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Intel's Alder Lake Chip Could Speed PCs By 30% While Saving Battery Power


Intel's Alder Lake chip could speed PCs by 30% while saving battery power


Intel's Alder Lake chip could speed PCs by 30% while saving battery power

Intel's new Alder Lake processor could boost the performance of personal computers by as much as 30% while delivering longer battery life, a breakthrough the chipmaker credits to a hybrid design that marries modules for top speed with others for efficient operation. It's an approach that's been used for years in smartphones.

At its Architecture Day event on Thursday, Intel said Alder Lake chips will come in three broad classes to power mainstream laptops, ultralight laptops and beefier desktop PCs. The three classes will be modeled on smartphone chips that combine high-performance computing cores for demanding jobs with smaller efficient cores that don't sap as much energy.

The number of performance and efficiency cores differ for each variety, but the fastest model will have eight of each. Intel's diagrams showed mobile Alder Lake chips combining six performance cores with eight efficiency cores and ultramobile chips combining two performance cores with eight efficiency cores. The Alder Lake family of chips will be available in PCs this fall.

The power and efficiency boost over today's 11th-gen Core models code-named Tiger Lake are a crucial selling point now that we have grown to expect laptops that can run for an entire day unplugged. Intel already competes with Apple and its M1 Mac processor that delivers improved power and battery life.

"We want [to] combine the best of both best of both in one system," Raja Koduri, who runs Intel's Accelerated Computing Systems & Graphics group, said in an advance briefing. Alder Lake's hybrid approach will help chart Intel's course for the next decade, Intel said.

Alder Lake's hybrid architecture is a variation of the Big.Little design that chip designer Arm rolled out a decade ago and now dominates smartphones. Apple employs the same approach with the M1 chip, which began powering Macs in 2020 and likely will be upgraded for more powerful Macs expected this year.

Alder Lake marks an important moment of unification and simplification for Intel's chip product line. Intel has been juggling a hodgepodge of new and old designs as it struggled with delays to its manufacturing process. The company fell behind its competitors as it wrangled with the problems, with AMD chip designs gaining market share, Apple ejecting Intel chips from its Macs and Asian giants Taiwan Semiconductor Manufacturing Co. (TSMC) and Samsung leapfrogging Intel in chip manufacturing.

Now all Intel's PC chips will be built with a manufacturing process called Intel 7. The same goes for Alder Lake's big sibling, Sapphire Rapids, a server chip due to arrive in the first half of 2022. Reducing the complexity should lower Intel's costs.

The chips were designed before Pat Gelsinger rejoined Intel earlier this year as chief executive. But they're an important part of his attempt to reclaim Intel's lost chipmaking leadership. He's also overseeing Intel's launch of a foundry business that builds chips for other companies, including rival Qualcomm, and hiring rival TSMC to build parts of its own chips.

"Intel is getting back to the Intel of old," said Tirias Research analyst Kevin Krewell, with the company rebuilding its past technical and operational acumen.

How much faster and more efficient will Alder Lake be?

Intel has been cagey with details but released some measurements of Alder Lake.

An average of speed tests shows Alder Lake's performance cores, known by the code name Golden Cove, demonstrates a 19% boost over today's Tiger Lake chips while running at the same clock speed, said Adi Yoaz, director of the Intel Core architecture. "This is our largest architectural shift in over a decade," he said.

Alder Lake chip family

Intel Alder Lake processors likely will all come with eight high-efficiency cores, shown in blue, for lower priority tasks and battery-saving operations. The number of high-performance cores, shown in purple, will range from eight on beefy desktop processors to two on ultramobile devices.

Intel

The new manufacturing process should add another 10% to 15% through hardware refinements that improve attributes like clock speed. Together, that could mean a 30% or more boost in top speeds, a big step up from past annual improvements typically less than 10%.

For preserving battery life while running a set of lower priority tasks, the Gracemont efficient core's design improves Intel's over earlier Skylake design, which is still widely used even though it's six years old. While juggling four tasks at once, efficiency cores require a fifth the power of Skylake cores, said Intel chip architect Stephen Robinson.

