System Performance

Power Consumption

Power consumption was tested on the system while in a single MSI GTX 770 Lightning GPU configuration with a wall meter connected to the OCZ 1250W power supply. This power supply is Gold rated, and as I am in the UK on a 230-240 V supply, leads to ~75% efficiency > 50W, and 90%+ efficiency at 250W, suitable for both idle and multi-GPU loading. This method of power reading allows us to compare the power management of the UEFI and the board to supply components with power under load, and includes typical PSU losses due to efficiency. These are the real world values that consumers may expect from a typical system (minus the monitor) using this motherboard.

While this method for power measurement may not be ideal, and you feel these numbers are not representative due to the high wattage power supply being used (we use the same PSU to remain consistent over a series of reviews, and the fact that some boards on our test bed get tested with three or four high powered GPUs), the important point to take away is the relationship between the numbers. These boards are all under the same conditions, and thus the differences between them should be easy to spot.

Power Consumption: Long Idle with GTX 770

Power Consumption: Idle with GTX 770

Power Consumption: OCCT Load with GTX 770

With the small form factor system, one would hope that the power consumption is low due to the lack of other components compared to the larger ATX and EATX motherboards. Thankfully, the X99E-ITX falls in line, almost matching the OC Formula but coming top in each metric. Part of this will be due to only having two modules of DRAM installed.

Windows 7 POST Time

Different motherboards have different POST sequences before an operating system is initialized. A lot of this is dependent on the board itself, and POST boot time is determined by the controllers on board (and the sequence of how those extras are organized). As part of our testing, we look at the POST Boot Time using a stopwatch. This is the time from pressing the ON button on the computer to when Windows 7 starts loading. (We discount Windows loading as it is highly variable given Windows specific features.) 

Windows 7 POST Time - Default

Windows 7 POST Time - Stripped

By virtue of having fewer components, one would also assume a quicker POST time. One of the big issues with POST time for X99 is DRAM testing/training at POST, which can take ten seconds and is required to ensure stability. By virtue of having fewer memory channels to be populated, the X99E-ITX gets nearer 15 seconds than the 20 second benchmark we normally have with X99 motherboards.

Rightmark Audio Analyzer 6.2.5

Rightmark:AA indicates how well the sound system is built and isolated from electrical interference (either internally or externally). For this test we connect the Line Out to the Line In using a short six inch 3.5mm to 3.5mm high-quality jack, turn the OS speaker volume to 100%, and run the Rightmark default test suite at 192 kHz, 24-bit. The OS is tuned to 192 kHz/24-bit input and output, and the Line-In volume is adjusted until we have the best RMAA value in the mini-pretest. We look specifically at the Dynamic Range of the audio codec used on board, as well as the Total Harmonic Distortion + Noise.

Rightmark: AA, Dynamic Range, 24-bit / 192 kHz

Rightmark: AA, THD+N, 24-bit / 192 kHz

By having a smaller motherboard, ASRock is unable to implement the normal features around their improved ALC1150 audio solution. This technically should give a slightly noisier signal, and as a result the X99E-ITX/ac has a lower dynamic range than the other X99 motherboards with the ALC1150.

USB Backup

For this benchmark, we transfer a set size of files from the SSD to the USB drive using DiskBench, which monitors the time taken to transfer. The files transferred are a 1.52 GB set of 2867 files across 320 folders – 95% of these files are small typical website files, and the rest (90% of the size) are small 30 second HD videos. In an update to pre-Z87 testing, we also run MaxCPU to load up one of the threads during the test which improves general performance up to 15% by causing all the internal pathways to run at full speed.

Due to the introduction of USB 3.1, as of June 2015 we are adjusting our test to use a dual mSATA USB 3.1 Type-C device which should be capable of saturating both USB 3.0 and USB 3.1 connections. We still use the same data set as before, but now use the new device. Results are shown as seconds taken to complete the data transfer. As this way of testing is still new, we have only a few results so far.

USB 3.0 Copy Times

DPC Latency

Deferred Procedure Call latency is a way in which Windows handles interrupt servicing. In order to wait for a processor to acknowledge the request, the system will queue all interrupt requests by priority. Critical interrupts will be handled as soon as possible, whereas lesser priority requests such as audio will be further down the line. If the audio device requires data, it will have to wait until the request is processed before the buffer is filled.

