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Will Marriott Block Wi-Fi

January 5, 2015 by  
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The U.S. Federal Communications Commission will render a decision on whether to establish rules regarding hotels’ ability to block personal Wi-Fi hotspots inside their buildings, a practice that recently earned Marriott International a $600,000 fine.

In August, Marriott, business partner Ryman Hospitality Properties and trade group the American Hotel and Lodging Association asked the FCC to clarify when hotels can block outside Wi-Fi hotspots in order to protect their internal Wi-Fi services.

In that petition, the hotel group asked the agency to “declare that the operator of a Wi-Fi network does not violate [U.S. law] by using FCC-authorized equipment to monitor and mitigate threats to the security and reliability of its network,” even when taking action causes interference to mobile devices.

The comment period for the petition ended Friday, so now it’s up to the FCC to either agree to Marriott’s petition or disregard it.

However, the FCC did act in October, slapping Marriott with the fine after customers complained about the practice. In their complaint, customers alleged that employees of Marriott’s Gaylord Opryland Hotel and Convention Center in Nashville used signal-blocking features of a Wi-Fi monitoring system to prevent customers from connecting to the Internet through their personal Wi-Fi hotspots. The hotel charged customers and exhibitors $250 to $1,000 per device to access Marriott’s Wi-Fi network.

During the comment period, several groups called for the agency to deny the hotel group’s petition.

The FCC made clear in October that blocking outside Wi-Fi hotspots is illegal, Google’s lawyers wrote in a comment. “While Google recognizes the importance of leaving operators flexibility to manage their own networks, this does not include intentionally blocking access to other commission-authorized networks, particularly where the purpose or effect of that interference is to drive traffic to the interfering operator’s own network,” they wrote.

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Google Moves To Drop CAPTCHA

December 16, 2014 by  
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Google announced that it is trying to get rid of those annoying CAPTCHAs required by websites, which is short for Completely Automated Public Turing test to tell Computers and Humans Apart.

Instead of requiring that users fill in the letters and numbers shown in a distorted image, sites that use Google’s reCAPTCHA service will be able to use just one click, answering a simple question: Are you a robot?

“reCAPTCHA protects the websites you love from spam and abuse,” wrote Vinay Shet, product manager for Google’s reCAPTCHA service, in a blog post. “For years, we’ve prompted users to confirm they aren’t robots by asking them to read distorted text and type it into a box… But, we figured it would be easier to just directly ask our users whether or not they are robots. So, we did! ”

Google on Wednesday began rolling out a new API that rethinks the reCAPTCHA experience.

CAPTCHA “can be hard to read and frustrating for people, particularly on mobile devices,” said Zeus Kerravala, an analyst with ZK Research. “People often have to put in the text several times. On the surface, this seems a good way to improve the user experience. It still requires human intervention, just something simpler.”

CAPTCHAs were created to foil computer programs that hackers or spammers use to troll for access to websites or to collect email addresses.

Google said CAPTCHAs are less useful than they have been, although they are still frustrating to everyday users.

“CAPTCHAs have long relied on the inability of robots to solve distorted text,’ wrote Shet. “However, our research recently showed that today’s artificial intelligence technology can solve even the most difficult variant of distorted text at 99.8% accuracy. Thus distorted text, on its own, is no longer a dependable test.”

The new API, along with Google’s ability to analyze a user’s actions — before, during, and after clicking on the reCAPTCHA box — let’s the new technology figure out if the user is human or not.

“The new API is the next step in this steady evolution,” Shet stated. “Now humans can just check the box and in most cases, they’re through the challenge.”

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TSMC’s FinFet Coming In 2015?

October 27, 2014 by  
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TSMC has announced that it will begin volume production of 16nm FinFET products in the second half of 2015, in late Q2 or early Q3.

For consumers, this means products based on TSMC 16nm FinFET silicon should appear in late 2015 and early 2016. The first TSMC 16nm FinFET product was announced a few weeks ago.

TSMC executive CC Wei said sales of 16nm FinFET products should account for 7-9% of the foundry’s total revenue in Q4 2015. The company already has more than 60 clients lined up for the new process and it expects 16nm FinFET to be its fastest growing process ever.

Although TSMC is not talking about the actual clients, we already know the roster looks like the who’s who of tech, with Qualcomm, AMD, Nvidia and Apple on board.

This also means the 20nm node will have a limited shelf life. The first 20nm products are rolling out as we speak, but the transition is slow and if TSMC sticks to its schedule, 20nm will be its top node for roughly a year, giving it much less time on top than earlier 28nm and 40nm nodes.

The road to 10nm

TSMC’s 16nm FinFET, or 16FinFET, is just part of the story. The company hopes to tape out the first 10nm products in 2015, but there is no clear timeframe yet.

