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AMD Increases FM2+ Lineup

September 22, 2015 by  
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AMD will expand its socket FM2+ chip lineup with three new parts – the A10-7890K and A8-7690K APUs, and the Athlon X4 880K CPU.

The new parts showed up on the compatibility list of socket FM2+ motherboards by BIOSTAR and it is not clear when they will be in the shops.

The architecture mentioned is “Kaveri,” but the silicon could be “Godavari” which is a Kaveri refresh.

The top of the range will be the A10-7890K, which has CPU clock speeds of 4.10 GHz out of the box. We do not know what the TurboCore frequency will be, but the current A10-7870K offers 3.90 GHz with 4.10 GHz TurboCore. The A8-7690K has a CPU clocks of 3.70 GHz. We are not sure what the iGPU clock speeds of the two chips.

The Athlon X4 880K is the most interesting. It has 4.00 GHz CPU clocks. The Athlon X4 FM2+ series lack integrated graphics that means that they are good for those who will buy discrete GPUs, on the FM2+ platform.

All three chips offer unlocked base-clock multipliers, enabling CPU overclocking.

Source-http://www.thegurureview.net/computing-category/amd-increases-fm2-lineup.html

Is Electricity In TSMC’s Future?

September 18, 2015 by  
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Contract chip-maker Taiwan Semiconductor Manufacturing Company (TSMC) is thinking of generating electricity in-house.

The cunning plan is to install electric generating equipment at its factories or even building its own power plant.

Apparently, the company’s electricity bill will go up by 50 per cent over the next ten years as it moves to more-advanced technologies.

Taiwan is already facing power shortage problems and TSMC is worried that its plans could be stuffed up.

TSMC has asked Taiwan’s Ministry of Economic Affairs (MOEA) and government-owned Taiwan Power Company (Taipower) about the feasibility of building its own power generators and related regulatory matters.

According to Digitimes companies can set up power generating equipment for use at their own factory sites, but the law has to be revised to allow TSMC to build its own power plant.

TSMC previously pointed out that it does not necessarily need nuclear power unless there is an alternative. We really hope that quote does not mean that TSMC is considering going nuclear.

Source-http://www.thegurureview.net/computing-category/is-electricity-in-tsmcs-future.html

Both AMD And nVidia Preparing For 14nm

September 4, 2015 by  
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AMD and Nvidia both appear to be certain to get their “14 nm” out next year.

According to TweakTown Nvidia is apparently dotting the “I” and working out where to put in the semi-colons for its Pascal GPU using TSMC’s 16nm FinFet node. AMD rumored has been wining and dining its old chums at GlobalFoundries to use its 14nm process for its Greenland GPU.

Although these sound like different technologies the “14nm and 16nm”  is difference how you measure a transistor. The outcome of both 14 and 16 should be a fairly same sized transistor with similar power features. TSMC calls its process 16nm FinFet, while Samsung and GloFo insist on calling it 14nm FinFet.

The dark satanic rumor mill suggests that the Greenland GPU, which has new Arctic Islands family micro-architecture, will have HBM2 memory. There will be up to 32GB of memory available for enthusiast and professional users. Consumer-oriented cards will have eight to 16GB of HBM2 memory. It will also have a new ISA (instruction set architecture).

It makes sense, AMD moved to HBM with its Fury line this year. Nvidia is expected to follow suit in 2016 with cards offering up to 32GB HBM2 as well.

Both Nvidia and AMD are drawn to FinFET which offers 90 percent more density than 28nm. Both will boost the transistors on offer with their next-generation GPUs, with 17 to 18 billion transistors currently being rumored.

Source- http://www.thegurureview.net/computing-category/are-both-amd-and-nvidia-readying-to-release-a-14nm-gpu.html

More Details Uncovered On AMD’s ZEN Cores

August 27, 2015 by  
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Our well informed industry sources have shared a few more details about the AMD’s 2016 Zen cores and now it appears that the architecture won’t use the shared FPU like Bulldozer.

The new Zen uses a SMT Hyperthreading just like Intel. They can process two threads at once with a Hyperthreaded core. AMD has told a special few that they are dropping the “core pair” approach that was a foundation of Bulldozer. This means that there will not be a shared FPU anymore.

Zen will use a scheduling model that is similar to Intel’s and it will use competitive hardware and simulation to define any needed scheduling or NUMA changes.

Two cores will still share the L3 cache but not the FPU. This because in 14nm there is enough space for the FPU inside of the Zen core and this approach might be faster.

We mentioned this in late April where we released a few details about the 16 core, 32 thread Zen based processor with Greenland based graphics stream processor.

Zen will apparently be ISA compatible with Haswell/Broadwell style of compute and the existing software will be compatible without requiring any programming changes.

