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Showing posts with label motherboard. Show all posts
Showing posts with label motherboard. Show all posts

ASRock pulls its special motherboard OC

ASRock takes advantage of the Computex to show its new special motherboard torture of Intel processors.

Under LGA1155 socket and chipset Panther Point Z77 equipped, ASrock unveils its special motherboard OC called for the occasion Z77 OC Formula. With 12 + 4 phases power signed DiGiPower and accompanied by super capacitors tantalum as well as active chipsets for control of temperature, pressure and the intensity of the power from the motherboard, the manufacturer has even added a small fan of 4 cm in diameter close to aerate any this beautiful world. The memory part is composed of four banks dual channel capable of supporting of the DDR3 up to a frequency of 3000 MHz with eight floors of dedicated to food.

asrock-Z77-OC-Formula-001

For the rest of the specifications, ASRock offers two ports PCI - e 3.0 x 16 or x 8 / x 8 if two cards are installed with more another port PCI-e 2.0 x 16 (x 4 electrically) and finally two last ports PCI - e 2.0 x 1 in case where. For storage, this Z77 OC Formula has six SATA 6 Gb/s ports four that are controlled by a third-party controller not specified and four SATA 3 Gb/s ports. Then, we find a HDMI, a port output eight channels for sound and an RJ45 Gigabit outlet powered by Broadcom and some USB 3.0 on the back panel ports.

That said map for overclocking, said checkpoint on the PCB. ASRock does not derogate from the rule and is well thought to control tensions and temperatures of torture applied and two panels of control of the State of the motherboard, and a few essential buttons for this kind of practice. The price will come later...


Asus shows its motherboard to 40 floors of food

32 on my right! 40 on my left! For now, ASUS has floors of food record. But is it reasonable?


After 32 food of the Gigabyte GA-Z77X-UP7 phases, it is turn to ASUS to show who has the largest motherboard. With 40 food phases, the ce prototype prototype of ASUS that is very similar to the P8Z77-V series named code Wolverine.


Our colleagues from VR-Zone were able to take a few pictures of this big motherboard, but we have not yet more precision for the time on the full technical characteristics of such a monster.


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A new race has been launched. Is - this really useful to have as many floors of food? With such maps mothers at hand, the overclocking quickly draw conclusions especially under extreme conditions such as LN2.


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€500 the motherboard Asus bi - LGA 2011...

ASUS pulls a motherboard designed around two sockets LGA 2011. What ride a super-config' if they have the means...

Asus Z9PE-D8 WS (1)ASUS a new motherboard capable of two processors and up to four graphics cards. Like EVGA monster, it in fact has two socket LGA 2011, trimmed to receive dual Intel Xeon E5. Each location is framed by the presence of four DIMM slots, may install up to 64 GB of DDR3 on this configuration.

At the level of the PCI-Express, seven locations are present in the standard Gen 3.0. Four of them are designed to accommodate a graphics card, thus paving the way for the implementation of SLI or CrossFireX configurations (four ports are in x 8, two are in x 16). All controlled by Intel C602 chipset that handles also two ports SATA III 6 Gbps and eight-port SATA II 3 Gbps. A controller Marvell adding four ports SATA III is also. Connectivity is supplemented by four USB 3.0 ports and a dozen USB 2.0 ports.

The format of this top-of-range motherboard is of course more imposing than the usual ATX is TEEB (Enterprise Electronics Bay) which measures 305 x 330 mm. Under the Asus Z9PE - D8 WS, reference this motherboard for the wealthy was launched at a price of €500. The price to pay to be a super powerful configuration, knowing that it will also provide expensive processors with...

EVGA prepares a motherboard bi-socket LGA 2011

The Californian manufacturer EVGA will soon unveil the worthy estate of the famous Classified SR-2...


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EVGA had unveil his famous Classified SR-2 in the CES 2010, before the launch a few months later. The California manufacturer is preparing the succession of this ultimate motherboard. This solution should resume format HPTX (345 x 381 mm). It hosts two socket LGA 2011 and it will therefore support future processors type Intel Sandy Bridge-E ". It will then get a maximum 16 hearts (and 32 threads). The next monster of EVGA has twelve slots that bear on two four-channel DDR3.


