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Will Intel Release It’s 10nm Processors By 2017?

March 2, 2016 by  
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Intel has said that a job advert which implied that it would not be using the 10nm process for two years was inaccurate and confirmed that it is on track for a 2017 release.

The advert, which was spotted by the Motley Fool has since been taken down, said the company’s 10-nanometer chip manufacturing technology would begin mass production “approximately two years” from the posting date.

Intel has said that the advert was wrong and confirmed that its “first 10-nanometer product is planned for the second half of 2017.”

It is not expected that Intel will roll out server chips in 2017. At the moment the plan appears to be introducing its second-generation 14-nanometer server chip family in early to mid-2017. But instead Intel will be trying to get its process ramped at high yields experimenting on the PC market so that 10-nanometer server processors will be ready for the first half of 2018.

This follows Intel’s traditional pattern of a having a few parts released as it experiments with the new tech. This is what happened in the first year of Intel’s 14-nanometer availability.

Courtesy-Fud

U.S. Wants To Help Supercomputer Makers

March 1, 2016 by  
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Five of the top 12 high performance computing systems in the world are owned by U.S. national labs. But they are beyond reach, financially and technically, for many within the computing industry, even larger ones.

That’s according to U.S. Department of Energy (DOE) officials, who run the national labs. A new program aims to connect manufacturers with supercomputers and the expertise to use them.

This program provides $3 million, initially, for 10 industry projects, the DOE has announced. Whether the program extends into future fiscal years may well depend on Congress.

The projects are all designed to improve efficiency, product development and energy use.

For instance, Procter & Gamble will get help to reduce the paper pulp in products by 20%, “which could result in significant cost and energy savings” in this energy- intensive industry, according to the project description.

Another firm, ZoomEssence, which produces “powder ingredients that capture all the key sensory components of a liquid,” will work to optimize the design of a new drying method using HPC simulations, according to the award description.

Some other projects in the initial implementation of what is being called HPC4Mfg (HPC for Manufacturing) includes an effort to help Global Foundriesoptimize transistor design.

In another, the Ohio Supercomputer Center and the Edison Welding Institute will develop a welding simulation tool.

The national labs not only have the hardware; “more importantly the labs have deep expertise in using HPC to help solve complex problems,” said Donna Crawford, the associate director of computation at Lawrence Livermore National Laboratory, in a conference call. They have the applications as well, she said.

HPC can be used to design and prototype products virtually that otherwise might require physical prototypes. These systems can run simulations and visualizations to discover, for instance, new energy-efficient manufacturing methods.

Source-http://www.thegurureview.net/computing-category/u-s-wants-to-help-supercomputer-makers.html

Microsoft Goes Underwater

February 12, 2016 by  
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Technology giants are finding some of the strangest places for data centers these days.

Facebook, for example, built a data center in Lulea in Sweden because the icy cold temperatures there would help cut the energy required for cooling. A proposed Facebook data center in Clonee, Ireland, will rely heavily on locally available wind energy. Google’s data center in Hamina in Finland uses sea water from the Bay of Finland for cooling.

Now, Microsoft is looking at locating data centers under the sea.

The company is testing underwater data centers with an eye to reducing data latency for the many users who live close to the sea and also to enable rapid deployment of a data center.

Microsoft, which has designed, built, and deployed its own subsea data center in the ocean, in the period of about a year, started working on the project in late 2014, a year after Microsoft employee, Sean James, who served on a U.S. Navy submarine, submitted a paper on the concept.

A prototype vessel, named the Leona Philpot after an Xbox game character, operated on the seafloor about 1 kilometer from the Pacific coast of the U.S. from August to November 2015, according to a Microsoft page on the project.

The subsea data center experiment, called Project Natick after a town in Massachusetts, is in the research stage and Microsoft warns it is “still early days” to evaluate whether the concept could be adopted by the company and other cloud service providers.

“Project Natick reflects Microsoft’s ongoing quest for cloud datacenter solutions that offer rapid provisioning, lower costs, high responsiveness, and are more environmentally sustainable,” the company said.

Using undersea data centers helps because they can serve the 50 percent of people who live within 200 kilometers from the ocean. Microsoft said in an FAQ that deployment in deepwater offers “ready access to cooling, renewable power sources, and a controlled environment.” Moreover, a data center can be deployed from start to finish in 90 days.

Courtesy- http://www.thegurureview.net/aroundnet-category/microsoft-goes-deep-with-underwater-data-center.html

Is Intel Going 10nm Next Year?

February 3, 2016 by  
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Intel is reportedly going to release its first 10nm processor family in 2017, expected to be the first of three generations of processors that will be fabbed on the 10nm process.

Guru 3D found a slide which suggest that Chipzilla will not be sticking to its traditional “tick-tock model.” To be fair Intel has been using the 14nm node for two generations so far – Broadwell and Skylake. Kaby Lake processor architecture that is due later this year, will also use 14nm .

