iPeak Business Application Tests

Our iPeak Winstone benchmarks offer a glimpse into how well our hard disk drives will handle general office applications, media encoding, and graphics manipulation. While the business applications that are being tested tend to be more CPU bound at times, the performance of the hard drive can and will make a difference in the more disk intensive video and graphics applications where large media files are typically being edited.

IPEAK - Pure Hard Disk Performance

IPEAK - Pure Hard Disk Performance

AAs expected the WD Raptor drives finish at the top in our business application tests as their 10k rpm spindle speed and optimized cache play an important role in their ability to sustain high transfer rates, especially in the Content Creation benchmark where transfer block sizes are significantly larger and more random than in the Business application benchmark. We see our 7K1000 performing very well in these tests and finishing ahead of the other 7200rpm drives and even the older 8 MB cache equipped 74GB Raptor.

In fact, the 7K1000 is about 44% faster in the Business Winstone and 30% quicker in the Content Creation benchmarks than the Seagate 750GB drive. After reviewing the trace analysis files we determined that the 7K1000 handles small block sizes of data in non-sequential order significantly better than the Seagate drive. We did notice the drive slowed down slightly in the Business Winstone when it encountered large block sizes of data in non-sequential order. This surprised us slightly as we expected the increase in drive cache to 32 MB would have buffered this same issue we noticed on the Seagate 750GB drive. Overall, the drive offers a very balanced blend of performance across a wide variety of business and home applications.

iPeak General Task Tests

The iPeak based General Task benchmarks are designed to replicate utility based application tasks that typically are disk intensive and represent common programs utilized on the majority of personal computers. While the WinRAR program is very CPU intensive it will typically stress the storage system in short bursts. Our antivirus benchmark will stress the storage system with continual reads and sporadic write requests while the defragmentation process is split between continual read and write requests.

IPEAK - Pure Hard Disk Performance

IPEAK - Pure Hard Disk Performance

IPEAK - Pure Hard Disk Performance

IPEAK - Pure Hard Disk Performance

The 7K1000 performs extremely well in the Anti-Virus and Defragmentation test where its 32 MB cache benefits read operations with results that mirror the PCMark 2005 tests. This is especially true in the WinRAR tests where large cache sizes are very advantageous for improved times and we expected better performance from this drive. It did finish ahead of the other 7200rpm drives but simply could not keep up with the rotational and access speeds of the 16 MB cache equipped Raptors.

PCMark05 Performance iPeak Multimedia and Gaming Tests
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  • goldfish2 - Tuesday, March 20, 2007 - link

    just noticed a problem you may wish to address with your charts, hope this hasn't already been mentioned.

    Take a look at the chart 'video application timing - time to transcode DVD'
    Your times are in Minutes/seconds, it seems you're chart application has interpreted the numbers as decimals, and made the bar lengths on this basis. Take a look at the bar for WD5000YS 500GB. It says 4.59; I assume this means 4 minutes 59 seconds, making the WD740GD 2 seconds slower at 5 minutes 1 second. But the bar lengths are scaled for decimal, so that the bar on the WD740GD is much longer. You'll have to see if you can get your graph package to think in minutes:seconds, or have the bar lengths entered in decimal (i.e. 4:30 seconds becomes 4.5 minutes) and put a label on in minutes for readability.

    Thanks for the review though.
  • Gary Key - Tuesday, March 20, 2007 - link

    We have a short blurb under the Application Performance section -
    "Our application benchmarks are designed to show application performance results with times being reported in minutes / seconds or seconds only, with lower scores being better. Our graph engine does not allow for a time format such a 1:05 (one minute, five seconds) so this time value will be represented as 1.05."

    We know this is an issue and hopefully we can address it in our next engine update (coming soon from what I understand). I had used percentage values in a previous article that was also confusing to some degree. Thanks for the comments and they have been passed on to our web team. ;)
  • PrinceGaz - Tuesday, March 20, 2007 - link

    The simplest and most logical solution is just to enter the time in seconds, rather than minutes and seconds; even if graphed correctly, comparing values composed of two units (minutes:seconds) is difficult compared to a single unit (seconds).

    If two results were 6:47 and 7:04 for instance, the difference betweem them is much clearer if you say 407 and 424 seconds. By giving the value in seconds only, you can see at a glance that there is a 17 second difference, which translates to just over 4% (17 divided by 407/100, or 17 divided by about 4.1).

    Doing the same mental calculation with 6:47 and 7:04 first involves working out the difference with the extra step of dealing with 60 seconds to a minute. Then you have a difference of 17 seconds out of a little under 7 minutes, which isn't very helpful until you convert the 7 minutes to seconds, as it should have been originally.

    That's my opinion anyway.
  • JarredWalton - Tuesday, March 20, 2007 - link

    Hi Gary. I told you so! Damned if you do, damned if you don't. ;) (The rest of you can just ignore me.)
  • PrinceGaz - Tuesday, March 20, 2007 - link

    quote:

    In fact, it took the industry almost 35 years to reach the 1GB level, another 14 years to reach 500GB, and now with perpendicular recording technology, only two years to reach 1TB.


    How can you say only two years?

    The 14 years you say it took to increase from 1GB to 500GB represents a doubling of capacity nine times, or roughly 1.56 years (19 months) for the capacity to double. That means that the two years (actually 20 months as Hitachi released a 500GB drive in Jul 2005) it took to double again, from 500GB to 1TB is actually marginally longer than average.

    It would be more accurate to say that the trend of capacities doubling roughly every 18 months is continuing.
  • patentman - Tuesday, March 20, 2007 - link

    The two year remark is two years from the first commercial perpendicular recording drive. Perpendicular recording has been in the works for a long time. In fact, when I used to examine patent applications for a living, there was patent literature related to perpendicular recording all the way back in 1990-1991, albeit for relatively simple aspects of the device.
  • Gary Key - Tuesday, March 20, 2007 - link

    quote:

    How can you say only two years?


    The averaging of the time periods does work out to a doubling of capacities every 18~20 months but the last doubling took about 26 months to go from 250GB to 500GB.
  • mino - Wednesday, March 21, 2007 - link

    Yes, but first 250GB drives were 4-platter 5400rpm ones(Maxtor?)...
    First 500GB were 5-platter 7200rpm ones.

    IMO there are little dicrepancies in the tren dcaused bu the worry of many-platter drives after 75GXP. Aftre a few years Hitachi came back with 7K400 and the curve just returned to values it lost before...
  • scott967 - Tuesday, March 20, 2007 - link

    On these big drives is NTFS performance an issue at all?

    scott s.
    .
  • AbRASiON - Monday, March 19, 2007 - link

    Too slow, too much money, too little space.
    I've owned 3 and sold them.

    When are we going to see a 15krpm Savvio 2.5" review?
    When will we see a 180gb per platter 32mb 10,000rpm new series raptor?
    Maybe WD should also make a 15krpm 2.5" - 32mb model


    These incrimental speed upgrades on hard disks are terrible :( need more, much much more.

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