Using a technology called Thread Director, Alder Lake will determine whether computing jobs should be assigned to performance or efficiency cores or be shuffled around as new tasks arrive. Thread Director requires support built into Microsoft's upcoming Windows 11, but the current Windows 10 will be able to tap into some of its multicore features, said Rajshree Chabukswar, an engineer on the Alder Lake team.

Intel buying chips from rival TSMC

At Architecture Day, Intel revealed that TSMC, the foundry that builds Apple iPhone and Mac chips, will build Alchemist, the first member of Intel's new Arc family of standalone graphics chips. The chip is due early next year.

TSMC will also build Intel-designed graphics chips core to Ponte Vecchio, a massive processor package with high-speed links between many different chip elements. Ponte Vecchio will be the main brains of the Energy Department's $500 million Aurora supercomputer at Argonne National Laboratory. (Slow development of the processor has delayed the arrival of that machine.)

Expect Ponte Vecchio's array of packaging technologies -- an Intel manufacturing advantage -- to trickle down to mainstream products, said Real World Technologies analyst David Kanter.

"Ponte Vecchio is the Lamborghini of the chip world. Will this become the Lexus and then become the Toyota?" he asked. "The answer is yes."

Other Alder Lake chip specs 

Alder Lake processors will come in varieties consuming as little as 9 watts for ultramobile devices and 125 watts for the beefy desktops used for the most demanding tasks like gaming and video editing.

The new chip is faster thanks to a variety of improvements in how it fetches instructions to execute, caches data instructions in high-speed memory, predicts the instructions it expects to run and recovers from mistakes in those predictions.

And it gets new instructions to execute artificial intelligence tasks with a technology called Advanced Matrix Extensions. AI is an immensely important new type of computer work, and many chip designers -- including Apple, Google, Qualcomm, Samsung, Arm and many startups -- are building dedicated AI acceleration electronics into chips.

Also built into Alder Lake are controllers to handle faster new memory standards, DDR5 (Double Data Rate 5) memory and, for mobile devices, LPDDR5 (Low Power Double Data Rate 5). Faster memory helps keep the processor fed with data so it doesn't have to spend as much time idling.

For connecting to the other devices like network controllers and graphics cards, Alder Lake chips debut support for the new fifth-generation PCI Express. That can double data transfer speed compared to PCIe 4.


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Intel Shows Off The Chip Tech That Will Power Your PC In 2025


Intel Shows Off the Chip Tech That Will Power Your PC in 2025


Intel Shows Off the Chip Tech That Will Power Your PC in 2025

Intel on Thursday showed a silicon wafer studded with chips built with a manufacturing process that's set to arrive in 2025, a signal intended to reassure customers that the company's years of chip manufacturing difficulties are behind it.

"We remain on or ahead of schedule against the timelines that we laid out," Chief Executive Pat Gelsinger said of the company's plan to improve manufacturing processes. He showed off a gleaming wafer of memory chips built with the company's upcoming Intel 18A process, which overhauls the transistors at the heart of chip circuitry and the way power is delivered to them.

Intel is trying to dramatically accelerate manufacturing progress to meet a 2025 goal of reclaiming the chip performance lead it lost to Taiwan Semiconductor Manufacturing Co. (TSMC) and Samsung. If it succeeds, it'll mean PC chips progress faster after a half decade of lackluster performance improvements. And it could mean Intel becomes more relevant to your digital life by building chips inside your car, phone and gaming PC graphics card.

At the heart of the effort is moving through five new manufacturing processes in four years: Intel 7 in 2021 with the Alder Lake chips now powering PCs, Intel 4 in 2022, Intel 3 in 2023, Intel 20A in early 2024 and Intel 18A in late 2024 -- though the lag between manufacturing availability and product delivery means 18A chips won't arrive until 2025. Showing the wafer is a "proof point" that Intel is on track, Gelsinger said.

Gelsinger, a chip engineer who returned to Intel a year ago, brings tech cred to the CEO job, but it'll be tough for the company to claw its way back. Once a chip manufacturer falls behind the leading edge, as IBM and GlobalFoundries did in recent years, it's harder to justify the colossal investments needed to advance to the new technology.