The slide tells us pretty much what we expected. The first processor family to be manufactured on a 10nm node will be Cannonlake, expected to launch in the year 2017. The following year, Intel will reportedly launch Icelake processors, again using the same 10nm node. Icelake will be succeeded by Tigerlake in 2019, the third generation of Intel processors using a 10nm silicon fab process. The codename for Tigerlake’s successor is unknown.  When it comes out in 2020 it will use 5nm.

 

architecture CPU series Tick or Tock Fab node Year Released
Presler/Cedar Mill Pentium 4 / D Tick 65 nm 2006
Conroe/Merom Core 2 Duo/Quad Tock 65 nm 2006
Penryn Core 2 Duo/Quad Tick 45 nm 2007
Nehalem Core i Tock 45 nm 2008
Westmere Core i Tick 32 nm 2010
Sandy Bridge Core i 2xxx Tock 32 nm 2011
Ivy Bridge Core i 3xxx Tick 22 nm 2012
Haswell Core i 4xxx Tock 22 nm 2013
Broadwell Core i 5xxx Tick 14 nm 2014 & 2015 for desktops
Skylake Core i 6xxx Tock 14 nm 2015
Kaby lake Core i 7xxx Tock 14 nm 2016
Cannonlake Core i 8xxx? Tick 10 nm 2017
Ice Lake Core i 8xxx? Tock 10 nm 2018
Tigerlake Core i 9xxx? Tock 10 nm 2019
N/A N/A Tick 5 nm 2020

Courtesy-Fud

Android Is Coming To The Desktop

January 28, 2016 by  
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Jide Technology has released an Alpha build of its much praised Remix OS version of Android, available free of charge.

The Android fork, which adds conventional desktop features such as a taskbar, start menu and support for multiple windows, has been a huge hit, overshadowing the implementation of Android revealed in Google’s recent high-end tablet the Pixel C.

The initial build, as ever, is designed to fish for bugs and aid developers. A beta will follow in the coming weeks. The Alpha doesn’t contain Google Mobile Services apps such as the Play store and Gmail, but the finished version will. In the meantime, users can sideload the gApps package or go to the Amazon Web Store.

There may also be problems with some video codecs, but we’re told this is a licensing issue which will be resolved in the final version too. In the meantime, the first release is perfectly useable.

Compatibility with most Android apps is instant, but the user community can ‘upvote’ their favourites on the Remix OS site to flag what’s working best in each category.

The company has already released a small desktop machine of its own, called the Remix Mini, the world’s first fully functioning Android PC, priced at just $70 after a successful Kickstarter campaign. It has also developed a 2-in-1 ultrabook, the Remix Ultra, and has licensed Remix OS to several Far East tablet manufacturers.

In this new move, the company has teamed up with Android-x86, a group that has been working on an executable version of Android for computers since 2009, to launch a Remix OS installer which will allow existing hardware to become Remix OS powered, or as a partition on a dual-boot machine.

A third option is to store the OS on a USB stick, meaning that you can make any computer your own. This technique has already been popular through the Keepod programme which offers Android on a stick to countries without access to high-speed computers.

The advantages of Remix OS to the developing world are significant. Bench tests have shown that Remix OS works significantly faster than Windows, which will potentially breathe new life into older machines and make modern machines run at previously impossible speeds.

Remix OS was designed by three ex-Google engineers and includes access to the full Google Apps suite and the Google Play store.

David Ko, co-founder of Jide Technology, said: “Today’s public release of Remix OS, based on Android-x86, is something that we’ve been working towards since we founded Jide Technology in 2014.

“All of us are driven by the goal of making computing a more accessible experience, and this free, public release allows us to do this. We believe Remix OS is the natural evolution of Android and we’re proud to be at the forefront of this change.”

The public Alpha will be available to download from Jide and android-x86 from 12 January, and a beta update is expected swiftly afterwards. The INQUIRER has been using a Remix Mini for over a month now, and a full review of the operating system is coming soon.

Courtesy-TheInq

Intel Says PCs Will Make A Comeback

November 18, 2015 by  
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The PC will make a comeback, but the so-called Tablet revolution is history, according to the Chipmaker who missed out on it.

Kirk Skaugen, GM of Intel’s client computing group told the Intel Global Capital Summit that there are more than a billion PCs that are more than three years old and a third of a billion that are over five years old. People are coming back to the PC and refreshing their systems.

It used to be that people upgraded every two years or so, but in the last five years silicon has got so powerful that no one saw the need. The problem is that they still don’t and Skaugen hopes that two-in-one detachable-screen systems, will be a major growth driver.

Sales of two-in-one systems are up 150 per cent, he claimed, and are leading to people wanting to refresh their PCs up to 18 months earlier than they would have. Mini computers are another growth market.