Zen also focuses on a various compiler optimisation including GCC with target of SPECint v6 based score at common compiler settings and Microsoft Visual studio with target of parity of supported ISA features with Intel.

Benchmarking and performance compiler LLVM targets SPECint v6 rate score at performance compiler settings.

We cannot predict any instruction per clock (IPC improvement) over Intel Skylake, but it helps that Intel replaced Skylake with another 14nm processor in later part of 2016. If Zen makes to the market in 2016 AMD might have a fighting chance to narrow the performance gap between Intel greatest offerings.

Courtesy-Fud

AMD Coherent Data Reaches 100 GBs

August 20, 2015 by  
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After a lot of asking around, we can give you some actual numbers about the AMD’s coherent fabric.

The inter-connecting technology already sounded very promising, but now we have the actual number. The HSA, Heterogeneous System Architecture MCM (Multi Chip Module) that AMD is working on can give you almost seven times faster score than the traditional PCIe interface.

Our industry sources have confirmed that with 4 GMI (Global Memory Interconnect) links AMD’s CPU and GPU can talk at 100GB/s. the traditional PCIe 16X provides 15GB/s at about 500 ns latency. Data Fabric eliminates PCIe latency too.

AMD will be using this technology with the next gen Multi Chip module that packs a Zeppelin CPU (most likely packed with a bunch of ZEN cores) and a Greenland GPU that of course comes with super fast HBM (High Bandwidth Memory). The Greenland and HBM can communicate at 500 GB/s and can provide highest performance GPU with 4+ teraflops.

This new MCM package based chip will also talk with DDR4 3200 memory at 100GB/s speed making it quite attractive for the HSA computation oriented customers.

Source

Malware Turns Computers Into Cellular Antenna

August 19, 2015 by  
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A team of Israeli researchers have improved on a way to steal data from air-gapped computers, thought to be safer from attack due to their isolation from the Internet.

They’ve figured out how to turn the computer into a cellular transmitter, leaking bits of data that can be picked up by a nearby low-end mobile phone.

While other research has shown it possible to steal data this way, some of those methods required some hardware modifications to the computer. This attack uses ordinary computer hardware to send out the cellular signals.

Their research, which will be featured next week at the 24th USENIX Security Symposium in Washington, D.C., is the first to show it’s possible to steal data using just specialized malware on the computer and the mobile phone.

“If somebody wanted to get access to somebody’s computer at home — let’s say the computer at home wasn’t per se connected to the Internet — you could possibly receive the signal from outside the person’s house,” said Yisroel Mirsky, a doctoral student at Ben-Gurion University and study co-author.

The air-gapped computer that is targeted does need to have a malware program developed by the researchers installed. That could be accomplished by creating a type of worm that infects a machine when a removable drive is connected. It’s believed this method was used to deliver Stuxnet, the malware that sabotaged Iran’s uranium centrifuges.

The malware, called GSMem, acts as a transmitter on an infected computer. It creates specific, memory-related instructions that are transmitted between a computer’s CPU and memory, generating radio waves at GSM, UMTS and LTE frequencies that can be picked up by a nearby mobile device.

The GSMem component that runs on a computer is tiny. “Because our malware has such a small footprint in the memory, it would be very difficult and can easily evade detection,” said Mordechai Guri, also a doctoral student at Ben-Gurion.

Source

AMD Misses Again

July 30, 2015 by  
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Fabless chipmaker AMD has come up with a mixed set of results for the second quarter. The company managed to make as much cash as the cocaine nose jobs of Wall Street expected, but missed revenue expectations.

In fact its revenues were below the psychologically important billion figure at $942 million.

We knew it was going to be bad. Last week we were warned that the results would be flat. The actual figure was $942m, an 8.5 per cent sequential decline and a 34.6 per cent drop from the same period a year ago.

As you might expect, there are some measures of this not being AMD’s fault. The company is almost entirely dependent on PC sales. Not only have these fallen but don’t look like they are going to pick up for a while.

AMD’s Computing and Graphics division reported revenue of $379m, which was down 54.2 per cent, year-on-year. Its operating loss was $147m, compared to a $6m operating loss for last year’s quarter.

Lisa Su, AMD president and CEO, in a statement said that strong sequential revenue growth in AMD’s enterprise, embedded, and semi-custom segment and channel business was not enough to offset near-term problems in its PC processor business.  This was  due to lower than expected consumer demand that impacted sales to OEMs, she said.

“We continue to execute our long-term strategy while we navigate the current market environment. Our focus is on developing leadership computing and graphics products capable of driving profitable share growth across our target markets,” she added.

In the semi-custom segment, AMD makes chips for video game consoles such as the Nintendo Wii U, Microsoft Xbox One, and Sony PlayStation 4 consoles. That segment did reasonably well, up 13 percent from the previous quarter but down 8 percent from a year ago.

