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Saturday, February 21, 2009

Intel shows off 80-core processor


Intel has built its 80-core processor as part of a research project, but don't expect it to boost your Doom score just yet.
Chief Technical Officer Justin Rattner demonstrated the processor in San Francisco last week for a group of reporters, and the company will present a paper on the project during the International Solid State Circuits Conference in the city this week.

The chip is capable of producing 1 trillion floating-point operations per second, known as a teraflop. That's a level of performance that required 2,500 square feet of large computers a decade ago.

Intel first disclosed it had built a prototype 80-core processor during last fall's Intel Developer Forum, when CEO Paul Otellini promised to deliver the chip within five years. The company's researchers have several hurdles to overcome before PCs and servers come with 80-core processors--such as how to connect the chip to memory and how to teach software developers to write programs for it--but the research chip is an important step, Rattner said.


A company called ClearSpeed has put 96 cores on a single chip. ClearSpeed's chips are used as co-processors with supercomputers that require a powerful chip for a very specific purpose.

Intel's research chip has 80 cores, or "tiles," Rattner said. Each tile has a computing element and a router, allowing it to crunch data individually and transport that data to neighboring tiles.

Intel used 100 million transistors on the chip, which measures 275 millimeters squared. By comparison, its Core 2 Duo chip uses 291 million transistors and measures 143 millimeters squared. The chip was built using Intel's 65-nanometer manufacturing technology, but any likely product based on the design would probably use a future process based on smaller transistors. A chip the size of the current research chip is likely too large for cost-effective manufacturing.

The computing elements are very basic and do not use the x86 instruction set used by Intel and Advanced Micro Devices' chips, which means Windows Vista can't be run on the research chip. Instead, the chip uses a VLIW (very long instruction word) architecture, a simpler approach to computing than the x86 instruction set.

There's also no way at present to connect this chip to memory. Intel is working on a stacked memory chip that it could place on top of the research chip, and it's talking to memory companies about next-generation designs for memory chips, Rattner said.

Intel's researchers will then have to figure out how to create general-purpose processing cores that can handle the wide variety of applications in the world. The company is still looking at a five-year timeframe for product delivery, Rattner said.

But the primary challenge for an 80-core chip will be figuring out how to write software that can take advantage of all that horsepower. The PC software community is just starting to get its hands around multicore programming, although its server counterparts are a little further ahead. Still, Microsoft, Apple and the Linux community have a long way to go before they'll be able to effectively utilize 80 individual processing units with their PC operating systems.

"The operating system has the most control over the CPU, and it's got to change," said Jim McGregor, an analyst at In-Stat. "It has to be more intelligent about breaking things up," he said, referring to how tasks are divided among multiple processing cores.

"I think we're sort of all moving forward here together," Rattner said. "As the core count grows and people get the skills to use them effectively, these applications will come." Intel hopes to make it easier by training its army of software developers on creating tools and libraries, he said.

Intel demonstrated the chip running an application created for solving differential equations. At 3.16GHz and with 0.95 volts applied to the processor, it can hit 1 teraflop of performance while consuming 62 watts of power. Intel constructed a special motherboard and cooling system for the demonstration in a San Francisco hotel.



Intel last week demonstrated a working processor with 80 individual processing cores. Each core, or "tile" as Intel calls them, consists of a compute element and a router that allows each tile to connect to its neighbor. The chip can deliver more than 1 trillion floating point operations per second (teraflops), depending on how fast it's running. This is only a research project right now, as there are a lot of challenges involved in making an 80-core chip that's a practical option for PCs and servers.



A decade ago, it took about 10,000 of Intel's Pentium Pro processors to achieve the same level of performance. This is the ASCI Red supercomputer developed at Sandia National Laboratories. It was the first supercomputer to hit a teraflop of performance, but needed 104 cabinets and more than 2,500 square feet of floor space to store those cabinets. Intel's research chip would fit on your fingernail.





A closer look at the setup for Intel's teraflop research chip. Intel hopes to figure how to connect the chip to memory, develop general-purpose cores that can run all kinds of applications, and turn this into a product within five years.




