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Showing posts with label Llano. Show all posts
Showing posts with label Llano. Show all posts

Processors: two Llano released, four Celeron and a Pentium

Small update on the new upcoming processors AMD and Intel. Step revolution in sight, but slight changes favourable to the consumer.


AMD Fusion


AMD and Intel have both announce new processors. Among the Greens, it discovers two new Llano APU, the A8-3870K and A6-3670K. In fact, it is two chips whose characteristics are identical to the A8-3870 (quad-core 3 GHz, 4 MB L2 cache and circuit graphic Radeon HD 6550D) and A6-3670 (quad-core 2.7 GHz, 4 MB L2 cache and circuit graphic Radeon HD 6530D), but which the multiplier is unblocked. They are thus "overclockables". Note that they are still not Turbo mode, and they are respectively launched at the price of $ 121-143.


Celeron E3000In the blue, it prepares the arrival of four new Celeron. A B815 to replace B810, dual-core without Hyper Threading to 1.6 GHz with 2 MB cache with the frequency of the graphic system HD Graphics integrated passes between 950 and 1050 MHz for a maintained to 35W TDP and a price to $ 86 for 1000 units. Also, a B720 will replace B710, for a gain of 100 MHz with a multiplier record of a unit, or 1.7 GHz on a core without Hyper Threading with 1.5 MB of cache and a 35W TDP, at $ 70.


Also, the Celeron 867 and 797 will replace the 857 and the 787. Low-voltage chips limited the Tribunal to 17W. Without Hyper Threading, they are respectively dual and mono-core, and see their rates of 1.2 to 1.3 GHz, and 1.3 to 1.4 GHz. They are sold $ 134 and $ 107. Finally, a B970 Pentium dual-core without Hyper Threading will replace the B960, enhancing the frequency of 100 MHz to 2.3 GHz. He will accompany the new Core i3-2370M and Core i5-2450M discussed recently heard, they also win 100 MHz.

AMD launches two new Llano bi-hearts

The California firm AMD has launched a pair of new APU A-Series. These Llano are first bi-hearts of the range!


AMD Fusion


AMD take re-entry to expand its range of APU (Accelerated Processing Unit). You thus discover new Llano in tariff listing of Sunnyvale firm. These A-Series logically take place in a socket FM1. Two new fleas of the day are the first available with two hearts of executions. A4-3300 is running at 2.50 GHz while the A4-3400 reached 2.70 GHz. These two APU also include a Radeon HD 6410D. This graphics solution is compatible DirectX 11. It has 160 stream processors, and is dual-core 600 MHz (A4-3400) or 443 MHz (A4-3300).


The A-Series are equipped with a memory controller supporting the DDR3 to 1600 MHz on two channels and 1 MB L2 cache. These two new processors have a TDP of 65 watts. They are marketed to 64 and 69 $ official rates. The A4-3300/3400, therefore, are less expensive than the A6-3500 (a triple 89 dollars sold hearts), as well as the Athlon II X 4 631 (a quadri-hearts at 79 $, which is however without GPU). It remains to see if the performance is sufficient to justify the choice of an APU other present solutions on the market.

MSI Announces A75A-G55 a motherboard to Llano certified Military Class II

msi_logo


The card mother MSI A75A-G55 is compatible with the AMD Llano APU, which integrates the processor and the graphics part in same chip. This motherboard equipped with a Radeon HD 6670 and of an APU AMD Llano A8-3850 would reach from MSI feature Dual Graphics 13351 Points in 3D Mark Vantage.


A75A-G55 is the ATX. It is equipped with the socket FM1 and Chipset A75 (Hudson D3) supporting up to 32 GB Dual-Channel memory allocated to four slots at a frequency of 1600 Mhz memory.


Two ports PCI-Express 2.0 x 16 will be present and compatible CrossFire. When using a CrossFire the first port PCI-Express 2.0 will operate in 16 x and the second will be limited to 4 x.


It will also have six ports SATA 3 (6 GB/s), Audio ALC892 chipset compatible 7.1, a Realtek RTL8111E Ethernet Gigabit controller, two external USB 3.0 ports and an internal via Header connector, three ports wired ports PCI and 1 x PCI-Express.

The selected components will be qualities with Military Class II certification. Overclocking the OC Genie II, which allows to overclock the processor, memory and the graphics part integrated into the processor via a simple pressure on a button, will be part. MSI claimed by the OC Genie II overall performance gain of 110% in less than a second.