Embodying Intel's difficulty is Apple's decision to eject Intel Core processors from its Macs in favor of its own M series chips built by TSMC. At the same time, AMD has been gaining market share, Nvidia has been profiting from gaming and AI, and Amazon has introduced its own server processors.

Gelsinger spoke at Intel's investor day, where he and other executives sought to convince often skeptical analysts that the company's enormous spending on new chipmaking equipment will pay off. That will come through premium products and external customers arriving to use its new foundry manufacturing capacity.

Intel 20A introduces two major changes to chip design, RibbonFET and PowerVia, and Intel 18A refines it for better performance. RibbonFET is Intel's take on a transistor technology called gate all around, in which the gate that governs whether a transistor is on or off is wrapped entirely around ribbon-like channels that carry the electrical current.

And PowerVia delivers electrical power to the underside of the transistor, freeing the top surface for more data link circuitry. Intel is playing catch-up with RibbonFET, but it's got a lead with PowerVia, which the industry calls backside power delivery.

Intel is pressing with another lead -- packaging technology that links different "chiplets" into one more powerful processor. The Sapphire Lake member of Intel's Xeon server family arriving this year employs one packaging variety, called EMIB, while the Meteor Lake PC chip arriving in 2023 employs another, called Foveros.

Intel Moore's Law forecast

Intel expects to keep up with Moore's Law, which calls for a doubling in the number of transistors per processor every two years. That'll happen through smaller transistors and new packaging techniques combining multiple "chiplets" into one processor.

Intel

Intel built its first Meteor Lake prototypes in the final quarter of 2021 with the Intel 4 process and booted them up in PCs, said Ann Kelleher, the executive vice president who leads Intel's technology development division.

"This is one of the best lead product startups we have seen in the last four generations of technology," Kelleher said. "Over its lifetime, Meteor Lake will ship hundreds of millions of units, offering the clearest demonstration of leadership packaging technologies in high volume."

Packaging will play a role in future PC processors, including Arrow Lake in 2024, which will incorporate the first chiplets built with Intel 20A. After that comes Lunar Lake, which will use Intel 18A chiplets. Meteor Lake and Arrow Lake will use a new graphics chip architecture that Intel promises will be "a huge step forward," which is important given that graphics chips these days do a lot more than paint pixels on your screen -- for example AI and video image processing.

Kelleher also detailed a host of research and manufacturing changes to prevent the catastrophic problems Intel faced in recent years. For one thing, improvements are now modular, so a problem with one needn't derail others. For another, Intel is developing contingency plans for when problems do arrive. And it's paying more attention to the advice of chip equipment suppliers like ASML.


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Dell Puts Cutting-Edge Intel CPU, CAMM Memory In Precision Laptops


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Dell Puts Cutting-Edge Intel CPU, CAMM Memory in Precision Laptops


Dell Puts Cutting-Edge Intel CPU, CAMM Memory in Precision Laptops

Following the announcements Dell made earlier this month, the company expands the Precision mobile workstation and Latitude business laptop lines with additional models incorporating notable new technologies: a "collaboration touchpad," Intel's rumored 55-watt H series mobile processor and the company's semi-proprietary CAMM, which stands for compression attached memory module, as an alternative to SODIMM. They all come with the updated version of Dell Optimizer previously announced.

The Latitude 9330 is a 13-inch version of the 9430 launched in early April, but it also tosses in a twist. Its "collaboration touchpad" -- and I put it in quotation marks because the moniker makes it sound like a bigger deal than it is -- shrinks the touchable area and tosses up virtual buttons for mic mute, video toggling, screen sharing and chat in Zoom meetings. They disappear and release the space for touchpad use when the meeting ends.

By ditching the industry-standard SODIMM slots, Dell can fit the same 128GB RAM into a single module that's 57% thinner.

By ditching the industry-standard SODIMM slots in favor of its Compression Attached Memory Module, Dell can fit the same 128GB RAM into a single module that's 57% thinner.