It should be noted many (type PCI Express and EPS) connectors present on the circuit, which will support high-quality digital supply system. Seven PCI Express x 16 slots are visible, knowing that they will no doubt bear CrossFireX and SLi technology. Side storage, there are fourteen Serial ATA ports. The back panel of this motherboard includes two Gigabit LAN, USB 3.0, and HD audio connectivity ports. It is not known yet when and how EVGA account propose this new beast of power. Reminder, the Classified SR-2 was launched at 599,99 $ recommended public price...

A motherboard FM1/A75 in micro-ATX in MSI

The Taiwanese manufacturer MSI unveils a new map mother Micro-ATX support the A-Series AMD socket FM1.


msia55m-p35board02


MSI has officially announced a new motherboard support AMD A-Series (Llano) of AMD. This A55M-P35 is a solution to the Micro-ATX. It welcomes very logically socket FM1 and chipset AMD A75. Two slots supporting the DDR3 at 1866 MHz (on two channels) are also present on its printed circuit board.


The possibilities for extensions are provided by a slot PCI Express x 16 (supporting Dual Graphics Technology), two PCIe x 1 slot and a PCI slot. This A55M-P35 storage is based on six ports Serial ATA 6 Gb/s. Its back panel shows the connectivity Gigabit LAN and HD audio to 7.1, and VGA and DVI ports. The MSI integrates technologies House OC Genie II, Winki 3, and Click BIOS. It is not known yet when and how much it disembark in France.


msia55m-p35board01

MSI Announces A75A-G55 a motherboard to Llano certified Military Class II

msi_logo


The card mother MSI A75A-G55 is compatible with the AMD Llano APU, which integrates the processor and the graphics part in same chip. This motherboard equipped with a Radeon HD 6670 and of an APU AMD Llano A8-3850 would reach from MSI feature Dual Graphics 13351 Points in 3D Mark Vantage.


A75A-G55 is the ATX. It is equipped with the socket FM1 and Chipset A75 (Hudson D3) supporting up to 32 GB Dual-Channel memory allocated to four slots at a frequency of 1600 Mhz memory.


Two ports PCI-Express 2.0 x 16 will be present and compatible CrossFire. When using a CrossFire the first port PCI-Express 2.0 will operate in 16 x and the second will be limited to 4 x.


It will also have six ports SATA 3 (6 GB/s), Audio ALC892 chipset compatible 7.1, a Realtek RTL8111E Ethernet Gigabit controller, two external USB 3.0 ports and an internal via Header connector, three ports wired ports PCI and 1 x PCI-Express.

The selected components will be qualities with Military Class II certification. Overclocking the OC Genie II, which allows to overclock the processor, memory and the graphics part integrated into the processor via a simple pressure on a button, will be part. MSI claimed by the OC Genie II overall performance gain of 110% in less than a second.

Finally, by the A75 chipset Dual Graphics function to combine the graphics performance of the APU and a dedicated graphics card. Through the use of the MSI AfterBurner overclocking software, it will be possible to achieve a performance gain of 390% on 3D mark Vantage is thus achieve 13351 Points with a Radeon HD 6670 and an APU Llano A8-3850.
MSI A75A-G55 would be already available in preorder at a close price of 80 euros.


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MSI is preparing a new motherboard FM1/A75

The Taiwanese manufacturer MSI will soon propose a new motherboard supporting the A-Series AMD socket FM1...


msia75a-g55boardo01


MSI comes to unveil officially a new map mother compatible with the APU has-Series (Llano) of AMD. This A75A-G55 is a solution to the ATX. It still hosts a socket FM1 and chipset AMD A75. We can install the DDR3 on two channels and four slots only. This motherboard has a system of military class. It offers two slots PCI Express x 16 (supporting Dual Graphics and CrossFireX technology), three PCIe x 1 slots and two PCI slots. This A75A-G55 storage is based on six ports Serial ATA 6 Gb/s.


