2012-03-16

Cisco buys video streaming firm NDS for $5 billion

SAN FRANCISCO--Cisco Systems announced Thursday (March 15) that it would be buying set-top box software maker the NDS Group for $5 billion in cash.

NDS, founded in Israel in 1988 and now headquartered in London, focuses on seamless content streaming between different devices, as well as content protection security to combat piracy.

The firm already boasts media giants like British Sky Broadcasting and DirecTV as clients, as well as Sky Italia, and analysts believe the acquisition will boost Cisco’s Videoscape streaming platform and boost software revenue for the firm as its core networks business decreases.

This is not the first time NDS has been acquired, having been snapped up in 2009 by private equity firm Permira and Rupert Murdoch’s media giant News Corp. for $3.6 billion. Today, NDS counts 5,000 employees and has offices in five countries, including extensive operations in Israel.

With NDS software, users get what the firm describes as a “unified entertainment experience across several devices,” meaning that one can flit between watching the same program on one’s TV, tablet or smartphone, with the software adapting the programming to the various formats automatically. The software architecture itself goes by the name of Snowflake.

Cisco CEO John T. Chambers said the acquisition was prompted by his firm’s strategy to hone in on customer needs and capturing market transitions.

“Our acquisition of NDS fits squarely into this strategy, enabling content and service providers to deliver new video solutions that leverage the cloud and drive new monetization opportunities and service differentiation,” he said.

Indeed, adding a more lucrative software and services model to Cisco’s existing low-margin set-top box business would do much to increase profitability, analysts speculated.

The services themselves could also be white labeled and sold to global cable companies looking to offer value to consumers owning a range of digital devices.

Cisco’s $5 billion includes the assumption of about $1 billion of NDS debt and is the biggest purchase the networking firm has made since it acquired video conferencing company Tandberg for $3 billion in 2009.

The deal is likely to close by the end of 2012, after regulatory review, and NDS’s CEO Abe Peled will apparently transition to become a senior vice president and chief strategist for Cisco’s video and collaboration group.

Cisco buys video streaming firm NDS for $5 billion

TAG:cisco video streaming piracy content news corp

TI licenses Apical iridix image processing IP


LONDON – Apical Ltd., a developer of image processing intellectual property, has said it has licensed its iridix image processing IP cores to Texas Instruments Inc.

The iridix image processing IP cores will be integrated into TI products targeting digital imaging and display applications, Apical said.

The iridix IP is available as semiconductor IP cores silicon proven down to 28-nm, as OS-independent embedded sofware libraries and as OpenGL and OpenCL software libraries. Apical announced it had licensed the technology to Samsung Electronics Co. Ltd. in October 2009 and to Hynix Semiconductor Inc. in June 2010.

The iridix IP is a method of dynamic range control for cameras that particularly improves pictures and displays in low lighting conditions. The technology is derived from research into how the human eye adapts to changing lighting environments. Digital processing addresses each image pixel in real-time, extending beyond traditional backlight and contrast controls, to adjust the image accordingly. This process operates at a system-level while being optimized for low power consumption.

"Since we introduced the first version of iridix in 2002, it has become clear that this kind of technology is required in almost all digital imaging products, and we focus intensively both on remaining at the forefront of its evolution and on working closely with our partners to ensure that end products achieve the highest possible quality and performance standards," said Michael Tusch, CEO of Apical (London, England), in a statement.

Jeremiah Golston, TI Fellow and chief architect of the DaVinc video processor platform, said: "We are working with Apical and the iridix technology to build on that legacy and provide our customers' with market-leading innovations."


Related links and articles:

www.apical.co.uk

News articles:


Chip makers join embedded vision group

Hynix licenses Apical cores for next image sensors

Samsung licenses image processing core from Apical

Samsung licenses HD video processor IP from Silicon Hive

TI licenses Apical iridix image processing IP

TAG:Texas Instruments image processing intellectual property IP licensing semiconductor Apical

2012-03-15

Why ST should sell ST-Ericsson to China


LONDON – Europe's largest chip company STMicroelectronics NV should persuade Ericsson AB that they sell off their mobile chip joint venture ST-Ericsson, but probably to some aspiring Chinese company. That is likely to produce the quickest and most profitable – or least loss-making – exit for the two parent companies from what has become a failed project.

ST-Ericsson is currently massively loss-making and has built up debts of $800 million with its parent companies over a three year period while losing $2 billion. And things are slated to get worse before they get better.

According to a Reuters report Didier Lamouche, the CEO brought in to replace Gilles Delfassy late last year, is going to cut hard in a restructuring plan designed to take out cost – and that a trimmed down ST-Ericsson will start to look good for sale – eventually. However, the same report, quoting unnamed sources, said potential buyers in the western hemisphere, the likes of Intel and AMD, may want to wait one or two years to see the beneficial results of Lamouche's cuts.

I don't think ST-Ericsson or ST have that much time. In a note in the most recent financial results ST-Ericsson said "Our shareholders will continue to support funding our transitional financial needs." This of course begs the question of "transition to what?" and "how long will that transition take?"

The fact is that ST-Ericsson is a three-year old joint venture that has acted like a boat-anchor on the progress of STMicroelectronics.

It is true that ST-Ericsson wrapped up a lot of the previous problems of ST, specifically an overdependence on faltering Nokia as a customer, but pushing the problem into a joint-venture along with other European wireless chip business units belonging to NXP and Ericsson, has not helped ST.
Next: ST compared with Infineon
Why ST should sell ST-Ericsson to China

TAG:STMicroelectronics ST ST Ericsson HiSilicon Huawei mobile Apple semiconductor processor

NASA: Robot arm demos satellite repair


WASHINGTON – NASA said Wednesday (March 14) it has successfully demonstrated the ability to repair satellites in orbit using robotic tools.

An experiment about the International Space Station last week demonstrated the ability of Canada’s robotic arm to perform what the space agency called “precise satellite-serving tasks in space.” NASA also touted the demonstration as a milestone for using the space station as a technology test bed.

In a statement, NASA said the Canadian Space Agency’s 12-foot (3.7-meter) Dextre robotic arm was able to repair an external space station module. The experiment demonstrated the ability to use robotic tools to refuel and repair orbiting satellites.

Before launch, technicians pump fuel into satellites through a valve that is then sealed and covered. NASA said the space station experiment that ran from March 7-9 demonstrated that the remote-controlled robotic arm could remove a cover and seal on a space station module similar to those used on satellites.


Canada's Dextre robotic arm on the International Space Station

NASA: Robot arm demos satellite repair

TAG:International Space Station Satellite Repair Space Junko Dextre NASA Robotics

Texas Instruments opens lab for mixed-signal/analog

MANHASSET, NY -- Texas Instruments has opened its TI Silicon Valley Labs, a research center for innovation in analog and mixed-signal electronics.

The labs’ charter is to conduct advanced research and development in analog and mixed-signal circuits and technologies through recruitment of top talent and close collaboration with universities and customers.

“TI Silicon Valley Labs will tap into and invest in the Silicon Valley ecosystem of innovation, to tackle challenges like these with our customers and grow our business worldwide,” said Gregg Lowe, TI senior vice president of Analog, in a statement.

TI also announced it is working with Stanford University, the University of California Berkeley, and other area universities to provide opportunities for graduate-level research on-site at TI’s recently-acquired 70-acre facility in Santa Clara, Calif. The company is also doubling its internship opportunities for top engineering undergraduate students as well as training programs at TI in Silicon Valley for top new college graduates.

