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Intel To Add Broadwell To NUC Series

December 26, 2014 by  
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Intel is planning to update its rather successful NUC (Next Unit of Computing) series and as you can expect, they will come with Broadwell CPUs inside.

Intel isn’t hiding the external design of the new cases and there is a dominant yellow connector at the front of the new NUC, and this one should be providing charging power even when the device is turned off.

The board comes with either M2 storage or single SATA and there will be two different designs one exclusively for M2 drive and the second taller that will be able to take 2.5 inch SSD or HDD as well.

We will probably learn more details at CES 2015 that is about to start in less than three weeks from now, but the Broadwell in this small form factor will get a speed boost and some future prove technologies such as M2 SSD support.

We are running Core i5 4200 powered NUC with Windows 10 and it really works great powered by 240GB Kingston mS200 mSata SSD and Impact SO DIMM memory. These machines takes less than half an hour to assemble and boot into windows, including Windows 10 and make a perfect choice for the lovers of quiet computing.

The new version will obviously run at least slightly faster than the one we are testing and the marketing is excluding about “the one with the yellow USB connector”.

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Intel’s Cherry Trail Coming In 2015

December 8, 2014 by  
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Bay Trail was quite a big deal when it started shipping in late 2013.

It was a tablet chip that enabled great design wins such as the affordable Asus T100TA and even in late 2014 Asus used the platform to create the EeeBook X205, a $199 netbook.

Both of these designs are based on Intel’s Bay-Trail M processor, a year old 22nm quad-core processor based on the Silvermont design. Some machines that are coming with LTE, both netbooks and tablets and there will be new chip coming in 2015. It is called LTE Advanced XMM7360 chip and supports LTE Cat 10,3 CA up to 450 Mbits download and upload.

Intel will also offer Morrefield quad cores for machines with lower TDP ratings, especially tablets, and at some point in 2015 it will introduce its 14nm Airmont core based Cherry Trail processor. Cherry Trail based on 14nm Airmont core was originally expected in late 2014, but it got pushed towards middle of 2015.

Intel is clearly encountering more obstacles moving from the 22nm to the 14nm manufacturing process, but considering that most ARM competitors still have to start commercially shipping its 20nm SoCs in significant volumes, Intel still has a manufacturing node advantage. If only Intel had as many design wins to go along with its cutting edge fabs, as the company has been struggling to ship 40milion tablets in 2014, as promised.

Braxton will replace Cherry Trail in 2016. Braxton is a tock architecture, another 14nm design based on the quad-core Goldmont core. When it comes to the Performance Media Internet Device (MID) market Intel has another chip planned in 2016. It calls it SoFIA MID and the chip comes in intels 14nm manufacturing process.

Value and Entry markets for Media Internet Device (MID) and phones includes four new SoFIA parts, but with all these new and exciting chips Intel has to compete against some advanced chips coming on line in 2015, including the Qualcomm Snapdragon 810 20nm, Nvidia Erista and more affordable Mediatek solutions such as the MT6795 A53-based octa-core and its successor.

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Will Intel’s Core M Go Commercial?

September 12, 2014 by  
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Intel is getting down from four processor lines to three and it looks like Broadwell won’t come with an M-processor line and 57W, 47W, 37W parts. This is not something we expect to happen at this point. The H-processor line will take over the 47W TDP high performance market for mobile computers and some AIOs.

The H-processor 47W line, U-Processor Line with 15W and 28W TDP parts will end up with 5th Gen Intel Core branding. We expect a range of Core i3, Core i5 and Core i7 parts that will be revealed probably at some point after Intel Developer Forum, or after mid-September 2014.

The Y-processor line will end up with the new Intel Core M processor brand and it will aim for high performance detachable and convertible systems that will show up in the latter part of Q4 2014.

Broadwell with 4.5W TDP and Core M branding will end up only in these fancy detachable notebooks and might be one of the most powerful and fastest tablet/detachable platforms around. It will also ‘speak’ Windows 8.1 at launch and we should see some Google Chrome OS products in early 2015.

Intel also plans to keep the Pentium and Celeron brands around and they will be used for Bay Trail-M processors. These parts have been shipping for more than three quarters in entry level detachables such as the Asus T100TA.

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Microsoft’s Killswitch Incoming

July 1, 2014 by  
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Responding to mounting  pressure, Google and Microsoft will follow Apple in adding an anti-theft “kill switch” to their smartphone operating systems.

The commitment comes at a time when new data shows a dramatic drop in theft of Apple iPhones and iPads after the September 2013 introduction of iOS 7, which included a kill-switch function that allows stolen devices to be remotely locked and deleted so they become useless.

In New York, iPhone theft was down 19 percent in the first five months of this year, which is almost double the 10 percent drop in overall robberies seen in the city. Over the same period, thefts of Samsung devices — which did not include a kill switch until one was introduced on Verizon-only models in April — rose by over 40 percent.

In San Francisco, robberies of iPhones were 38 percent lower in the six months after the iOS 7 introduction versus the six months before, while in London thefts over the same period were down by 24 percent. In both cities, robberies of Samsung devices increased.