Finally, by the A75 chipset Dual Graphics function to combine the graphics performance of the APU and a dedicated graphics card. Through the use of the MSI AfterBurner overclocking software, it will be possible to achieve a performance gain of 390% on 3D mark Vantage is thus achieve 13351 Points with a Radeon HD 6670 and an APU Llano A8-3850.
MSI A75A-G55 would be already available in preorder at a close price of 80 euros.


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AMD Llano triple-core processor A6-3500

AMD_vision_logo


The Llano range was expanded after four Llano QuadCore processors with a TDP (Thermal Design Power) of 100 Watts without Turbo Core and option two Llano with a TDP of 65 Watts and a Turbo Core function. A triple-core version should see the day.


A6-3500 is a triple-core processor running at 2 Mhz, it has however a function Turbo Core then to rise up to 2,400 Mhz frequency. A reminder, only processors with a TDP of 65 Watts have this function and the A6-3500 in party.


Memory cache 3 MB of L2 cache, it supports up to 1866 Mhz DDR3. The graphic part is for its part composed of a Radeon HD 6530D with 320 stream running at 433 Mhz processors.


However, the release date is not yet confirmed.


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MSI Announces A75A-G55 a motherboard to Llano certified Military Class II

msi_logo


The card mother MSI A75A-G55 is compatible with the AMD Llano APU, which integrates the processor and the graphics part in same chip. This motherboard equipped with a Radeon HD 6670 and of an APU AMD Llano A8-3850 would reach from MSI feature Dual Graphics 13351 Points in 3D Mark Vantage.A75A-G55 is the ATX. It is equipped with the socket FM1 and Chipset A75 (Hudson D3) supporting up to 32 GB Dual-Channel memory allocated to four slots at a frequency of 1600 Mhz memory.Two ports PCI-Express 2.0 x 16 will be present and compatible CrossFire. When using a CrossFire the first port PCI-Express 2.0 will operate in 16 x and the second will be limited to 4 x.It will also have six ports SATA 3 (6 GB/s), Audio ALC892 chipset compatible 7.1, a Realtek RTL8111E Ethernet Gigabit controller, two external USB 3.0 ports and an internal via Header connector, three ports wired ports PCI and 1 x PCI-Express.The selected components will be qualities with Military Class II certification. Overclocking the OC Genie II, which allows to overclock the processor, memory and the graphics part integrated into the processor via a simple pressure on a button, will be part. MSI claimed by the OC Genie II overall performance gain of 110% in less than a second.


Finally, by the A75 chipset Dual Graphics function to combine the graphics performance of the APU and a dedicated graphics card. Through the use of the MSI AfterBurner overclocking software, it will be possible to achieve a performance gain of 390% on 3D mark Vantage is thus achieve 13351 Points with a Radeon HD 6670 and an APU Llano A8-3850.
MSI A75A-G55 would be already available in preorder at a close price of 80 euros.


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ASUS F1A75 - I Deluxe a card mother mini-ITX for Llano

 



 


 


 


 


 


 


 


 


Asus has formalized its motherboard mini-ITX AMD Llano processors destined. It will be so equipped with the socket FM1 supported by chipset AMD A75.If this motherboard is the mini-ITX format, it is not less well equipped. It is so that it will be equipped with a UEFI bios, two slots memory DDR3 supporting up to 32 GB with a frequency of 1866 Mhz and a port PCI-Express 2.0 x 16. Although Llano on-board graphics solution, the Asus F1A75 - I Deluxe will help add a graphics dedicated to games for example.Regarding the equipment and storage, the motherboard on-board 4 ports SATA 6 GB/s (SATA 3.0), which are retro compatible with the old standard SATA 3 GB/s (SATA 2.0) and SATA 1.5 GB/s (SATA 1.0). USB 3.0, which is retro compatible USB 2.0, is also the part with two external ports and two internal via headers that are typically used to connect the USB ports on the front of the package. The card mother will have also four USB 2.0 ports.It will also have a smart Wi-Fi compatible 802.11 B/G/N, Bluetooth and an RJ-45 Gigabit Ethernet output.The audio portion will support up to six speakers via the SPDIF output. For video there the right to a DVi, HDMI and DisplayPort output what plug in any recent screen.The card mother F1A75-I Deluxe looks rather comprehensive for its size and it will find its place without problem in a HTPC case. There are more than to know the price.


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AMD Llano: and desktop version?