Intel demonstrated the teraflop research chip in a briefing for reporters last week at a San Francisco hotel. It built a special cooling system for the chip and ran a few applications to demonstrate its performance. Intel had the chip running at around 3GHz during the demonstration, but has gotten it to run faster in its Oregon labs with a water-cooled system, said CTO Justin Rattner.




This is how Intel demonstrated the chip for reporters. Several power supplies were required, and Intel also needed to build a special motherboard. Engineers showed how Intel can obtain different levels of performance by tweaking the chips' clock speed and voltage supply while running an application that solved complex mathematical equations.

AMD’s High-Performance Graphics Update Not Expected to Radically Boost Performance


ATI Radeon HD 4890 – Only a Clock-Speed Increase


Despite of rumours floating around the Internet, ATI’s (graphics products group of Advanced Micro Devices) approaching update for the high-performance graphics segment will not bring in considerable performance improvements as the new product will just feature improved clock-speeds over existing graphics boards.

According to industrial sources with knowledge of the matter, the code-named ATI RV790 graphics processing unit is nothing else but the already shipping ATI RV770 chip with higher clock-speeds. The new processor can operate at higher frequencies since its design is slightly refined, certain erratums (which do not affect performance or stability of the RV770) are corrected and process technology adjustments are made.

ATI RV770/790 graphics processing units feature 800 stream processors, 40 texture units, 16 render back ends as well as 256-bit memory bus compatible with GDDR3, GDDR4 and GDDR5 memory types. The RV790 will feature higher clock-speeds, but not increased number of execution units.

Performance increases of the graphics card that is projected to be called ATI Radeon HD 4890 over the existing Radeon HD 4870 1GB should not be high as the difference between two products will be increases of clock-speeds. In case the graphics card designer decides to release ATI Radeon HD 4890 X2, performance gain should be modest as well.

"This is exactly the same situation as in the case of transition from ATI Radeon 9800 Pro to ATI Radeon 9800 XT back in 2003, performance gain will not be massive," a person wished to remain anonymous said.

ATI is known for working on different speed-bins of various processors, for instance, its ATI R300 (Radeon 9700), R350 (Radeon 9800 Pro) and R360 (Radeon 9800 XT) were essentially the same chip, but could function at completely different clock-speeds. ATI/AMD has now chosen the same option since it does not immediately need a new GPU in the current competitive and market environments.

The recent history of graphics processing units does not know examples when a company introduced a brand-new GPU with new internal design that would only be 20% - 30% faster compared to predecessor in the same price-range. Therefore, the information about increased number of stream processors inside RV790 is not correct, according to sources with known of the situation.

Enthusiasts Use Mainboards with Integrated Graphics to Set Overclocking Records.

AMD Phenom II Reaches Beyond 6.0GHz Clock-Speed on Biostar’s AMD 790GX Mainboard

Sometimes inexpensive does not mean cut-down of feature-lacking. It looks like AMD’s latest platform with built-in graphics core as well as the company’s latest Phenom II chips can do wonders by improving computing performance by roughly two times.

For years platforms with integrated graphics cores have been considered as entry-level products not aimed at enthusiasts. However, Advanced Micro Devices is promoting its AMD 790GX core-logic as a solution for enthusiasts in budget. Surprisingly, pragmatic mainboard makers have followed the initiative and produced 790GX-based motherboards with rich overclocking capabilities. Apparently, on some of such mainboards AMD’s new chips can even set speed records.

Representatives for Biostar have pointed out that the company’s TA790GX2 A2+ mainboard enabled an overclocker from Japan named PcCI2minal to set AMD Phenom II 940 BE processor with 3.20GHz nominal frequency running at approximately 6.0GHz with the help of dry ice. Moreover, enthusiasts from MadShrimps web-site have managed to set AMD Phenom II chips running at 6.20GHz on DFI's AMD 790GX motherboards.







