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D-Link Wireless N DWA – network adapter overview and full product specs on : D-Link. Upgrade your desktop or notebook PC with the D-Link n Wireless N USB Adapter (DWA) and get faster speeds than an g network. When connected to a n network, you can experience secure web surfing, faster file transfers, and greater wireless coverage in larger homes/5(20). the D-link Wireless N Usb Adapter (dwa) Provides A Better Wireless Signal For Your Computer Than Existing Wireless g Technology. Adding Wireless N To Your Computer Provides An Excellent Solution For Doing Everyday Activities Such As Transferring Files, Browsing The Internet, And Downloading Music.4/4(8).
D-link dwa-130.: D-Link DWA Wireless-N USB Adapter: Computers & Accessories
D-Link Wireless N DWA – network adapter overview and full product specs on : D-Link. D-Link DWA Wireless Adapter Driver (Rev.F1) for Windows 7 x64/Windows 8 x64 Windows 2K D-Link DWA Wireless Adapter Driver Section 3 – Configuration Configuration This section will show you how to configure your new D-Link wireless adapter using the D-Link Utility as well as the Windows XP Zero Configuration Utility. ® D-Link Wireless Connection Manager The D-Link DWA uses the Wireless Connection Manager as the management software.
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Semiconductor nanotransistors have surpassed their traditional counterparts
Perhaps the development of nanotechnology is one of the most promising areas of development for modern electronics. The benefits of moving from traditional semiconductor devices to their functional counterparts, made using nanotechnology, promise huge gains in terms of miniaturization, reduced power consumption, increased productivity.
Until recently, these advantages were more theoretical, but progress does not stand still – scientists from Harvard University published a scientific paper that examined transistors that were manufactured in university laboratories using semiconductor nanocomponents. In short, the new devices were 3-4 times better than the most advanced of today’s traditional technology products. In addition, new transistors can be formed on surfaces that are inaccessible to currently used technologies, for example, on plastic.
In other words, hopes for improving transistors – the main building block of modern electronics – through the miniaturization provided by nanotechnology have been practically confirmed.
For the manufacture of a nanotransistor at Harvard used conductors with a thickness of 15 nm, connected with elements of germanium and silicon. Such a design, according to scientists, allows for more complete control of the manufacturing process of the device and its electrical parameters, which means that the process is better suited for mass production. These are not the first transistors of this type, but they have surpassed not only the best metal-oxide-semiconductor (MOS) field-effect transistors, but all similar field-effect nanotransitors. Better than them in terms of speed – transistors made of carbon nanotubes. Unfortunately, carbon nanotube transistors are still too far from mass production, since there is no way to manufacture devices with predetermined properties – the degree of repeatability of characteristics is low.