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Haswell Core i7 Overclocked To 5GHz

May 21, 2013 by  
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As we draw closer to the launch of Intel’s 4th generation Core CPUs, or Haswell, it is no wonder that we are starting to see more leaks and one showing Intel’s Core i7 4770K overclocked to 5GHz at 0.9V certainly drew a lot of attention.

An impressive overclocking achievement was spotted by Ocaholic.ch and shows a CPU-Z validation of Core i7 4770K overclocked to exactly 5005.83MHz at just 0.904V. As far as we can tell, Hyper-threading was disabled and it is not clear if the CPU is actually stable enough to run anything, but in any case, it is still an impressive result, especially at such low voltage.

The rest of the specs include 4GB of DDR3 memory and ASRock’s upcoming Z87 Extreme4 motherboard.

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WD And Sandisk Join Forces

May 20, 2013 by  
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Western Digital and Sandisk have teamed up to create Western Digital’s first hybrid storage device that uses Sandisk’s iSSD and Western Digital’s Caviar Black hard drive.

Western Digital, which has dabbled in solid state disks (SSDs) for the enterprise market, has stayed away from hybrid drives that use relatively small SSDs to act as cache for hard drives. Now the firm has teamed with Sandisk to create its WD Black Solid State Hybrid drives with 500GB capacity.

Western Digital is pitching its hybrid drives at laptop makers, offering units with 5mm, 7mm and 9.5mm heights. The firm said Sandisk’s iSSD uses 19nm NAND flash and claimed it is the world’s “smallest and most advanced semiconductor manufacturing process”, a claim that Intel might question.

Kevin Conley, SVP and GM of client storage solutions at Sandisk said, “By combining SanDisk’s unparalleled flash memory expertise and technology with the hard drive know-how of Western Digital, WD Black SSHDs [solid state hard drives] offer outstanding hard drive-like capacity, and the slim form factor and the level of performance that you will only get with flash memory solutions.”

Seagate was first to introduce hybrid drives with its Momentus XT range, which offers an impressive performance boost over mechanical hard drives for certain workloads. The problem for Western Digital and Seagate is that hybrid drives are merely a stop-gap rather than a long term strategy, with SSD prices falling rapidly due to competition in the SSD industry as opposed to the hard drive industry, where Seagate, Western Digital and Toshiba have a comfortable ride.

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Will Intel Buy AMD?

May 13, 2013 by  
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A few years ago it would have been impossible for Intel to acquire AMD, simply due to regulatory constraints put in place by the FTC and the European Union. Intel had more than a 60 percent of the PC and notebook market, so picking up AMD, a company that has some 20 percent of the market, would make Intel a real monopoly.

In the last two years the iPad, smartphones and ARM based tablets have changed the landscape, eating up Intel’s revenue and market share. It is true that most people, especially professionals and the business crowd, use x86 processors, but this is rapidly changing as home users are happy with emailing, browsing and playing some games on their iPad or other tablets. This puts Intel in a world trouble, as the PC market nosedived by 14 percent last quarter, due to a lack of interest for new devices and upgrade.

Tablets are becoming couch browsing devices, people use their smartphones to read news on the go and sometimes at home. More and more users don’t even touch their notebooks or desktops at home. With ARM staying the dominant instruction set in the phone and tablet space, Intel is facing a serious issue as Apple, Samsung, Qualcomm and Nvidia are all making money on ARM chips.

With this in mind, this would be the main reason for Intel to pick up AMD. AMD would not cost them that much, as Intel still has billions in bank, but with AMD, Intel would gain great graphics, something that the company has been struggling to crack for many years. It would make Intel slightly more competitive, but it would not solve all of its problems.

ARM manufacturers also face challenges, they need to produce more powerful chips and deliver a better user experience in order to win more notebooks and detachable devices, but this is going well with non-Apple based tablets. Apple uses ARM, so in the tablet world ARM is winning this fight, but Qualcomm and Nvidia as two independent chip manufactures could do a much better job at getting popular design wins. The Snapdragon S800 and Tegra 4 will get these two companies a step closer, while Apple will continue making good chips for iPads and iPhones. Let’s not forget about Samsung, as it makes many chips for its phones and tablets.

AMD gained 14 percent on May 1st, and an additional 5.9 percent yesterday, getting its stocks up to $3.41. Back on April 30th, AMD stock was trading at $2.68. In last three days of trading AMD gained 27.24 percent or $0.73 per share, which is a huge leap for a company with a 52-week low of just $1.81.

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AMD Touts Its Memory Architecture

May 9, 2013 by  
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AMD has said the memory architecture in its heterogeneous system architecture (HSA) will move management of CPU and GPU memory coherency from the developer’s hands down to the hardware.