Biostar TA790GX2 A2+ motherboard in ATX form-factor is based on AMD 790GX + SB750 core-logic and features integrated ATI Radeon HD 3300 graphics core with 64MB of SidePort memory, two PCI Express 2.0 x16 slots, four 240-pin DDR2 memory slots, Gigabit Ethernet, 7.1-channel audio and a wide range of other features. In order to make the mainboard more popular among enthusiasts, Biostar added support for processors with up to 140W thermal design power and equipped its product with rich overclocking capabilities.

Obviously, hardly a lot of users acquiring mainboards with built-in graphics adapters will ever attempt to overclock their central processing units. Moreover, since the vast majority of AMD 790GX motherboards come in ATX, not microATX, form-factor, hardly a lot of system integrators will adopt them for their systems. Nevertheless, the fact that overclocking capabilities have reached the entry-level segment means that there are consumers seeking for such features even in the low-end products. In addition, it shows that AMD is greatly interested in attracting overclocking crowd to its products, which cannot beat Intel Corp.’s high-end central processing units at nominal frequencies.

Ultra Quiet Xbox 360 Video Game Consoles Now Available.

Silent PC Maker Builds Utterly Quiet Xbox 360 Game Systems


Microsoft Xbox 360 video game consoles are criticized by many gamers for being too hot and loud. The software giant has addressed the issues by introducing new versions of the consoles that consume less power and produce less noise, but many gamers are still not satisfied. But there is a way to get an utterly quiet Xbox 360: a maker of silent personal computers QuietPC.com has just started selling them.

Ultra-Quiet Xbox 360 game consoles, which are available at QuietXbox.com, do not come in the original case, but are rebuilt inside Lian Li XB-01B cases that are available on the market. In order to further reduce noise levels of the video game system, the manufacturer utilizes anti-vibration fan mounts, coats optical disc drive with anti-acoustic material and also utilizes very high-quality fans from Scythe.




The rebuilt Microsoft Xbox 360 video game consoles should be much more quieter and, considering that Lian Li case for personal computers is still larger compared to the usual Xbox 360 case, much better cooled, compared to the original versi.




Obviously, the re-built Xbox 360 is no longer covered by Microsoft Corp.’s warrantee, however, QuietPC.com still provides full 360 days (one year) warranty on components itself.

“So if you have any problem within that time frame just let us know and we will take care of things,” the company claims on its web-site.

At present Ultra-Quiet Xbox 360 game consoles are not available from the company’s U.S.-based web-site, but they can be purchased from the UK, Germany or other European branches of QuietPC.com. Needless to say, silence does cost quite a lot, especially taking into account usage of rather expensive Lian Li case, Scythe fans and so on. In order to get utterly quiet Xbox 360, end-users have to pay €220 – €230/£220 ($283 - $315, depending on the country) price-premium over typical versions:

UQ Xbox 360 Elite – €528/£452 (official price: €299.99/£229.99)
UQ Xbox 360 Premium – €458/£392 (official price: €239.99/£169.99)
UQ Xbox 360 Arcade – €411/£351 (official price: €179.99/£129.99)
In addition, QuietXbox.com offers gamers kits to reconstruct their Xbox 360 consoles themselves or factory rebuilding service for existing Xbox 360 consoles.

Kingston HyperX T1 3GB & 6GB 2000MHz DDR3 Memory Review

Today LR has taken the latest DDR3 HyperX Triple Channel kits from Kingston and run them through their paces. We have visited Kingston's DDR3 Triple Channel kits before, but now we have kits with Kingston's new HTX T1 heatspreaders for the optimal cooling. Read on to find out which kit, the 3GB or 6GB, offers the best performance, overclock, and bang for the buck!


In November, Nate showed us what we could expect in the way of memory speeds to come from low voltage DDR3 with Kingston’s 2000MHz Triple Channel memory kit. Paired with a Core i7 965 processor and ASUS P6T Deluxe motherboard, that kit ripped through all of our testing and overclocked up to 2113MHz!