Dell

The 16-inch Precision 7670 and 17-inch 7770 will be configurable with up to Intel's 12th-gen Core i9, the rumored Alder Lake HX CPU with a boosted power draw of 55 watts over the H-series i9's 45w. The extra power probably goes to the extra performance cores: It will likely have eight cores compared to the HK version of the processor's six (plus the same eight efficient cores, for a total of 24 threads), similar to the desktop version of the chip. 

Both offer Dell's new CAMM (Compression Attached Memory Module), which replaces the pairs of slotted SODIMM DDR5 modules with a single flat board. The CAMM models will ship first, but Dell will subsequently offer models with plain old SODIMMs. And if you want ECC memory, you're still having to use the SODIMMs. 

The company says CAMM's more accessible for repairs and upgrades, but as far as I can tell, if it fails you have to swap in a complete module rather than a pair of SODIMMs. In other words, if you have 128GB RAM and a single chip fails, you have to replace the entire thing rather than just 64GB, which is likely a lot cheaper. That's not an unusual issue with new memory types and capacities, though. 

And while Dell plans to push CAMM as an industry standard, at the moment it sounds like Dell's the only source for replacement modules and it's not clear how the prices will compare. Plus, it's not a given that CAMM will be accepted as a standard. (Hence my calling it "semi-proprietary.") That may make it a little too bleeding edge for some corporate customers or risk-averse creatives. 

On the other hand, the company's launching the Dell Lifecycle Hub, to relieve some of the burden on whomever in your company (or home office) administers and repairs your owned or leased Dell commercial products.

Dell plans to offer two versions of the 7670, thin and performance, depending upon your GPU choice: Thin comes with up to an Nvidia RTX A1000, while performance goes up to an RTX A5500 or RTX 3080 Ti. "Thin" shaves 0.1 inch (2.8mm) and 2.4 ounces (700g) off the higher end configurations.

There's no pricing yet for the new products. The Latitude 9330 ships in June, while the others are slated to ship by the end of July.


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Apple's M2 MacBook Air Available For Preorder Starting July 8


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Apple's M2 MacBook Air Available for Preorder Starting July 8


Apple's M2 MacBook Air Available for Preorder Starting July 8

Apple's new MacBook Air with M2 chip will be available to order on Friday starting at 5 a.m. PT, the tech giant said on Wednesday. Orders are expected to start arriving at customers' locations on July 15. 

The M2 MacBook Air, which was unveiled in June at Apple's Worldwide Developers Conference, features the company's next-gen Apple Silicon chip, a fanless body in four color options and a 13.6-inch Liquid Retina display. 

Apple said its M2 chip brings improved speed and efficiency to the new MacBook Air. The M2 makes "intensive workloads like editing complex timelines in Final Cut Pro" nearly 40% faster than the previous generation and applying "filters and effects in apps like Adobe Photoshop" up to 20% faster, Apple said. 

The M2 MacBook Air starts at $1,199 (£1,249, AU$1,899) with an eight-core CPU and eight-core GPU, 8GB of memory and a 256GB solid-state drive. There's also a $1,499 version with an eight-core CPU and 10-core GPU, 8GB of memory and a 512GB SSD. 

The redesigned laptop will be available to order on Apple's website and in the Apple Store app. It's available in available in four colors: silver, space gray, starlight and midnight.

§

This story is part of WWDC 2022, CNET's complete coverage from and about Apple's annual developers conference.

Apple on Monday debuted the new M2 processor, a chip that improves core processing performance 18% over the M1 without hurting battery life in the company's new MacBook Air and 13-inch MacBook Pro laptops.

The 18% speed boost comes from the M2's redesigned central processing units. The processor has four fast CPU cores and four efficient cores, a hybrid approach drawn from the smartphone world. By redesigning the graphics processing units and increasing their count up to a maximum of 10 instead of eight for the M1, GPU performance is 35% faster. Overall, the new MacBook Air is 20% faster at Photoshop image editing and 38% faster at Final Cut Pro video editing, Apple said.