But AMD’s core business of processors and graphics chips fell 29 percent from the previous quarter and 54 percent from a year ago. AMD said it had decreased sales to manufacturers of laptop computers.

Figures like this strap a large target on AMD’s back with a sign saying “take me over” but AMD is not predicting total doom yet.

For the third quarter, AMD expects revenue to increase 6 percent, plus or minus 3 percent, sequentially, which is a fairly conservative outlook given the fact that Windows 10 is expected to push a few sales its way.

AMD supplies chips to the Nintendo Wii U, Microsoft Xbox One, and Sony PlayStation 4 consoles and these seem to be going rather well.

Source

AMD’s Quantum Has Intel Inside

July 1, 2015 by  
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AMD’s Project Quantum PC system, with graphics powered by two of the new Fiji GPUs may have got the pundits moist but it has been discovered that the beast has Intel inside

KitGuru confirmed that the powerful tiny system, as shown at AMD’s own event, was based upon an Asrock Z97E-ITX/ac motherboard with an Intel Core i7-4790K ‘Devil’s Canyon’ processor.

Now AMD has made a statement to explain why it chose to employ a CPU from one of its competitor in what is a flagship pioneering gaming PC.

It told Tom’s Hardware that users wanted the Devil’s Canyon chip in the Project Quantum machine.

Customers “want to pick and choose the balance of components that they want,” and the machine shown off at the E3  was considered to be the height of tech sexiness right now.

AMD said Quantum PCs will feature both AMD and Intel CPUs to address the entire market, but did you see that nice Radeon Fury… think about that right now.

IT is going to be ages before we see the first Project Quantum PCs will be released and the CPU options might change. We would have thought that AMD might want to put its FinFET process ZEN CPUs in Project Quantum with up to 16 cores and 32 threads. We will not see that until next year.

Source

Is The Chip Market On The Rebound

June 26, 2015 by  
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Don’t let anyone fool you, the chipmarket is still not doing that well and there are a few problems to be sorted out before real money will be made.

FC Tseng, vice chairman for foundry VIS said that handset makers have too much inventory in their warehouses and the much hyped IoT market boom has not yet arrived.

In fact it is looking like 2015 will not be as good as 2014, which was pretty good at least as far as VIS was concerned.

Semiconductor demand for IoT applications will emerge, but no one has really worked out what the key drivers of IoT market growth will be, Tseng said.

Smartphones, devices such as watches, bracelets and glasses are all being identified as the popular applications when it comes to wearables and the Internet of Things.

VIS forecast that the global 2015 semiconductor market will increase 5 per cent in production value to $358 bn, while the foundry sector will grow by a larger 10 per cent on year to about S$50 bn.

VIS chairman and president Leuh Fang warned that the company has seen a low visibility of customer orders for the third quarter of 2015.

VIS reported record revenues and profits for 2014 and has been spending on capital expenditure like a mad thing in 2015.

Source

Is Samsung The King Of LTE?

June 24, 2015 by  
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Samsung Electronics has told the world that owns the largest number of patent rights essential for long-term evolution (LTE) technology in the world.

Writing in its official blog “Samsung Tomorrow” that it has more than 3,600 standard essential patents (SEP) for the LTE and LTE-Advanced (LTE-A) technology. That is 17 percent of all LTE-related SEPs.

We guess this means that if someone buys an LTE phone more than 17 per cent of the money which goes to buy patents should end up in Samsung’s bank account.

Samsung Electronics Digital Media & Communication Laboratory’s intellectual property application team head Lee Heung-mo said Samsung Electronics has established a solid foothold as the global leader and the first mover in the fourth-generation mobile telecom market.

“This also means that the company has become able to provide more convenience to customers by developing the latest technologies.”

The Taiwanese patent office conducted market research for the nation’s state-run National Applied Research Laboratory based on about 6,000 patent rights listed at the Patent and Trademark Office in the United States during the last two years.

LG Electronics and Qualcomm followed Samsung Electronics in second place with 14 percent of SEPs, each. Ericsson, Panasonic, Nokia and NTT DoCoMo hold the third spot with 5 percent, each.

Pantech, the nation’s third-largest handset maker which currently faces bankruptcy, held only one percent, while Korea’s state-run Electronics and Telecommunications Research Institute owned less than 1 percent, the report showed.

During the patent dispute with Apple, the U.S. International Trade Commission said Apple had infringed on Samsung Electronics’ SEPs though they had to be shared under a “fair, reasonable and non-discriminatory” principle.

Samsung Electronics said it has pushed for securing the SEPs in this sector during the last 18 years and has competed with global telecom giants including Qualcomm, Nokia and Ericsson as a relative latecomer. It said securing leadership in SEPs may change the crisis of facing patent disputes to diversifying income sources.

Source

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