Tuesday, March 23, 2010

Asus brings USB 3.0 onto bamboo notebook

This article via: Asus brings USB 3.0 onto bamboo notebook

Asus brings USB 3.0 onto bamboo notebook

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USB 3.0 is certainly not a bad technology, only the support and implementation is currently still lacking. Then the next standard will be officially endorsed by any mainboard chipset, the manufacturers have to turn to the finished product special chips, which now make in notebooks USB 3.0 executable.

One of the most distinctive features in the new U series from Asus is the very fact that it relies on USB 3.0, which also had to be resolved through additional chips, as Intel does not support this innately. In addition to the U-series models will also have the N and NX series of USB 3.0 support.

Picture Gallery CES 2010: Asus U Series with bamboo "(10 pictures)

With the U-Series Asus strengthened its "green" group. The talk is of bamboo notebooks, which was further improved and now also come along as a thin and light notebook PCs. In the U-series on the new Intel Core i5 trusted based on the "Arrandale" and its features such as Turbo for processor and graphics, hyper-threading, and many other things.

Stanford successfully developed silicon nanowire battery technology

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Whether Intel, AMD to make every effort to reduce the power consumption of the hardware platform, and now laptops are unable to obtain all-weather 8-hour battery life, the key crux of the problem lies in lithium battery technology limitations, it is difficult to provide a high enough capacity. Two years ago, fuel cells, once is quite strong, but now attributed to silent, of course, fuel cells can provide longer battery life, but it's inconvenient to use, and the high cost of sales in consumables way, it is difficult to obtain broad market recognition, development of high-capacity lithium battery technology has become the industry consensus.

Stanford University announced today that one of their team in the field of lithium batteries was a revolutionary breakthrough, the research team has successfully developed a silicon nanowire technology, you can increase the capacity of lithium batteries 10 times, if you use this new type of battery , notebook computer battery life performance increase from the current two hours to 20 hours or more! Developers believe that this technology is not similar to the type lithium polymer technology improvements, but rather bring about revolutionary progress!

We know that the capacity of lithium-ion battery(Dell Battery , dell C1295 , dell D5318 ,dell GD761 , dell GK479 , dell KD186 , dell KD476 ) anode from the lithium ion can attach the number of decisions, attached greater the number of lithium-ion battery capacity of the greater! In the charging process, with the positively charged anode of lithium-ion will be absorbed by silicon material, making expansion of silicon material; in the work of discharge, lithium-ion will be released from the silicon to make silicon material shrinkage occurs - this expansion and contraction will lead to repeated silicon to become powder, resulting in diminishing the capacity of the battery. Stanford research results to solve this problem, they used nano-technology is made of silicon nanowires as the anode, and in the absorption of lithium ions can be expanded four times, while in the discharge process would not lead to powdering, or broken, which means not only to ensure that the battery capacity increase 10 times, and can significantly extend battery life.

The research team did not say when it will push the commercialization of this technology, according to Stanford's entrepreneurial culture, the research team can use the research results of the establishment of enterprises, by way of technology licensing operation, if the silicon nanowire lithium batteries can be really involved in commercialization, it will completely solve the shortage of digital devices, battery life, short life problem - then your laptop could easily rely on batteries to work 20 hours or more, so that the battery mode, the hardware performance do not have to drop too low; UMPC, smart phone, etc. handheld devices can also be obtained rapidly.

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