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 the manufacturing process and prowess, so these are tested.

For TRX40 we are running using Windows 10 64-bit with the 1909 update as per our Ryzen Threadripper 3960X and 3970X CPU review.

Power Consumption

Power consumption was tested on the system while in a single ASUS GTX 980 GPU configuration with a wall meter connected to the Thermaltake 1200W power supply. This power supply has ~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 testbed 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 1080)

The MSI Creator TRX40 not only delivers solid figures in both long idle and idle power states, but it also performs efficiently in our load testing with a reading which peaked at the wall of 344 W.

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 starts loading. (We discount Windows loading as it is highly variable given Windows specific features.)

Non UEFI POST Time

In our non-UEFI POST time test, the MSI Creator TRX40 performed with will a POST of 30.1 seconds at default settings, and 27.3 seconds with all the non-vital controllers disabled. This puts it quicker than ASRock's TRX40 Taichi by just under a second, but ASUS's ROG Zenith II Extreme is the current leader in our testing so far.

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

We test the DPC at the default settings straight from the box, and the MSI Creator TRX40 did well with a latency time of 180.3 us. This isn't as good as the ASUS ROG Zenith II Extreme, but both models are streets ahead of the ASRock TRX40 Taichi in terms of DPC Latency.

Board Features, Test Bed and Setup CPU Performance, Short Form
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  • milkywayer - Wednesday, February 26, 2020 - link

    Can someone ninja ban this troll please?
  • WaltC - Wednesday, February 26, 2020 - link

    But imagine spending $20,000 on the closest useless Intel system that runs much slower on top of being far more expensive--"ouch"!--so there's "useless" and then there's "Intel useless"--grow up, guy...;)
  • twtech - Thursday, February 27, 2020 - link

    Yeah, totally useless. Don't buy it if you can't use it.
  • MDD1963 - Thursday, February 27, 2020 - link

    While *I* personally have no use for more than 8 cores, I'd certainly never refer to any systems that have many more cores as 'useless'. If you are alluding to the WIndows 10 above 64 threads issues, then use Linux. If you can't, perhaps your preferred term 'useless' should be fairly applied elsewhere...? :)
  • beedoo - Thursday, February 27, 2020 - link

    I've always wondered, do you have mental issues?
  • twtech - Saturday, March 28, 2020 - link

    It's useless if you don't have a use for it, sure.
  • airdrifting - Wednesday, February 26, 2020 - link

    Random error code 06 and no bifurcation on two of the PCIe slots. Fail.
  • airdrifting - Wednesday, February 26, 2020 - link

    Also, the included M.2 card is a giant 2 slot one.
  • rrinker - Wednesday, February 26, 2020 - link

    And why would that be a problem? There's a perfect place for it - in the slot just above the heatsink for the on-board M.2 slots. It's already a double wide space, so it would not obstruct the bottom most slot.
  • airdrifting - Wednesday, February 26, 2020 - link

    Because it does NOT need to be a 2 slot card. Both ASUS and ASRock has a single slot solution and they were able to keep my four Sabrent 4TB SSDs in RAID 0 under 40C during sustained transfer. Also I need a second video card for my build, without bifurcation the other two PCIe x 16 slots were literally useless.

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