Related Tags

Jun 23, 2012

Acer says Microsoft's move against Apple will fail

The manufacturer and Microsoft partner changes its tone on the Surface tablet.

Uh oh, looks like Mircrosoft's partners really are not big fans of the Surface.
Oliver Ahrens, Acer's senior VP and president for Europe, Middle East and Africa, told Reuters that Microsoft's strategy to take on Apple with the Surface tablet will fail.
Microsoft left its partners in the dark about its tablet, releasing it this week at a secretive, Apple-style press event. While it generated some buzz, there are still questions around price, battery life, and connectivity that may take away from its initial energy. And Ahren's comments probably don't help.
"I don't think it will be successful because you cannot be a hardware player with two products," he said to Reuters. "Microsoft is working with two dozen PC vendors worldwide, including the local guys, whereas Apple is alone, it can more or less do what it wants. Microsoft is a component of a PC system. A very important component but still a component."

Google slashes price 88% for using Google Maps API

Shortly after Apple dumped Google Maps for iOS, Google announces it's time to dramatically cut the price for others using the online service. Google also gives a plug for its map-based ad service.
 
Google has announced an 88 percent price cut for those using Google Maps on high-traffic Web sites and services.
The move, which Google Maps API product manager Thor Mitchell announced yesterday, comes a few days before the developer-oriented Google I/O show and two weeks after Apple ditched Google Maps for the upcoming iOS 6.

May 29, 2012

Samsung's blue Galaxy S III faces delay due to paint issues

Despite launching in several markets today, the "pebble blue" version of the Galaxy S III already faces a delay of two to three weeks.

Samsung Galaxy S III
Samsung's pebble blue version of the Galaxy S III.
(Credit: Luke Westaway/CNET UK)
Samsung apparently has difficulties with the color blue.
The "pebble blue" variant of its highly anticipated Galaxy S III smartphone faces delays due to issues with getting the color and its newly invented "hyper-glaze" process, according to several reports. Despite launching today in various markets in Europe and the Middle East, the blue version faces delays of two to three weeks.

New 27-inch Dell all-in-one matches iMac pixel for pixel

Dell's new XPS One 27 is the first Windows-based all-in-one to hit 2,560x1,440 pixels.

(Credit: Dell)
HP and Asus released the first 27-inch Windows-based all-in-ones this year, but with 1,920x,1,080 resolution screens, they failed to match Apple's high density, 2,560x1,440 iMacs. Dell's new XPS One 27 does.
Dell says the starting price for the new XPS One 27 is $1,399. That puts it ahead of the $1,249 HP Omni 27, but on par with the Asus ET2700I. All are also at least $300 below the most affordable 27-inch iMac.
At least for now those other 27-inch all-in-one also all use second-generation Intel Core CPUs (aka Sandy Bridge). The XPS One 27 has third-generation Core i5 and Core i7 CPUs (aka Ivy Bridge). All PC vendors will move to third-gen Core chips eventually, but for now, Dell seems to have a processing performance advantage.
(Credit: Dell)
Like the other 27-inchers, the XPS One 27 is not a touch screen, likely due to the high manufacturing costs. Dell has, however, transitioned to a pedestal design for the XPS One and a pair of new Inspiron Ones (23 and 20-inch models, the former with a third-gen Core option, the latter with only second-gen Core or budget Pentium CPUs). Dell's older all-in-one had a foot-and-kickstand chassis, but it moved to the pedestal design as "a result of direct customer feedback."
The high resolution display puts Dell ahead of its consumer-oriented Windows-based competitors, but video professionals might still prefer the large iMacs due to the XPS One 27's underwhelming graphics card options. The Intel HD 4000 graphics core embedded in the Dell's new Core i7 and Core i5 chips is a viable 3D processor, but neither that chip, nor the Dell's GeForce 640M upgrade option is a match for the iMac's high-end AMD Radeon HD 6970M.
Dell says its new all-in-ones will be available in Asia today, and throughout the rest of the world "in the coming weeks." I expect we'll see PC line updates from multiple vendors over the next month in the gear up to the back-to-school shopping season. It will be interesting to see how long Dell can hold onto its apparent competitive edge.
Source: news.cnet.com

Samsung revs up iTunes rival with new Galaxy S III


The Korean handset maker is unveiling its Music Hub service with today's launch of the new Galaxy S III smartphones across Europe and the Middle East.

