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Asus Z77 Roundup When doing all of our Ivy Bridge launch prep we spent a LOT of time benchmarking and testing a whole collection of boards. You guys have seen our reviews of the Intel and Gigabyte boards. When it came time to write about the four different Asus Z77 boards I realized that most of you are not going to want to read through a lot of information that we would cover over and over on each review. We decided to roundup all four of the boards and cover them together. This way we can get to the point a little quicker, saving you time, as well as giving us a chance to talk more about the differences between the variety of boards that we tested.
ASUS P8 Z68-V/GEN3 Perhaps one of the most daunting tasks after making the decision that you do not wish to purchase an off-the-shelf computer is attempting to figure out which components go in the machine.  There are fun aspects, like the graphics card and processor, and then there are the not-so-fun aspects, like the motherboard (at least in my opinion).  Why do I think it is a whole lot of not fun?  There are so many out there to choose from, with all sorts of features.  When shopping you will likely come across the ASUS board that I am going to review today.  Arguably, it is one of the better all-around boards out there, with features like good integrated graphics and killer sound.  But to a gamer that generally does not mean squat.  Does the ASUS P8 Z68-V/GEN3 board have what it takes to function as a serious gaming component?  Read on to find out!
XFX R7750 Black Edition DD Not everyone is looking to spend $500 on their video card, in some cases that is the total budget for a build. When you are up against a wall trying to pack the best performance you can get into a budget build you still want to get the most performance you can out of your video card. That’s where cards like the XFX R7750 Black Edition Double Dissipation come into play. XFX has taken the styling and cooling from their high end cards and combined it with the price of budget cards like the HD 7750. Today we are going to take a look at how those two things do combined in XFX’s  R7750 Black Edition Double Dissipation.
Sapphire HD 7770 Vapor-X   Earlier this year when AMD introduced the HD 7770 we took a look at cards from both Sapphire and XFX. Although we were impressed with the cards performance it was a little ill-timed due to AMD still clearing out discounted back stock. Three months later we are able to revisit the situation with today’s release of Sapphires new HD 7770 Vapor-X. With Sapphires Vapor chamber cooling technology along with a nice overclock over the reference design, the Sapphire HD 7770 Vapor-X could be a great option for a gamer on a limited budget. Let’s take a look.
Motherboard Sizing When we got in a few oddly sized dual CPU motherboards from EVGA and Asus I posted up a few pictures on our forums and on Facebook. The problem was that even though they looked large there wasn’t any prospective. So we tossed in a couple other boards to give everyone a little perspective. This lead us to digging out even more motherboards to put together all of the standard motherboard sizes all together for everyone to be able to see the differences. Along with the picture we also have a breakdown on the dimensions of each size standard; I hope this helps everyone as some point. Sometimes it can be hard to understand all of the different motherboard sizes and how they all relate.
Android to the Maxx, DROID Razr Maxx   The list of different Android based phones available at any time is both overwhelming and frustrating. It’s almost impossible to get good feedback from friends who have the same phone because of this. So it’s rare than you have any one phone that manages to stand out. Doing something different is the only way to do this normally, but most times this ends off coming off as gimmicky or just lame. When Motorola introduced the Droid Razr Maxx it caught my attention right away. This was just before our trip out to San Francisco for the GTX 680 Editors day, what a better way to put the Maxx’s proposed batter life to the test!
Lian Li PC 100 “The Hammer” We have had a few different Lian Li chassis come through the LanOC Offices and there hasn’t been a time that we haven’t been impressed with the new and interesting features Lian Li always seems to slip in. When they wanted to ship over their new case “The Hammer” PC 100, we signed up right away. We had seen the case previewed from a few shows prior and this time around Lian Li took a new perspective with its design, I was very interested to see how their changes worked out. Let’s jump in and see what it’s all about!
Nvidia GTX 670 When Nvidia launched Kepler with the GTX 680 I was impressed with the launch price of the card but even at such a great value it is still out of reach for some people. Just because you can’t afford the top card doesn’t mean you don’t want to experience Kepler’s performance. Of course it was only a matter of time before we saw Nvidia filling in the gaps in their product line, starting first with the GTX 690 then going to the next step down from the GTX 680, the GTX 670. Today we get to have a look to see how the performance compares to both the GTX 680 as well as AMD’s offerings. We are also very curious how it compares to the GTX 580, a card that has found its way into most of our office PC’s.  
ioSafe Rugged Portable So you do the smart thing, you backup your data from your laptop and your home PC to an external or network drive and go on with life feeling confident that you have gone well and above what most people do. For the most part, you did. What about when you’re traveling, have you seen how much abuse a device can take when on the go? For some people, and I know I’m one of them, some of the data you carry with you while traveling is more important than the laptop or device that you actually carry it on. In that situation you need a way to not have to worry about your data, no matter the situation, and to have a guarantee to back it up as well. The folks over at ioSafe focus specifically on this crowd. Not only do they offer products that are according to them build to handle almost anything, but they back it up with data recovery if something does happen.  Today we are going to take a look at that Rugged Portable hard drive to see what all of the fuss is about, without any more buildup, let’s dig in.  
Cooler Master Storm Trigger Just two years ago the only mechanical keyboards you would find were from companies like DAS keyboard trying to create a nitch market. Over the past two years things have really exploded with every manufacture you can think of introducing their own mechanical keyboards. Cooler Master has been especially aggressive with multiple unique designs like their Quickfire series. What they did lack was a full featured mechanical keyboard with full backlighting, until now. Today they officially introduce their Storm Trigger, although it you look around the board was available Globally before now. With full backlighting it falls into a small category of Mechanical Keyboards with very little competition. I am excited to see how it performs.
Cooler Master HAF XM The topic of cleaning your computer out came up last week on our forums and it got me thinking about how often I really need to clean out my computer. As it turns out it’s not very often anymore. All because of improvements in case design like fan filters. You don’t really see them on low end cases yet but they have been slowly trickling down. At CES this year we had a chance to get our hands on one of Cooler Master’s upcoming chassis, the HAF XM. A mid-range case packed with the features we have come to love from their high end HAF line. Today we are going to dig into the final product and see how it came out.
Gigabyte Z77X-UD3H Z77 boards come in all shapes, sizes, colors, and prices. Just about every manufacture has a whole lineup of boards covering the whole range to make sure you can find what you are looking for. Gigabyte is no different; they have a whole selection of boards that will fit your needs. Today we are taking a look at their Z77X-UD3H, one of their budget boards. It may not be a high end board but it is still packed with features. I am curious how it will perform now that the cat is out of the bag with Ivy Bridge. Let’s jump in and see what it’s all about.