“These statistics validate what we always knew to be true, that a technological solution has the potential to end the victimization of wireless consumers everywhere,” San Francisco District Attorney George Gascon told IDG News Service.

Gascon and New York State Attorney General Eric Schneiderman have been leading a push to get smartphone vendors and telecom carriers to include kill switches in their products as a way to curb phone theft.

The joint work had early success with Apple but other carriers and phone makers dragged their feet. However, resistance to the idea appears to be dropping as several bills that mandate kill switches make their way through state legislatures and the U.S. Congress.

The bills demand a function that would enable a phone owner to remotely delete and disable a phone if stolen. The function could be disabled by consumers before a theft takes place if desired, but crucially new handsets would be supplied with it switched on by default.

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Are Transparent Semiconductors Next?

January 23, 2014 by  
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Scientist have emerged from their smoke filled labs with transparent thin-film organic semiconductors that could become the foundation for cheap, high-performance displays. Two university research teams have worked together to produce the world’s fastest thin-film organic transistors, proving that this experimental technology has the potential to achieve the performance needed for high-resolution television screens and similar electronic devices.

According to the latest issue of Nature Communications, engineers from the University of Nebraska-Lincoln (UNL) and Stanford University show how they created thin-film organic transistors that could operate more than five times faster than previous examples of this experimental technology.

Research teams led by Zhenan Bao, professor of chemical engineering at Stanford, and Jinsong Huang, assistant professor of mechanical and materials engineering at UNL used their new process to make organic thin-film transistors with electronic characteristics comparable to those found in expensive, curved-screen television displays based on a form of silicon technology.

At the moment the high tech method is to drop a special solution, containing carbon-rich molecules and a complementary plastic, onto a spinning platter made of glass. The spinning action deposits a thin coating of the materials over the platter. The boffins worked out that if they spun the platter faster and coated a tiny portion of the spinning surface, equivalent to the size of a postage stamp they could put a denser concentration of the organic molecules into a more regular alignment. The result was a great improvement in carrier mobility, which measures how quickly electrical charges travel through the transistor.

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Some ATMs Still On XP

January 9, 2014 by  
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Cyber-criminals have been cutting holes into European cash machines in order to infect them with malware.

The holes were cut so that the hackers could plug in USB drives that installed their code onto the ATMs. Details of the attacks on an unnamed European bank’s cash dispensers were presented at the hacker-themed Chaos Computing Congress in Hamburg, Germany.

The thefts came to light in July after the lender involved noticed several its ATMs were being emptied. The bank discovered the criminals were vandalising the machines to use the infected USB sticks. Once the malware had been transferred, they patched the holes up. This allowed the same machines to be targeted several times without the hack being discovered.

The attackers could take the highest value banknotes in order to minimise the amount of time they were exposed. Interestingly the software required the thief to enter a second code in response to numbers shown on the ATM’s screen before they could release the money and the thief could only obtain the right code by phoning another gang member and telling them the numbers displayed. This stopped the criminals going alone.

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Intel’s Bay Trail M Is On The Way

November 26, 2013 by  
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Intel launched its Bay Trail-M ultra low voltage processors for netbooks and mobile devices over the weekend. According to CPU World the new mobile CPUs, branded this time as Celeron and Pentium, can manage twice the CPU performance, and up to three times faster graphics.

They do all that while using the same amount of juice as their “Cedar Trail” predecessors. Most chips have higher clock speeds than N2805, N2810 and N2910 SKUs and come with Burst Performance technology. They can operate at a higher maximum operating temperature which makes them easier to cool. Finally, in addition to 4 N28xx/N29xx Celerons Intel also released Pentium N2920.

Then there are new dual-core Bay Trail-M microprocessors like the Celeron N2806, N2815 and N2820 which can operate at frequencies from 1.6 GHz to 2.13 GHz, when going downhill had the wind is behind them. They also have the maximum burst speed ranging from 2 GHz to 2.39 GHz. The processors come with 1 MB L2 cache, Ivy Bridge graphics clocked at 311 MHz and up to 756 MHz, and support for DDR3L-1066 memory. The N2806 has 4.5 Watt TDP while the N2815 and N2820 have 7.5 Watt TDP. All of the Celeron N28xx processors are priced at $132.

Two new quad-core microprocessors are Celeron N2920 and Pentium N3520. The CPUs have 2 MB L2 cache, and run at 1.86 GHz and 2.17 GHz respectively, with burst frequencies reaching 2 GHz and 2.42 GHz. Both parts integrate Ivy Bridge graphics, that can be clocked as high as 854 MHz. The Celeron can deal with DDR3L-1066 memory, and the Pentium supports 1333 MHz memory data rate. They fit into 7.5 Watt power envelope. The official prices of Celeron N2920 and Pentium N3520 are $132 and $180.

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Can Robots Run On (NH2)2CO?

November 19, 2013 by  
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Scientists have discovered a way to power future robots using an unusual source — urine.

Researchers at the University of the West of England, Bristol and the University of Bristol collaborated to build a system that will enable robots to function without batteries or being plugged into an electrical outlet.