While AMD has been churning out accelerated processing units (APUs) for the best part of two years now, the firm’s HSA is the technology that will really enable developers to make use of the GPU. The firm revealed some details of the memory architecture that will form one of the key parts of HSA and said that data coherency will be handled by the hardware rather than software developers.

AMD’s HSA chips, the first of which will be Kaveri, will allow both the CPU and GPU to access system memory directly. The firm said that this will eliminate the need to copy data to the GPU, an operation that adds significant latency and can wipe out any gains in performance from GPU parallel processing.

According to AMD, the memory architecture that it calls HUMA – heterogeneous unified memory access, a play on unified memory access – will handle concurrency between the CPU and GPU at the silicon level. AMD corporate fellow Phil Rogers said that developers should not have to worry about whether the CPU or GPU is accessing a particular memory address, and similarly he claimed that operating system vendors prefer that memory concurrency be handled at the silicon level.

Rogers also talked up the ability of the GPU to take page faults and that HUMA will allow GPUs to use memory pointers, in the same way that CPUs dereference pointers to access memory. He said that the CPU will be able to pass a memory pointer to the GPU, in the same way that a programmer may pass a pointer between threads running on a CPU.

AMD has said that its first HSA-compliant chip codenamed Kaveri will tip up later this year. While AMD’s decision to give GPUs access to DDR3 memory will mean lower bandwidth than GPGPU accelerators that make use of GDDR5 memory, the ability to address hundreds of gigabytes of RAM will interest a great many developers. AMD hopes that they will pick up the Kaveri chip to see just what is possible.

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Intel’s Haswell Arriving In June

May 7, 2013 by  
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Intel has announced that it will launch its next generation Haswell processors at Computex.

Intel showed running Haswell silicon to journalists last month at the Game Developers Conference (GDC) in a bid to talk up the upcoming chip’s GPU. Last Friday the firm announced what some already knew and many had already guessed, that it will launch Haswell at Computex in June.

Intel published a blog post on 26 April saying that the fourth generation Core processor known as Haswell would arrive in 3,337,200,000,000,000 nanoseconds, which worked out to just under 39 days. The countdown figure matched perfectly with the start of Computex on 4 June, and confirmed what an Intel insider said that the chip would be launched at Computex.

The fact that Intel is using Computex to launch its next generation chip is not surprising, given that there are few big IT shows during the summer and launching the chip later will not give the firm’s system builder and OEM partners enough time to gear up marketing for the lucrative back to school and holiday buying seasons.

While Intel’s Haswell launch is a big event for the firm, it isn’t the most important. Rather, the firm is expected to launch updated low-power Atom chips that it hopes will help it compete in the tablet market, a market that is growing, as opposed to the PC market that Haswell addresses.

Intel’s decision to launch at Computex means that the late spring computer industry show should be awash with updated notebook and desktop PCs, as well as the firm’s preferred ultrabook branded laptops.

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AMC Goes To The Clouds

April 15, 2013 by  
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Applied Micro Circuits has released its cloud chip which takes networking and computing and crams it all onto one SoC.

The X-Gene server on a chip, is being billed as the first 64-bit-capable ARM-based server in existence. According to the company it is the first chip to contain a software-defined network (SDN) controller on the die that will offer network services such as load balancing and ensuring service-level agreements on the chip.

Paramesh Gopi, president and CEO of Applied Micro, said that these new chips have now made it past the prototype stage and are being used by Dell and Red Hat. Gopi expects physical servers containing the X-Gene to hit the market by the end of this year.

The chip is manufactured at 40 nanometers and has eight 2.4 GHz ARM cores, four smaller ARM Cortex A5 cores running the SDN controller software, four 10-gigabit ethernet ports, and various ports that can support more Ethernet, SSDs, accelerator cards such as those from Fusion-io or SATA drives.

The cost of ownership, which includes power requirements are about half of that of a comparable x86 product, but wouldn’t discuss actual power consumption, the company claims.

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TSMC Testing ARM’s Cortex A57

April 11, 2013 by  
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ARM and TSMC have manufactured the first Cortex A57 processor based on ARM’s next-gen 64-bit ARMv8 architecture.

The all new chip was fabricated on TSMC’s equally new FinFET 16nm process. The 57 is ARM’s fastest chip to date and it will go after high end tablets, and eventually it will find its place in some PCs and servers as well.

Furthermore the A57 can be coupled with frugal Cortex A53 cores in a big.LITTLE configuration. This should allow it to deliver relatively low power consumption, which is a must for tablets and smartphones. However, bear in mind that A15 cores are only now showing up in consumer products, so it might be a while before we see any devices based on the A57.