Its rear panel shows the connectivity Gigabit LAN and HD audio to 7.1, and two USB 3.0 ports. Video connections include a VGA port, a DVI port and an HDMI port. The MSI integrates House OC Genie II, Winki 3, Click BIOS, and i - load technology. A75A-G55 is visible in preorder in Europe a little less than €80. This tariff us seems to be correct for a motherboard offering this level of functionality.


msia75a-g55boardo02 msia75a-g55boardo03

MSI is preparing a new motherboard FM1/A75

The Taiwanese manufacturer MSI will soon propose a new motherboard supporting the A-Series AMD socket FM1...


msia75a-g55boardo01


MSI has officially unveil a new motherboard compatible with the APU A-Series (Llano) of AMD. This A75A-G55 is a solution to the ATX. It still hosts a socket FM1 and chipset AMD A75. We can install the DDR3 on two channels and four slots only. This motherboard has a system of military class. It offers two slots PCI Express x 16 (supporting Dual Graphics and CrossFireX technology), three PCIe x 1 slots and two PCI slots. This A75A-G55 storage is based on six ports Serial ATA 6 Gb/s.


Its rear panel shows the connectivity Gigabit LAN and HD audio to 7.1, and two USB 3.0 ports. Video connections include a VGA port, a DVI port and an HDMI port. The MSI integrates House OC Genie II, Winki 3, Click BIOS, and i - load technology. A75A-G55 is visible in preorder in Europe a little less than €80. This tariff us seems to be correct for a motherboard offering this level of functionality.


msia75a-g55boardo02 msia75a-g55boardo03

Gigabyte G1.Sniper 2 motherboard in Z68 equipped for the future

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Gigabyte announces the G1.Sniper 2 motherboard bound for Gamers, very complete and thought for the future. It takes over the design of the G1.Sniper, but Exchange of socket and adopts the Z68 instead X 58.The Gigabyte G1 series is radically different from the other motherboards of the constructor. The PCB is black like the latest Gigabyte, but PCI-Express ports and the Ram ports are alternately green and black. The heatsink to a particular form with a look of firearm.The G1.Sniper 2 is thought for the future taking the essential of today and tomorrow. It will be compatible with the current Sandy Bridge processors. Gigabyte also announced support for the Ivy Bridge 22 nm processors, which is the next generation of CPU Intel expected for early 2012. Twelve phases of power supplies will help power the processor.Port PCI-Express 3.0 is also supported but with Ivy processor only Bridge since Sandy Bridge that handles lines PCI-Express 2.0.The more traditional way motherboard is based on the Z68 chipset. It supports up to 32 GB of ram in Dual Channel with frequency up to 2133 Mhz. The SLI and the CrossFire are supported, the PCI-Express ports will then be 2 * 8 x. Note that the LucidLogix Virtu chip will be also the part, as a reminder to switcher between graphics and the graphic part integrated into the CPU, to save energy when the dedicated graphics card does not have to be used.Concerning the storage, the motherboard will support four SATA 3 (6 GB/s) ports two via Intel chipset and two via the additional chip Marvell 88SE9172. There are also three ports SATA 2 (3 GB/s) internal as well as a connector eSATA 3 GB/s at the back of the motherboard.


USB 3.0 will be managed by two Ron EJ168 chips that will allow to have four ports USB 3.0 including two at the rear of the motherboard and internal two. USB 2.0 will be also present with fourteen ports.


For players the G1.Sniper 2 will have a real creative chip the CA20K2 welded to even the motherboard to support the EAX Advanced HD 5.0, the Dolby Digital Live and DTS Connect support as well as X - FI options. The network portion will be entrusted to the Bigfoot Networks Killer E2100 chip a UPN (processor dedicated to the network portion) supported by 1 GB of DDR2, the NPU promises to improve network performance.


There are more than to know the price of this Gigabyte G1.Sniper 2.