Today, we have a similar kit from Kingston but with a new line of heat spreaders. Officially named HyperX T1, they use aluminum extrusions with extended fins. With this new HTX (HyperX Thermal Xchange) technology, you can be sure that even when you are pushing this memory to the limits it will remain nice and cool.
Compared to more conventional heat spreaders, this HyperX T1 kit is much taller. You can see in the photos that there are plenty of ribs in the heat spreader to utilize every bit of airflow it can get. At 2000MHz, any extra cooling you can get is welcome to ensure that you maintain stability under an enormous load. Our kits today come set up with XMP, or Xtreme Memory Profile. By choosing one of the two XMP profiles in BIOS, your memory is automatically configured to run optimally on a Core i7 system. Our Kingston HyperX T1 kits have XMP profiles of either 1866MHz or 2000MHz.

Gelid Silent Spirit LGA 1366 CPU Cooler Review


Gelid Solutions has designed the Silent Spirit, a top-flow CPU cooler, to be silent and to perform better than retail boxed CPU coolers. The open frame structure that is set to a unique orientation angle is said to be best for airflow. Read on to see if this cooler runs silently and cools as the corporate site says it does.

NVIDIA GeForce 3D Vision Review


The NVIDIA 3D Vision Bundle consists of a Samsung Syncmaster 2233RZ 22" 3D Gaming LCD Monitor and NVIDIA 3D Vision Stereoscopic glasses. This $599 bundle will give you an out-of-the-box immersive 3D PC Gaming experience as long as your system has a GeForce 8800 or higher gaming graphics card. Read on to see what the future of 3D gaming looks like as you don't want to miss out on this!

Intel Core 2 Quad Q8200S Processor Review


With the economy still chugging along not too many people are thinking about buying a processor above $300, so today we will be looking at the Intel Core 2 Quad Q8200 processor. This 45nm processor retails for just $169.99 online, which makes it interesting due to the price point alone. Read on to see how this 2.33GHz processor with a 1333MHz FSB and 4MB of L2 cache does against over 20 other processors!

AMD Phenom II X3 720 BE and Phenom II X4 810 Processors


AMD is announcing five new Socket AM3 processors that many enthusiasts have been waiting many months to launch. These processors are based off the same 45nm 'Deneb' core that the previous Phenom II processors use, but with a few tweaks and a new memory controller. This new memory controller allows the processor to run both DDR2 and DDR3 memory kits, which is good news for AMD as up to a 5% performance boost can be seen when running DDR3 memory on Phenom II processors.

Intel 32nm Westmere Desktop Processor Roadmap Exposed


Intel had a news briefing just moments ago in downtown San Francisco that involved a processor road map update presented by VP Steve Smith and Senior Fellow Mark Bohr. The highlight of the meeting was the discussion about new milestones for the 32nm manufacturing and progress toward future products. If you don't know about the 32nm Westmere core or upcoming Lynnfield, Clarksfield, Clarkdale, Arrandale or Gulftown processors you need to read on.

ASUS M4A79T Deluxe Motherboard Review


We showed you a preview of the ASUS M4A79T Deluxe socket AM3 motherboard last month and today we will show you how it benchmarks against a socket AM2+ motherboard. Read on to find out if DDR3 memory helps boost performance over a board running DDR2 memory and if 8GB of DDR3 memory is stable on the board. If that isn't enough we also overclock the CPU over 1.2GHz!

AMD Phenom II 810 & 720 BE Processor Dry Ice Overclocking


AMD has done a great job at getting the word out that Phenom II is a new and improved processor, but how do these new Phenom II processors overclock with extreme cooling? AMD showed us that the temperature bug is long gone by running a AMD Phenom II X4 processor at 1.95V and at below -190C, but what can we pull off on our own test bench? This weekend we purchased ten pounds of dry ice along with some Acetone to see what we could get a pair of Phenom II socket AM3 processors could do on the ASUS M4A79T Deluxe motherboard.

Partners To Demo Several "New" GeForce Cards @ CeBIT



Nvidia's AIC partners plan to unveil several "new" cards during CeBIT; GeForce GTX 260 card based on the revised P897 PCB, GeForce GTS 250 with a revised PCB, 9600GT and GSO "Green Edition" and GeForce 9800 GT "Green" Edition. Note that Nvidia will not be marketing those cards as Green Editions but leave the naming as theyare know as now. Probably, you will see the GeForce GTS 240 card too which is slated for April and the GT218 card if you are lucky.