TI has prepped a video on the labs.
Texas Instruments opens lab for mixed-signal/analog

TAG:Texas Instruments Analog Labs

2012-03-13

Twin Creeks emerges from the shadows with new solar approach



WASHINGTON – Squeezing another penny out of the cost of conventional solar cell manufacturing is no longer a viable approach for cleantech companies that have seen the price of solar panels drop by more than 40 percent since 2011. Addressing that reality, a manufacturing equipment maker promises to shift the focus of solar and chip manufacturing with a wafer production machine that it claims can greatly reduce silicon and other substrate material costs.

Twin Creeks Technologies (San Jose, Calif.) also claims its ultra-thin manufacturing process is suited to advanced production of LEDs and CMOS image sensors.

Reducing the amount of silicon needed to make solar cells is critical, argues Siva Sivaram, a former Intel manager and CEO of Twin Creeks, since it represents most of the manufacturing cost. Moreover, current solar manufacturing processes use only the upper layers of a silicon wafer, and Sivaram estimates that 90 percent of substrate is not used in the manufacturing process.

Twin Creeks has leveraged a technique called proton-induced exfoliation (PIE) to build a machine that produces extremely thin, flexible wafers. The company is taking the wraps off of a third generation version of its Hyperion wafer production tool this week (March 13), a machine that is says it ready for production. The company’s goal is to use its manufacturing and wafer handling and processing tools to produce monocrystalline wafers less than 1/10th the thickness of conventional wafers currently used to make solar cells.

Such an advance could help reduce solar cell material costs to the point where devices based on ultra-thin wafers would offset much of the price decline seen in the solar panel market over the last 18 months. Twin Creeks claims it lower cell production costs by about 50 percent.


Twin Creeks' third-generation Hyperion wafer tool slices wafers super-thin

Twin Creeks emerges from the shadows with new solar approach

TAG:Twin Creeks Technologies Proton Induced Exfoliation Siva Sivaram Twin Creeks Solar PIE

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We were thrilled to have the chance to sit down with the snowboard star for an exclusive chat, when we asked cheap nike shoes her about everything from her warm up routine to her favorite place to shop. she love sport brands, the Vancouver she know all the goods spots, of course  Nike is one of her’s favorite too. these days she ride Nike Vapens with a Burton Deja Vu 152 and Lexa bindings.

Gymnast Shawn Johnson just a 20 years old girl, she has accomplished enough feats to merit having a book written about her cheap nike air max 2012 life. she’s earned top honors for her athletic achievements on the balance beam and on the dance floor, and last year the former Dancing with the stars champion added “Nike Athlete” to her stacked resume. we recently caught up with Shawn on the set of her NTC video shoot where she was demonstrating new drills nike air max 2009 for the app like the “Pike Squat Stretch.” find out what Shawn had to say about her love of country music, her training regimen, and what it’s really like being on a reality TV show, then check out her new video below.


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China unknowns may be next smartphone stars

BARCELONA – Ching-Jiang Hsieh has been forging tight links with China’s handset makers. The president of Mediatek believes they will be the source of the next big wave of smartphones.

“We will sell 50 million handset chip sets this year, up from 10 million last year,” said Hsieh in an interview with EE Times at the Mobile World Congress in late February. “This year feature phones will decline for the first time—they were almost flat last year—because smartphones are growing,” he said.

Market watchers agree. As many as 600 million smartphones will ship in 2014, and as many as half of them will be low cost models replacing feature phones, according to Linley Gwennap, principal of the Linley Group (Mountain View, Calif.). Chips that integrate apps processors and basebands will power 70 percent of those handsets, up from 40 percent in 2010, Gwennap predicts.

Likewise, Strategy Analytics said China overtook the US as the world’s biggest smartphone market in the third quarter of 2011. The shift was largely thanks to China’s cellular carriers who bought lots of models that cost less than US$160, making it the fastest growing segment.

Whether Mediatek can lead this new wave is an open question. The Taiwan company is battling with one of China’s fastest rising fabless companies, Spreadtrum Communications Inc., that also has its eyes on this market.

Like Mediatek, Spreadtrum recently released GHz-class ARM Cortex A9 applications processors to serve the market for smartphones that hit a $100-$160 price point. Smartphone chip giant Qualcomm also is focusing increasingly on integrated chips.

Hsieh said part of Mediatek’s edge is its relationships with and understanding of the China handset makers who he thinks will drive the shift. Four of China’s top handset makers--Huawei, Lenovo, TCL and ZTE—make up 40 percent of Mediatek’s handset business, and a diverse set of 100 other companies make up the rest, he said.

The big four are not only well known in China but have growing export businesses. Mediatek helps these OEMs quickly fill out the middle and low-end tiers of product lines.

Huawei’s HiSilicon group has been making its own applications processors for some time. The Shanghai based team announced a quad-core chip at Mobile World Congress with souped up graphics it claimed beat Nvidia’s Tegra 3.

A lot of attention gets paid to such image products by the gadget-crazed media. But that segment of the market will grow at a rate a little less than two percent over the next few years while the overall smartphone pie expands by as much as 45 percent, Hsieh said.
Next: China's second and third tiers
China unknowns may be next smartphone stars

TAG:Mobile World Congress Ching Jiang Hsieh Smartphones China Mediatek Handsets Spreadtrum Qualcomm Processors Mobile

2012-03-12

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Radio waves beamed with a twist allow massive multiplexing

A group of Italian and Swedish researchers appears to have solved the problem of radio congestion by cleverly twisting radio waves into the shape of fusilli pasta, allowing a potentially infinite number of channels to be broadcast and received. Furthermore, the researchers have demonstrated this in real-life conditions by beaming two twisted radio waves across the waters of Venice.

Their results have been reported today, Friday 2 March, in the Institute of Physics and German Physical Society's New Journal of Physics and are accompanied by a video abstract that gives an excellent insight into the authors' work.

As the world continues to adapt in the digital age, the introduction of new mobile smartphones, wireless internet and digital TVs means the number of radio frequency bands available to broadcast information gets smaller and smaller. "You just have to try sending a text message at midnight on New Year's Eve to realise how congested the bands are," said lead author Dr Fabrizio Tamburini. The researchers, from the University of Padova, Italy, and the Angstrom Laboratory, Sweden, devised a solution to this by manipulating waves so that they can hold more than one channel of information. A wave can twist about its axis a certain number of times in either a clockwise or anti-clockwise direction, meaning there are several configurations that it can adopt.

"In a three-dimensional perspective, this phase twist looks like a fusillli-pasta-shaped beam. Each of these twisted beams can be independently generated, propagated and detected even in the very same frequency band, behaving as independent communication channels," Tamburini continued.

To demonstrate this, the researchers transmitted two twisted radio waves, in the 2.4 GHz band, over a distance of 442 metres from a lighthouse on San Georgio Island to a satellite dish on a balcony of Palazzo Ducale on the mainland of Venice, where it was able to pick up the two separate channels.

"Within reasonable economic boundaries, one can think about using five orbital angular momentum states, from -5 (counter-clockwise) up to 5 (clockwise), including untwisted waves. In this instance, we can have 11 channels in one frequency band. "It is possible to use multiplexing, like in digital TV, on each of these to implement even more channels on the same states, which means one could obtain 55 channels in the same frequency band," said Tamburini.