"We continue to have a relentless focus on power-efficient performance," Johny Srouji, Apple hardware team leader, said at the Worldwide Developers Conference.

Power efficiency is crucial to shrinking laptops since the biggest component is the battery. The new MacBook Airs take up 20% less volume but still have a long, 18-hour battery life, Apple said. The company also is using the M2 in a new 13-inch MacBook Pro.

Apple's M2 processor has large amounts of high-speed cache memory built onto the chip itself and up to 24MB of regular memory included in the chip package, two attributes that should boost performance over Apple's 2020-era M1.

Apple/Screenshots by Stephen Shankland/CNET

The M2 processor also has a significant memory boost, reaching up to 24GB instead of 16GB for the M1. Memory is important, especially as software gets bigger and laptops have years-long lifespans. M series chips build memory directly into the processor package for fast performance, but it's not upgradable.

Apple debuted the M1 at 2020's WWDC and began shipping it later that year in the earlier version of the MacBook Air. The M1, along with beefier successors called the M1 Pro, M1 Max and M1 Ultra, struck an effective balance between performance and battery life and earned strong reviews.

The M2 doubles down on the same balanced approach, offering updated processing cores that are variants of the chips at the heart of newer iPhones. The new chips continue the gradual ejection of Intel processors from the Mac family of personal computers and could enable the last Intel-powered member, the Mac Pro, to switch to Apple chips.

Designing processors is an expensive, difficult undertaking. But with the M series chips, Apple takes advantage of the A series chip design work it already does for its iPhones and iPads, then pays Taiwan Semiconductor Manufacturing Co. to build the chips on its advanced product lines. 

The M2 is built on TSMC's 5nm (5 nanometer) manufacturing process, but it's an improved version to the one used for the M1. TSMC is working on a more advanced 3nm process that should let customers squeeze in somewhat more transistors, the core electronics elements that process data on a chip.

The M2 has 20 billion transistors, a 25% increase over the M1, Apple said.

One use of the new transistors is the increased GPU count. Another is an upgraded neural engine -- a chip block used to accelerate artificial intelligence workloads. The new 16-core neural engine can perform 15.8 trillion operations per second, Apple said, a 40% speed boost.

With its own chips, Apple gets more control over the technology foundation of its products -- a principle important to Chief Executive Tim Cook. That includes both the processor itself, with specific features like AI acceleration, video encoding, and security, and the software Apple writes to take advantage of those features.

Apple's M series and A series chips are members of the Arm processor family. UK-based Arm licenses designs that companies can customize to varying degrees. Arm chips from Qualcomm, Apple, MediaTek, Samsung, Google and others power just about every smartphone for sale.

A comparison shows Apple's new M2 processor is larger than the M1.

The Apple M2 processor is significantly larger than the M1. That increases manufacturing costs. Apple raised prices for its M2-based MacBook Air laptops.

Apple/Screenshot by Stephen Shankland/CNET

Intel has struggled over most of the last decade with problems advancing its manufacturing. That stalled its progress while Apple, Qualcomm, AMD, Nvidia and other Intel rivals took advantage of TSMC's manufacturing progress.

Because Apple doesn't offer its chips to others, and because the majority of PCs use Intel processors, Intel is somewhat insulated from Apple's shift. Intel is working to modernize its manufacturing, spending tens of billions of dollars on new chipmaking fabs. Intel aims to reclaim its lead over rivals TSMC and Samsung in 2024.

Intel's newest PC processor, code-named Alder Lake, embraces the same mix of high-performance and high-efficiency CPU cores found in smartphone chips and Apple's M series chips. Future products are designed to improve GPU performance, in particular with Intel's renewed focus on high-end graphics that's designed to wean the company from reliance on AMD and Nvidia. That's important for one big market, gaming, where PCs with Intel and AMD processors are much more widely used than Macs.