GALAXY Releases Self Designed GTX260+ Card



GALAXY today unveils the GeForce GTX260+ 216SP card with 896MB of Samsung GDDR3 memories. The card is clocked at 625MHz for the core, 2100MHz for the memories and 1350MHz for the shaders. The overclocked GALAXY GTX260+ performs 7% higher than the default GTX260. The card is cooled by Arctic Cooling Twin Turbo VGA cooler with dual fan and 4 heatpipes. Also the card comes with a back-plate that prevents PCB bending. GALAXY Xtreme Tuner overclocking software will be bundled as well.

AMD RV740 is Radeon HD 4770 / 4750, Launch in May

VR-Zone learns that AMD is planning to launch two new mainstream cards based on 40nm RV740 in May, a month after releasing the high end 55nm RV790 cards. There will be two versions; Radeon HD 4770 (RV740XT) and Radeon HD 4750 (RV740PRO).

Radeon HD 4770 is equipped with 512MB of GDDR5 memories clocked at 800MHz while Radeon HD 4750 is equipped with 1GB GDDR3 memories. Core clocks for both cards stood at 700MHz. The RV740 cards will be the first series from AMD to feature Triple-Phase power solution for more efficient power design.

CJ let us know that Radeon HD 4770 is expected to be priced at ~US$119 targeting GeForce GTS 240 while HD 4750 is expected to be priced at ~US$99 targeting GeForce 9600 GT.




5-Way X58 Motherboard Roundup

We have already reviewed two X58 motherboards from ASUS - the Rampage II Extreme and P6T Deluxe. In this review, we'll be looking at five more X58 boards, all of which are their respective manufacturers' top-end offerings.

Biostar TPower X58
DFI LanParty UT X58-T3eH8
Foxconn Blood Rage
Intel DX58S0 "SmackOver"
XFX X58i




These boards are aimed at overclockers and high-end users, which mean they're packed with features to the brim. In the hands of overclockers, many of these bells and whistles are typically ignored (disabled, actually) in favour of simply pushing clockspeeds as high as possible.

Premium motherboards have always been quite predictable. While some of the usual trends remain, we're spotting some new ones as well. In fact, we're seeing considerable variations between some of the motherboards.

In this first part we'll take a close look at the boards' features and layouts. With so many things to cram into the same ATX form factor, we won't be surprised if we see some layout slip-ups along the way. Also, we'll be checking out the BIOS of each board in detail.

In the second part we'll benchmark the boards and dissect their overclocking capabilities. We're still working on the latter, so stay tuned.

Quad-Core Intel Xenon proceaaor 5400 series


Rethink Performance
To meet the compute performance-per-watt demands of thermally constrained applications in communications, storage, and embedded market segments, Intel has introduced the Quad-Core Intel® Xeon® processor L5408 on the Intel® 5100 Memory Controller Hub (MCH) chipset-based platform. This platform delivers up to 67 percent more compute performance per system watt1 than the previous generation Quad-Core Intel® Xeon® platform for AdvancedTCA* applications.

Optimize productivity and maximize network storage capacity.


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The complete Aberdeen line of NAS appliance solutions allow the benefits of a feature-rich, high-performance network attached storage without the high cost of ownership. The AberNAS network-attached storage appliances range from 4TB in a 1U up to 40TB in a single server.

Samsung Begins to Produce 7GHz GDDR5 Memory

Samsung Initiates Production of GDDR5 Using 50nm Process Technology.

Samsung Electronics, the world’s largest maker of various dynamic random access memory, said on Thursday that it had started mass production of GDDR5 memory chips using 50 nm process technology. The new fabrication process allows the devices to reach unprecedented clock-speeds and trim power consumption.

