Readers of our motherboard review section will have noted the trend in modern motherboards to implement a form of MultiCore Enhancement / Acceleration / Turbo (read our report here) on their motherboards.  This does several things – better benchmark results at stock settings (not entirely needed if overclocking is an end-user goal), at the expense of heat and temperature, but also gives in essence an automatic overclock which may be against what the user wants.  Our testing methodology is ‘out-of-the-box’, with the latest public BIOS installed and XMP enabled, and thus subject to the whims of this feature.  It is ultimately up to the motherboard manufacturer to take this risk – and manufacturers taking risks in the setup is something they do on every product (think C-state settings, USB priority, DPC Latency / monitoring priority, memory subtimings at JEDEC).  Processor speed change is part of that risk which is clearly visible, and ultimately if no overclocking is planned, some motherboards will affect how fast that shiny new processor goes and can be an important factor in the purchase.

For reference in this review, the ASUS Maximus V Formula does use MultiCore Turbo when XMP is enabled.

3D Movement Algorithm Test

The algorithms in 3DPM employ both uniform random number generation or normal distribution random number generation, and vary in various amounts of trigonometric operations, conditional statements, generation and rejection, fused operations, etc.  The benchmark runs through six algorithms for a specified number of particles and steps, and calculates the speed of each algorithm, then sums them all for a final score.  This is an example of a real world situation that a computational scientist may find themselves in, rather than a pure synthetic benchmark.  The benchmark is also parallel between particles simulated, and we test the single thread performance as well as the multi-threaded performance.

3D Particle Movement Single Threaded

The MVF takes a nice lead in single threaded 3DPM, showing efficiency when not memory limited.

3D Particle Movement MultiThreaded

Still a good showing from the MVF in multithreaded 3DPM – clearly ahead of the ASRock and MSI, and only 0.1% behind the Gigabyte UP7.

WinRAR x64 3.93 - link

With 64-bit WinRAR, we compress the set of files used in the USB speed tests. WinRAR x64 3.93 attempts to use multithreading when possible, and provides as a good test for when a system has variable threaded load.  If a system has multiple speeds to invoke at different loading, the switching between those speeds will determine how well the system will do.

WinRar x64 3.93

The ASUS MVF again shows efficiency, championing over the other OC motherboards by a noticeable about.

[Please note we are moving to a newer version of WinRAR shortly – 3.93 is still being used due to the number of results we have, and we are slowly retesting the older platforms.]

FastStone Image Viewer 4.2 - link

FastStone Image Viewer is a free piece of software I have been using for quite a few years now.  It allows quick viewing of flat images, as well as resizing, changing color depth, adding simple text or simple filters.  It also has a bulk image conversion tool, which we use here.  The software currently operates only in single-thread mode, which should change in later versions of the software.  For this test, we convert a series of 170 files, of various resolutions, dimensions and types (of a total size of 163MB), all to the .gif format of 640x480 dimensions.

FastStone Image Viewer 4.2

FastStone does not usually offer much in variation, although there is a clear split with the ASUS motherboards usually at the top, followed by Gigabyte then ASRock.  MSI only have a few data points with no correlation (yet).

Xilisoft Video Converter

With XVC, users can convert any type of normal video to any compatible format for smartphones, tablets and other devices.  By default, it uses all available threads on the system, and in the presence of appropriate graphics cards, can utilize CUDA for NVIDIA GPUs as well as AMD APP for AMD GPUs.  For this test, we use a set of 32 HD videos, each lasting 30 seconds, and convert them from 1080p to an iPod H.264 video format using just the CPU.  The time taken to convert these videos gives us our result.

Xilisoft Video Converter 7

In a similar set of events to FastStone, XVC shows Gigabyte and ASUS performing highly, with MSI then ASRock competing at the slightly slower speeds.

x264 HD Benchmark

The x264 HD Benchmark uses a common HD encoding tool to process an HD MPEG2 source at 1280x720 at 3963 Kbps.  This test represents a standardized result which can be compared across other reviews, and is dependant on both CPU power and memory speed.  The benchmark performs a 2-pass encode, and the results shown are the average of each pass performed four times.

x264 HD Pass 1x264 HD Pass 2

System Benchmarks Gaming Benchmarks
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  • UzairH - Tuesday, March 26, 2013 - link

    When I researched the effects of x8 vs x16, some games did have tangible framerates hits. I also understand there is some latency from the PLX chip, so the question is: does the MVF utilize the PLX when two graphics cards are deployed, or only when 3 are in use?
  • IanCutress - Tuesday, March 26, 2013 - link

    The PLX chip on the MVF works with IO as it is a PCIe 2.0 switch. It is not the PLX8747 commonly used to dissect PCIe 3.0 lanes for GPUs.
  • UzairH - Tuesday, March 26, 2013 - link

    Thanks for clearing that up Ian :) I take it then that there is NO latency from the PLX chip since it doesn't do anything with the PCIe slots.

    Overall, I am trying to decide between this board or the ASRock Z77 OC Formula. Ian, which of these two would you use yourself in a gaming build with GTX 670 SLI and a standard overclocked (4.2~4.4 GHz) 3570k? One important value-add is of course the "SupremeFX IV" audio solution on the MVF - I was considering getting one of Asus' Xonar cards for sound, how would you say the SupremeFX IV compares to the DX or Essence STX when paired with good headphones?
  • hurrakan - Tuesday, March 26, 2013 - link

    I wish they would stop using the Intel 82579V NIC, or at least fix it - it's been horrendously broken for years. Search Google for "82579v" and you'll see.

    It constantly disconnects every minute unless you force it to 100Mbps. I wish I had bought a motherboard with dual LAN. And I'm going to make sure my next motherboard does not have Intel 82579V!
  • vailr - Tuesday, March 26, 2013 - link

    The Intel 82579V NIC has performed fawlessly on my Gigabyte Z77-UD5H board.
    Maybe your board's NIC has a defect?
  • hurrakan - Sunday, April 14, 2013 - link

    It was fine for a few months, then started disconnecting and reconnecting every 2 minutes - extremely annoying and made playing MMOs impossible. Now it only works by forcing to 100MBps instead of 1GBps.

    Apparently a very common problem - there's a 13 page thread on Intel community forums.
    I saw one place suggest it is caused by the Gigabit Ethernet region of the motherboard BIOS getting corrupted.
  • Sabresiberian - Tuesday, April 2, 2013 - link

    I would rather they add a PLX chip than spend the money on beefing up the audio capabilities of the mainboard. I mean, they did a good job as far as they went, but its still not as good as, say, one of their own Xonar solutions, which is what I'm going to use anyway. To me, either you care about better sound and you are going to spend a little money to get it, or you're happy with what comes on mainboards and so aren't; an in-between solution is a solution for a kind of person that I don't think really exists.
  • Nivin - Thursday, May 2, 2013 - link

    Just wondering. Does this motherboard come with a liquid cooling system of its own or is it just optimized for one. I am planning to buy this for my gaming pc but i also am going to buy a Cooler Master Seidon 240m if the motherboard doesnt have its own liquid cooling system. Also, if it does come with a LCS, is it good compared to getting one yourself.
    Thanks, Nivin

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