ARM Profits On The Rise
ARM has reported good second quarter financial results, with profit rising by 23 per cent to $102.97 million.
ARM has been riding high in the public consciousness thanks to firms such as Qualcomm, Texas Instruments and Nvidia pushing its chip architecture into smartphones and tablets. The firm announced it managed to take in $209.78 millio in revenue during the second quarter, a 15 per cent increase from the same period last year, while net income rose even faster by 23 per cent to $102.97 million.
ARM said two billion chips using the firm’s various design models were shipped during the quarter, which represented a nine per cent increase from last year. The firm revealed that its core money making operation, processor royalties, rose by 14 per cent.
Warren East, CEO of ARM said, “ARM’s royalty revenues continued to outperform the overall semiconductor industry as our customers gained market share within existing markets and launched products which are taking ARM technology into new markets.
“This quarter we have seen multiple market leaders announce exciting new products including computers and servers from Dell and Microsoft, and embedded applications from Freescale and Toshiba. In addition, ARM and TSMC announced a partnership to optimise next generation ARM processors and physical IP and TSMC’s FinFET process technology.”
Intel Goes Wireless
Maho Bay is a desktop platform wrapped around the recently launched Ivy Bridge desktop processor and Intel plans to enrich this platform with a Wireless mini card offer of its own.
The plan is to make new SKUs based on half Minicard (mPCIe) standard and offer it with its boards that have support for PCIe 1X or faster. Maho Bay also allows some combinations with Sandy Bridge processors and will allow the use of these mini Wireless cards on older processors with new boards. It looks like the Panther Point chipset is necessary even for older Sandy Bridge processors on Maho Bay platform.
The top range card with premium performance is Intel Centrino Ultimate N 6300, and the card has virtually the same specification like its mobile brother. It supports Intel Wireless Display as well as Intel My Wifi technology and quick driver connect.
Since it is using 3×3 antennas and MIMO standard it us capable of achieving speeds of 450Mbits per second and it does support multiple streams. It supports dual band 2.4 + 5 GHz and Intel Vpro. This is still a 802.11n based product as Intel hasn’t really jumped the gun to support 802.11ac in 2012.
It looks like it is too early for Intel to embrace this new standard due to its very limited market penetration.
AMD’s 8350 Clocked At 4.0GHz
We have got some information about AMD’s upcoming FX 8350.
However, today we learned that AMD will push this CPU from Q3 to early Q4 2012 as now it claims that it can launch this processor in late October. AMD FX 8350 is an eight-core with 16MB cache, Vishera based 32nm core with 4.0GHz default clock and ability to jump to 4.2GHz with turbo core automatic overclocking.
This is an impressive frequency jump as the AMD FX 8150 works at 3.6GHz default and with turbo gets to 4.2GHz. The FX 8350 is supposed to replace the 8150 as AMD’s flagship processor.
According to current schedule production ready samples are expected in roughly a month (early August). Mass production starts in early August, probably days after they finalize the clocks and give it a green light for mass production but the launch is pushed for late October 2012.
Intel Increasing Supplier Audits
Intel has audited almost five times as many of its suppliers in 2011 than it did the previous year.
Chipzilla set itself a target of visiting 50 on-site, third-party audits of its suppliers during the last year. It had that target last year as well, but missed it by only carrying out 49 audits, while one had to be rescheduled.
In comparison Intel only carried out eight visits in 2010. The company also conducted 249 in-depth assessments and 289 self-assessments by suppliers.
But the findings were not that great. Intel found 426 priority and major findings, the highest class of non-compliance as defined by the company.
Most of the non-compliance related to management systems such as a lack of documentation and systems for CSR, inadequate communication with workers or suppliers and a lack of audits. But there were also 112 instances of labour abuse, which included working hours of more than 60 hours per week, and workers not being given at least one day off a week. There were also 28 issues relating to ethics, such as not having an anonymous reporting line for employees to raise issues or concerns through.
The report was interesting because it must have covered Foxconn, which has been the subject of criticism over its treatment of workers. During 2011, Intel carried out audits at three Foxconn facilities and found them about as bad as others in the region. Most of the breaches of rules were in the areas of labour conditions, safety systems, and management systems.
AMD Officially Launches Trinity Mobile
AMD has finally and officially lifted an NDA veil off its mobile Trinity A-series APU lineup based on the 2nd-gen Bulldozer CPU core, aka Piledriver, and VLIW4 Northern Islands GPU squeezed together on a 32nm SOI die.
Architecture-wise, AMD’s Trinity combines two to four Piledriver x86 cores combined with up to 384 VLIW4 Radeon cores on a 32nm die which ends up as a 246mm2 chip with 1.303B transistors, slightly more than Llano’s 228mm2/1.178B. Since it is made in the same 32nm manufacturing process as Llano, the greatest win for Trinity are actual CPU and GPU performance improvements as well as impressive power consumption improvements when compared to Llano APUs.
Same as the FX-series desktop parts based on the Bulldozer architecture, AMD’s Trinity CPU part has a 2+1 integer/floating point design where you get two integer cores that share a single floating point scheduler. Although it appears to the OS as two cores, each Piledriver module actually has less resources than traditional core design. But with Piledriver, those Bulldozer kinks got ironed out as much as possible, improving IPC (instruction per cycle), reducing leakage, reducing CAC and giving it a slight frequency uplift.