Volume production of 10nm products is slated for 2016, most likely late 2016. As transitions speed up, TSMC capex will go up. The company expects to invest more than $10bn in 2015, up from $9.6bn this year.

TSMC expects global smartphone shipments to reach 1.5bn units next year, up 19 percent year-on-year. Needless to say, TSMC silicon will power the majority of them.

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Applied Materials Makes A Profit

August 27, 2014 by  
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Chip-equipment maker Applied Materials has surprised most of the cocaine nose jobs of Wall Street with a better-than-expected third-quarter profit. It appears that contract manufacturers are spending more on technology used to make smartphone and memory chips.

The company also forecast current-quarter adjusted profit largely above analysts’ average estimate. Chief Executive Gary Dickerson said that demand for DRAM chips is expected to grow in the current quarter.

Applied Materials, which also provides equipment to make flat panel displays and solar cells, forecast an adjusted profit of 25-29 cents per share for the fourth quarter. Wall Street was expecting a profit of 26 cents per share.

Applied Materials expects revenue growth of about 10 to 17 percent, implying revenue of $2.19 billion to $2.33 billion for the quarter. Analysts on average were expecting $2.28 billion. Applied Materials’ net income rose to $301 millionin the third quarter ended July 27, from $168 milliona year earlier. Revenue rose 14.7 percent to $2.27 billion.

Revenue in the company’s silicon systems business, which brings in about two-thirds of total sales, rose 16 percent to $1.48 billion.

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HP Increases SlateBook Pricing

August 13, 2014 by  
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Hewlett-Packard’s SlateBook 14 laptop with Google’s Android OS has started shipping on schedule, but it’s priced at $429, which is $30 more than the company had said it would cost.

The laptop, which has a 14-inch screen and Android 4.3, was announced in June. At the time, HP said it would be priced at $399.

It is available on HP’s website.

The SlateBook 14 was introduced after customers told HP they wanted laptops with Android. The laptop has an interface similar to that on Android tablets and can adjust mobile apps to run on the larger touchscreen. Users will also be able to sync laptop data with mobile devices and vice versa.

The laptop is also for those who rely on the Web for most of their computing, much like Chromebooks. It has a few advantages over Chromebooks, with support for key Android apps such as Skype. Android also boasts better wireless printing support than Chromebooks.

The laptop weighs 1.68 kilograms and offers nine hours of battery life, according to specifications on HP’s website.

It has a quad-core Tegra 4 processor, 2GB of DRAM and 16GB of storage. Connectivity features include 802.11b/g/n Wi-Fi and Bluetooth 4.0. It also has a webcam, USB 3.0 port and a micro-SD slot for expandable storage.

It could be a strong multimedia laptop with a 1920 x 1080 pixel screen and an integrated graphics processor that can handle 4K video. TVs can be connected to the laptop through an HDMI port.

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eBay Expands Mobile Shopping

July 21, 2014 by  
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Braintree, the payments gateway owned by eBay Inc, is working on removing a hurdle for e-commerce companies by making it easier for customers to directly pay for products on their smart phones.

The company rolled out a set of tools for software developers on Wednesday that allows businesses to deduct payments directly from a customer’s PayPal account.

The developer kit is the first big push from Braintree since it was bought by eBay for $800 million last year to help PayPal, eBay’s payments division, expand its presence on mobile devices.

Eliminating the need for mobile shoppers to type in their credit card details on their phones should help boost sales, Braintree Chief Executive Bill Ready said in an interview.

This is especially critical as consumers spend more time on their smartphones, a trend that is forcing developers to design a “fundamentally different computing experience” for the smaller screen, Ready added.

Braintree processes payments for businesses including car service Uber and online home-rental marketplace Airbnb.

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Did Intel Miss The Tablet Boat?

June 13, 2014 by  
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Intel CEO Brian Krzanich has admitted the obvious – Intel missed the boat on tablets.

Speaking at the Code Conference, Krzanich said the company was slow to react to the emergence of tablets and smartphones.

“There was a belief that tablets would be a consumption device only (and) that people would come back to the laptop and the PC. There were heavy debates within Intel and it took a while for us to accept and acknowledge that data. Companies make mistakes,” Krzanich told Walt Mossberg in an interview.

In other words at least part of Intel’s failure to tap the emerging mobile market a few years ago was internal wrangling.

The course shifted under the Krzanich regime. Last Intel President Renee James and Krzanich made it clear that the company is now treating its Atom line-up just like its big cores. For years the company treated Atoms as a sideshow, making sure that they would not eat into Core sales.

ARM had different ideas and so did AMD, they went after the tablet and essential notebook markets. As a result ARM currently dominates the mobile space, while AMD managed to carve a nice niche in the entry-level x86 segment, with Brazos and Kabini parts.