Without the growth in two-in-ones, the laptop market in the US would have shown 4 per cent negative growth, Skaugen said. However the new forms created a one per cent growth. He thinks the new hardware that such systems are starting to carry, particularly 3D cameras are going to have people rushing back to laptops.

The big loser in all of this is going to be the tablet market. Intel had got the growth in tablets wrong, he said, and is now revising its forecasts.

“18 months ago many people thought that tablet sales were going to cross over PCs in 2014. Now we’re sure they won’t ever. Intel has taken a billion units out of our forecasts in the last year,” he said.

That is just as well because Intel never made a sustainable dent into the tablet market, but it also fulfilled our predictions that the technology never solved any problems. It was still the same toy that Microsoft had been attempting to sell without success for years and they never had a use.

Courtesy- http://www.thegurureview.net/computing-category/intel-says-pcs-will-make-a-comeback.html

Did Intel Deliberately Slow PC Sales?

October 7, 2015 by  
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Intel might have caused slow PC sales at the beginning of the year to boost the price of its Skylake chips later.

A recent study shows that the slump in PC sales in the first half was deliberately made to help Skylake sell better since August. Initially analysts believed that sales of the Skylake are hindered by existing stocks of previous Haswells, but it turns out this was untrue.

Tech Trader Daily has found that Intel significantly reduced shipments of its central processing units in the first half of the year, to leave PC maker inventories drained and empty.

This is normal practice since Intel needed to have all its PC makers and retailers with empty enough stocks in order to fill them up quickly with new Skylake models in August. But this year the plan worked too well. The Skylake stocks quickly evaporated and the first supply aps appeared between the months of August and September, with Intel quickly assuring its customers that new Skylake batches will return in stores as fast as possible.

Normally Chipzilla has a cycle of unit buildups in the first half of a financial year and then a controlled drain of units in the second half. This helps PC makers and retailers build systems in the first half and then sell them bundled without being compromised by stand-alone units selling alongside them at a higher pace in the second.

This time Intel launched the Skylake in the second half of the year, August onwards, so the cycle was stuffed up. Now it seems that this will mean a low supply of Skylakes in the first half of 2016. If you can find them, you might need to stock up now.

Intel is making piles from this. PC makers mainly build their systems on Skylakes and since the supply is low the price is high. Intel does not have to discount to shift the technology, the suppliers have to buy it at any price. Particularly as Intel’s only real x86 market, AMD, is having a bit of a snooze.

A full transition to Skylake will probably happen in winter, but the ongoing process at the moment gives Intel the much-needed money to financially buffer a slowdown in sales next spring.  All this gives a warning about what will happen if AMD goes under and Intel takes total control.

Source-http://www.thegurureview.net/computing-category/did-intel-deliberately-slow-pc-sales.html

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.

Source

Is Intel Supporting Open-Source?

June 19, 2015 by  
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Intel has suddenly made some interesting hardware less interesting to open sourcers by insisting that its i915 DRM kernel graphics driver for upcoming Skylake and Broxton hardware demands some binary-only firmware blobs.

According to Phoronix these first i915 DRM firmware blobs are for Skylake and Broxton for the GuC and DMC.
DMC is the Display Microcontroller used by Skylake (Gen9) within the display engine to save and restore its state when entering into low-power states and then resuming. It saves and restores display registers across low-power states separate of the kernel.

Intel said that the firmware blobs are required by the DRM driver rather than being an optional add-on.

The license of these firmware blobs also indicate that redistribution is only allowed in binary form without modification. Beyond that, “no reverse engineering, decompilation, or dis-assembly of this software is permitted.”

Basically this will kill off any desire for Open Source enthusiasts to touch Skylake, although we doubt Intel will be too worried – they are a very nice couple. In any event AMD apparently uses something similar to protect bits of its operation.

Still Intel is shipping these firmware files early so everyone knows they are there.

Source

Intel Talks More About Skylake

May 18, 2015 by  
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A new Intel roadmap suggests the first Broadwell LGA parts will launch in Q2, while Skylake-S parts will come in Q3.

The roadmap was published by PC Online and points to two Broadwell LGA launches this quarter – the Core i7-5775C and Core i5-5675C. These two parts will be joined by a total of four Skylake-S products in Q3, the Core i7-6700K, Core i7-6700, Core i5-6600K, Core i5-6600 and the Core i5-6500.

Both Skylake-S and Broadwell LGA will replace the current crop of Haswell parts, including Devil’s Canyon products. However, Broadwell LGA sits one tier above Skylake-S and Haswell-based products.

Starting in Q4, we should see more Broadwell LGA parts, but we don’t have any names yet. In the first quarter of 2016, we can also expect new Skylake-S parts.

Speaking of 2016, Intel plans to unleash the Broadwell-E in the first quarter of 2016. Little is known about Broadwell-E, but the new 14nm flagship is expected to sport eight cores. Clocks remain unknown, although the 14nm node promises substantial gains.

Source

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