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MSI Announces A75A-G55 a motherboard to Llano certified Military Class II

msi_logo


The card mother MSI A75A-G55 is compatible with the AMD Llano APU, which integrates the processor and the graphics part in same chip. This motherboard equipped with a Radeon HD 6670 and of an APU AMD Llano A8-3850 would reach from MSI feature Dual Graphics 13351 Points in 3D Mark Vantage.A75A-G55 is the ATX. It is equipped with the socket FM1 and Chipset A75 (Hudson D3) supporting up to 32 GB Dual-Channel memory allocated to four slots at a frequency of 1600 Mhz memory.Two ports PCI-Express 2.0 x 16 will be present and compatible CrossFire. When using a CrossFire the first port PCI-Express 2.0 will operate in 16 x and the second will be limited to 4 x.It will also have six ports SATA 3 (6 GB/s), Audio ALC892 chipset compatible 7.1, a Realtek RTL8111E Ethernet Gigabit controller, two external USB 3.0 ports and an internal via Header connector, three ports wired ports PCI and 1 x PCI-Express.The selected components will be qualities with Military Class II certification. Overclocking the OC Genie II, which allows to overclock the processor, memory and the graphics part integrated into the processor via a simple pressure on a button, will be part. MSI claimed by the OC Genie II overall performance gain of 110% in less than a second.


Finally, by the A75 chipset Dual Graphics function to combine the graphics performance of the APU and a dedicated graphics card. Through the use of the MSI AfterBurner overclocking software, it will be possible to achieve a performance gain of 390% on 3D mark Vantage is thus achieve 13351 Points with a Radeon HD 6670 and an APU Llano A8-3850.
MSI A75A-G55 would be already available in preorder at a close price of 80 euros.


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Intel P4 Socket 478 CPU Heatsink Retention Motherboard Bracket Module

Intel P4 Socket 478 CPU Heatsink Retention Motherboard Bracket Module


 


 


 


 


 


 


 


 


 


This is your standard Socket 478 Retention Bracket, used to mount a standard Socket 478 Heatsink/Fan. Normally, this piece is included with the motherboard, but here is a chance to buy a replacement if you broke yours during installation, or you bought a motherboard that did not come with one. Four easily snap-in pins for easy installation. Made of strong Polycarbonate material, which is twice as strong as the standard ones that come with most motherboards.


Price: $14.99


Click here to buy from Amazon

SPONSORED BY Intel - Intel Inside, Including the Motherboard?

The market is brimming with motherboard options, and businesses of all sizes face the unenviable task of trying to decide which vendor to place at the heart of their productivity desktops. One vendor will offer more features. Another might offer better power efficiency while a third touts superior performance.

To some degree, these factors are all icing on the cake. At the end of the day, a work system only must do one thing: work. Stability is king. Once that has been assured, then it makes sense to consider secondary concerns, such as features, form factors, and (in business settings) manageability.

The key to a motherboard’s stability and performance lies in its processor and chipset. Intel has led the market in both of these components for many years. According to Mercury Research, Intel held 81% of the processor field at the end of this year’s first quarter, a position the company retains in large part from its unmatched R&D, which allows it to stay ahead of competitors. This R&D not only helps Intel to create the most advanced product architectures, it also gives the company more time to dovetail those architectures with complementary products, especially motherboards.

This only makes sense: when you need to test a new processor and chipset, you need a motherboard on which to test them. The longer and more thorough learning gained in this process gives Intel an immediate advantage on motherboard quality and reliability as well as the ability to refine motherboard architectures to better mesh with the latest chip developments. An example of this is the new LGA1155 socket designed for the latest generation of “Sandy Bridge” 2nd generation Intel Core processors. Another might be the new Smart Response Technology (SRT) method of using an SSD (such as the newly launched 20 GB SLC Intel 311 drive) as hard drive cache under an Intel Z68 chipset.

The end result of this cooperative development cycle is that businesses and consumers alike get the most stable, reliable motherboards available when they buy Intel. In the following pages, we’ll get a closer look at why this is the case along with some of the secondary benefits Intel offers.

Intel In The Motherboard Business

Back in March 2009, Tom’s Hardware ran an article showcasing 16 years of Intel motherboard development. In it, you can see Intel’s first commercial motherboard, the “Batman” model from 1993, designed for Pentium 60 and 66 processors. Prior to this, the company had only produced reference boards for manufacturing partners. By the mid-‘90s, though, Intel had cemented its place in the commercial motherboard market. This may have had something to do with the rise of Intel’s 430FX chipset as the most popular core logic of its day.