In terms of performance, ARM claims the A57 can deliver a “full laptop experience,” even when used in a smartphone connected to a screen, keyboard and mouse wirelessly. It is said to be more power efficient than the A15 and browser performance should be doubled on the A57.

It is still unclear when we’ll get to see the first A57 devices, but it seems highly unlikely that any of them will show up this year. Our best bet is mid-2014, and we are incorrigible optimists. The next big step in ARM evolution will be 20nm A15 cores with next-generation graphics, and they sound pretty exciting as well.

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Shark Bay 1 Chipset Goes Pentium

April 5, 2013 by  
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In the universe where Haswell comes as two-chip platform, formally referred to as Shark Bay 2-chip platform by Intel, there will be three mobile chipsets. The HM86 is targeting at mainstream consumers, HM87 targets Premium consumers and SMBs, while the top one QM87 targets the hard working corporate market.

Things get a bit simpler with the Shark Bay 1-chip platform. The value consumer chipset is simply called Baseline, while the next one is simply called Premium. It can’t get any simpler than that. The Shark Bay 1-chip Platform has same I/O, or what we call a chipset, integrated on either Haswell U or Haswell Y processors line.

The Premium chipset supports Windows 8 connected stand by, Intel Active Management Technology 9.0, Intel Small Business Advantage, ACHI and Raid Rapid storage technology, Intel Insider, Intel Anti-Theft Technology, wireless display and three independent displays.

The list goes on with 8 USB ports where two to four can be USB 3.0 ports, up to 6 devices with PCI express 2.0 5GT/s, four SATA ports capable of 6Gbps. The chipset doesn’t have VGA or LVDS as the CPU has the graphics on it, but the Premium chipset has two sensors interface with I2C and UART, 1.5 to 5MB firmware support, Anchor Cover, Platform trust technology and Platform Flash Armoring technology.

Getting away from numbers and naming the chipset simply Premium means that U and Y line of CPUs are meant for tablet and Ultrabook markets, where manufacturers want you to love the product as a whole, not specifics. Premium and Baseline chpisets for Y and U line Haswell processors capable of TDPs as low as 13W are coming in Q3 2013.

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TSMC And Imagination Team Up

April 3, 2013 by  
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TSMC and Imagination Technologies announced the next step in their tech collaboration in an effort to develop Imagination’s next generation PowerVR 6-series GPUs.

The new GPUs are still not ready for prime time, but they should be used in future SoC designs, including those stamped out using TSMC’s 16nm FinFET process. The two companies will work to create new reference system designs, utilizing high bandwidth memory standards and TSMC’s 3D IC technology.

As GPU muscle becomes more important for next generation SoCs, designers need more advanced and more complex processes, such as TSMC’s 16FinFET.

“Through advanced projects initiated under this partnership, Imagination and TSMC are working together to showcase how SoCs will transform the future of mobile and embedded products,” said Hossein Yassaie, CEO of Imagination.

TSMC VP Cliff Hou argued that the need for high performance mobile GPUs will drive silicon processes in the future, much in the same way CPU development pushed new processes in the nineties.

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Dual Core 35w Haswell Coming In Q3

April 1, 2013 by  
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We found out peculiar fact that some members of Intel’s M Processor line, 35W dual-core products, won’t get the Haswell upgrade until Q4 2013. Haswell starts in very late Q2 2013 and is still scheduled to launch in late May or early June, but most of the parts are aimed at the very expensive quad core MX line and MQ line edition parts.

When it comes to dual-core 35W Core i7 and Core i5 Haswell parts they won’t come at least until Q4 2013, at least this is the current part. Core i7 3540 launched in this quarter, Q1 2013, and it is a 3GHz dual-core with four threads and a top turbo frequency set at 3.7 GHz. It is a 35W, 22nm Ivy Bridge part with 4MB of cache memory. A replacement part might be on the way with a slightly higher clock in Q3 2013, but the Haswell based replacement is set for Q4 2013. With an official price of $348 it is not really the cheapest kid on the block.

Core i5 3380 remains the fastest dual-core 35W Pentium part until Q4 2013 Haswell reinforcement. The 2.7GHz / 3.4GHz turbo clocked dual-core will remain the fastest in this league at least until Q3 2013, when it might get slightly faster version of the Ivy Bridge based core, but it won’t be replaced by Haswell 35W dual-cores before Q4 2013.

Intel definitely wants to prioritize the quad-core 55W i7-3940XM $1096.00 replacement called Core i7 4930MX and Core i7-3840QM replacement in $568 market segment, branded as Core i7 4800 MQ, as it can simply make more money on these pricey these parts. These quad-core Haswell parts start selling in Q2 2013, followed by 17W Ultra low voltage dual-cores in Q3 2013 and only after these two lines rolls out, Intel will introduce the rest of the Haswell line-up.

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