In addition to increasing the quantity of information being passed around our planet, this new discovery could also help lend an insight into objects far out in our galaxy. Black holes, for example, are constantly rotating and as waves pass them, they are forced to twist in line with the black hole. According to Tamburini, analysing the incoming waves from the supermassive black hole at the centre of the Milky Way, Sagittarius A, could help astronomers obtain crucial information about the rotation of this "million-solar mass monster."

This article originally appeared on EE Times Europe.


Radio waves beamed with a twist allow massive multiplexing

TAG:Radio waves radio congestion twist twisted radio waves multiplexing interference

2012-03-10

Tablets to boost semiconductor use to fourth place

MANHASSET, NY -- In 2014 media tablets will become the world’s fourth-largest application for semiconductors rising in four short years from obscurity to a level rivaling chip markets for mobile handsets and PCs.

According to market research firm IHS sales of semiconductors for use in media tablets are expected to skyrocket to $18.2 billion in 2014, up from $2.6 billion in 2010, the year of Apple’s introduction of the iPad.

In 2014, sales of semiconductors for tablets are expected to be exceeded only by mobile handsets, mobile PCs and desktop PCs.

“The speed of the media tablet’s rise from near insignificance to top-tier prominence is unprecedented in the history of the global semiconductor industry,” said Dale Ford, head of electronics & semiconductor research for IHS, in a statement. “This meteoric ascension will have major repercussions for the global semiconductor industry, as it realigns to accommodate the fast growth and vast size of the media tablet market.”

“While there will be a handful of suppliers that will stand out as the leading suppliers of semiconductors for media tablets, there are many component markets that represent highly attractive opportunities for a diverse group of suppliers.”

Coming up from the No. 35 position in 2010, media tablets rose to become the eighth-largest semiconductor market in 2011. Their ranking will climb to fifth place in 2012, and then rise to fourth in 2014—a position it is set to maintain in 2015, according to IHS.

Mobile handsets will become the world’s largest semiconductor application in 2012, for the first time ever exceeding mobile PCs as the leading chip segment.
Tablets to boost semiconductor use to fourth place

TAG:Tablets Semiconductors

2012-03-09

February sales dipped at TSMC


LONDON – Leading foundry Taiwan Semiconductor Manufacturing Co. Ltd. (Hsinchu, Taiwan) has announced that net sales fell in February compared with the previous month but were ahead of sales in February 2011, taking year-to-date sales into annual growth.

February is a short month and monthly sales are often lower than those of the preceding month, but the movement of the Chinese lunar New Year and associated holidays from February in 2011 to January in 2012 was expected to provide a relative boost to February sales after inhibiting January sales.

On an unconsolidated basis, net sales were approximately NT$33.58 billion (about $1.12 billion), a decrease of 1.4 percent over January 2012 and an increase of 5.8 percent over February 2011. Revenues for January through February 2012 totaled NT$67.64 billion (about $2.30 billion), an increase of 2.2 percent compared to the same period in 2011.

On a consolidated basis, net sales for February 2012 were approximately NT$33.86 billion (about $1.15 billion), a decrease of 2.1 percent over January 2012 and an increase of 3.6 percent over February 2011. Consolidated revenues for January through February 2012 totaled NT$68.42 billion (about $2.32 billion), an increase of 0.5 percent compared to the same period in 2011.

Sales at rival foundry United Microelectronics Corp. (Hsinchu, Taiwan) also dipped. UMC announced February sales revenue of NT$7.52 billion (about $255 million), down 6.6 percent from January but also down 16.5 percent from February 2011. UMC's 2012 year-to-date is trailing the same period in 2011 by 16.0 percent.


Related links and articles:

MediaTek February sales rise 20 percent

TSMC triumvirate sets stage for Chang's succession

UMC 28-nm roll out beating expectations


February sales dipped at TSMC

TAG:TSMC foundry UMC sales February semiconductor

New iPad may shave Apple’s tablet margins

SAN JOSE, Calif. – Apple will cut into its profit margins--but only slightly--with its latest iPad and discounts on the iPad 2, according to estimates from UBM TechInsights.

The new iPad announced yesterday will have an estimated bill of materials cost of $310, up from $270.86 on the original iPad and $276.27 on the iPad 2 based on versions at launch using 16 Gbytes memory. By selling all three at the same $629 price, Apple is cutting its profit margins about five points from 56-57 percent on the first two generation products to 51 percent on the new iPad, UBM TechInsights projected.

Apple’s profit margin on the iPad 2 will dip to an estimated 53 percent when it is discounted to $529 at the release of the new model. The iPad 2 sustains less of a hit because prices of its components are projected to have come down since its launch last year resulting in a current bill of materials cost of $248.07 for the 2012 version of the iPad 2, it said.

Most of the new iPad’s higher costs are split fairly equally between four major components. The new higher resolution display is expected to cost about $12 more, the new A5X processor adds about $8 and the LTE modem and expanded battery add about $7 each to the new iPad’s cost, UBM TechInsights estimated.

The analyst firm cautioned that its estimates are projections that it will further refine once the tablet is available for a full teardown inspection. UBM TechInsights is part of UBM LLC, the company that publishes EE Times.

“The bottom line is the new iPad’s margin should take a little hit because of some expensive adders like LTE, the high-res display and camera, a bigger battery and faster processor,” said Jeff Brown, a senior UBM TechInsights analyst. Apple “will hope to offset that margin decrease with a slightly higher margin on the iPad 2,” he said.

Apple “also may make up some extra margin by negotiating some higher cuts of the service plans,” with carriers he added.

Separately IHS iSuppli estimated Apple will nearly double its spending on displays in 2012. The higher volumes may help the company negotiate lower component costs, further improving margins.

Profits also could be higher on models sporting more memory, said Brown.

Despite the shaved margins, Apple appears to be in the cat bird’s seat, selling a premium product. Prices for Android tablets dipped last year in the wake of the release of the low cost Amazon Kindle Fire, according to IHS iSuppli.
New iPad may shave Apple’s tablet margins

TAG:UBM TechInsights IPad Apple Tablets Kindle Amazon

Want to learn how to solder? Live near Boulder Colorado?

I just heard from the folks at SparkFun Electronics (www.sparkfun.com) that they will be hosting three consecutive days of classes to teach people how to solder and program their own customized version of the Simon Says memory game using a few of SparkFun's most popular kits. Classes are designed for all types of learners – from beginners to seasoned tinkerers. People who want to learn basic and intermediate soldering and programming skills in less than a week are encouraged to take all three classes.

"We are very excited to offer these classes to the community," said Lindsay Levkoff, director of education at SparkFun. "We've been teaching soldering classes for years, but having three days of consecutive classes to teach basic soldering, intermediate soldering and a way to turn your Simon game into a drawing tool on your computer is something beginners and experienced tinkerers will really enjoy."

The following are overviews of each class being offered:

  • PTH Soldering Class – March 20th – If you've never soldered before, this is the class for you! This will be a hands-on class where students learn techniques to help them solder through-hole components. Soldering can be daunting for the first solder joint, but as you go, it will become easier to learn and apply. Click Here for more details.
  • SMD Soldering Class – March 21st – The SMD Soldering Class is our very popular hands-on course that teaches students techniques to help them solder surface mount components. It is highly recommended that students have a strong background in soldering, as basic soldering skills will not be covered. For students that know their way around a soldering iron, teachers will share some advanced tips and tricks (flux, wicking, hot-air rework, etc.). Click Here for more details.
  • Simon Sketch Class – March 22nd – The Simon Sketch class is for people who want to learn how to turn their Simon game into a drawing tool on their computer. Add a breadboard, a few dials, an FTDI connecting your Simon to Processing on your computer and you're ready to go! With the knowledge of how to connect Simon (or Arduino) to a computer interface, the tinkering possibilities are endless. This class is intended for people with at least a little experience with Arduino programming, but little or no experience with processing. Students should bring in their own Simons and teachers will show them how to get started. Click Here for more details.