Intel Milestone Confirms Light Beams Can Replace Electronic Signals for Future Computers

Intel Creates World's First End-to-End Silicon Photonics Connection with Integrated Lasers; Could Revolutionize Computer Design, Dramatically Increase Performance, Save Energy

SANTA CLARA, Calif., July 27, 2010 – Intel Corporation today announced an important advance in the quest to use light beams to replace the use of electrons to carry data in and around computers. The company has developed a research prototype representing the world's first silicon-based optical data connection with integrated lasers. The link can move data over longer distances and many times faster than today's copper technology; up to 50 gigabits of data per second. This is the equivalent of an entire HD movie being transmitted each second.

Today computer components are connected to each other using copper cables or traces on circuit boards. Due to the signal degradation that comes with using metals such as copper to transmit data, these cables have a limited maximum length. This limits the design of computers, forcing processors, memory and other components to be placed just inches from each other. Today's research achievement is another step toward replacing these connections with extremely thin and light optical fibers that can transfer much more data over far longer distances, radically changing the way computers of the future are designed and altering the way the datacenter of tomorrow is architected.

Silicon photonics will have applications across the computing industry. For example, at these data rates one could imagine a wall-sized 3D display for home entertainment and videoconferencing with a resolution so high that the actors or family members appear to be in the room with you. Tomorrow's datacenter or supercomputer may see components spread throughout a building or even an entire campus, communicating with each other at high speed, as opposed to being confined by heavy copper cables with limited capacity and reach. This will allow datacenter users, such as a search engine company, cloud computing provider or financial datacenter, to increase performance, capabilities and save significant costs in space and energy, or help scientists build more powerful supercomputers to solve the world's biggest problems.

Justin Rattner, Intel chief technology officer and director of Intel Labs, demonstrated the Silicon Photonics Link at the Integrated Photonics Research conference in Monterey, Calif. The 50Gbps link is akin to a "concept vehicle" that allows Intel researchers to test new ideas and continue the company's quest to develop technologies that transmit data over optical fibers, using light beams from low cost and easy to make silicon, instead of costly and hard to make devices using exotic materials like gallium arsenide. While telecommunications and other applications already use lasers to transmit information, current technologies are too expensive and bulky to be used for PC applications.

"This achievement of the world's first 50Gbps silicon photonics link with integrated hybrid silicon lasers marks a significant achievement in our long term vision of ‘siliconizing' photonics and bringing high bandwidth, low cost optical communications in and around future PCs, servers, and consumer devices" Rattner said.

The 50Gbps Silicon Photonics Link prototype is the result of a multi-year silicon photonics research agenda, which included numerous "world firsts." It is composed of a silicon transmitter and a receiver chip, each integrating all the necessary building blocks from previous Intel breakthroughs including the first Hybrid Silicon Laser co-developed with the University of California at Santa Barbara in 2006 as well as high-speed optical modulators and photodetectors announced in 2007.

The transmitter chip is composed of four such lasers, whose light beams each travel into an optical modulator that encodes data onto them at 12.5Gbps. The four beams are then combined and output to a single optical fiber for a total data rate of 50Gbps. At the other end of the link, the receiver chip separates the four optical beams and directs them into photo detectors, which convert data back into electrical signals. Both chips are assembled using low-cost manufacturing techniques familiar to the semiconductor industry. Intel researchers are already working to increase the data rate by scaling the modulator speed as well as increase the number of lasers per chip, providing a path to future terabit/s optical links – rates fast enough to transfer a copy of the entire contents of a typical laptop in one second.

This research is separate from Intel's Light Peak technology, though both are components of Intel's overall I/O strategy. Light Peak is an effort to bring a multi-protocol 10Gbps optical connection to Intel client platforms for nearer-term applications. Silicon Photonics research aims to use silicon integration to bring dramatic cost reductions, reach tera-scale data rates, and bring optical communications to an even broader set of high-volume applications. Today's achievement brings Intel a significant step closer to that goal.

Intel, the world's largest chip maker, is also a leading manufacturer of computer, networking and communications products. Additional information about Intel is available at www.intel.com/pressroom.


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