Conclusion: What Makes a Trinity?

I have often wondered about where AMD came up with the codename Trinity (other than the river name, of course). Was it a reference to this being AMD’s third APU? Or maybe AMD was gunning for the Holy Trinity of Performance, Battery Life, and Cost—get wins in all three areas and you’d have a guaranteed best seller! If that’s what AMD was hoping to accomplish, they’ve got a good foundation but we’ll need to see what the laptop OEMs come up with before issuing a final verdict.

To recap, Trinity is AMD’s continued journey down the path they started with Llano. Both CPU and GPU performance have improved over Llano. The general purpose CPU performance gap vs. Intel is somewhere in the 20—25% range, while the GPU advantage continues to be significantly in AMD's favor. It is surprising that Intel's HD 4000 is able to win even in some tests, but overall AMD continues to deliver better GPU performance even compared to Ivy Bridge. It's worth pointing out that the concerns about AMD's battery life from a few years ago are now clearly put to rest. At least at the TDPs we've tested, AMD is easily competitive with Intel on battery life.

AMD's GPU accelerated software lineup this time around is significantly better than it was with Llano, but we're still not quite where we need to be yet. I will hand it to AMD though, progress is clearly being made. Battery life is generally a step forward vs. Llano, which is more than we've been able to say about Ivy Bridge thus far.

The improvements in Piledriver really appear to have saved Trinity. What was a very difficult to recommend architecture in AMD's FX products has really been improved to the point where it's suitable for mobile work. AMD couldn't push performance as aggressively as it would have liked given that it's still on a 32nm process and the APU needs to make money. A move to 2x-nm could help tremendously. Similarly the move to a more efficient VLIW4 GPU architecture and additional tuning helped give AMD a boost in GPU performance without increasing die size. Overall, Trinity is a very well designed part given the process constraints AMD was faced with. 

As a notebook platform, Trinity's CPU performance isn’t going to set any new records but it’s certainly fast enough for most users; battery life isn’t at the head of the class, but it’s better than just about anything that doesn’t qualify as an ultrabook; and finally there’s the question of cost. That last item isn’t really in AMD’s control, as the final cost of a laptop is a product of many design decisions, so let’s do some quick investigation into laptop pricing.

If you figure on memory, motherboard, chassis, LCD, and storage as all being the same, a typical laptop will have a starting price point of around $300—for a cheap, injection molded plastic shell, 4GB RAM, a 5400RPM HDD, a 1366x768 TN panel, and a no-frills feature set. Take that same basic platform and you can make an Intel laptop and have a BoM (Bill of Materials) cost of around $450, or you can make an AMD laptop and your BoM might start at $400. Depending on what other upgrades an OEM makes, as well as marketing, R&D, and profit, and we end up at a final price tag that might be $600 for a Trinity laptop compared to $700 for an Ivy Bridge laptop. The problem is that AMD doesn't just compete against vanilla Ivy Bridge; it has to compete against all the existing laptops as well.

Right now, Llano A8 laptops at Newegg have a starting price of $480 for an A8-3500M Acer Aspire, and they range up to $700 for a 17.3” HP dv7. The highest performance laptop of the bunch is probably Samsung’s Series 3, which uses an A8-3510MX APU and goes for $680. I suspect we’ll see similar pricing for Trinity laptops. On the Sandy Bridge Core i3/i5 side of the fence, Newegg has a much larger selection of laptops, starting at $430 for a Lenovo G570, $550 for the cheapest Core i5 model (again from Acer), and going up to $680 or more for laptops with Core i5 and NVIDIA Optimus graphics. Or if you prefer some place other than Newegg, you can find Core i5-2450M with GT 540M in Acer’s AS4830TG for $600.

That pretty much defines the maximum price we should expect people to pay for Trinity, as Core i5 with Optimus will deliver better CPU and GPU performance based on our test results. Obviously there are other factors to consider, like build quality of the laptop(s), display quality, battery life, and features, but most people shopping for an inexpensive laptop are going to be looking at cost first and features second. On the other hand, if you want style as a consideration, HP’s new sleekbooks will have Trinity versions starting at $600 for 15.6” and $700 for 14”—though it’s not clear which APU you’ll get at those prices. As long as last-generation Sandy Bridge laptops are at clearing house prices, though, AMD’s partners are going to need to be under $600 for something like the A10-4600M laptop we’re reviewing today. Assuming they can manage that, Trinity should see plenty of volume with the back to school season coming over the next few months.

For those who are interested in more than just the bottom line, as usual the best laptop for you may not be the best laptop for everyone. Trinity in a 14” form factor like our prototype would make for a great laptop to lug around campus for a few years. It would be fast enough for most tasks, small enough to not break your back, battery life would be long enough to last through a full day of classes, and the price would be low enough to not break your bank. And if mom and dad are footing the bill, you even get to disguise the fact that it’s a gaming capable laptop by not having a discrete GPU specifically called out on the features list. On the other hand, if you’re after a higher performance laptop or you want a “real” gaming system—something that can hand high detail settings at 1600x900 for instance—your best bet continues to be laptops with an Intel CPU and a discrete GPU from NVIDIA, at least of the GT 640M level—I’d say AMD GPUs as well, but I’m still waiting for a better switchable graphics solution.