We've already covered in detail the launch of the new Llano of AMD architecture. If you have not yet read dedicated article in the new APU of the caster, and specifically to their declination for laptops, the Sabine platform, we cannot advise too you to take a glance before continuing.Two weeks after products for laptops, AMD now launches its Llano APU for desktop, i.e. platform Lynx. View our previous article, we will primarily devote today record benchmarks and analysis of performance: but wait for Dual Graphics? What is the comparison to the Intel Sandy Bridge with separate graphics card? What are the effects of the performance of the memory on the games? USB 3.0 makes better or worse than the controllers cards we tested previously?Before answering these questions, do any of even a quick overview of the first APU Llano for desktop computers.



Llano: APU on a small budget


Audi must be proud (Finally, perhaps not, seen the character "entry" of these processors): AMD uses the A6 and A8 prefixes to distinguish the felt performance four first models launched today.Among these four processors, there are no surprise two A6 and A8 two. The most powerful is theA8-3850, an APU with a TDP of 100 watts, a Radeon HD 6550D graphics engine, four cores of execution (still based on the Stars architecture) each with a frequency of 2.9 GHz and 1 MB L2 cache. The Turbo Core function is not available: the only way to overcome this frequency is overclocking. Side price, AMD refers to a rate of about $135.



A6-3650 is also equipped with a TDP of 100 watts, four cores, a total of 4 MB of L2 cache and a controller taking memory supports DDR3-1866, like its big brother, but it contains a graphics engine Radeon HD 3650D and displays an a no more low frequency, namely 2.6 GHz (and again)(, the Turbo Core is not accessible). It should cost around $115; remains to be seen that this will once the conversion into euros carried out.

Model
GPU
TDP
Cores
Freq. Base CPU
Freq. Max
L2 cache
Shaders
Freq. GPU
Turbo Core


The other two models are 65 watts from the first two declensions. We note with interest that this less generous thermal envelope seems hardly handicap them:A8-3800 contains the same graphics engine, the same number of cores and the same amount of L2 cache as the A8-3850; only the frequency of the CPU portion fell to 2.4 GHz, and yet, it is offset by the Turbo Core, present this time, which allows in theory up to 2.7 GHz when the processor heats not too. AMD does unfortunately sent us any copy of this function of acceleration.Finally comes theA6-3600, also a 65 Watt model, which is different of the A6-3650 by its reduced to 2.1 GHz CPU frequency (but 2.4 GHz when the Turbo Core is active).


With the graphic part, the difference between the Radeon HD 6550D and Radeon HD 6530D is, broadly, a SIMD engine (and a reduced frequency).


Graphics processor
Radeon HD 6550D (APU A8)
Radeon HD 6530D (APU A6)


Just look at the schema of the Llano GPU portion to understand how AMD differentiates two products. Each SIMD engine contains 80 ALU and is associated with 4 texture units. by disabling a firm transforms the Radeon HD 6550D a Radeon HD 6530D.



A small loads and already a delay


While the initial launch of the Lynx (Llano to desktop) platform contained already four models, AMD has just announce that models 65 watts, i.e. the A8-3800 and the A6-3600, would be available only later, at an indefinite date. We have therefore more than two processors to test, the A8-3850 and the A6-3650, two 100-Watt models and without Turbo Core.

The AMD A8-3500M APU Review: Llano Is Unleashed

Code-named Llano, AMD’s first desktop-class APU arrives today. This single-chip combination of the Stars CPU architecture and Radeon graphics brings unique strengths (and weaknesses) to the table, and we’re here to compare them to Intel's Sandy Bridge.

Just after the turn of the century, AMD took a big gamble on K8—better known as Athlon 64—and gave up the pursuit of clock speed in the interest of successfully executing more instructions per clock, in addition to introducing native 64-bit extensions. Meanwhile, Intel leveraged its manufacturing superiority to push the NetBurst architecture as fast as possible. It expected to see the Pentium 4 hit 10 GHz, in fact.

Of course, the Pentium 4’s high clocks quickly ran into the immovable walls of physics and power usage, and the realistic limit turned out to be closer to 4 GHz. If you wanted the highest-performing CPU money could buy at that time, you probably bought an Athlon 64; back then, Pentium 4 processors cost more and achieved less. It took a while for the market to accept it, but AMD’s David was beating Intel’s Goliath.

But Goliath didn’t give up; rather, it woke up. Intel moved on from the Pentium 4’s doomed NetBurst design and started over with the Core architecture—though it wasn’t really starting over at all. The tenets of Core were born from earlier efforts in the mobile space. Naturally, it came out better, faster, and less power-hungry. If you do a lot of fast-forwarding, the Nehalem-based Core i7 came next, followed most recently by the Sandy Bridge-based 32 nm desktop Core i3/i5/i7 CPUs.