Each class, which will be held at SparkFun’s offices in Boulder, CO, will begin promptly at 6 p.m. and will last a few hours. Simon kits are included in the price of the class and SparkFun will provide all of the tools, irons and solder for the two soldering classes. For further information on the course prerequisites and what to bring to the Simon Sketch class, please visit the website listed above under "Simon Sketch Class."

"We've seen people as young as five and as old as 80 participate in our soldering classes, which demonstrates that DIY electronics projects are very fun, approachable and affordable for people of all ages," continued Levkoff. "We hope to build upon our past success and look to continue offering classes every month here at our offices in Boulder."

Click Here for a list of all upcoming classes available at SparkFun.

About SparkFun Electronics
Founded in 2003, SparkFun shares its passion by providing parts, knowledge, and innovation for those looking to explore the world of embedded electronics. It helps anyone discover their inner inventor and enables individuals to create their own electronics projects.

SparkFun currently offers more than 1,800 products, ranging from simple components, like capacitors and resistors, to GPS units and Bluetooth modules. The company employs 140 people and is based in Boulder, Colorado.


If you found this article to be of interest, visit EDA Designline where – in addition to blogs on all sorts of "stuff" – you will find the latest and greatest design, technology, product, and news articles with regard to all aspects of Electronic Design Automation (EDA).

Also, you can obtain a highlights update delivered directly to your inbox by signing up for the EDA Designline weekly newsletter – just Click Here to request this newsletter using the Manage Newsletters tab (if you aren't already a member you'll be asked to register, but it's free and painless so don't let that stop you [grin]).
Want to learn how to solder? Live near Boulder Colorado?

TAG:SparkFun Soldering Training

GM: We're not pulling plug on Chevy Volt


The temporary halt in the production of the Chevy Volt isn't a sign that the Volt is dead or that electric cars are disappearing, but rather that General Motors executives must now separate the Volt's hype from its real value in the marketplace.

The five-week shutdown, announced on March 2, occurred after the giant automaker saw that it wouldn't meet its earlier forecasts of 45,000 annual sales for the Volt, and that its inventory levels were rising too fast. "We made the move to keep the proper inventory levels and to match production to demand," GM spokesman Randy Fox told Design News. "But we have no intention -- none whatsoever -- to pull the plug."

Auto industry experts said they believe GM is committed to the Volt, but added that the company's executives succumbed to the huge hype surrounding the vehicle and began forecasting sales numbers that simply weren't realistic. "There was never the potential for the Volt to be this high-volume, this soon," David Cole, chairman emeritus of the Center for Automotive Research, told us. "The economics of this just didn't make sense."


General Motors says it isn’t pulling the plug on the Chevy Volt, despite a five-week halt in production.
(Source: GM)

GM: We're not pulling plug on Chevy Volt

TAG:Chevy Volt Electric Vehicles Volt GM EVs

2012-03-08

公司简介



公司简介

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What kind of cheap air jordans for sale to buy

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Surrey NanoSystems gets funding for commercialization of new materials

Keeping up with Moore’s Law has required continuous investment in materials, fabrication techniques, lithography and many other areas. While we see lots of newcomers in the EDA field, we see far fewer in the fabrication side due to the large investments required. This morning, I see that Surrey NanoSystems has raised third round funding of £4.5 million (~US$7.1m).

The funds will be used to commercialize innovations in materials that include an advanced dielectric thin film for insulation applications, and a process for growing carbon-based interconnections or 'vias'.
Surrey NanoSystems has developed a new class of high performance dielectric material for inter-layer or inter-metal insulation. With an effective dielectric constant of less than 2.4, it offers an advanced alternative to current 'low k' semiconductor insulation materials. It also has the advantages of having high Young’s modulus and hardness, being non porous, and offering excellent resistance to the liquid chemicals employed in semiconductor processing - making it a robust and reliable material for IC fabrication.




Surrey NanoSystems gets funding for commercialization of new materials

TAG:Fabrication carbon nanotubes dielectric vias insulation

2012-03-07

Dialog licenses Cortex-M0, moves ARM into PMICs


LONDON – Dialog Semiconductor plc has said it has licensed the Cortex-M0 microcontroller core from ARM Holdings plc for use in future mixed-signal power management ICs. Resulting chips are likely to be used in quad-core and more advanced handsets the company said.

This is the first time a standard 32-bit processor core has been integrated into a mixed-signal PMIC, according to Dialog (Kirchheim-unter-Teck, Germany).

The ARM Cortex-M0 processor is the smallest and lowest power ARM core available. It is described as suitable for ultra low power MCU and mixed-signal applications.

"Through partnering with Dialog we have opened a brand new application area for ARM processors in a smartphone or tablet design. Dialog is at the forefront of highly integrated power management systems. I am convinced that the availability of sophisticated ARM processor-based PMICs will make a real impact on the user experience delivered by next generation devices," said Tudor Brown, president of ARM, in a statement issued by Dialog.


Related links and articles:

Taiwan startup offers Class-D power amp

Dialog wins sockets in Samsung smartphones

TI introduces power management ICs for SSDs


Dialog licenses Cortex-M0, moves ARM into PMICs

TAG:Dialog ARM PMIC quad core Cortex M0 Cortex semiconductor

Don’t get stuck in the I/O bottleneck ahead

SAN JOSE, Calif. – For all the news today around Intel’s E5-2600 announcement, there’s still a handful of untold stories behind this latest server processor. The big one to me is what the chip and products around it say about the looming I/O bottleneck.

An Intel manager confirmed what analyst Linley Gwennap first told me: The Intel Romley server motherboards based on the new chip were delayed due to difficulties verifying the PCI Express Gen 3 interconnects they used.

At 8 GTransfers/second max, PCIe Gen 3 is a screaming link for a PC. Intel had never previously designed a board or chip with the technology. I suspect the CPU itself was delayed—though Intel officially says it was not—because it too was Intel’s first design to integrate the fast interconnect.

Interestingly, the PCI Special Interest Group (SIG) actually backed off the gas a bit with PCIe 3. Rather than double the 5 GT/s maximum data rate of Gen 2 it opted for an easier target of 8 not 10 GT/s so as not to stress the cost-constrained PC supply chain.

You can bet if Intel felt some growing pains with this design, a lot of less technically sophisticated companies in the x86 ecosystem will be burning the midnight oil over the next year or two.

It’s only going to get harder. With PCIe Gen 4, the SIG went for the gusto, doubling the data rate to 16 GT/s. However, some had pushed to choose 24 GT/s, a speed that got tested in the labs but rejected as too aggressive.

Backers of the faster data rate argued that Gen 4 might well be the last version of PCIe over copper. So why not squeeze every drop of data you can get from it, they asked.

The assumption is PCIe some five to eight years from now will either need a ground up redesign for optical channels or require some breakthrough in fast but low cost copper signaling. A few smart engineers may earn PhDs on this one.