“Our early 2009 introduction of GDDR5 chips will help us to meet the growing demand for higher performance graphics memory in PCs, graphic cards and game consoles. Because GDDR5 is the fastest and highest performing memory in the world, we’re able to improve the gaming experience with it across all platforms,” said Mueez Deen, director of mobile and graphics memory, Samsung Semiconductor.

The new GDDR5 memory chips are not only capable of working at up to 7GHz clock-speeds, but also use 1.35V voltage, a reduction from 1.425V – 1.575V voltage of currently available GDDR5 memory chips from Samsung. Moreover, the new GDDR5 devices are cheaper to produce: by adopting 50nm class technology, Samsung expects production efficiency to rise 100% over 60nm class technology.

7GHz GDDR5 chips could provide 224GB/s or 448GB/s peak bandwidth when connected to a processor using 256-bit or 512-bit memory bus, respectively. It is unclear which of the forthcoming graphics cards will utilize 7GHz GDDR5 chips, but since both ATI, graphics products group of Advanced Micro Devices, and Nvidia Corp. are projected to release their new high-end graphics solutions later this year, it is definite that high-speed memory will be in demand.

Samsung’s new GDDR5 chips are now available in 32Mb x32 configuration (128MB) and are also configurable as a 64Mb x16 device.

Samsung expects GDDR5 to account for over 20% of the total graphic memory market in 2009. The company also said it plans to expand the 50-nm process technology throughout its graphics memory line-up this year.

Thursday, February 19, 2009

Mainboard Makers Reportedly Expect AMD’s Microprocessor Market Share to Increase.


The Share of AMD Platforms in the Channel Market Set to Climb


As Advanced Micro Devices transits its lineup to more competitive AMD Phenom and AMD Phenom II microprocessors, its market share will have chances to increase as availability of AMD-supporting infrastructure will grow, a media report claim citing opinion of motherboard makers.

According to mainboard producers quoted anonymously by DigiTimes web-site, AMD’s share of the platforms in channel market will grow to 30% in the first half of 2009 thanks to increasing demand towards AMD Phenom II central processing units (CPUs). The higher share of supporting infrastructure has all chances to directly translate into higher unit share of AMD’s microprocessors on the market. Moreover, since new chips of the company are more competitive against Intel Corp.’s products than predecessors, higher amount of available mainboards may boost AMD’s earnings as well as average selling prices amid global financial crisis and gloomy outlook.

Market tracker Mercury Research estimates that back in Q4 2008 Intel commanded 74% of the desktop CPU market followed by AMD with 24.7% and Via with 1.3%. In total, about 35.6 million of desktop processors were supplied in Q4 by all three makers, which is 18% decline from the previous quarter, data from Mercury Research claims.

Although AM3-based motherboard has already appeared in the channel, the high prices of DDR3 memory modules are limiting its growth, the sources said. Therefore AM2+-based motherboard currently is still the mainstream product for AMD since they support both AM2+ and AM3 microprocessors. That said, the adoption rate of the new AM3 infrastructure completely depends on DDR3 memory pricing as well as introduction of higher-performance microprocessors for AM3 by Advanced Micro Devices.

The world’s second largest maker of microprocessors will also have to ensure that it manufactures enough microprocessors to serve the market. Recently AMD said that in order to cut costs the company is reducing its output, therefore, if the estimates by AMD do not meet estimates of motherboard suppliers, the adoption rate of the company’s newer products may slowdown.

“We are reducing our manufacturing output to keep inventories down, while completing our transition to 45nm technology and developing 32nm technology consistent with our plans,” said Derrick Meyer, chief executive officer and president of Advanced Micro Devices, during the most recent conference call with financial analysts.

In the fourth quarter of 2008, AMD reported a net loss of $1.424 billion, or $2.34 per share. For continuing operations, fourth quarter 2008 loss was $1.414 billion, or $2.32 per share, and the operating loss was $1.274 billion. For the year ended December 27, 2008, AMD achieved revenue of $5.808 billion. Fiscal 2008 net loss was $3.098 billion. AMD reported revenue of $5.858 billion and a net loss of $3.379 billion for fiscal 2007.

Analysts from IDC and Mercury Research predict further declines in CPU market in the first half of 2009.