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Intel Looking Into Atomic Energy

May 25, 2016 by  
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Shortly after cancelling two generations of Atom mobile chips, Intel putting its weight behind future low-power mobile technologies with a new research collaboration with a French atomic energy lab.

Fundamental research leading towards faster wireless networks, secure low-power technologies for the Internet of Things, and even 3D displays will be the focus of Intel’s collaboration with the French Alternative Energies and Atomic Energy Commission (CEA).

Intel and the CEA already work together in the field of high-performance computing, and a new agreement signed Thursday will see Intel fund work at the CEA’s Laboratory for Electronics and Information Technology (LETI) over the next five years, according to Rajeeb Hazra, vice president of Intel’s data center group.

The CEA was founded in 1945 to develop civil and military uses of nuclear power. Its work with Intel began soon after it ceased its atmospheric and underground nuclear weapons test programs, as it turned to computer modeling to continue its weapons research, CEA managing director Daniel Verwaerde said Thursday.

That effort continues, but the organization’s research interests today are more wide-ranging, encompassing materials science, climate, health, renewable energy, security and electronics.

These last two areas will be at the heart of the new research collaboration, which will see scientists at LETI exchanging information with those at Intel.

Both parties dodged questions about who will have the commercial rights to the fruits of their research, but each said it had protected its rights. The deal took a year to negotiate.

“It’s a balanced agreement,” said Stéphane Siebert, director of CEA Technology, the division of which LETI is a part.

Who owns what from the five-year research collaboration may become a thorny issue, for French taxpayers and Intel shareholders alike, as it will be many years before it becomes clear which technologies or patents are important.

Hazra emphasized the extent to which Intel is dependent on researchers outside the U.S. The company has over 50 laboratories in Europe, four of them specifically pursuing so-called exa-scale computing, systems capable of billions of billions of calculations per second.

Source-http://www.thegurureview.net/mobile-category/intel-look-to-atomic-energy-for-mobile-technologys-future.html

Did Researchers Create Lifetime Batteries?

May 4, 2016 by  
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Researchers at the University of California at Irvine (UCI) have accidentally – yes, accidentally – discovered a nanowire-based technology that could lead to batteries that can be charged hundreds of thousands of times.

Mya Le Thai, a PhD candidate at the university, explained in a paper published this week that she and her colleagues used nanowires, a material that is several thousand times thinner than a human hair, extremely conductive and has a surface area large enough to support the storage and transfer of electrons.

Nanowires are extremely fragile and don’t usually hold up well to repeated discharging and recharging, or cycling. They expand and grow brittle in a typical lithium-ion battery, but Le Thai’s team fixed this by coating a gold nanowire in a manganese dioxide shell and then placing it in a Plexiglas-like gel to improve its reliability. All by accident.

The breakthrough could lead to laptop, smartphone and tablet batteries that last forever.

Reginald Penner, chairman of UCI’s chemistry department, said: “Mya was playing around and she coated this whole thing with a very thin gel layer and started to cycle it.

“She discovered that just by using this gel she could cycle it hundreds of thousands of times without losing any capacity. That was crazy, because these things typically die in dramatic fashion after 5,000 or 6,000 or 7,000 cycles at most.”

The battery-like structure was tested more than 200,000 times over a three-month span, and the researchers reported no loss of capacity or power.

“The coated electrode holds its shape much better, making it a more reliable option,” Thai said. “This research proves that a nanowire-based battery electrode can have a long lifetime and that we can make these kinds of batteries a reality.”

The breakthrough also paves the way for commercial batteries that could last a lifetime in appliances, cars and spacecraft.

British fuel-cell maker Intelligent Energy Holdings announced earlier this year that it is working on a smartphone battery that will need to be charged only once a week.

Did Researchers Create Batteries That A Lifetime? : :: TheGuruReview.net ::

Courtesy-TheInq

FCC Wants Carriers To Alert When IP Switching

July 22, 2015 by  
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The U.S. Federal Communications Commission is backing a requirement that the country’s telecom carriers warn residential and business customers about plans to retire copper telephone networks for IP-based systems.