The I/O crunch will put pressure on chip designers to pack more into the chip—or the package. Indeed by the time PCI Gen 4 makes its way into systems in about 2016, 3-D IC stacks with through silicon vias should start emerging in several sectors, starting with mobile applications processors.

A nice 3-D IC stack could help fend off a need to go to optical PC boards or find a copper breakthrough in 2020. But 3-D ICs require some heavy lifting of their own—there’s no free lunch.
Next: The network crunch
Don’t get stuck in the I/O bottleneck ahead

TAG:PCI Express 10GBase T I/O E5 2600 Bottlenecks Servers Networking Ethernet

2012-03-06

Elpida's bankruptcy to boost other DRAM suppliers

SAN FRANCISCO—Last week's bankruptcy filing by Japan's Elpida Memory Inc. should work in favor of other DRAM vendors, reducing supply and boosting average selling prices (ASPs) and revenue in the second half of 2012, according to market research firm IHS iSuppli.

If more than 25 percent of Elpida’s manufacturing capacity is taken offline, the global ASP for all DRAM shipments is projected to rise to $1.21 by the end of 2012, up 15.5 percent from $1.05 at the end of the first half of the year, according to the IHS iSuppli's memory and storage service. Without such a reduction in capacity, pricing would rise to $1.13 at the end of the year, up just 8.5 percent from the price at the end of the first half, according to the firm.

Elpida filed for bankruptcy last week, blaming in part falling DRAM ASPs and failure to win a second bailout from the Japanese government. There is no indication at this time how much of Elpida's capacity could ultimately be taken off long through a bankruptcy restructuring.

"A meaningful reduction in Elpida’s manufacturing will cause the DRAM market to go into a state of undersupply, causing prices to increase," said Mike Howard, senior principal analyst for DRAM and memory at IHS, in a statement. "Shipments likely will decrease because of the Elpida bankruptcy, even though the resulting increase in revenue—driven by higher prices—will cause the market to perform better than expected in 2012."

Howard said the ultimate fate of Elpida’s manufacturing assets will be the major factor impacting pricing and revenue growth in 2012. "But one thing is certain: Elpida’s bankruptcy means the remaining DRAM players can look forward to a much rosier 2012 than they did just one week ago," Howard said.

In January, Handel Jones, founder and CEO of International Business Strategies Inc. (IBS), predicted that one or two DRAM vendors would file for bankruptcy this year. Also in January, Brian Matas, vice president of market research at market research firm IC Insights Inc., predicted consolidation among DRAM players, speculating that the increasing costs of production will cause some weaker players to drop out of the market and curb the over expansion that creates the boom and bust cycles that have plagued DRAM from the beginning.



Elpida's bankruptcy to boost other DRAM suppliers

TAG:Elpida IHS DRAM Bankruptcy

MaxLinear tips full-spectrum capture cable receivers

SAN FRANCISCO—RF and mixed-signal chip vendor MaxLinear Inc. Monday (March 5) announced two 40-nm single-chip solutions for 16- and 24-channel digital cable front-end receivers based on the company's proprietary full-spectrum capture (FSC) technology.

Both the MxL265 and MxL267 FSC receivers capture the full 1-gigahertz (GHz) cable spectrum and enable cable operators to meet consumer demand through flexible deployment of downstream bandwidth while migrating to high capacity DOCSIS 3.0 voice and IP data gateways, home media gateways and hybrid or IP-based set-top boxes, according to MaxLinear (Carlsbad, Calif.).

"Our research shows great growth in the market for hybrid set-top boxes, driven in large part by cable subscribers demanding gateways that can deliver more content into and throughout the home," said Jeff Heynen, directing analyst for broadband access and video for market research firm Infonetics, in a statement issued by MaxLinear. "New tuners that can capture the full 1GHz of cable spectrum, such as MaxLinear's full-spectrum capture receivers, give set-top box manufacturers the ability to deliver these whole home entertainment features in a cost- and power-efficient way."

MaxLinear maintains that its proprietary FSC technology replaces the need for several discrete single-channel cable tuners in a gateway or a set-top box with just one broadband multi-channel receiver. The MxL265 and MxL267 devices are capable of simultaneously receiving any combination of 16 or 24 channels, respectively, located arbitrarily inside the cable spectrum, according to MaxLinear. As a result, MaxLinear's FSC cable receivers reduce the power consumption in a gateway or a set-top box, minimize PCB footprint, eliminate external RF components, and simplify design of customer platforms requiring multiple channel access, according to the company.

The MxL265 and MxL267 deliver this scalable downstream bandwidth while supporting eight channels for upstream interactive services, MaxLinear said.

Customer samples of the MxL265 and MxL267 are available now with volume production expected in the third quarter of this year, MaxLinear said. Pricing information was not provided.


MaxLinear tips full-spectrum capture cable receivers

TAG:MaxLinear Cable Spectrum

Conscious perception has little to do with primary visual cortex, research suggests

From a purely intuitive point of view, it is easy to believe that our ability to actively pay attention to a target is inextricably connected with our capacity to consciously perceive it. However, this proposition remains the subject of extensive debate in the research community, and surprising new findings from a team of scientists in Japan and Europe promise to fuel the debate.

Resolving how these aspects of perception are managed requires a detailed understanding of how the visual centers in our brain process information. A region known as V1 has been investigated as it represents the first portion of the visual cortex to receive and process signals transmitted from the retina.

Many researchers favor a model in which functions pertaining consciousness are widely spread among the whole visual system, including V1. The classical model, which assumes that the neural mechanism of consciousness is integrated into a narrow subset of brain structures, referred to as a homunculus, or 'little human', is almost defunct. However, a modern version of this model is under debate. It proposes that the neural mechanism of consciousness is a privileged set of cortical areas, a subpopulation of neurons, or certain neural dynamics (e.g. oscillations); while there are also visual systems that have nothing to do with conscious vision, explains Masataka Watanabe a researcher investigating brain function at the University of Tokyo, Japan.

Watanabe cites studies proposing that visual attention as processed within V1 may be only minimally impacted by conscious perception; but, the experimental data have been contradictory. For example, studies using a technique called functional magnetic resonance imaging (fMRI) to map brain activity have indicated that V1 contributes to both attention and awareness in humans. However, invasive electrophysiological studies in non-human primates yielded different results. "You would find only 10 to 15% of neurons in V1 that are barely modulated by awareness, and 85% or so that are not modulated at all," says Watanabe. To resolve this ambiguity, he, Kang Cheng from the RIKEN Brain Science Institute, Wako, and their colleagues designed an experiment that examined both processes independently. Surprisingly, their results may lend support the modern homunculus model.

Attentive, but unaware

The results proved striking: for all seven subjects, the shift of attention toward or away from the target had a dramatic effect on brain activity in the region of V1 corresponding to the visual target. However, the ability to consciously perceive the target proved surprisingly unimportant, and shifts in target awareness had no clear or consistent effect on the activity of this subset of neurons. "I was quite surprised that there was zero modulation of awareness in V1," says Watanabe. "Even in monkey studies where the [animals] showed only 10% of their neurons being modulated, [those researchers] were nevertheless observing modulation." By comparison, no such awareness effect was observed in the human subjects.

