Audio Encoding Performance

Our last audio test (and we are sure our ears and those of the neighbors were ecstatic about this), utilizes Nero Digital Audio to extract all 16 tracks and convert them into an MP4 format. We changed the default quality settings to transcoder-ultra, variable bit rate, encoder quality to high, and the AAC profile to LC. We were determined to give both our platforms a workout with this test.

Audio Encoding - Nero Digital Audio

These results have us scratching our heads as this test is equally demanding of the CPU and storage system, but the Intel 975X chipset completes the task up to 7 seconds quicker in each of our benchmark runs. Even the creation of an iPEAK trace file generated the same results during playback. We did note that the hard drive access was consistent on the Intel system while the NVIDIA board had several throughput peaks but just as many lows that resulted in the slower times. The difference is only 2%, but it's still interesting given that the NVIDIA board seems to perform slightly better in some of the other storage-related testing.

File Compression Performance

In order to save space on our hard drives and ensure we had another CPU crunching utility, we will be reporting our file compression results with the latest beta version of WinRAR that fully supports multi-treaded operations and should be of particular interest for those users with dual core or multi-processor systems. Our series of file compression tests utilize WinRAR 3.60b5 to compress our test folder that contains 444 files, ten subfolders, and 602MB worth of data. All default settings are utilized in WinRAR along with our hard drive being defragmented before each test.

File Compression - WinRAR 3.60b5

File Compression - WinRAR 3.60b5

The results speak for themselves with the NVIDIA based system outperforming the Intel system in the decompression tasks by a significant margin (26% faster), but we see the Intel system finishing in front in the grueling compression test (3% faster). Once again, we ran the test several times with the same results. We noticed on our iPEAK test that the disk activity of the NVIDIA board varied somewhat, but the decompression tests are generally more limited by storage system performance whereas the compression tests stress the memory subsystem more. The board could use some additional BIOS tuning for disk activities and the memory subsystem, and hopefully NVIDIA can manage to get more storage subsystem results like the WinRAR decompression benchmark. For now, the NVIDIA board does well in the short and sequential audio tests and file decompression, while it trails slightly in file compression and certain other audio tests.

Multimedia Performance Gaming Performance and Conclusion
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  • bespoke - Tuesday, June 27, 2006 - link

    Once again, the southbridge chip and fan are right underneath the top video card clot. A large cooling solution on the video card will completely cover the sb chip - possibily preventing the video card from seating correctly and certainly not helping with airflow.

    Please move the SB chip or get rid of the fan! Arrrgh!
  • Gary Key - Wednesday, June 28, 2006 - link

    quote:

    Please move the SB chip or get rid of the fan! Arrrgh!


    Due to the required two chip solution for dual x16 GPU operation, there is not another area on the board to place the chipset and still retain the required trace layouts. Due to the heat generated by the MCP, it requires active cooling or a large passive heatsink (as MSI did on their 570 board). These issues will be solved late this year when NVIDIA goes to a single chip solution for their dual x16 boards. In the meantime, we are not happy either. ;-)
  • Anemone - Thursday, June 29, 2006 - link

    Probably should use DDR2 800 on the Asus and 667 on the 590 as the highest supported on each and recompare. I know that feels unfair but I'm saying that from a "highest supported" basis. Enthusiasts are likely to go beyond that, but you'll be giving the full oc tests a go in the next round.

    Initially however think 533 on both skewed things.
  • Per Hansson - Tuesday, June 27, 2006 - link

    "The reference board features an excellent voltage regulator power design along with Rubycon and Sanyo capacitors that yielded superb stability and overclocking results even with our early BIOS and board design."
    Actually those capacitors with a T vent are Panasonic FL, in the 12v input for the VRM and also for the 5v or 12v input for the memory regulators...

    Still very excellent capacitors; if it only where a requirement to also use them on the revised boards by the mainboard manufacturers... Wishful thinking I guess but with continued reporting of what components are used like this by you Anandtech eventually they will listen... (I hope atleast) Again thanks and great work! Hoping you will help to ease the confusion on what chipset to go with that Conroe...
  • Griswold - Tuesday, June 27, 2006 - link

    For some reason, pictures of the mobo wont show in Opera (v9) for me. The benchmark charts are there though. What gives? Anyone else experience this?

    Never had any kind of problem with Opera and AT before. :/
  • Per Hansson - Tuesday, June 27, 2006 - link

    Works fine in Opera 9 here, I think your issue might be that your browser is not set to enable refferer logging (under advanced>network)
  • Griswold - Tuesday, June 27, 2006 - link

    That was it. Not sure why that one was off, however, it works now. Thanks a bunch!
  • Gary Key - Tuesday, June 27, 2006 - link

    I will load up Opera 9 and test it shortly.
  • Myrandex - Tuesday, June 27, 2006 - link

    That eSata port looks a lot like the ieee1394B port, any relation? I heard there was apush once for eSata to use Firewire cables, but I thought only one manufacturer was trying for that (maybe Highpoint?).
  • eskimoe - Tuesday, June 27, 2006 - link

    First off, thanks for one of the very few test on the new nforce5 intel edition!
    For a long time now I have built my pcs with amd cpus, next month will be the first time since the first p3s that Ill build another intel pc!
    So at the moment, I am not really sure which chipset to use,
    of course it seems natural to use an intel chipset for an intel cpu..
    but the nforce chipsets have been very nice (at least for amd), and theres more competition than in the intel area...
    The only thing that intel has and nvidia doesnt, is the intel matrix storage
    (btw, a single nvidia card shouldnt have any probs running on an intel board/have disadvantages over a single ati card, should it?),
    which sounds very nice in my opinion.. therefore, I'd love to see
    some comparison in the RAID compartement between nforce5 and intel 975/965,
    especially since I cant find any information how RAID5 performs on
    nforce5 and intel chipsets.. until now, all onboard variants were
    very slow/used alot of cpu (at least when writing)
    So, I'd love to see some tests comparing raid0 performance/cpu utilization
    between the chipsets, as well as raid5 tests...
    and perhaps someone knows of some tests on matrix raid 5?
    The possibility to have 3x200gb drives, using for example 500gb as raid0,
    and 100gb as raid5 seems very promising, as long as the raid5 calculations
    are somewhat supported by chipset hardware, not only the cpu!
    Thanks alot

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