At this point, AMD has done everything they can to provide a compelling mobile solution. The difficulty is that there's no longer a single laptop configuration that will be "best" for everyone, and Trinity only serves to further muddy the water. Intel continues to offer better CPU performance, and if you need graphics—which mostly means you want to play games—they have a good partner with NVIDIA. AMD on the other hand is delivering better integrated graphics performance with less CPU power, and depending on what you want to do that might be a more well rounded approach to mobile computing. What we need to see now are actual laptops and their prices. To trot out a tired old saying once more, "There are no bad products; only bad prices." Now it's up to AMD's partners to make sure Trinity laptops are priced appropriately.

AMD Trinity: Battery Life Also Improved
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  • bji - Tuesday, May 15, 2012 - link

    What exactly about the review turned you off from Trinity for HTPC purposes?

    Was it the good-enough-for-HTPC CPU performance?

    The superior GPU performance?

    The better power efficiency?

    The lower power use?

    The cooler GPU?

    The lower price (than the i3 you mentioned)?

    Honestly just curious about why you so summarily concluded that Trinity wouldn't be a good choice from your HTPC when I can't see anything in the article that would allow you to draw that conclusion.

    Unless it was the CPU chart comparison against at 3x as expensive CPU that you would never use in an HTPC anyway?
  • cjs150 - Wednesday, May 16, 2012 - link

    The main purpose will be as an HTPC, video transcoding is very important, look back to Jarred's review, Intel are winning by a large margin.

    For the case I intend to use as long as TDP is under 50W there are no concerns.

    For me the i7-3770T will be the way to go. But you may want to try AMD. If I had built the HTPC last year there would have been no question that AMD would have been the right choice - Atom is/was useless. Maybe next year the table will turn again.
  • Spunjji - Wednesday, May 16, 2012 - link

    Soooo... AMD are good against Atom, so you would have bought them then... but now you're buying an i7 with which they (obviously) cannot compete? That particular argument is a little difficult to follow, unless your requirements have drastically altered. :)

    To be fair to AMD, most people I know don't do transcodes while at the machine so speed isn't terribly relevant past a certain point, but I understand this may be different for you.
  • DellaMirandola13 - Tuesday, May 15, 2012 - link

    I have really been looking forward to this review, nice to see a reasonably competitive CPU-market. Thank you.

    I am not a (serious) enthusiast, my best suit is lurking, but I was very excited to learn about the heterogeneous aspect. Is it possible you could elaborate or perhaps link to a comprehensive elaboration on the prospects of heterogeneous computing.

    As far as I could tell, it seemed very useful in navigating within GIS-applications (particularly when you have to load roads or other kinds of grids on a map), but that's pure speculation.
  • Jedibeeftrix - Tuesday, May 15, 2012 - link

    I would be interested in a 14" hp sleekbook if it comes with the 25w 4655M APU, as the full 384 shaders would be nice, otherwise I will wait till 28nm APU's arrive in 2013 sporting GCN.

    Ps test trinity with blender cycles.
  • Veroxious - Tuesday, May 15, 2012 - link

    I am rather baffled by the fact that Ivy Bridge did not bring substantial battery life improvements with it 22nm process. Is it as a result of the trigate transistor tech? By extension when AMD moves to 22nm will it also be trigate seeing that they no longer have their own foundry? Has trigate given the purported benefits that were punted when it was announced, or is it simply a case of the 22nm node not being mature enough?
  • JKnows - Tuesday, May 15, 2012 - link

    It would be nice to see those game test in High settings! My personal tests shows in high details settings Llano faster than HD4000, Trinity should be much faster.
  • tipoo - Tuesday, May 15, 2012 - link

    This is true. The HD4000 falls further and further behind as you increase the detail settings; that's where AMDs implementation shines.
  • JarredWalton - Tuesday, May 15, 2012 - link

    Go look at Mobile Bench: the results for our "High 900p" testing is in there.
    http://www.anandtech.com/bench/Product/600?vs=580

    But just to summarize, at 900p "High" settings, Trinity's lead over HD 4000 grows to 26% in our seven "2012 Suite" games. Also worth note is that Trinity is >30 FPS in three titles (DiRT 3, Portal 2, and Total War: Shogun 2) while Ivy Bridge is >30 FPS only in DiRT 3 (but comes very close in Skyrim).
  • Alexko - Tuesday, May 15, 2012 - link

    "I’d say AMD GPUs as well, but I’m still waiting for a better switchable graphics solution."

    You mean like Enduro?

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