Watanabe and colleagues' findings indicate that awareness is not a major factor in the earliest stages of visual perception, even though it is clearly a core component of the overall process. Further investigation will be required to determine how consciousness becomes integrated with other visual data. "Scientists are pretty sure that the terminal areas of the visual system, such as the regions that process shape and color or motion, are likely to be heavily modulated by awareness," says Watanabe. "But where exactly this modulation starts is still an open question."

Future studies from this research team will seek out the brain structures involved in awareness processing. For now, these data offer surprising support for a still-contested model of visual perception and consciousness. "To tell the truth, three years ago I would not have believed this result," says Watanabe. "I don't think the 'Battle of V1' is fully settled, but these data could imply that the modern homunculus model may be true."

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Conscious perception has little to do with primary visual cortex, research suggests

TAG:Perception Neuroscience Brain Injury Intelligence Psychology Disorders and Syndromes

Conscious perception has little to do with primary visual cortex

From a purely intuitive point of view, it is easy to believe that our ability to actively pay attention to a target is inextricably connected with our capacity to consciously perceive it. However, this proposition remains the subject of extensive debate in the research community, and surprising new findings from a team of scientists in Japan and Europe promise to fuel the debate.

Resolving how these aspects of perception are managed requires a detailed understanding of how the visual centers in our brain process information. A region known as V1 has been investigated as it represents the first portion of the visual cortex to receive and process signals transmitted from the retina.

Many researchers favor a model in which functions pertaining consciousness are widely spread among the whole visual system, including V1. The classical model, which assumes that the neural mechanism of consciousness is integrated into a narrow subset of brain structures, referred to as a homunculus, or 'little human', is almost defunct. However, a modern version of this model is under debate. It proposes that the neural mechanism of consciousness is a privileged set of cortical areas, a subpopulation of neurons, or certain neural dynamics (e.g. oscillations); while there are also visual systems that have nothing to do with conscious vision, explains Masataka Watanabe a researcher investigating brain function at the University of Tokyo, Japan.

Watanabe cites studies proposing that visual attention as processed within V1 may be only minimally impacted by conscious perception; but, the experimental data have been contradictory. For example, studies using a technique called functional magnetic resonance imaging (fMRI) to map brain activity have indicated that V1 contributes to both attention and awareness in humans. However, invasive electrophysiological studies in non-human primates yielded different results. "You would find only 10 to 15% of neurons in V1 that are barely modulated by awareness, and 85% or so that are not modulated at all," says Watanabe. To resolve this ambiguity, he, Kang Cheng from the RIKEN Brain Science Institute, Wako, and their colleagues designed an experiment that examined both processes independently. Surprisingly, their results may lend support the modern homunculus model.

Attentive, but unaware

The results proved striking: for all seven subjects, the shift of attention toward or away from the target had a dramatic effect on brain activity in the region of V1 corresponding to the visual target. However, the ability to consciously perceive the target proved surprisingly unimportant, and shifts in target awareness had no clear or consistent effect on the activity of this subset of neurons. "I was quite surprised that there was zero modulation of awareness in V1," says Watanabe. "Even in monkey studies where the [animals] showed only 10% of their neurons being modulated, [those researchers] were nevertheless observing modulation." By comparison, no such awareness effect was observed in the human subjects.

Watanabe and colleagues' findings indicate that awareness is not a major factor in the earliest stages of visual perception, even though it is clearly a core component of the overall process. Further investigation will be required to determine how consciousness becomes integrated with other visual data. "Scientists are pretty sure that the terminal areas of the visual system, such as the regions that process shape and color or motion, are likely to be heavily modulated by awareness," says Watanabe. "But where exactly this modulation starts is still an open question."

Future studies from this research team will seek out the brain structures involved in awareness processing. For now, these data offer surprising support for a still-contested model of visual perception and consciousness. "To tell the truth, three years ago I would not have believed this result," says Watanabe. "I don't think the 'Battle of V1' is fully settled, but these data could imply that the modern homunculus model may be true."

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Conscious perception has little to do with primary visual cortex

TAG:Perception Neuroscience Brain Injury Intelligence Psychology Disorders and Syndromes

Sawfishes sure can wield a saw

"I was surprised to see how skilled sawfish are with their saw," said Barbara Wueringer of the University of Queensland. "They use their saw to impale prey on the rostral teeth by producing several lateral swipes per second."

Unlike sawfishes in the wild, the animals she and her team caught on hidden cameras were fed on dead fish, "but their strikes were sometimes strong enough to split those fish in half." The animals then proceeded to swipe their meals onto the floor and dig in.

Sawfishes don't use their saws just to kill and manipulate prey, but also to sense their next mark in the first place. That's contrary to other jawed fishes whose long "noses" are generally used for one or the other purpose, not both, the researchers said.

Wueringer's team earlier found that the saws of freshwater sawfishes are covered in thousands of electroreceptors. Those tiny sensors enable sawfishes to detect the electric fields of other animals in their midst. Tiny canals in the skin covering the saw also allow them to detect water movements. The two senses together give them an edge as hunters in the dark and murky waters in which they live.

In the new study, the researchers observed recently captured sawfishes in action. They watched as those sawfishes tore into already dead fish and responded to weak electrical fields that mimicked live, hidden prey.

"Now we know that sawfish are not sluggish bottom dwellers as previously believed, but agile hunters that hunt in the three-dimensional space of the water," Wueringer said.

What the researchers observed is contrary to what you might read in any textbook, she added. The sawfishes' saw had been considered more like a rake, used by the fish to sift through sand in search of something to eat.

Wueringer said this new view might even lead to changes in the fishing practices that are allowed in prime sawfish territory, noting that the saw is partly to blame for sawfishes' global decline: their saws are easily entangled in fishing gear.

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Sawfishes sure can wield a saw

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The origin of organic magnets

Electrical engineers are starting to consider materials made from organic molecules -- including those made from carbon atoms -- as an intriguing alternative to the silicon and metals used currently in electronic devices, since they are easier and cheaper to produce. A RIKEN-led research team has now demonstrated the origin of magnetism in organic molecules1, a property that is rarely found in this class of material, but is vital if a full range of organic electronic devices is to be created.

The permanent magnetic properties of materials such as iron stem from an intrinsic mechanism called ferromagnetism. Ferromagnetism in organic materials is rare because their atomic structure is fundamentally different from metals. One of the few examples identified to date is called TDAE-C60: a compound comprising spherical carbon cages attached to an organic molecule known as tetrakis-dimethylamino-ethylene. Since its identification in 1991, many theoretical and experimental studies have provided some insight into the mechanism driving this unexpected ferromagnetism, but the explanation was not definitive. A full understanding would help materials scientists to develop more advanced magnetic materials in the future. "A precise model for organic magnetism could aid the design of high-density recording materials for use in next-generation memories," says team member Hitoshi Yamaoka from the RIKEN SPring-8 Center, Harima.

Materials scientists are particularly interested in understanding the electronic structure of TDAE-C60 and how this relates to its ferromagnetic properties. To this end, Yamaoka and his colleagues from research institutes across Japan studied this material using a powerful technique known as photoelectron spectroscopy (PES). They fired x-rays at a single crystal of TDAE-C60, and this radiation excited electrons in the crystal, which then escaped from the surface. The researchers measured the number and the kinetic energy of these electrons from which they could infer information about the electronic structure.

"From these experiments on a single crystal we could establish an exact theoretical model for organic magnetism," explains Yamaoka. "We propose that the transfer of one electron from the TDAE to the C60 causes the magnetic properties of TDAE-C60." The existence of the resulting positively charge TDAE state was also supported by the team's theoretical calculations.

