You and I might be hotly anticipating what Intel’s next-generation Arrow Lake processors will do later this year, but Intel’s mobile-first Lunar Lake may be the more exciting design.
If you’re wondering why you need Intel’s latest Core Ultra laptop processors, code-named Lunar Lake, the answer isn’t a simple one. But if you want to buy a Lunar Lake laptop, however ...
When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. First among them being that as the US's only domestic chip fabricator, the US government ...
Here’s how it works. Intel has released its new Intel Core Ultra 200V CPUs, better known as Lunar Lake, and these chips could be the most power-efficient laptop CPUs the company has ever released.
Intel's new Core Ultra 200V series 'Lunar Lake' CPUs have almost 24-hour battery life, up to 30% more battery life than Apple M3 and M2 MacBooks.
After months of hype, the first laptops packing Intel's new Lunar Lake chips have launched at IFA 2024 in Berlin — and they're on their way to store shelves near you. This is significant because ...
One of the key challenges that Intel is facing is how to take some of the radically different ideas it integrated into Lunar Lake and incorporate them into future SOC designs. Competition is ...
Fresh off a disastrous earnings report that sent the stock tumbling and raised questions about the company's long-term strategy, Intel could have an ace up its sleeve with Lunar Lake. Intel ...
These battery life and efficiency gains are big, gen-on-gen, and put Intel squarely back on the map in terms of power efficiency. Intel’s bold claims for Lunar Lake performance, in the age of ...
For example, Dell is just now announcing a new version of its flagship $1,400 XPS 13 laptop with Lunar Lake that’s basically identical to the current model in every other way: same chassis ...
Its recent Lunar Lake mobile processor launch is the fourth generation of these CPUs that features two different types of cores and the biggest changes this time around are primarily down to how ...