A proposal from FCC Chairman Tom Wheeler would also require telecom carriers retiring their copper networks to offer customers the option of purchasing battery backup systems so that they don’t lose voice service during an electrical power outage, officials said Friday. IP-based voice service depends on working Internet service, which, in turn, requires electricity.

The old copper-based phone service works without electrical service available at the customer’s address, and a loss of voice service during power outages is one of the major concerns of consumer groups as major telecom carriers move to retire their decades-old copper networks.

Wheeler’s proposal, likely to be voted on by the commission during its Aug. 6 meeting, would require telecom providers that are retiring copper to make battery backup systems with eight hours of standby power available to affected customers, either through the carriers themselves or for third-party retailers. Voice customers would have to pay for the battery backups, which now cost $40 and up, but they could choose whether or not they want the backup.

Most consumers and consumer groups in contact with the FCC wanted the option to purchase battery backup from sources other than carriers, an FCC official said. Requiring battery backup systems during VoIP installs could have discouraged customers from signing up for the service, he added.

Within three years, carriers would have to offer a battery backup option with 24 hours of standby power, under the rules proposed by Wheeler.

Telecom carriers retiring their copper would also have to alert customers that their old telephone service was going away. Telecom carriers currently aren’t required to notify customers, but under the proposed rules, residential customers would get a three-month warning, and business customers would get a six-month warning, agency officials said during a press briefing.

Telecom carriers would also have to notify interconnecting carriers of their copper retirement plans, and competitors using the existing copper to provide business voice and Internet services would be eligible to receive similar pricing deals from the large incumbent carriers, the FCC said.

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Can MB Challenge Tesla?

June 22, 2015 by  
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On the heels of Tesla announcing a home and commercial battery product line, Mercedes-Benz unveiled its own brand of energy storage products for those with solar systems to store surplus power.

The Mercedes-Benz energy storage plants for private use are available for order now and are expected to ship in September.

The batteries were first developed for cars, but Mercedes-Benz said the energy storage units “meet the very highest safety and quality standards” for home use.

Up to eight battery modules with an energy capacity of 2.5 kWh can be combined into an energy storage plant with a capacity of 20 kWh.

“Households with their own photovoltaic systems can thus buffer surplus solar power virtually free of any losses,” the carmaker said in a statement.

What wasn’t announced by Mercedes-Benz was information about the size of or pricing for the new batteries.

In May, Tesla announced its Powerwall batteries for home use and its Powerpack batteries for commercial use. Today, Tesla CEO Elon Musk announced his company would double the power output of the Powerwall batteries but keep their prices the same.

Tesla’s Powerwall batteries will go from having a two-kilowatt (kW) steady power output and 3.3kW peak output to a 5kW steady output and 7kW peak output, Musk said. The price of the batteries will remain the same: $3,000 for the 7kW/hour (KWh) daily cycle version and $3,500 for the 10kWh backup UPS version. Total installation cost will run around $4,000, according to Musk.

Up to nine Powerwall battery units can be daisy-chained together on a wall to provide up to 90kWh of power.

The average U.S. household uses about 20 kWh to 25 kWh of power every day, according to GTM Research.

Tesla Energy’s new commercial-grade battery is called the Powerpack, and will sell in 100kWh modules for $25,000 each. Musk said the Powerpack can scale infinitely, even powering factories and small cities.

Mercedes-Benz’s batteries, being produced by subsidiary Deutsche Accumotive, are its first industrial-scale lithium-ion units, and they’ve already been tested “on the grid,” the company said.

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Will Apple Go All-In On Car Batteries?

March 6, 2015 by  
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A year and a half ago, Apple Inc applied for eight patents related to car batteries. Recently, it has added a slew of engineers, just one of whom had already filed for 17 in his former career, according to a Thomson Reuters.

The recent spate of hires and patent filings shows that Apple is fast building its industrial lithium-ion battery capabilities, adding to evidence the iPhone maker may be developing a car.

Quiet, clean electric cars are viewed in Silicon Valley and elsewhere as a promising technology for the future, but high costs and “range anxiety”, the concern that batteries will run out of power and cannot be recharged quickly, remain obstacles. Those challenges could also be seen as opportunities to find solutions to take the technology mainstream.

