I remember buying my first memory kit ever.  It was a 4GB kit of OCZ DDR2 for my brand new E6400 system, and at the time I paid ~$240, sometime back in 2005.  Skip forward seven years and users can enjoy four times as much density for under 1/3 of the price, an upswing by a factor 12x in terms of density against price.  However in terms of the memory landscape, performance is a key factor when deciding between kits that cost almost the same, and making sure if that extra $15 for the next memory kit up is worth the jump.

The pricing for each of the kits are as follows:

$75: Ares DDR3-1333 9-9-9 4x4 GB
$80: RipjawsX DDR3-1600 9-9-9 4x4 GB
$95: Sniper DDR3-1866 9-10-9 4x4 GB
$130: RipjawsZ DDR3-2133 9-11-10 4x4 GB
$145: TridentX DDR3-2400 10-12-12 4x4 GB

Ultimately the best way to look at these results is through the IGP comparison graph posted several pages back:

Our synthetic test shows that as memory kits get faster, sub-timings can start to suffer (as in the kits we have tested), and as a result despite the extra MHz we can hit the law of limiting returns.  If we tested a 2400 9-9-9 kit, I’m sure the synthetic test would rise proportionately as the jump from 1333 9-9-9 to 1600 9-9-9 and 1866 9-10-9 did.  But it is the other results showing the kit comparison that makes interesting reading.

Ultimately whether a kit will be beneficial or not is down to the scenario in which it is used.  All the tests today rely on having one part of the system at full stretch for a certain amount of time – either the CPU or the GPU.  In most circumstances a system is not taxed, such as checking email or browsing the web, and thus memory may not make much of a difference (and it is hard to quantify in any scientific way).  However, for situations where something is taxed, we can compare results.

As we see with our IGP testing, some games get boosted significantly with memory (Batman:AA), whereas some level out and get sub-10% boosts despite almost double the cost for that memory (Portal 2).  In a similar fashion, our x264 decoding tests show that a small gain can be had, or in WinRAR up to 20% better performance is possible.

Writing this review has taken a lot longer than expected.  Initially it comes down to what benchmarks should be run – there are a lot of synthetic results out in the wild from many sources, and I wanted to focus on real-world scenarios to aid buying decisions.  Hopefully I have found a good number of different scenarios where buying that higher rated memory kit actually makes a difference – IGP gaming is the key one often quoted, but other options such as Maya, WinRAR compression and USB 3.0 throughput can be important too.   

In the end, we have to recommend what kits our users should be looking for.  Taking the DDR3-1333 C9 kit as a base, it seems a no-brainer to go for the DDR3-1600 C9 kit for $5 more.  The boost across the board for a negligible difference in price is worth it.  The jump up to the G.Skill 1866 C9 kit also provides enough of a measurable boost, although the leap in price from 1600 C9 is another $15, which could be harder to swallow.

As we move into the 2133 C9 kit we tested today, we again across our test bed see a tangible jump in performance.  This jump is not as much as moving from 1333 to 1600, but it is there and users wanting peak performance will be happy with this kit, though the size of the user pockets will also have to match. 

When it comes to our 2400 C10 kit results, compared to the 2133 C9, it is highly dependant which kit comes out on top.  Even if one kit beats the other, it is only by a small margin – not one that can be justified by a $15 jump in the price.

For the majority of users, the DDR3-1866 C9 kit from G.Skill is a great buy, as long as the user remembers to enable XMP(!).  Budget conscious builds will find solace in the DDR3-1600 C9 kit, which is a no brainer over the 1333 C9 kit for the extra $5.  If your pockets are a little deeper, then the G.Skill DDR3-2133 C9 kit will offer some extra performance, but not as much as jumping between the other kits will.  The DDR3-2400 C10 kit is not in the right ballpark compared to the other kits and only serves well for forum signatures.  To sum up:

$75: Ares DDR3-1333 9-9-9 4x4 GB
$80: RipjawsX DDR3-1600 9-9-9 4x4 GB – Recommended for Budget Conscious
$95: Sniper DDR3-1866 9-10-9 4x4 GB – Recommended
$130: RipjawsZ DDR3-2133 9-11-10 4x4 GB – Recommended for Deeper Pockets
$145: TridentX DDR3-2400 10-12-12 4x4 GB – Not Recommended

Overclocking Results
Comments Locked

114 Comments

View All Comments

  • ssj4Gogeta - Thursday, October 18, 2012 - link

    "Besides, do people really play games with IGP?"

    They're definitely more likely to play games on a more powerful IGP like AMD's. I thought the whole point of AMD's Fusion lineup was that you could do light gaming on the IGP itself.
  • SeanJ76 - Saturday, June 21, 2014 - link

    Exactly! no one buys shitty AMD products anymore......
  • Boogaloo - Thursday, October 18, 2012 - link

    There are already plenty of benchmarks out there for memory scaling on AMD's APUs. This is the first time I've seen an in-depth look at how memory speed affects Intel's IGP performance.
  • ssj4Gogeta - Thursday, October 18, 2012 - link

    That's what I was thinking as well.
    I'm hoping for another article using Trinity. :)
  • Calin - Friday, October 19, 2012 - link

    I'm not sure A10 supports DDR3-2400 (DDR3-1866 was the fastest memory supported)
  • Medallish - Friday, October 19, 2012 - link

    The A10 has AMP profiles(Like XMP on Intel) up to 2133MHz, however, there's always overclocking, I'm pretty sure Ivy Bridge doesn't suppoort 2400+MHz memory natively either. I'm looking at an FM2 board by Asrock which they claim can support 2600MHz memory.
  • IanCutress - Friday, October 19, 2012 - link

    My A10-5800K sort of liked DDR3-2400, then it didn't like it. Had to go back one to 2133 for the testing. Even with bumped voltages and everything else, the CPU memory controller couldn't take it. Perhaps the sample I have is a dud, but that was my experience.

    Ian
  • tim851 - Friday, October 19, 2012 - link

    I concur.

    Pointless review anyway. The summary should have read: High-Clocked Memory only needed if your primary usage is either competitive benchmarking or WinRAR compression.
  • IanCutress - Saturday, October 20, 2012 - link

    Did you know that before you read the article though? This is Anandtech, and I like to think I test things thoroughly enough to make reasoned opinions and suggestions :) Having a one sentence summary wouldn't have helped anyone in the slightest.

    Ian
  • SeanJ76 - Saturday, June 21, 2014 - link

    Nothing is better done on AMD products idiot.....

Log in

Don't have an account? Sign up now