 
(Credit: Screenshot by Lance Whitney/CNET)
Samsung has found yet another way to compete with Apple.
The Galaxy S smartphone maker is officially kicking off its new iTunes rival Music Hub servicestarting today. Available as an app with the new Galaxy S III phone launching in 28 different countries, Music Hub borrows more than a page or two from iTunes but also adds a paid subscription model.
The service will offer Samsung phone and tablet owners access to 19 million songs, with prices comparable to those found on iTunes, according to Reuters. Users can stream music and download it from the Hub to play it locally without having to stay connected to the cloud. They can preview a track for up to 30 seconds before deciding whether or not to purchase it.
But two subscription plans will offer customers access to unlimited streaming and downloading of more than 3 million tunes. For the $9.99-per-month unlimited mobile plan, Samsung users can access the Music Hub from a single device -- phone or tablet. For the $12.99-per-month unlimited premium plan, users can tap into the hub on up to four devices as well as a PC or Mac.
The premium edition also follows in the footsteps of iTunes Match by scanning songs on your mobile devices to match and store them in the cloud.
Music Hub will initially be available only on the new Samsung Galaxy S III but will eventually branch out to other devices, including Samsung Blu-ray players and Smart TVs.
The company is even hoping to design an iOS app to let Apple users access the service from their iPhones, according to the Register. But as CNET U.K. reporter Luke Westaway points out, we'll have to see if Samsung can sneak that one past Apple's approval process.

Six things to know about smartphone batteries

If you're trying to figure out what your iPhone 5 (or 6) -- or your next Android device or Windows Phone -- is going to look like, there are some things you need to know.

