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Will Intel’s Xeon Broadwell-EP Hit The Market Soon?

April 12, 2016 by  
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An Intel press slide has been leaked on the web which means we should be seeing a workstation-grade Xeon “Broadwell-EP” processor in the shops soon.

The slide appeared on the anandtech forums and shows the chip will be branded under the Xeon E5-2600 V4 series and will have at least “20 per cent more cores and last-level cache” than Haswell-EP.  It should be shipping on March 31st.

This CPU is started for an HP workstation, called the HP Z640, which succeeds the Z620.

The Xeon Broadwell-E uses Intel’ s14nm process which means 10-core chips will be available at the price of an 8-core chip from the previous generation.

The slide said that the Broadwell-E will deliver 18 per cent average performance increase over Haswell-EP, as well as support up to 2400MHz DDR4 memory for greater I/O throughput.

This slide follows the news that an 18-core Xeon Broadwell-EP CPU was spotted on eBay, carrying a price tag of $999 US. Dubbed Xeon E5-2600 v4, the chip was listed to feature a base clock speed of 2.2GHz and Turbo frequency of 3GHz, as well as a TDP of 145W, 2.5MB of L3 cache per core, with 45MB LLC cache in total.

Courtesy-Fud

AMD’s Vegas GPU Details Spotted

April 11, 2016 by  
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Details of AMD’s Vega GPU were leaked and then taken down from AMD R&D Manager’s LinkedIn profile page over Easter.

Hexus spotted Yu Zheng, an R&D Manager at AMD Shanghai had listed the work on Project Greenland as a work experience highlight on his LinkedIn profile page. Greenland is described as “A leading chip of the first graphics IP v9.0 generation, it has full capacity of 4096 shader processor along with whole new SOC v15 architecture.”

The Graphics IP v9.0 designation is thought to signify a Vega GPU in the making. Zheng mentions this is an SOC, but then Hawaii and Fiji chips were described the same. Fiji is part of the graphics IP v8.0 family, as will be Polaris.

Vega following after Polaris, and designated as a ‘HMB2′ GPU by AMD, it looks like Vega based graphics cards will be the successors to the HBM equipped Fiji range such as the Radeon Fury and Nano. Fiju can manage 4096 stream processors,  but with an upgrade to HBM2, 14nm process and other optimisation it is estimated that a Greenland/Vega GPU based graphics cards will offer 20 to 30 per cent better performance.

So with Greenland/Vega sporting HBM2 memory Hexus thinks that Polaris packing graphics cards will therefore feature GDDR5/X memory.

Courtesy-Fud

iPhone SE Goes With Qualcomm Inside

April 8, 2016 by  
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Contrary to our previous reports we got a tip that iPhone SE will continue using Qualcomm modems and not change to Intel.

The tear downs will start happening soon but our sources very close to the matter said with high certainly that all iPhone SE come with an updated Qualcomm modem.

Intel is still in the run but apparently Apple still felt confident to continue using Qualcomm even for this generation of the phone. A few analysts did suggested that iPhone 7 and beyond might get Intel LTE hardware, but not with iPhone SE.

Back in December, when we originally wrote that Intel got the iPhone SE deal, our sources did suggest that Apple can still change its mind if it doesn’t feel that Intel modem is ready. This might be the case, but in the future, we are quite confident that Apple will get a second LTE supplier at some point, just as it did with different manufacturing fabs.

Having two suppliers will drive the cost down, and for Apple every dollar or cent they save of components means millions more in its pocket. Apple claims “LTE up to 50 percent faster than iPhone 5s,” but it doesn’t give a real number. The iPhone 5S uses MDM9615 that was first introduced in 2011. This modem is at the technology range of Cat 4, X5 modem that Qualcomm ships in its entry level SoCs or as an external component.

We will have to wait for the first teardowns to appear as it is not easy to get to “ LTE up to 50 percent faster than iPhone 5s.” You would need a modem that is capable of 225 Mbps  and the next of potential candidates for the iPhone SE is the MDM 20nm 9×35. Qualcomm calls this modem X7 these days, it use to call it Gobi back in late 2014 and this is a Cat 6, 300 Mbit per second download and 50 Mbit per second upload capable chip.

The fact that Apple continues the exclusive deal with Qualcomm is bad news for Intel, but we are sure that the team blue will keep working on getting inside of iPhone.

Courtesy-Fud

 

Is Apple Trying To Rain On Intel’s Parade?

April 5, 2016 by  
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Intel’s cunning plans for computers that will recognize human emotion using its RealSense 3D camera, have been killed off in the short term by Apple.

RealSense is a mix of infrared, laser and optical cameras to measure depth and track motion. It can be used on a drone that can navigate its own way through a city block, but it is also good at detecting changes in facial expressions, and Intel wanted to give RealSense the ability to read human emotions by combining it with an emotion recognition technology developed by Emotient.