Based on the functioning of the human heart, the system is designed to pump urine into the robot’s “engine room,” converting the waste into electricity and enabling the robot to function completely on its own.

Scientists are hoping the system, which can hold 24.5 ml of urine, could be used to power future generations of robots, or what they’re calling EcoBots.

“In the city environment, they could re-charge using urine from urinals in public lavatories,” said Peter Walters, a researcher with the University of the West of England. “In rural environments, liquid waste effluent could be collected from farms.”

In the past 10 years, researchers have built four generations of EcoBots, each able to use microorganisms to digest the waste material and generate electricity from it, the university said.

Along with using human and animal urine, the robotic system also can create power by using rotten fruit and vegetables, dead flies, waste water and sludge.

Ioannis Ieropoulos, a scientist with the Bristol Robotics Laboratory, explained that the microorganisms work inside microbial fuel cells where they metabolize the organics, converting them into carbon dioxide and electricity.

Like the human heart, the robotic system works by using artificial muscles that compress a soft area in the center of the device, forcing fluid to be expelled through an outlet and delivered to the fuel cells. The artificial muscles then relax and go through the process again for the next cycle.

“The artificial heartbeat is mechanically simpler than a conventional electric motor-driven pump by virtue of the fact that it employs artificial muscle fibers to create the pumping action, rather than an electric motor, which is by comparison a more complex mechanical assembly,” Walter said.

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ATM Malware Found In Mexico

November 8, 2013 by  
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A malicious software program identified in ATMs in Mexico has been improved and translated into English, which suggests it may be used elsewhere, according to security vendor Symantec.

Two versions of the malware, called Ploutus, have been discovered, both of which are engineered to empty a certain type of ATM, which Symantec has not identified.

In contrast to most malware, Ploutus is installed the old-fashioned way — by inserting a CD boot disk into the innards of an ATM machine running Microsoft Windows. The installation method suggests that cybercriminals are targeting standalone ATMs where access is easier.

The first version of Ploutus displays a graphical user interface after the thief enters a numerical sequence on an ATM’s keypad, although the malware can be controlled by a keyboard, wrote Daniel Regalado, a Symantec malware analyst, on Oct. 11.

Ploutus is programmed for a specific ATM model since it assumes there is a maximum of four cassettes per dispenser in the ATM. It then calculates the amount of money that should be dispensed based on the number of bills. If any of the cassettes have less than the maximum number of 40 bills, it releases whatever is left, repeating that process until the ATM is empty.

Kevin Haley, director of Symantec Security Response, said in an interview earlier this month that the attackers have deep knowledge of the software and hardware of the particular ATM model.

“They clearly know how this machine worked,” he said.

The source code of Ploutus “contains Spanish function names and poor English grammar that suggests the malware may have been coded by Spanish-speaking developers,” Regalado wrote.

In a new blog post, Regalado wrote that the attackers made Ploutus more robust and translated it into English, indicating the same ATM software can be exploited in countries other than Mexico.

The “B” variant of Ploutus has some differences. It only accepts commands through the keypad but will display a window showing the money available in the machine along with a transaction log as it dispenses cash. An attacker cannot enter a specific number of bills, so Ploutus withdraws money from the cassette with the most available bills, Regalado wrote.

Symantec advised those with ATMs to change the BIOS boot order to only boot from the hard disk and not CDs, DVDs or USB sticks. The BIOS should also be password protected so the boot options can’t be changed, Regalado wrote.

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SalesForce Goes Hacking

November 7, 2013 by  
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Salesforce.com really wants to attract lots of developers to its Dreamforce conference next month in San Francisco. As in, really.

Last Friday, the cloud software vendor announced a “hackathon” would be held at the conference, with US$1 million going to the developer or team who creates the top prize-winning mobile application with Salesforce.com technology.

“It’s not going to be easy — $1 million is going to bring out the best of the best,” Salesforce.com said in Friday’s announcement. “So don’t wait until Dreamforce! You’re going to want to get started now. With Force.com, Heroku, ExactTarget Fuel, Mobile Services and more — you’ve got a killer array of platform technology to use.”

Salesforce.com will also be providing some “pretty amazing new technology” for use at the show, the announcement adds.

In order to participate, developers have to either register for a full conference pass or a special $99 hacker pass.

The hackathon reflects Salesforce.com’s long courtship of developers to its development technologies, its AppExchange marketplace and recent efforts to build out more tooling for mobile application development.

Developers taking part in the hackathon will have plenty of competition, with some 20,000 programmers expected to attend Dreamforce overall. A “Hack Central” area will be open around the clock, supporting coders who want to work until the wee hours on their application.

In order to qualify, an application can’t have been previously released. The entries will be judged on four criteria counting 25 percent each: innovation, business value, user experience and use of Salesforce.com’s platform.

The second-place finisher will receive $50,000, with $25,000 going to the third-place winner. Fourth and fifth place will get $10,000 and $5,000, respectively.

Some 120,000 people are expected to register for Dreamforce this year. While some of that total will be watching online rather than in person, Dreamforce is now operating at a scale rivaling Oracle’s OpenWorld event, which happened last month.

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