With this thorough understanding of organic magnetism, the next step will be to apply the material to practical applications. "The problem with the TDAE-C60 organic magnet, however, is that the magnetism only appears at temperatures below 16 kelvin," says Yamaoka. "The next step will be to raise this transition point."

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The origin of organic magnets

TAG:Graphene Materials Science Organic Chemistry Chemistry Electronics Spintronics

Windows 8 consumer preview in pictures

Kicking off the Microsoft event at MWC last week, president of Windows and Windows Live, Steven Sinofsky, launched the “Consumer Preview” beta version of Windows 8, before its anticipated official full version launch this coming autumn.



Windows 8 consumer preview in pictures

TAG:windows microsoft win8 mwc

2012-03-05

Cadence moves physical design software to 20-nm


LONDON – Cadence Design Systems Inc. has announced that the latest release of its Encounter software suite for RTL-to-GDSII design supports the 20-nm manufacturing process technology node.

The design, implementation and signoff flow was developed in collaboration with IP and foundry partners and enables more efficient SoC development, Cadence said.

Cadence did not say how much Encounter RTL-to-GDSII for 20-nm cost per seat nor whose 20-nm processes it supports.

The flow is based on a number of tools with such names as Encounter RTL Compiler, Encounter Test, Encounter ECO Designer, Encounter Digital Implementation System, Clock Concurrent Optimization (CCOpt), Encounter Timing System, Encounter Power System, Cadence QRC Extraction, Cadence Physical Verification System, and other design for manufacturing technologies.

The software has already been supplied to some customers. "The Cadence Encounter RTL-to-GDSII flow enabled us to achieve the chip performance and feature objectives of our 1-GHz ARM Cortex-A5 processor-based smartphone platform on time and with greater development efficiency," said Leo Li, president and CEO of Spreadtrum, in a statement issued by Cadence.


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Cadence moves physical design software to 20-nm

TAG:RTL GDSII Cadence EDA semiconductor foundry IP

New direction for game controllers: Prototypes tug at thumb tips to enhance video gaming

"I'm hoping we can get this into production when the next game consoles come out in a couple of years," says William Provancher, an associate professor of mechanical engineering who is in Vancouver, British Columbia, demonstrating the new game controller with his students March 5-7.

They are demonstrating the device and presenting studies about it during the Institute of Electrical and Electronics Engineers' Haptics Symposium. Haptics deals with research about touch, just as optics deals with vision. A patent is pending on the device.

The first haptic or touch feedback in game controllers came in 1997 with the Nintendo64 system's "rumble pack" that makes the hands vibrate using an off-balance motor to simulate the feel of driving a race car on a gravel road, flying a jet or dueling with Star Wars light sabers, Provancher and colleagues write.

His new controller does something additional: it delivers directional cues to the player by stretching the skin of the thumb tips in different directions.

"We have developed feedback modes that enhance immersiveness and realism for gaming scenarios such as collision, recoil from a gun, the feeling of being pushed by ocean waves or crawling prone in a first-person shooter game," Provancher says.

The latest game controller prototype looks like controllers for Microsoft's Xbox or Sony's PlayStation but with an addition to the controller's normal thumb joysticks, on which the thumbs are placed and moved in different directions to control the game. In the new controller, the middle of each ring-shaped thumb stick has a round, red "tactor" that looks like the eraser-head-shaped IBM TrackPoint or pointing stick now found on a number of laptop computer brands.

If a gamer's avatar runs into a wall, the tactor under the thumb moves back to mimic impact. Both tactors can move from side to side to mimic ocean waves. And when a fish bites in one of the games the researchers tried, "as the fish jerks on the line, you can feel the tactor jerk under your thumb," Provancher says.

Video games commonly are designed so the left thumb stick controls motion and the right controls the player's gaze or aim. With the new controller, as a soldier avatar crawls forward, the player pushes the left thumb stick forward and feels the tactors tugging alternately back and forth under both thumbs, mimicking the soldier crawling first with one arm, then the other.

Provancher also hopes to adapt the new game controller design for use as a smart phone peripheral device. A phone would fit into the device with game-controlling thumb sticks and tactors on each side of the phone.

Of Thumbs and the New Game Controller

Smart phones provide an analogy for the new advance in game controllers, Provancher says. Early smart phones used vibrations only when the phone rang. Current models use more sophisticated feedback: a vibration with each touch to help users improve their accuracy when they use a touch-screen keyboard.

Provancher's previous research showed that skin-stretch devices on a steering wheel could stretch the index finger tips left or right to tell drivers to turn left or right -- and did so just as accurately as a navigation system's computerized voice. His latest research is more than fun and games because "by placing skin-stretch feedback in a game controller, it creates a nice testing environment for understanding human perception and cognition," he says.

Indeed, a critical question in determining if the new game controller would work dealt with how players perceived front-back and left-right tugs at their thumb tips when the thumbs were angled inward as they are in a typical Xbox or PlayStation controller.

A study analyzing how gamers perform with the new, thumb-tip feedback device was conducted by Provancher, computer science doctoral student Ashley Guinan, computer science master's degree student Rebecca Koslover and mechanical engineering master's student Nathaniel Caswell. The research was funded by the National Science Foundation and the University of Utah.

The study, which Guinan was presenting during the Haptics Symposium, found that gamers' brains made the necessary mental rotation of the directional tugs so they could perform just as well if their thumbs were angled as if their thumbs were straight.

Provancher says the angled thumb position is better ergonomically, both in terms of comfort and of ease in pushing forward with angled thumbs.

He says that his future research will focus on details of how to provide skin-stretch feedback effectively at the same time a game also produces sounds, sights and vibrations.

Provancher's earlier study of the steering wheel device that told the fingertips which way to turn showed that information can be conveyed by touch even when auditory and visual information also are present.

A video of the new game controller with skin-stretch feedback is available at http://youtu.be/VlIV_h-d03E.

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New direction for game controllers: Prototypes tug at thumb tips to enhance video gaming

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Hermes Birkin Hermes Pas Cher Sac Hermes France

Il se Hermes Birkin soucie de la fraude est mort, il sait ce qui est la fraude morts ne savent cadavre fraude de la terreur. Sac Hermes France Cette fois, il n’a pas osé répondre, hésita. Dévisageait, et son visage de plus en plus grave, tête de cheval agricole est plus Sac Hermes France en plus bas. Comment avez-vous peur de. Le ton de la voix sans une trace d’émotion.

Je vous Hermes Pas Cher peur de la mort. Longman demandé. J’ai Sac Hermes France peur. Mijote chevaux agricoles pour une longue période, et seulement hésité à cracher des mots. Vous êtes tellement peur de la Sac Hermes France mort, ne veulent pas se venger de ton père moi-même. Le ton est pauvres chevaux agricoles, à l’écoute à la mouche sueur.

Sac Hermes France Je ne Sac Hermes France veux pas de se venger, mais la fumée de sortie, parler de la chaîne que vous voulez pour se venger, alors vous irez en enfer. Ah. Sac Hermes France Continuer à rire sur le côté, elle a été très compréhensif de la personnalité, savoir ce que la gourde, il ne pouvait pas Sac Hermes supporter Sac Hermes France regarder chez le cheval agricole qui est un lâche comme.

