System Performance

Not all motherboards are created equal. On the face of it, they should all perform the same and differ only in the functionality they provide - however, this is not the case. The obvious pointers are power consumption, but also the ability for the manufacturer to optimize USB speed, audio quality (based on audio codec), POST time and latency. This can come down to manufacturing process and prowess, so these are tested.

Power Consumption

Power consumption was tested on the system while in a single GPU configuration with a wall meter connected to the Corsair HX 750 power supply. This power supply is Platinum rated. As I am in the US on a 120 V supply, leads to ~87% efficiency > 75W, and 92%+ efficiency at 375W, 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: Long Idle (w/ GTX 980)

Power: OS Idle (w/ GTX 980)

Power: Prime95 Blend (w/ GTX 980)

The Power Consumption tests show the Apex using a bit more more power than the rest of our data sets coming in at 44W, 49W, and 146W, with all boards within a couple of watts of each other. Nothing out of the ordinary here. 

Non-UEFI 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 10 starts loading. (We discount Windows loading as it is highly variable given Windows specific features.

Non UEFI POST Time

POST times for the Apex, are pretty quick coming in at 21.7 seconds default and 20.3 seconds stripped which places this in the top half of our results. In fact both ASUS boards so far have the fastest boot times on this platform.

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. 

Deferred Procedure Call Latency

Our DPC latency results for the Apex was over our 300 microsecond mark coming in at 328. I uninstalled and reinstalled the Audio drivers as well as chipset and ME drivers to see if I was able to get the times down, but was not successful. While the latency value is higher than other boards, I was not able to make the system hitch or cut out the sound during my use.  

Benchmark Overview CPU Performance: Short Form
Comments Locked

39 Comments

View All Comments

  • evernessince - Friday, May 18, 2018 - link

    That's a limitation of the chipset. If you want more USB ports on a consumer motherboard you have to get a Ryzen motherboard. The X370 Hero has 14 USB ports on it. Ryzen and the X370 chipset simply support more USB ports.
  • WithoutWeakness - Friday, May 11, 2018 - link

    > Regular ATX board that they decided to have random cutouts and extensions on the PCB that now requires an E-ATX compatible chassis
    > 10 fan/pump headers and water flow and temperature headers
    > 4 full-length PCIe slots and an included SLI-HB bridge
    > 5 Gigabit ethernet
    > Only 2 RAM slots???
    > $400???

    I understand the appeal of the overclocking features and why people would look to buy this board if they wanted to push their overclocks another 100MHz but why is there such an absolutely absurd mishmash of features included like 4x PCIe lanes (without a PLX chip) and 5GbE? I feel like they took their original design for what should be the Maximus X Extreme and just started haphazardly trimming features like RAM slots and PLX support until they hit the $400 price point and said "ship it".

    Really interested in the opinion of anyone who be looking to buy this board.
  • ggathagan - Friday, May 11, 2018 - link

    I don't disagree with your overall point, but limiting the board to a pair of DIMM slots makes sense for a board that purports to be focused on overclocking.
    I don't recall any motherboard that can overclock with 4 DIMM slots populated as well as it can with only 2 slots populated.
  • mapesdhs - Monday, May 14, 2018 - link

    Rampage IV Extreme might come close.
  • The_Assimilator - Friday, May 11, 2018 - link

    > talks about DIMM.2 slot
    > doesn't show any pictures of it with M.2 drives installed
    > doesn't do any M.2 tests at all in fact
  • Billy Tallis - Friday, May 11, 2018 - link

    What kind of tests do you want? It's a passive PCIe riser. It doesn't affect performance, it just relocates the M.2 slots away from your GPU(s).
  • The_Assimilator - Saturday, May 12, 2018 - link

    "It doesn't affect performance" Patently false, since reviews of M.2 drives by many sites - including this very one - have demonstrated that the highest-end models throttle during sustained workloads.

    Regardless of performance, DIMM.2 is a feature unique to this motherboard, and as such it should be covered by any review.

    The test is relatively simple: temperatures/sustained transfer rates of a drive when using DIMM.2, vs those of the same drive mounted directly against the motherboard, vs that drive mounted against the motherboard but with the motherboards's supplied M.2 heatsink applied. For example, this board vs the recently-reviewed X299 XPower Gaming AC's M.2 cooling solution.

    It should be something relatively simple to do and would make a great stand-alone article to answer the question that many people have, namely whether these fancy cooling solutions do have an effect on their M.2 drives' temperatures.
  • SlyNine - Friday, May 11, 2018 - link

    Glad to see some more AMD *squints eyes* Intel boards
  • CityZ - Friday, May 11, 2018 - link

    You see that connector between the SATA ports and the molex? Guess what it is.
  • boozed - Friday, May 11, 2018 - link

    The opening sentence gave me cancer.

Log in

Don't have an account? Sign up now