting for more than half of the total market value of $4,899,443. It wasn’t just EVs, either; other sources of propulsion, like steam, were also vying for a foothold in the automobile market. By the 1920s and 1930s, though, these had all been superseded by the internal combustion engine.

One of the major drawbacks of early EVs was the fact that electricity was not yet widely available. Electrical hookups were a rarity outside of major cities, limiting the use of these vehicles. The lead-acid batteries they used also had their fair share of issues. They needed to be inspected, cleaned, and repaired every few days, making them more of an inconvenience than anything. Worse yet, they had poor mileage, and, with chargers possibly out of reach, many likely didn’t want to risk being stranded while out for a drive.

Eventually, price reductions for gas cars and improvements such as electric starters and better reliability prompted buyers and automakers alike to move away from electric rides. Thus, while the best-selling EVs of 2026 show that it’s a good time for EVs, this electric boom plainly isn’t the first of its kind. Early EVs eventually fizzled out, but they still set the stage for our current fascination with electric vehicles.





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