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Best Laptop Deals: Save $300 On MSI Prestige 14, $500 On HP Spectre X360 16 And More


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Best Laptop Deals: Save $300 on MSI Prestige 14, $500 on HP Spectre x360 16 and More


Best Laptop Deals: Save $300 on MSI Prestige 14, $500 on HP Spectre x360 16 and More

Whether you are looking for a new laptop for heading back to school in the fall or just an upgrade for browsing at home, there are plenty of sales right now that can save you some money. There are a number of great deals on laptops with Intel's previous 11th-generation (and very capable) Core processors, and you can also save on newer models with Intel's current chip family, the 12th-gen Core chips code-named Alder Lake

Here are the best deals we see right now at Amazon, Best Buy and Newegg. We regularly update this list as sales expire and new deals emerge.

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With an efficient and capable AMD Ryzen 7 5700U CPU and 12GB of RAM, this 15.6-inch IdeaPad model serves up a better processor and more memory than usually found at this price. You also get a 512GB SSD, which is double the 256GB SSDs common to budget laptops. And the display serves up a Full HD resolution, which isn't always a given at this price. It comes with Windows 11 Home in S Mode, which is the "walled garden" version of Windows 11 that's geared toward students and lets you install software only from the official Windows app store. It also requires you to use Microsoft's Edge browser.

Newegg

Dell's entry-level Inspiron has an admittedly drab, plastic chassis, but it serves up a full-HD (1,920x1,080-pixel), 15.6-inch touch display powered by an 11th-gen, quad-core Core i5 processor along with 16GB of RAM and a huge 1TB SSD. That's double the memory and storage space you usually find at this price.

Samsung

Samsung's midrange Galaxy Book delivers a sleek, all-metal chassis at a price where plastic enclosures are usually on order. Inside, this 15.6-inch laptop is powered by an 11th-gen Core i7 CPU, 16GB of RAM and a 512GB SSD. The touch display is only so-so, but the Galaxy Book is otherwise a great value with its high style and solid mix of components at Best Buy's current sale price.

Newegg

This budget-to-midrange laptop from HP may have an uninspired plastic enclosure, but if you care more about screen size, memory allotment and storage space than you do about a sleek design, then this model is worth checking out. It should offer decent performance, too, with double the RAM and solid-state storage usually included on most other laptops at this price. At this price, you can usually find 16GB of RAM and a 512GB SSD, but sometimes less. In that light, the 32GB of memory and the 1TB SSD here are downright thrilling. You also get a full-HD (1,920x1,080-pixel) resolution for the roomy 17.3-inch display.

MSI

MSI's version of the MacBook boasts a thin, sleek, all-aluminum enclosure and has been updated with 12th-gen Intel processors. This model is $150 off at Newegg and features a 12th-gen Core i5 processor, 16GB of RAM and a 512GB SSD. You also get a pair of Thunderbolt 4 ports. The 14-inch display features a full HD resolution but has the older 16:9 widescreen aspect ratio rather than the taller 16:10 ratio that provides more room to work. Still, this is a thin, light and rugged laptop and it's a great deal at its current sale price.

Josh Goldman/CNET

We reviewed the 16-inch Spectre x360 and called it a "big, luxurious two-in-one for creatives." It has since been updated with 12th-gen Intel Core processors while maintaining its good looks and roomy display. While an OLED panel is an option on some models, this unit features a standard IPS panel but one with an impressive 3,072x1,920 resolution and a 16:10 aspect ratio. You also get a 12th-gen Core i7 CPU, 16GB of RAM and a 512GB SSD. The RAM is sufficient for the price, but creative pros may balk at missing out on 1TB of storage. Still, it's a great deal with a $500 discount right now at Best Buy.

Read our HP Spectre x360 16 review.

Sarah Tew/CNET

Most 17-inch laptops are gaming monsters. The LG Gram 17 is neither a gaming laptop nor a monster. It lacks dedicated graphics to drive 3D games but is only 0.7 inch thick and weighs less than 3 pounds, making this 17.3-inch desktop replacement roughly the same weight as your typical 13.3-inch ultraportable. The spacious 2,560x1,600-pixel display is powered by an 11th-gen Core i7 CPU, 16GB of RAM and integrated Intel Iris Plus graphics. You also get a roomy 1TB SSD for storage and can save more than $300 on it right now.

Read our LG Gram 16 review.


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