If the device drivers of higher priority components in a system are poorly implemented, this can cause delays in request scheduling and process time.  This can lead to an empty audio buffer and characteristic audible pauses, pops and clicks. The DPC latency checker measures how much time is taken processing DPCs from driver invocation. The lower the value will result in better audio transfer at smaller buffer sizes. Results are measured in microseconds.

DPC Latency

In The Box, Test Setup and Overclocking CPU Performance
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  • leexgx - Wednesday, June 24, 2015 - link

    needs to be DDR4 ECC RDIMM (registered but not buffered) not buffered or Chipkill (the link you posted seems buffered or a chipkill like ram)
  • bebimbap - Wednesday, June 24, 2015 - link

    I remember on one of the asrock boards, the z97e itx ac, had its M.2 on the back of the motherboard.
    With a x99 platform, if you save 16 for the cpu you have at least 12 lanes to work with, so reasonably you could add 3 M.2 slots on the back, or 6 M.2 slots each with pcie3.0-4x.
    I understand there is probably a Z height restriction on the back of the board, and probably costs, since you have to plan 2 sides of the board, routing, flexing, etc. However I believe if a M.2 slot can fit, i'm sure most of the transistors and chips such as the sound, LAN, a lot of resistors, wifi, maybe another 2 slots of memory on the back, or all 4, flat of course, and maybe even the PCH with a revised heatsink of course can fit. If more items were on the back of the board, you could fit the CPU socket closer to the pcie slot and allow for all 4 channels of memory. It would be a monster of a rig. 4 channels of ddr4 + 3-6 M.2 pcie3.0x4 in raid0 + pcie3.0x16

    Though it might be $400+, I'm sure there would be some interest a fractional proportion to the all out x99 extreme11 series. It would certainly interest me.
  • WithoutWeakness - Wednesday, June 24, 2015 - link

    I love this board. I've had it for a little over a month now running my Plex server/NAS. I had an i5-4440 on an mITX Gigabyte board but it could only handle ~3 1080p transcodes before it started to struggle. Once ASRock released this board I grabbed it and tossed a i7-5820K in and now it has no issues transcoding 6+ streams. I haven't even gotten around to overclocking the 5820K yet.

    Absolutely amazing how they managed to cram that socket and the powerful VRM solution on this board and still have enough space to fit things like the M.2 slot. ASRock has some impressive engineers on staff. For my use case I needed as many cores as possible in the smallest space as I had already invested in my Node 304 and really didn't want to move to another case. I did need to buy an SFX power supply as I was concerned about my ATX power supply blocking the right-angle SATA ports but that specific issue is due to the layout of the Node 304.
  • DCide - Wednesday, June 24, 2015 - link

    If it's like their mATX board, just start with the slowest (4GHz) OC pre-set in the BIOS. It runs very stably for me.

    You can fine tune it later if you want to, but in the meantime you can get significant performance benefits right away.
  • Samus - Thursday, June 25, 2015 - link

    I can't wait to get mine. Just ordered it after reading this review, which provided proof of what I suspected all along...quad-channel doesn't provide much in the way of general performance, just like triple-channel didn't provide much performance on X58.

    Of all the things dual-channel will bottle-neck, the only program I use that would be affected is WinRAR and that's negligible.

    ASRock gets a LOT of street cred for making such a bold product. This is the kind of thing DFI or ABIT would have made if they were still around. An ultra-enthusiast, niche, and risky product. It's possible they won't even break even on this considering the amount of engineering that went into it. Margins are already razor thin on motherboards so they need to sell tens of thousands of these to make any money, even at $250 a pop.
  • BubbaJoe TBoneMalone - Wednesday, June 24, 2015 - link

    I'm surprised the other manufacturers are not giving ASRock any competition with their own X99 Mini-ITX motherboard.
  • T1beriu - Wednesday, June 24, 2015 - link

    Where's your Fury X review?! :(

    Where's your Radeon 300 series review?

    Have you lost your contacts with AMD PR or lack of time?
  • Ian Cutress - Wednesday, June 24, 2015 - link

    Check the first sentence of the review.
  • just4U - Wednesday, June 24, 2015 - link

    Is that something he's been battling for a bit now? We had this flu going around in Canada this past winter that easily throws you for a loop for 3 weeks.. just as you start to think your getting better it knocks you on your ass even worse. Nasty little virus.

    heh.. he's going to be a busy little beaver.. He mentioned something about the 960 review coming up this week as well.
  • Samus - Thursday, June 25, 2015 - link

    When I get sick, I get sick for weeks, too. Fortunately it's only once a year for me.

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