As far as the GPU is concerned, we are looking at quite familiar Northern Islands VLIW4 part, a same one that was behind Cayman Radeon HD 6970 graphics card. Of course, the GPU has been cut down to up to 384 stream processors (organized in 6 SIMDs) with 24 texture units and 8 ROPs. The clocks have also gone down to 497MHz base clock that can “turbo” up to 686MHz.
Trinity Launching On Desktops This Summer
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AMD is expected to introduce its new mobile Trinity APU in a week or so and now we are hearing some timeframes for desktop parts as well.
According to Digitimes, desktop Trinity parts are coming in August, while Brazos 2.0 chips are expected in June. There is no word on Trinity ULV parts yet and we believe they will be the most interesting of the lot.
Is Moore’s Law Dead?
May 11, 2012 by admin
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Physicist Michio Kaku says that Moore’s law will be dead within about 10 years.
Kaku, professor of theoretical physics at City University of New York told BigThink.com that we are already seeing a slowing down of Moore’s Law. He said that computing power simply cannot maintain this rapid, exponential rise using standard silicon technology.
Kaku said that the latest CPUs from Intel, which use a unique three-dimensional design, do continue roughly doubling processors. But he points out that the new design is nonetheless proof that the Law is winding down.
The two basic problems are heat and leakage and that is why the age of silicon will eventually come to a close.
By continuing to shrink the parts that go into processors, heat becomes concentrated. At a point in the near future, the heat generated will be so intense that the chip will melt. You can literally fry an egg on top of the chip, and the chip itself begins to disintegrate, he said.
AMD Shows Off New Radeon Chips
AMD has now officially updated its HD 7000M lineup of mobile GPUs with HD 7700M, HD 7800M and HD 7900M GPUs that are all based on AMD’s 28nm GCN architecture. The first in line that should show up in notebooks is the flagship HD 7970M GPU.
As noted, the entire lineup is based on AMD’s 28nm GCN architecture, but as always, the naming scheme of the AMD mobile parts has nothing to do with the desktop ones. The HD 7900M, codename Wimbledon, is actually based on 28nm Pitcairn destkop GPU that features 1280 stream processors, 80 texture units, 32 ROPs and up to 2GB of GDDR5 memory paired up with a 256-bit memory interface.
The HD 7800M series, codename Heathrow and the Radeon HD 7700M series, codename Chelsea, are both based on Cape Verde desktop GPU but with a slight twist. While Heathrow, HD 7800M series features fully enabled Cape Verde GPU with 640 stream processors, 40 texture units and 16 ROPs, the Chelsea HD 7700M series is based on a “crippled” Cape Verde core with 512 stream processors and 32 texture units. Both the HD 7800M series and the HD 7700M series will feature up to 2GB of GDDR5 memory paired up with a 128-bit memory interface. Of course, we expect at least two SKUs for both HD 7700M and HD 7800M series.
AMD also decided to ditch the PCI-Express 3.0 support on the HD 7700M series mainly as this one is aimed at lower-performance platforms that are all about power saving, and performance gain was simply too low.
For now, AMD has only shed precise details regarding the HD 7970M GPU that is based on the fully enabled Pitcairn GPU with 1280 stream processors that will end up clocked at 850MHz for the GPU and 4.8GHz for 2GB of GDDR5 memory paired up with a 256-bit memory interface.
As you can notice, the HD 7970M has lower GPU clocks than its HD 7870 desktop counterpart, but AMD also decided to keep the memory at the same level resulting in 153.6GB/s of memory bandwidth. According to AMD slides, HD 7970M should end up to be anywhere between 30 and 60% faster than HD 6990M and anywhere between 16 and 76 percent when compared to Nvidia current high-end GTX 675M GPU.
Is Samsung Pursuing The Server Market?
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It is certain that Korean electronics giant Samsung will soon be entering the server chip market.
Reports are coming in that the company has been picking up key server personnel from Intel and AMD. Samsung has been focused on developing ARM chips and stayed clear of the x86 architecture used by Intel and AMD.
But the companies latest hires seem to indicate that might change.
Samsung’s latest recruits include veterans of the chip business like Jim Mergard, Frank Helms, who is a Fusion APU architect, Brad Burgess who designed the Bobcat APU and Patrick Patla (VP of AMD’s server business). Patla was behind the success of the Opteron chip set and has done well using the x86-server system.
AMD’s Trinity To Have Fewer Cores
AMD’s soon to launch A10 5800K is a 100W quad-core Trinity 32nm CPU with 3.8 GHz base clock and 4.2GHz maximal clock possible with AMD turbo core dynamic overclocking technology.
The A10 5800K has 4MB of L2 cache, supports DDR3 1866, dual graphics configurations as well as AMD’s new FM2 socket. The fun part is new HD 7660D GPU that works at 800MHz and comes with 384 shader units. The current APU market leader A8 3870K that works at 3GHz has HD 6550 graphics with 400 cores running at 600MHz.
AMD claims that new Radeon cores from Trinity CPU including A10 5800K are more efficient and this is the main reason why you have fewer cores that can deliver superior performance. The other reason is that with 800MHz core clock they can probably process more data, meaning that HD 7660D of A10 5800K should end up quite a bit faster than the Llano A8 3870K.
All these Radeon cores are a key feature of the Vision Engine that accelerates GPU enabled applications. AMD also tells the world that Trinity is DirectX 11 compatible, supports Direct compute and the new A series of processors, including the A10 5800K all the way to dual-core A4 5300, should not have any issues playing Blu-ray 3D. The GPU part of Trinity supports AMD V, UVD3 as well as Open CL acceleration.