Plugging in Emotient allowed RealSense to detect whether people are happy or sad by analyzing movement in their lips, eyes and cheeks. Intel said that it could detect “anger, contempt, disgust, fear,” and other sentiments.

A few months ago the fruity cargo cult Apple acquired Emotient. Intel has removed the Emotient plug-in from the latest version of the RealSense software development kit.

It is not clear at this point if Apple told Intel that it invented the plug in and so it had to sling its hook, or if Intel did not want Jobs’ Mob anywhere near its technology.

The RealSense SDK has features that allow it to recognize some facial expressions, but it’s unclear if they’ll be as effective as the Emotient technology.

Courtesy-Fud

Intel Processors Will Support Vulcan API

March 31, 2016 by  
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Intel is releasing graphics drivers that support the Vulkan 1.0 API for chips running Windows 7, 8 and 10 PCs.

According to Intel the drivers provide beta support for the Vulkan 1.0 API for 6th Generation Intel Core and related processors.

Vulkan 1.0 was introduced last month by industry consortium Khronos Group and is supposed to replace the OpenGL, which was first introduced in 1991 by Silicon Graphics. Vulkan is supposed to exploit powerful GPUs and multicore CPUs, but it is still a long way behind Direct X 12 – at least in its beta condition.

With Intel’s drivers developers will be able to exploit features on Intel GPUs, like the Iris Pro, that are integrated in chips alongside CPUs. Intel’s rival AMD has already released Vulkan drivers for Radeon graphics processors.

Vulkan 1.0 APIs will also work with Linux-based PCs like Steam Machines. Intel has made available open-source Vulkan drivers for Linux PCs running on chips code-named Broadwell and Skylake.

Courtesy-Fud

Is nVidia Going Linux

March 29, 2016 by  
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The dark satanic rumor mill has manufactured a hell on earth yarn claiming that Nvidia is working on its own Linux OS for gamers.

A slide has tipped up showing a screen capture of an installer screen for this operating system supposedly going by the “NLINUX” codename at NVIDIA.

Not much to go on, but it does appear that Nvidia is looking at creating a distribution for gamers similar to that operated by Valve.

It is hard to see what Nvidia would get out of it. Nvidia also has its SHIELD TV that’s powered by Tegra hardware and offers a variety of games over their cloud/streaming “GeForce NOW” service.

So why would Nvidia need a full-blown Linux distribution? The only place it could use one is on the desktop, but that would just mean bringing another Linux distribution into a crowded market with little return for its efforts.

Nvidia already has control of the Linux gaming systems and its cards do better on Linux than AMDs so an “optimized” Linux OS is not going to sell them more graphics cards for Linux gamers. It would have to add something which is better than Steam, or Ubuntu and what could that be?

Courtesy-Fud

Qualcomm Jumps Into VR

March 24, 2016 by  
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Qualcomm has thrown its hat into the virtual reality (VR) ring with the launch of the Snapdragon VR SDK for Snapdragon-based smartphones and VR headsets.

The SDK gives developers access to advanced VR features, according to Qualcomm, allowing them to simplify development and attain improved performance and power efficiency with Qualcomm’s Snapdragon 820 processor, found in Android smartphones such as the Galaxy S7 and tipped to feature in upcoming VR headsets.

In terms of features, the development kit offers tools such as digital signal processing (DSP) sensor fusion, which allows devs to use the “full breadth” of technologies built into the Snapdragon 820 chip to create more responsive and immersive experiences.

It will help developers combine high-frequency inertial data from gyroscopes and accelerometers, and there’s what the company calls “predictive head position processing” based on its Hexagon DSP, while Qualcomm’s Symphony System Manager makes easier access to power and performance management for more stable frame rates in VR applications running on less-powerful devices.

Fast motion to photon will offer single buffer rendering to reduce latency by up to 50 percent, while stereoscopic rendering with lens correction offers support for 3D binocular vision with color correction and barrel distortion for improved visual quality of graphics and video, enhancing the overall VR experience.

Stereoscopic rendering with lens correction supports 3D binocular vision with color correction and barrel distortion for improved visual quality of graphics and video, enhancing the overall VR experience.

Rounding off the features is VR layering, which improves overlays in a virtual world to reduce distortion.

David Durnil, senior director of engineering at Qualcomm, said: “We’re providing advanced tools and technologies to help developers significantly improve the virtual reality experience for applications like games, 360 degree VR videos and a variety of interactive education and entertainment applications.

“VR represents a new paradigm for how we interact with the world, and we’re excited to help mobile VR developers more efficiently deliver compelling and high-quality experiences on upcoming Snapdragon 820 VR-capable Android smartphones and headsets.”

The Snapdragon VR SDK will be available to developers in the second quarter through the Qualcomm Developer Network.