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Hermes Birkin Hermes Pas Cher Sac Hermes France

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Longchamp Comsetic Longchamp Le Pliage Arbre

Tina Boa Longchamp pour le visage Desha Cowan, re-Mingle sur la serviette et essuyez soigneusement le visage pour Zhang Xiaoping à Solde Longchamp sac la présence de personnes ne bougeait pas, même le chef de peloton de trois et l’instructeur n’a pas bougé.  Tempo jettera Solde Longchamp sac l’arrière une serviette dans le bassin, a vu une foule.

Lisez le Sac Longchamp pliage livre, sachez que il ya un dicton dans les temps anciens Solde Longchamp sac Zhongxiao être forcé d’avoir entendu des paroles, appelé les Etats ont une maison.  Tempo bouche dit, la main appuyée sur Solde Longchamp sac le sol Zhang Xiaoping, rompit et dit: nous sommes des soldats.

Sac Longchamp Protection du pays. Les gardiens du peuple. Et vous. Le tapotant Solde Longchamp sac l’épaule Zhang Xiaoping, en quelque sorte  Tina Boa voix légère du pays, avait une famille. Voir le dernier baissa la tête Solde Longchamp sac Longchamp Le Pliage Petits Tote et la poitrine avec un sac doigt Desha poussaient des cris de leur propre maison, mais aussi ce que les soldats.

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Longchamp Comsetic Longchamp Le Pliage Arbre

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2012-03-04

Exploding stars: Important clue uncovered for origins of Type Ia supernovae

Principal investigator Carlos Badenes, assistant professor of physics and astronomy in Pitt's Kenneth P. Dietrich School of Arts and Sciences, detailed the ways in which his team used the Sloan Digital Sky Survey -- a collection of multicolor images and more than a million spectra covering more than a quarter of the sky -- to determine what kinds of starts produce Type Ia supernovae explosions.

"We knew that two stars had to be involved in such an explosion, and that one of them had to be a white dwarf," says Dan Maoz, professor of physics and astronomy at Tel-Aviv University in Israel and coauthor of this soon-to-be-published paper on the discovery. "But there were two possibilities for what the second star is, which is what we sought to discover."

According to Badenes, there were two potential outcomes for the star's type. It could be a "normal star," like the sun, or it could be another white dwarf, which is a smaller, more dense faint star composed of electron-degenerate matter. The team suspected the latter, as two white dwarfs within the same star system would revolve around one another at half a million miles an hour, speeding up and getting closer and closer until one day they merge, most likely producing the fireworks of Type Ia supernovae.

"There were obvious reasons to suspect that Type Ia supernovae come from the merging of a double white dwarf," says Maoz. "But our biggest question was whether there were enough double white dwarfs out there to produce the number of supernovae that we see."

Because white dwarfs are extremely small and faint, there is no hope of seeing them in distant galaxies. Therefore, Badenes and Maoz turned to the only place where they could be seen: the part of the Milky Way Galaxy within about a thousand light years of the sun. To find the star's companion, the team needed two spectra to measure the velocity between the two. However, SDSS only took one spectrum of most objects. The team decided to make use of a little-known feature in the SDSS spectra to separate each one into three or more subspectra. Although the reprocessing of the data was challenging, said Badenes, the team was able to compile a list of more than 4,000 white dwarfs within a year, each of which had two or more high-quality subspectra.

"We found 15 double white dwarfs in the local neighborhood and then used computer simulations to calculate the rate at which double white dwarfs would merge," says Badenes. "We then compared the number of merging white dwarfs here to the number of Type Ia supernovae seen in distant galaxies that resemble the Milky Way."

The result was that, on average, one double white dwarf merger event occurs in the Milky Way about once a century.

"That number is remarkably close to the rate of Type Ia supernovae we observe in galaxies like our own," says Badenes. "This suggests that the merger of a double white dwarf system is a plausible explanation for Type Ia supernovae."

In addition to providing a key clue about the nature of these important events, the team's discovery shows the potential of giant astronomical surveys like the SDSS.

"Twenty years ago we decided to take three subspectra for each spectrum. We did that for entirely practical reasons," says Robert Lupton, senior research astronomer in Princeton University's Department of Astrophysical Sciences and a colleague of Badenes. "We had no idea that it would someday give us an important clue to the mystery of the Type Ia supernovae."

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Exploding stars: Important clue uncovered for origins of Type Ia supernovae

TAG:Stars Black Holes Galaxies Astronomy Astrophysics Extrasolar Planets

2012-03-03

Important clue uncovered for the origins of a type of supernovae explosion

Principal investigator Carlos Badenes, assistant professor of physics and astronomy in Pitt's Kenneth P. Dietrich School of Arts and Sciences, detailed the ways in which his team used the Sloan Digital Sky Survey -- a collection of multicolor images and more than a million spectra covering more than a quarter of the sky -- to determine what kinds of starts produce Type Ia supernovae explosions.

"We knew that two stars had to be involved in such an explosion, and that one of them had to be a white dwarf," says Dan Maoz, professor of physics and astronomy at Tel-Aviv University in Israel and coauthor of this soon-to-be-published paper on the discovery. "But there were two possibilities for what the second star is, which is what we sought to discover."

According to Badenes, there were two potential outcomes for the star's type. It could be a "normal star," like the sun, or it could be another white dwarf, which is a smaller, more dense faint star composed of electron-degenerate matter. The team suspected the latter, as two white dwarfs within the same star system would revolve around one another at half a million miles an hour, speeding up and getting closer and closer until one day they merge, most likely producing the fireworks of Type Ia supernovae.

"There were obvious reasons to suspect that Type Ia supernovae come from the merging of a double white dwarf," says Maoz. "But our biggest question was whether there were enough double white dwarfs out there to produce the number of supernovae that we see."

Because white dwarfs are extremely small and faint, there is no hope of seeing them in distant galaxies. Therefore, Badenes and Maoz turned to the only place where they could be seen: the part of the Milky Way Galaxy within about a thousand light years of the sun. To find the star's companion, the team needed two spectra to measure the velocity between the two. However, SDSS only took one spectrum of most objects. The team decided to make use of a little-known feature in the SDSS spectra to separate each one into three or more subspectra. Although the reprocessing of the data was challenging, said Badenes, the team was able to compile a list of more than 4,000 white dwarfs within a year, each of which had two or more high-quality subspectra.

"We found 15 double white dwarfs in the local neighborhood and then used computer simulations to calculate the rate at which double white dwarfs would merge," says Badenes. "We then compared the number of merging white dwarfs here to the number of Type Ia supernovae seen in distant galaxies that resemble the Milky Way."

The result was that, on average, one double white dwarf merger event occurs in the Milky Way about once a century.

"That number is remarkably close to the rate of Type Ia supernovae we observe in galaxies like our own," says Badenes. "This suggests that the merger of a double white dwarf system is a plausible explanation for Type Ia supernovae."

In addition to providing a key clue about the nature of these important events, the team's discovery shows the potential of giant astronomical surveys like the SDSS.

"Twenty years ago we decided to take three subspectra for each spectrum. We did that for entirely practical reasons," says Robert Lupton, senior research astronomer in Princeton University's Department of Astrophysical Sciences and a colleague of Badenes. "We had no idea that it would someday give us an important clue to the mystery of the Type Ia supernovae."

Recommend this story on Facebook, Twitter,
and Google +1:


Important clue uncovered for the origins of a type of supernovae explosion

TAG:Stars Black Holes Galaxies Astronomy Astrophysics Extrasolar Planets