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, POST time and latency. This can come down to the manufacturing process and prowess, so these are tested.

For Z490 we are running using Windows 10 64-bit with the 1909 update.

Power Consumption

We test power consumption on the system while in a single MSI GTX 1080 Gaming configuration with a wall meter connected to the power supply. our 850W 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 1080)Power: OS Idle (w/ GTX 1080)Power: Prime95 Blend (w/ GTX 1080)

From our initial review of the ASRock, we switched to a more suitable 850 W power supply and we re-tested each of the boards. The ASUS performs consistently in our power testing narrowly losing out to the Biostar in our long idle test. At load, the ASUS shows its efficiency. 

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

The ASUS board blitzes out the competition in regards to POST times, with a solid four second lead over the next board at default settings. Disabling non-essential components such as networking and audio controllers yielded a slight gain in POST time, with a 0.4-second variance over default.

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 DPC latency from out of the box with default settings. From our initial reviews, we saw the ASUS board achieved a high DPC latency, so we decided to re-test. The ASUS performed much better after the re-test which went from 193.6 microseconds down to 130.8 microseconds which is a much more reasonable result.

Board Features, Test Bed and Setup CPU Performance, Short Form
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  • Tom Sunday - Tuesday, December 29, 2020 - link

    Looking for Mobo deal at the computer show this past weekend the boys from Varanasi told me that Z490 buyers have been experiencing 'unsolvable' problems in getting their LAN to work. ASUS cannot help and is basically all talk. Not even a new BIOS update, driver hotfixes and new cables will help. Even INTEL updated drivers are not working. It appears that there are problems with the I225-V (LAN Chip) and Asus want to keep this issue hushed. Simply this being a hardware problem and no software or driver updates can permanently fix it. What has been done to date is only bandaging the problem. Many new Mobo purchaser's in frustration (disconnected their onboard NIC) and installed a new PCIE NIC and gotten it to work without a hitch! But its another $50 or so out of pocket to simply forego the downtime, hanging on the telephone and difficult RMA's. Will the new Z590 Mobo's in early 2021 get a new NIC chip? Anyway, the best advice is probably to stay away from purchasing any (2020) Z490 leftover boards using the embedded I225-V Ethernet controller and buy in a few weeks time a Z590 MOBO if INTEL is ones choice. Any Thoughts?
  • Tom Sunday - Monday, January 18, 2021 - link

    Hanging around our local strip center PC shop I found that many were looking to snatch Z490 Asus mobos on sale, now that the very expensive Z590's have been announced. But the word was still that ASUS Prime, Hero and the entire Strix lineup still maintain to have (Ethernet) LAN issues. Supposedly Asus has introduced a reissue of the boards with an actual LAN hardware replacement? Previous Bios updates and hours playing with new and old drivers never worked. But Amazon as late as this past December is still issuing RMA's and selling these boards with no LAN fixes. Looks like many such boards are still on the shelves with these problems. How do I differentiate a Hero board which apparently has the hardware Lan fix? I checked Gigabyte at Amazon and found none of these LAN issues among the certified buyers. I have been using Asus mobos for a long time but now the story goes on...what's the scoop? WTF!

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