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Neither Sony nor Microsoft has announced clear plans for their next generation of gaming devices, but that’s not stopping analysts from talking about the specifications of the hardware and their ability to attract buyers when they are finally out. His statements were part of a larger keynote at the Digital Game Monetization Summit in San Francisco. Previous rumors have suggested that the new consoles from both Sony and Microsoft will launch with fully developed and integrated digital distribution models, which would allow players to get all the content they are interested in without ever going into retail store. It’s unclear whether Pachter is simply speculating or if he has actual access to sources inside the two companies. Other rumors about the PlayStation 4 and the Xbox 720 suggest that they will include upgraded motion tracking systems, better support for 3D and more processing power.
A source inside Microsoft also claims that its next-generation device will be launched in time for Thanksgiving 2013. Until then, gamers who are eager for new gaming technology can buy and use the new Wii U home console from Nintendo, which is built around a new GamePad controller, with a touch screen and motion tracking capabilities.
The device will be available on all major markets after the December 8 Japanese launch date. Western Digital had announced that it would be increasing the total storage capacity of its WD Gold lineup. The WD Gold 10TB datacenter hard drives are incorporated with HelioSeal helium-technology designed to withstand the hefty requirements for datacenters.
According to Western Digital, WD Gold datacenter hard drives are designed for a broad range of applications, which include from small-to-medium-scale enterprise servers and storage, along with rack-mount datacenter servers and storage enclosures. Improved power efficiency – HelioSeal Technology delivers lower power with an increase in capacity. We begin by looking at the physical structure of a generic hard disk drive, and then describe the operation of the drive. When formatted, the platter is subdivided into concentric areas of storage known as tracks. Areal density describes the amount of data that can be stored in a given area on the surface of the disk.
While a disk seek is happening, the physical mechanism of the drive is not actually doing any useful work—no data can be read from or written to the disk during a seek.
Server-class drives usually have very short seek times, while desktop and portable drives may exhibit comparatively long (i.e. The overall average access time for a drive is the sum of its average rotational latency and its average seek time.


The sequential transfer rate (STR) of a drive is primarily a function of areal density, rotational speed, and number of heads. To make more efficient use of space, modern disks are formatted with a variable number of sectors per track. Figure 7 shows the variation of sequential read transfer rate across the surface of a Hitachi 7K250 drive. As an analogy, imagine a bank branch, where customers line up to carry out a transaction with a teller. In desktop environments, there is usually only one user, who is usually doing only one thing at a time. Since the 1990s, hard disk drives have been equipped with on-board memory to improve the performance of the drive.
Buffer memory is used to store data temporarily as it is transferred from source to destination, decoupling the source and destination. Attachment, also known as IDE: Intelligent Drive Electronics), and SCSI (Small Computer Systems Interface). Like a database or network system, the drive interface typically has a logical and a physical level. The physical level of the interface describes the low-level mechanism of signal generation, transmission, and reception. Disk drive physical interfaces are usually electrical, and so can be categorised as parallel or serial. The logical level of the interface describes the protocol which is used to communicate with the drive. Other promising non-volatile storage technologies include racetrack memory and magneto-resistive memory (MRAM).
Make the move and migrate your PC to the new drive without reinstalling your operating system, apps, or files.
Like any device, SSDs have their speed limitations, but unlike HDDs, the SSD’s limits are not a byproduct of a physical mechanism.
These drives are targeted to datacenters around the world, and with the increase in capacity, the company will provide more storage expansion flexibility to its clients worldwide.
Additionally, WD Gold 10TB datacenter hard drives feature an optimized design over the existing WD Gold 8TB drives that helps reduce the TCO (Total Cost of Ownership) of servers and storage systems through an 8 percent operating power reduction while delivering 25 percent more capacity. Like us, tweet to us or +1 us, to keep up with our round the clock updates, reviews, guides and more.


However each generation of NAND improvement has contributed to the steady increase of SSD capacities. Some pundits claim the days of the hard disk drive (HDD) are numbered, while others insist it has plenty of life left.
Many of today’s SSDs are already capable of faster data transfer rates than mainstream HDDs, with speeds getting faster all the time. With datacenters looking to increase the storage count while reducing space and energy consumption, this latest storage upgrade was a gift from heaven.
Permissions beyond the scope of this license may be available on the Terms and Conditions page. The HDD—which dates as far back as the mid-1950s—uses magnetically coated platters that spin at high speeds, with read and write heads located so close to the platters that you can’t see the space between with the naked eye. In many ways, SSDs simply make more sense than HDDs—especially in laptops.The trouble is, the mainstream market for SSDs is still in its formative years, with a ways to go before it can overtake the HDD market in terms of cost and storage capacity.
A more practical approach for most folks might be to upgrade a smaller-capacity HDD in an older laptop. Because of their construction, HDDs are prone to overheating and breakage, sensitive to vibration, and saddled by performance limits due to sheer physics.Enter the solid state drive (SSD), looming as the technology that deep-sixes the HDD. For instance, you can find 500GB HDDs for laptops (2.5-inch, 5,400rpm spin rate, Serial ATA interface) selling for less than $80, but you’ll spend more than $300 for a mere 120GB SSD. An SSD has no moving parts, instead using flash memory to store data, much like the USB flash drives so many of us use daily. Manufacturing advances are helping lower SSD costs and increase their capacities, but it will be years before SSDs are truly cost-competitive with HDDs.Depending on the situation, though, an SSD can be worth the storage-capacity sacrifice and the premium price. Because the SSD is not mechanical, it's far less susceptible to the weaknesses that HDDs are. For starters, SSDs can give a noticeable performance boost, and for the road warrior or anyone who uses a laptop in an environment where laptops are frequently jostled, an SSD is a wise investment. SSDs also tend to consume less power, which means modest improvements to battery life for mobile devices. And swapping out a laptop’s HDD for an SSD results in a quieter-running laptop.In this Weekend Project, we show you how to upgrade a laptop’s HDD to an SSD—and how to do so without reinstalling the operating system (OS), the programs, or your files.



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