The number of auto-related patents filed by Apple, Google Inc, Korea’s Samsung, electric carmaker Tesla Motors Inc and ride-sharing startup Uber tripled from 2011 to 2014, according to an analysis by Thomson Reuters IP & Science of public patent filings.

Apple has filed far fewer of these patents than rivals, perhaps adding impetus to its recent hiring binge as it seeks to get up to speed in battery technologies and other car-building related expertise.

As of 18 months ago, Apple had filed for 290 such patents. By contrast, Samsung, which has been providing electric vehicle batteries for some years, had close to 900 filings involving auto battery technology alone.

The U.S. government makes patent applications public only after 18 months, so the figures do not reflect any patents filed in 2014.

Earlier this month, battery maker A123 Systems sued Apple for poaching five top engineers. A search of LinkedIn profiles indicates Apple has hired at least another seven A123 employees and at least 18 employees from Tesla since 2012.

The former A123 employees have expertise primarily in battery cell design, materials development and manufacturing engineering, according to the LinkedIn profiles and an analysis of patent applications.

A123, which filed for bankruptcy in 2012 but has since reorganized, supplied batteries for Fisker Automotive’s now-discontinued hybrid electric car.

“Looking at the people Apple is hiring from A123 and their backgrounds, it is hard not to assume they’re working on an electric car,” said Tom Gage, Chief Executive of EV Grid and a longtime expert in batteries and battery technology.

Apple is building its own battery division, according to the A123 lawsuit. Apple did not immediately respond to a request for comment.

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Dell Unveils Laptop/Tablet Hybrid

April 21, 2014 by  
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Dell unveiled a new 11.6-in. screen rugged laptop that has literally has a twist — the screen can rotate 180 degrees to turn the device into a tablet.

At first, the Latitude 12 looks like a laptop. But within the display panel, the screen rotates 180 degrees and the laptop turns into a tablet once placed on the keyboard.

The new Latitude 12 laptop is part of a new Rugged Extreme line of laptops, which also includes the Rugged Extreme 14. The new laptops are robust and can withstand six-foot drops and remain protected from extreme weather conditions.

The laptops have hard covers that add a layer of protection, but also make the products heavy. The Latitude 12 Rugged Extreme weighs 2.72 kilograms with a four-cell battery, while the 14-in. counterpart weighs 3.54 kilograms with a six-cell battery and no optical drive.

The laptops can also withstand solar radiation, “explosive atmosphere” and weather ranging from -20 degrees to 145 degrees Fahrenheit (-29 degrees to 63 degrees Celsius), according to specifications provided by Dell. The products are targeted at field workers like emergency responders and the military, and will compete against Toughbook rugged laptops from Panasonic.

The Latitude 12 rugged laptop has a starting price of $3,649, while the Latitude 14 begins at $3,499. The laptops will ship next month.

The hybrid design in Latitude 12 has been borrowed from the company’s XPS 12 Ultrabook Touch, which has a 12.5-inch screen that can similarly flip to turn the laptop into a tablet. The resistive touch screens on both laptops can show images at a resolution of 1366 x 768 pixels.

The laptops will have storage options of up to 512GB solid-state drives. Users can configure the laptop with Intel’s latest fourth-generation Core processorscode-named Haswell. The laptops will come with either Windows 8.1 or 7, or Ubuntu Linux operating systems.

Other features include support for up to 16GB of DRAM, Wi-Fi and Gigabit Ethernet through a connector. The laptop also has USB 3.0, USB 2.0, VGA and HDMI ports. Mobile broadband and docking are available as options.

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Sony Decides Not To Sell

January 8, 2014 by  
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Japan’s Sony Corp has changed its mind and decided not to sell its lithium-ion battery unit.  Instead Sony has decided to take a chance at turning the business around with a weak yen and growing demand for smart phone batteries.

In addition to a weak yen, which can boost overseas earnings, the battery unit is also seeing increased demand for some of its new products, the Nikkei business daily reported.