Somewhere along the line, AMD allowed its unexpected advantage in computing to shrink and then disappear. Now, to be brutally honest, AMD’s fastest Phenom II processors fare better against Core 2 Quads than modern Core i7s. In fact, the $125 dual-core Core i3-2100, manufactured at 32 nm, stands right up to AMD’s $150 quad-core Phenom II X4 955 (a 45 nm part) in many benchmarks. AMD is more than a generation behind when it comes to desktop CPU performance, and continues to leverage the same Stars architecture that it first introduced more than two years ago. Squeezing out an extra hundred MHz every couple months kept the company’s momentum moving forward. However, when your main competitor is launching new architectures, it’s almost impossible to compete through incremental speed-ups. Frankly, it’s hard to recommend the AM3 platform for a new build today.

Perhaps realizing that it didn’t have the R&D resources of its primary competitor, AMD made another gamble back in 2006: it acquired ATI, the graphics card company responsible for the Radeon products many of you know and love. Shortly after the merger, AMD’s Fusion initiative was announced. The plan was to combine central processing and graphics processing resources on the same die. It took five years, but the first commercial Fusion processors were released earlier this year on the Brazos platform, and the E- and C-series APUs have already proven very viable in the notebook and netbook space. AMD even claims that it sold out of these APUs in Q1 2011. From the graphics angle, no Intel Atom-based platform can compete. Brazos even outclasses Atom when it’s complemented by Nvidia’s Ion 2 platform. 

While low-power netbooks are an ideal market for Fusion, the laptop and desktop segments are far more competitive. All Sandy Bridge-based Core i3/i5/i7 processors are equipped with Intel HD Graphics, which is fairly capable when it comes to basic productivity tasks in Windows, video playback, and even light gaming. If Fusion is to prove itself on its own terms, it has to deliver something special: true discrete-class graphics performance, along with competitive CPU performance.

Today we get our first taste of the Llano APU, which is intended to address mobile and desktop customers. Here’s where we see if the gamble pays off. And it needs to. The current Phenom II and Athlon II have little to offer beyond the $100 price point compared to the competition. Sure, a case can be made for the $160-and-over Phenom II X6 processors if you’re into heavily-threaded applications. But in general, Sandy Bridge-based chips are kicking butt in comparisons based on performance, power, and value.  

AMD needs a way to differentiate itself from Intel in order to woo customers. The Fusion initiative might be the key to that goal in the notebook space. After all, the company claims Llano offers better battery life and graphics performance compared to a similarly-priced Sandy Bridge-based platform, with the added promise of OpenCL compute potential from the Radeon core’s shaders. AMD is serious about Fusion's future; over half of its notebook processors are APUs right now, and it anticipates that these will represent more than 90% within a year (Ed.: This isn’t surprising, of course, given AMD’s lack of a commanding presence in the notebook space up until now).

We expect the Fusion initiative to struggle for a foothold a little more in the desktop space, where it’s relatively easy to add discrete graphics. But AMD has a benefit to offer here, too: Llano’s graphics engine can work in conjunction with an add-in card in Dual Graphics mode. In layman’s terms, Dual Graphics is a flexible asymmetrical version of CrossFire that allows the APU’s resources to render in cooperation with a Radeon HD 5000- or 6000-series board for a frame rate boost.

Of course we’d be remiss to ignore AMD’s next-generation micro-architecture, code-named Bulldozer. The Stars replacement should arrive in the third quarter of this year—within the next three months, basically. This represents the first fundamental retooling of AMD’s CPU design since the Athlon 64. So, right out of the gate, Llano’s days are numbered, and its replacement (code-named Trinity) is already slated to swap the CPU block with Bulldozer-derived silicon.

But let’s not get ahead of ourselves. It’ll be 2012 before we see Trinity, and that’s if it’s on time. Let’s just focus on the here and now.

What are Llano’s sexiest attributes? Roughly half of its die is a Phenom II X4 CPU stripped of the 6 MB L3 cache, but with L2 cache doubled to 4 MB. The other half is composed of something very similar to a Radeon HD 5570, with up to 400 Radeon cores (what AMD used to call Stream cores; apparently that name went out of vogue already) and an updated UVD3 video block. All of this is plumbed together on a single 32 nm chip. 