Another Intel makes sure that its motherboards are at the forefront of innovation and reliability is through helping to pioneer and ratify industry standards. Today, Intel works with over 250 standards and industry groups across a wide range of computing-related fields. Sometimes, Intel develops technologies internally and then turns them over to industry bodies. For instance, Intel started development on the Peripheral Component Interconnect (PCI) bus in 1990 within its own Architecture Development Lab. Two years later, the PCI specification migrated to the newly formed Peripheral Component Interconnect Special Interest Group (PCI-SIG). Intel still sits on the PCI-SIG’s Board of Directors, but the non-profit now boasts more than 800 member companies. In a similar way, Intel was one of seven companies, principally led by Intel’s Ajay Bhatt, that started work on the Universal Serial Bus (USB) in 1994. Now, USB is governed by the USB Implementers Forum. Intel did much the same with AGP and PCI Express. To drop just a few more names, Intel is deeply involved with the Digital Living Network Alliance (DLNA), DVD Forum, The Linux Foundation, Serial ATA International Organization, and the UPnP Forum.

All of this industry involvement and innovation translates into a wealth of new technologies for Intel to tie into its motherboard efforts. But exactly how these technologies become productized depends on a wide array of considerations. For starters, there are form factor concerns. How big should a motherboard be, and how much expansion capability should it offer? Options range from the slot-loaded Extended ATX down to the almost fully integrated Mini-ITX. Intel has been instrumental in helping design many of the industry’s form factor standards, as you can see at the company’s FormFactors.org site.

Then there’s the issue of target audience and application. Intel now offers six desktop motherboard families, never mind server, workstation, or embedded platform models. These start with the entry-level Essential Series SKUs (mostly based on G41chipset and integrated Atom processor models) and move all the way up to the top-end Extreme Series, supporting the latest LGA1366 processors alongside the X58 chipset. Businesses often opt for the Executive Series, preferring the management features found in Intel’s Q-series core logic.

Get the latest updates on Intel Desktop Boards here.


View the original article here

Gigabyte G1.Sniper

Here’s an attractive contact to a gaming Motherboard: Instead of deceitful the Board in support of overclocking, build solitary with the purpose of has As many optimized audio and networking Capabilities as workable in addition to support In support of powerful graphics and CPUs.
The Gigabyte G1.Sniper was absolutely Industrial with the gaming experience In mind. The onboard audio is handled By the Creative Sound Blaster X-Fi digital Audio central processing unit along with Dolby Digital Live (the latter of which encodes Audio in real time), and a built-in front Headset amplifier.
To help prevent client-based group Lag, the G1.Sniper has Bigfoot Networks’ Killer E2100 Game Networking Platform Baked in. The platform includes a enthusiastic NPU (network doling out unit) with 1GB of DDR2 recall, with expertise Designed to route a number of group data to The NPU more exactly than the group stack in support of A performance boost. The G1.Sniper plus wires Intel’s Most recent six-core beast, the Core i7-990X, as Well as 3-way CrossFireX or SLI, 6Gbps SATA, and USB 3.0. This board is a musician, and the Bells and whistles have a say to the user Experience in a meaningful way.

Gigabyte X58-USB3

 

Jumping into one of Intel’s six-core Core i7s can be an expensive proposition, but with the X58-USB3, Gigabyte scales down the X58 features (no 6Gbps SATA or eSATA ports) to offer an affordable motherboard that can still handle the Core i7-970 or 980X. The X58-USB3’s layout is fairly well thought-out, but we didn’t like the placement of the front-panel audio connector, which was located above the expansion slots. On the plus side, Gigabyte built in three PCI-E x16 slots, and the first two are capable of running at full x16 speed. The bottom PCI-E x16 slot runs at x4 speed. Compared to Gigabyte’s X58A-UD9
and X58A-UD7, the X58-USB3 doesn’t offer as large of heatsinks, or as much power regulation. That being said, we were still able to push the Intel Core i7- 980X in our test system to 4.4GHz.

Our overclock included slight voltage increases to both the CPU and memory. Gigabyte also includes a slew of recovery, hard drive, and overclocking utilities. If you’re looking for a motherboard that’s a good value—and are OK with one that doesn’t have all the high-end features the X58-USB3 is for you. We also like that it offers enough overclocking tools to let you push the high-end Core i7 processors it was designed to work with.