For the past two years Sony had been planning to offload the unit, which was a pioneer in making lithium-ion batteries for computers and mobile devices but has struggled recently against cheaper South Korean rivals.

A government turnaround fund tried to broker a sale of the battery business to a Nissan Motor Co Ltd and NEC Corp joint venture earlier this year.

However, talks have stalled and Sony has now told the turnaround fund that it will hold on to the battery unit and develop it as a core business, the Nikkei reported, citing unidentified sources.

Sony, which last year sold its chemical business to the government turnaround fund, is trying to revive the fortunes of its consumer electronics business by focusing on cameras,gaming and mobile devices.

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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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LG Goes Self-Healing

November 6, 2013 by  
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LG is upping the ante in smartphone technology with a new handset that has a curved touchscreen, along with a special “self healing” technology that the company claims can prevent scratches on the phone’s casing.

The South Korean electronics vendor unveiled the new phone on Monday, calling it the LG G Flex. Digital renderings of the handset were leaked earlier this month. But in its Monday announcement the company offered further details on the phone, showing that it contains a few new technologies, along with its curved display.

The G Flex is the second phone to feature a curved display, the first coming from Samsung Electronics with its Galaxy Round handset. The top and bottom of the G Flex’s 6-inch screen are curved towards the user, while on the Samsung phone it is the sides that are curved towards the viewer.

This makes LG’s handset closer to the curve of a traditional fixed-line phone handset, a design choice LG said is optimized for the contours of a face. Users can more comfortably hold the phone to their mouth and ear, improving its voice and sound quality, according to LG.

The company also touted the design by stating that the phone offers an easier grip, and holds better in a person’s back pocket. In addition, LG said the curved screen gives an “IMAX-like” experience when viewing videos, allowing for a greater field of view.

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Samsung’s Eight-core Chip Goes Hacking

August 13, 2013 by  
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A Samsung eight-core chip used in some Galaxy S4 mobile devices is now available for hackers to play with on a developer board from South Korea-based Hardkernel.

Hardkernel’s Odroid XU board has incorporated Samsung’s eight-core Exynos 5 Octa 5410 chip, which is based on ARM’s latest processor designs. Samsung recently announced a new eight-core chip, the Exynos 5 Octa 5420, which packs faster graphics and application processing than the 5410. The 5420 has not yet been shipped yet, however.

The Odroid board is priced at $149 through Aug. 31, after which it will be offered for $169. Samsung for many months has said that a board with an eight-core chip would be released, and has shown prototype developer boards at conferences.

Odroid-XU will provide developers an opportunity to write programs tuned for Samsung’s octa-core chip, which has been a source of controversy. Analysts have said the eight-core design is overkill for small devices like smartphones and tablets, which need long battery life.

The eight-core chip design also takes up a lot of space, which prevented Samsung from putting LTE radios inside some Galaxy S4 models. Qualcomm, which hesitantly moved from the dual core to the quad-core design on its Snapdragon chips, on Friday criticized eight-core chips, calling the idea “dumb.”

Despite the criticism, the board will give developers a first true glimpse of, and an opportunity to write and test applications for, ARM’s Big.Little design. The design combines high-power cores for demanding applications with low-power cores for mundane tasks like texting and calling.

Samsung’s iteration of Big.Little in the Exynos 5 Octa 5410 chip combines four processors based on ARM’s latest Cortex-A15 processor design, which incorporates four low-power Cortex-A7 CPUs. The Cortex-A15 is ARM’s latest processor design and succeeds the previous Cortex-A9 core, which was used in popular smartphones like Apple’s iPhone and the Galaxy S3. Samsung said the eight-core chip provides a balance of power and performance, with the high-power cores kicking in only when necessary.

The board has an Imagination Technologies PowerVR SGX544MP3 graphics processor, 2GB of low-power DDR3 DRAM, two USB 3.0 ports and four USB 2.0 ports. Other features include Wi-Fi, Ethernet and optional Bluetooth. Google’s Android 4.2 operating system is preloaded, and support for other Linux distributions like Ubuntu is expected soon. The board has already been benchmarked on Ubuntu 13.04.

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