That’s the short explanation. Of course, there’s a lot more going on here and we’re about to dig in to the details. Having said that, if you know what a Phenom II X4 and a Radeon HD 5570 can do together then you already have a pretty good idea of where we’ll end up in this piece.


View the original article here

AMD A8-3850 Review: Llano Rocks Entry-Level Desktops

Earlier this month we previewed AMD's Llano architecture in a notebook environment. Now we have the desktop version with a 100 W TDP. How much additional performance can the company procure with a loftier thermal ceiling and higher clocks?

Editor's Note: As we've done so many times before, we're partnering up with CyberPower to give away one of the first Llano-based desktop machines, which the builder calls its Gamer Ultra, to one of our readers. Flip through our review and, on the last page, enter to win a brand new PC, compliments of CyberPower!

A8-3850 Makes Its Desktop Debut

Don Woligroski did an absolutely killer job on our first look at AMD’s Llano architecture. If you haven’t yet read that story and you want to know more about the plumbing inside the company’s first mainstream APU, you really owe it to yourself to check out The AMD A8-3500M APU Review: Llano Is Unleashed before diving into this piece.

Because Don covered the underlying architecture so well, I’m going to use our first experiences with AMD’s Llano-based desktop platform, code-named Lynx, to dive deeper into the stuff I know you guys love: benchmark results and analysis. What kind of performance can you expect out of Dual Graphics? How does Sandy Bridge with discrete graphics compare? What effect does memory performance have on gaming frame rates? How does integrated USB 3.0 support measure up to some of the add-on controllers we’ve seen? I’ll answer all of that.

But first let’s go over the basics of AMD’s first desktop-class Llano-based APUs.

Llano: The Recession-Friendly APU

Oh, Audi would be so proud (or maybe not, given the entry-level pedigree of these processors). AMD is using the same A8 and A6 designators to distinguish between the perceived performance levels of its four launch SKUs.

There are two A8s and two A6s. The Llano-based flagship is A8-3850, a 100 W part with Radeon HD 6550D graphics, four execution cores with 1 MB L2 cache each, and a 2.9 GHz clock rate. That part does not offer Turbo Core support—the only way to get it running faster than 2.9 GHz is through overclocking. AMD says to expect pricing around $135.

The A6-3650 is also rated at 100 W, even though it’s armed with Radeon HD 6530D graphics and a more conservative 2.6 GHz clock rate (again, Turbo Core isn’t available). The -3650 boasts four cores as well, includes the same 4 MB of L2 cache, and support DDR3-1866 data rates, just like the other three models. That one is expected to run $115.

Model
GPU
TDP
Cores
Base CPU Clock
Max. Turbo
L2 Cache
Shaders
GPU Clock
Turbo Core


Interestingly, dipping down to the 65 W level doesn’t seem to sacrifice much in the way of functionality. AMD’s A8-3800 includes the capable Radeon HD 6550D engine, quad-core Stars architecture, and 4 MB L2 repository. However, Turbo Core helps compensate for a fairly severe drop to 2.4 GHz, kicking frequency up to 2.7 GHz in situations where thermal headroom allows for it. Unfortunately, AMD didn’t send over any Turbo Core-equipped processors for testing, so it’s impossible to gauge how much time this four-core part spends at its elevated setting.

Finally, the A6-3600 is also a 65 W component. It scales way back, though, giving up not only processor clock rate—its four cores running at 2.1 GHz by default and up to 2.4 GHz with Turbo Core—but also graphics performance via the less-complex Radeon HD 6530D engine. Is still includes 4 MB of L2 cache though, complementing each core with 1 MB.

What's the difference, exactly, between the Radeon HD 6550D and Radeon HD 6530D GPU engines? One SIMD engine, for the most part.

Graphics Processor Classification
Radeon HD 6550D (A8-Series APUs)
Radeon HD 6530D (A6-Series APUs)


When you look at a block diagram of the Llano's GPU component, it's easy to see how AMD differentiates these two lineups. Each SIMD hosts 80 ALUs and is associated with four texture units. Turning one SIMD off yields the 320 shaders and 16 texture units offered by Radeon HD 6530D.

A Small Launch Gets Smaller

With four SKUs in the initial Llano-based desktop portfolio, a zero-hour revelation that the 65 W A8-3800 and A6-3600 won't be available until an undisclosed date narrows the family down to two models: A8-3850 and A6-3650, both 100 W parts. As a result, it won't be possible to test Turbo Core functionality on Llano until AMD addresses the availability of its lower-power offerings.


View the original article here