The launch of Qualcomm’s VR SDK comes just moments after AMD also entered the VR arena with the launch of the Sulon Q, a VR-ready wearable Windows 10 PC.

Courtesy-TheInq

 

Intel Putting RealSense Into VR

March 16, 2016 by  
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Intel is adapting its RealSense depth camera into an augmented reality headset design which it might be licensing to other manufacturers.

The plan is not official yet but appears to have been leaked to the Wall Street Journal. Achin Bhowmik, who oversees RealSense as vice president and general manager of Intel’s perceptual computing group, declined to discuss unannounced development efforts.

But he said Intel has a tradition of creating prototypes for products like laptop computers to help persuade customers to use its components. We have to build the entire experience ourselves before we can convince the ecosystem,” Bhowmik said.

Intel appears to be working on an augmented-reality headset when it teamed up with IonVR to to work on an augmented-reality headset that could work with a variety of operating systems, including Android and iOS. Naturally, it had a front-facing RealSense camera.

RealSense depth camera has been in development for several years and was shown as a viable product technology at the Consumer Electronics Show in 2014. Since then, nothing has happened and Microsoft’s Kinect sensor technology for use with Windows Hello in the Surface Pro 4 and Surface Book knocked it aside.

Intel’s biggest issue is that it is talking about making a consumer product which is something that it never got the hang of.

RealSense technology is really good at translating real-world objects into virtual space. In fact a lot better than the HoloLens because it can scan the user’s hands and translate them into virtual objects that can manipulate other virtual objects.

Courtesy-Fud

Samsung Bring 15TB SSD To Market

March 15, 2016 by  
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Samsung has now officially announced and started to ship its new Samsung PM1633a line of solid state drives for Enterprise Storage Systems, which includes the highest capacity SSD ever made by Samsung, the 15.35TB PM1366a model.

Revealed back during the 2015 Flash Memory Summit in August last year, the now available Samsung PM1633a enterprise SSD series is based on a standard 2.5-inch form factor and features a 12Gbps Serial Attached SCSI (SAS) interface. It also uses Samsung new controller as well as Samsung’s own 3rd generation 256Gb 48-layer TLC V-NAND.

As noted, the Samsung PM1633a lineup is based on Samsung’s 256Gb V-NAND flash chips. The 256Gb dies are stacked in 16 layers to form a single 512GB package and by adding up a total of 32 NAND packages, you get the 15.36TB model. According to Samsung, the 3rd generation 256Gb V-NAND will provide both significant performance as well as reliability improvements compared to the PM1633 drive which used 2nd generation 32-layer 128Gb V-NAND flash.

The controller has also been upgraded to concurrently access large amounts of high-density NAND flash and the PM1633a 15.36TB model comes with no less than 16GB of cache.

When it comes to performance, the Samsung PM1633a provides sequential read and write performance of up to 1,200MB/s while random 4K performance is set at up to 200,000 IOPS for read and up to 32,000 IOPS for write. The new Samsung PM1633a enterprise SSD also offers high high reliability date with 1DWPD (drive writes per day), adding up to 15.36TB that can be written every day without failure, which is quite important in the enterprise market.

While the 15.36TB model of the Samsung P1633a is already shipping to select enterprise customers, Samsung is also promising a wide range of capacities, including 480GB, 960GB, 1.92TB, 3.84TB and 7.68TB. According to Samsung, enterprise managers can now fit twice as many drives in a standard 19-inch 2U rack compared to a 3.5-inch storage drive.

Unfortunately, Samsung did not reveal any details regarding the price but we doubt that such high capacity and performance will have a low price tag.

Courtesy-Fud

 

Toshiba Announces New Line Of SSDs

March 3, 2016 by  
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Toshiba has announced its newest line of consumer grade SSDs based on 15nm TLC NAND, the Toshiba SG5 SSD series.

The new Toshiba SG5 SSD series will be available in 128GB, 256GB, 512GB and 1TB capacities as well as a couple of different form-factors, standard 2.5-inch and two different M.2 form-factors.

As noted, the Toshiba SG5 SSD series is based on 15nm TLC NAND with yet to be details controller and will offer sequential performance of up to 545MB/s for read and up to 388MB/s for write.

The 2.5-inch version of the Toshiba SG5 SSD series will be available in all aforementioned capacities, the M.2 2280-S2 (single side) form-factor version will be available in 128GB, 256GB and 512GB capacities and the M.2 2280-D2 (double side) version will only come in 1TB capacity.

The rest of the features are pretty standard for a consumer-grade SSD so you are looking at a power consumption 4.5W to 5.6W under load and 0.65W in idle and it includes Toshiba’s QSBC (Quadruple Swing-By Code) error correction technology.

Unfortunately, Toshiba did not unveil any details regarding the actual price of the new SG5 series SSDs but did say that it should be available sometime during this quarter.

Courtesy-Fud

 

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