Intel is fighting back, but it is paying a heavy price. The company is on track to quadruple its tablet SoC shipments to 40 million units this year, but it has to pay through the nose to get there. As for the smartphone market, Intel is all but absent.

Krzanich insists he is not giving up on the phone and tablet space. He wants Intel to take a 15 to 20 percent market share in these segments, which sounds very ambitious. Thanks to generous subsidies it has a good chance in the tablet space. This week Intel announced a deal with Rockchip, which should also boost its presence in the booming tablet market in China.

However, so far the company has not rolled out a compelling smartphone SoC and it’s lagging behind the competition in LTE integration.

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Can Plastic Replace Silicon?

May 7, 2014 by  
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Can plastic materials morph into computers? A research breakthrough recently published brings such a possibility closer to reality.

Researchers are looking at the possibility of making low-power, flexible and inexpensive computers out of plastic materials. Plastic is not normally a good conductive material. However, researchers said this week that they have solved a problem related to reading data.

The research, which involved converting electricity from magnetic film to optics so data could be read through plastic material, was conducted by researchers at the University of Iowa and New York University. A paper on the research was published in this week’s Nature Communications journal.

More research is needed before plastic computers become practical, acknowledged Michael Flatte, professor of physics and astronomy at the University of Iowa. Problems related to writing and processing data need to be solved before plastic computers can be commercially viable.

Plastic computers, however, could conceivably be used in smartphones, sensors, wearable products, small electronics or solar cells, Flatte said.

The computers would have basic processing, data gathering and transmission capabilities but won’t replace silicon used in the fastest computers today. However, the plastic material could be cheaper to produce as it wouldn’t require silicon fab plants, and possibly could supplement faster silicon components in mobile devices or sensors.

“The initial types of inexpensive computers envisioned are things like RFID, but with much more computing power and information storage, or distributed sensors,” Flatte said. One such implementation might be a large agricultural field with independent temperature sensors made from these devices, distributed at hundreds of places around the field, he said.

The research breakthrough this week is an important step in giving plastic computers the sensor-like ability to store data, locally process the information and report data back to a central computer.

Mobile phones, which demand more computing power than sensors, will require more advances because communication requires microwave emissions usually produced by higher-speed transistors than have been made with plastic.

It’s difficult for plastic to compete in the electronics area because silicon is such an effective technology, Flatte acknowledged. But there are applications where the flexibility of plastic could be advantageous, he said, raising the possibility of plastic computers being information processors in refrigerators or other common home electronics.

“This won’t be faster or smaller, but it will be cheaper and lower power, we hope,” Flatte said.

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Virtru Goes Office 365

April 8, 2014 by  
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Virtru has added Microsoft’s Office 365 and Outlook Desktop services to its growing list of compatible email platforms available on its encryption product.

The company, headquartered in Washington, D.C. and launched in January, is targeting people using major email providers who want stronger privacy controls for more secure communication.

The service is designed to be easy to use for end users who may not have the technical gumption to set up PGP (Pretty Good Privacy), a standard for signing and encrypting content.

Virtru is compatible with most major webmail providers, including Google’s Gmail, Yahoo’s Mail and Microsoft’s Outlook webmail, which replaced Hotmail.

Emails sent using Virtru through those services would look like gibberish, providing a greater degree of privacy. Law enforcement or other entities would not be able to read the content unless they could obtain the key.

Virtru uses a browser extension to encrypt email on a person’s computer or mobile device. The content is decrypted after recipients receive a key, which is distributed by Virtru’s centralized key management server.

Although Virtru handles key management, the company is working on a product that would allow that task to be managed on-site for users, as some administrators would be uncomfortable with another entity managing their keys.

Virtru has said it put aside funds to contest government orders such as a National Security Letter or law enforcement request that are not based on a standard of probable cause.

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Do Chip Makers Have Cold Feet?

March 27, 2014 by  
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It is starting to look like chip makers are having cold feet about moving to the next technology for chipmaking. Fabricating chips on larger silicon wafers is the latest cycle in a transition, but according to the Wall Street Journal chipmakers are mothballing their plans.

Companies have to make massive upfront outlays for plants and equipment and they are refusing, because the latest change could boost the cost of a single high-volume factory to as much as $10 billion from around $4 billion. Some companies have been reining in their investments, raising fears the equipment needed to produce the new chips might be delayed for a year or more.

ASML, a maker of key machines used to define features on chips, recently said it had “paused” development of gear designed to work with the larger wafers. Intel said it has slowed some payments to the Netherlands-based company under a deal to help develop the technology.

Gary Dickerson, chief executive of Applied Materials said that the move to larger wafers “has definitely been pushed out from a timing standpoint”

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