 

by Nathan Lake

Gigabyte's GA-EX58-Extreme

Congrats on the new laptops, Betsy! And yes, we think we can help with your problems. Let's tackle your husband's issue first. Because his machine is on the network and getting Internet access, his problem is most likely related to one of three things: the work­group name, network discovery, or firewall settings. On your hus­band's machine, make sure his workgroup name matches yours (and the WinXP machine's) in the Advanced System Settings. Also, be sure to enable network discovery in the Advanced Sharing Settings. Finally, ifhis notebook came with a preinstalled third­party security suite, try searching for the printer with the suite's firewall disabled. Having seen this issue many times in the past few months, we'd bet that there's an overly restrictive software firewall running on your husband's machine that needs to be tamed a bit.

The error you're receiving when you try to print sounds like some sort of incompatibility between Win7 and the printer's dri­vers or WinXP's print spooler. The first thing to try to remedy the situation is to install the latest drivers for your printer and then reconnect to it on your laptop. If that doesn't help, you can try bypassing the spooler altogether and printing directly to the printer. On the WinXP machine, open the printer properties and then dick the Advanced tab. On the Advanced tab, you'll see an option labeled "Print Directly To Printer." Select that option, apply the changes, restart your machine, and try printing from the new Win7 laptop again.

I recently decided I'd upgrade my aging Core i7­920 quad-core chip (I know, just kidding: It's not that old) to some­thing of the six-core variety from Intel. However, I'm having some issues with my motherboard now, and I'm wondering if I'll have to rip that out since it might not support the new 32nm chips properly.

I have a Gigabyte GA-EX58-Extreme motherboard, and it always has performed really well with my 920 chip. I recently purchased a Core i7-970, since it cost about $150 less and has only 133MHz slower core clock than the Core i7-980X. Unfortunately, my GA-EX58 mobo won't boot at all with it, but if I swap the chip back to the Core i7-920, it boots just fine. I tried grabbing the latest BIOS from the Gigabyte site, but no matter what I do, I get a flash program error saying it's an "incompatible BIOS file," or something like that.

I'm stuck and not sure what to do. Any clues? I'd hate to have to return the Core i7-970 or upgrade the motherboard. Also, did I go wrong picking up the Core i7-970? Should I have sprung for the extra money and got a 980X? Are there any other performance differences in the new 970 chip I should know of?

A: Fear not, Bob. You can probably get that board to wake up just fine with your new Core i7-970. (By the way, we like your practical approach of choosing a new processor.) The Core i7­970, like the top-end Core i7-980X, has 12MB of shared L3 cache backing its six processing cores. Other than the dock speed differences you mentioned, the only other difference between the 970 and 980X is the QPI interface speed, which is 4.8GTps for the 970 vs. 6.4GTps for the 980X. You're not going to see much, if any, difference in performance due to QPI speed, however. In general your performance for lightly threaded or single-threaded apps should drop in just under a Core i7-975 quad core.

clip_image002[4]

 

Now, on to your motherboard issue. We've seen this many times over the years, when Intel or AMD release a new core revision, especially chips that have new power requirements, like Intel's new 32nm Gulf town core. Although Intel designs many core migrations to be socket-compatible (though it's not always the case), it's up to motherboard manufacturers to ensure their power supply and regulation components on the motherboard, along with the BIOS microcode that supports it, are compatible with new chip requirements. In your case, the good news is that your Gigabyte motherboard should work with that Core i7 -970 just fine.

Likely, what you need to do is go back to Gigabyte's Web site and download older revision BIOS images, perhaps as far back as when Gigabyte introduced the first version that supported Intel's new six-core CPUs for that motherboard. Many times, trying to flash-upgrade with the most recent revision of a BIOS image will fail because, somewhere along the way, the BIOS image check routine of the flash upgrade program determined that your cur­rent BIOS image was too old to be considered upgradable. So, in short, you need to perform at least one incremental upgrade from an older BIOS revision before you can move forward and flash­upgrade the BIOS to the latest revision. Once you flash to a BIOS image that is compatible with the most current version, you should be good to go.

At the very least, you should be able to download an older revision of the BIOS that fully supports your new Core i7-970 chip. Good luck!

 

by Dave Altavilla and Marco Chiappetta, the experts over at HotHardware.com.

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