smartphone heat
Temperatures can run high inside a smartphone...
(Credit: Leyden Energy)
Editors' note: This is a guest post. See Noam Kedem's bio at the bottom.
The smartphone market revolves around one question: how do you fit all-day access to all of a consumer's favorite applications and services comfortably into one hand? (The tablet market? Two hands.) The rest is commentary.
No smartphone manufacturer has managed to answer the question fully, because they all face a fundamental dilemma. The electronics that enable faster performance, higher-speed data, better video and gaming, a more vivid and detailed screen, are moving at the speed of Moore's Law. The lithium ion (Li-ion) pouch cell batteries that power them can't keep up. Little wonder that battery life is the biggest complaint of smartphone users!
The feature vs. run-time battle this imposes on smartphone designers is why the new iPad came in thicker and heavier than its predecessor. The battery needed to power the Retina Display, 4G LTE, and general and graphic processing improvements is 70 percent bigger and heavier. Even so, the new iPad's battery life (run-time) is slightly less than that of the iPad 2. The implications of that for the iPhone 5 are being hotly discussed.
Li-ion battery constraints go a long way toward explaining why smartphone vendors spend millions on incremental design advantages in a market that's moving with blinding speed. If you're trying to figure out what your iPhone 5 -- or your next Android device or Windows Phone -- is going to look like, here are six things you need to know about smartphone batteries.
1. Battery in a bag
A Li-ion pouch cell is a sealed bag containing carefully layered anode and cathode sheets, separators between them, and -- permeating all of these layers -- a liquid electrolyte. Although tablet batteries comprise several cells (three in the new iPad), smartphones are generally powered by single cells. Either way, at one end of the battery, a printed circuit board (PCB) is connected to the positive and negative terminals of each cell and provides active protection against short circuits, overcharge, and forced discharge. Li-ion pouch cells tend to be fragile and rely on the smartphone case for protection, and so officially are not user-replaceable.
2. Squeezing in run-time
The energy density of a Li-ion pouch cell determines how much run-time you can pack into a given size (volumetric) or weight (gravimetric). Li-ion technology hit the market in 1991. Since then, processor transistor count has increased more than a thousand-fold, Li-ion energy density only threefold. Denser electronics are what make dazzling features possible, but they draw ever more power. Unfortunately, battery manufacturers are having a harder and harder time increasing energy density. This is why non-replaceable Li-ion pouch batteries are popular with smartphone and tablet designers. Without the protective case needed to make a battery safe for consumers to handle -- which does nothing for energy capacity -- they are thinner and pack more run-time into a smaller space.
3. The XYZ of cells
Energy density is affected by the thickness and the ratio between width (X) and length (Y) of a Li-ion pouch cell. Volumetric energy density falls off as the pouch gets thinner because the packaging takes up a higher percentage of battery volume. The optimal X-Y ratio arises because when the PCB is installed on the short edge of a narrow battery, there's more room for the active materials (anode and cathode) that actually store energy. All other things being equal, a narrow, thicker battery will deliver better volumetric energy density than a more square one. (An interesting Apple patent reveals ways to mold batteries in more complex shapes to fit into places like the bezel that are presently impossible to use.)
battery charging
...resulting in charging pauses and lockups.
(Credit: Leyden Energy)
4. The necessity of keeping cool
Li-ion pouch cells don't like it hot -- a common condition for smartphones, as anyone who's ever had to wait out the "cool down" message knows. The standard Li-ion chemistry depends on an electrolyte that reacts with residual moisture to create hydrofluoric acid, the most corrosive of all chemical compounds. Like all chemical reactions, this process doubles in speed with every increase in temperature of 10 degrees Celsius. The result is reduced calendar and cycle life: not only does run-time degrade with simple age, but each charge and discharge further reduces it, until the battery just doesn't last long enough between charges. Worse, Li-ion cells generate heat themselves during charge and discharge: the more power your smartphone calls for or the faster you charge it, the hotter the battery gets.
5. Building a smartphone
Three-layer or "carve-out"? The Motorola Droid Razr line (both Razr and Razr Maxx) is an example of the three-layer approach to smartphone design: screen, circuitry, and battery. The iPhone 4 comprises two layers -- screen and electronics -- with a space carved out of the PCB for the battery. In either case, a bigger screen means room for a bigger battery. Regardless of the other advantages of each approach, the narrower, thicker battery possible with the carve-out approach will offer higher energy density. In a three-layer approach, it's also more difficult to shield the battery from components that generate heat and thus shorten battery life.
6. Chemistry: Wild card of the pack
Improvements in Li-ion chemistry may offer dramatic improvements in energy density, giving smartphone designers more choices in the feature vs. run-time battle. There's a lot of promising research into new active materials and some new solutions already on the market. One of these uses a new Li-imide electrolyte that doesn't generate hydrofluoric acid and thus delivers a dramatic improvement in thermal stability and battery life. It also permits effectively thinner batteries by eliminating most of the swelling in thickness characteristic of current Li-ion pouch cells over their useful life, which forces designers to sacrifice cavity space to accommodate the swelling.
The bottom line
Don't expect dramatic departures in design from Apple or any other smartphone vendor until Li-ion pouch cells take the next step. This could come as soon as 12 to 18 months from now. New active materials (for example, silicon anode and high voltage/high capacity cathodes) combined with the new electrolyte mentioned above could deliver a 20 percent boost in run-time per charge in the same size battery. For the eventual iPhone 6, such a battery would give Apple more flexibility to consider faster processors, hungrier displays, and more applications without sacrificing run time, and make it easier to maintain the iPhone's famously sleek appearance.
In the meantime, keep your eye on Li-ion battery news with the six things above in mind, and you'll have a better idea of what to expect from the next generation of iPhone or Android smartphones.
Source: news.cnet.com