Overclocking Ryzen 3000

Experience with the ASUS Pro X570-Ace

The expected overclocking potential prior to the launch of the Ryzen 3000 series hasn't lived up to all the hype that was surrounding it. Regardless of this, the limitations could be in the new 7 nm manufacturing process, the use of the chiplet design, or the very high temperature that these processors run at when overclocked. It remains to be seen in the next revision whether or not the clock speeds will be more fruitful for what enthusiasts expect, but when overclocking the Ryzen 3000 processors, premium cooling methods such as high-end AIOs and custom water cooling is needed. 

Overclocking our Ryzen 7 3700X using the ASUS Pro WS X570-Ace via the firmware was easy without much pomp and show. All of the overclocking options including both the CPU, memory, voltage and power settings can be found within the Ai Tweaker section. Users can either opt to use the basic overclocking functions within the AI Suite 3 software or use the acclaimed Ryzen Master overclocking software which as far as AMD overclocking goes, works very well. When overclocking the memory on ASUS branded AMD motherboards, what is more commonly known as X.M.P is called D.O.C.P; this is the exact same thing, no difference, just a different naming structure. 

The power-related settings can be found under the External Digi+ Power Control menu, with options for variables such as Load-Line Calibration which is useful for eliminating VDroop on the CPU VCore, VDDSoC settings, and enabling or disabling spread spectrum. There are no real overclocking presets to select from and that's okay given that this model is more for professional users, but there are three performance enhancer settings to select from.

Overclocking Methodology

Our standard overclocking methodology is as follows. We select the automatic overclock options and test for stability with POV-Ray and OCCT to simulate high-end workloads. These stability tests aim to catch any immediate causes for memory or CPU errors.

For manual overclocks, based on the information gathered from the previous testing, starts off at a nominal voltage and CPU multiplier, and the multiplier is increased until the stability tests are failed. The CPU voltage is increased gradually until the stability tests are passed, and the process repeated until the motherboard reduces the multiplier automatically (due to safety protocol) or the CPU temperature reaches a stupidly high level (105ºC+). Our testbed is not in a case, which should push overclocks higher with fresher (cooler) air.

Overclocking Results

The ASUS Pro WS X570-Ace has a capable 12+2 phase power delivery running in 6+1 configuration with an ASP1405I which operates at 6+1.  While running the manual overclock testing, we noticed very little VDroop once we ran 3.7 GHz at 1.250 V and above, all the way to 4.3 GHz at 1.375V. This shows that the automatic LLC setting runs pretty much spot on in our testing which means that what voltage is set in the firmware, is the voltage that our Ryzen 7 3700X ran at when under full load.

Performance in our POV-Ray testing from 3.6 GHz to 4.3 GHz showed a consistent increase in performance, and the ASUS Pro WS X570-Ace managed to push our Ryzen 7 3700X to its limitations of 4.3 GHz at 1.375 V. We did go for 4.4 GHz, but even with 1.550 V on the CPU VCore which for the record is way too much, it still wasn't any more stable. 

When using the three levels of performance enhancement profiles, we found that they pumped a similar amount of CPU VCore voltage (around 1.375-1.384 V), but it didn't quite match up to the performance in POV-Ray than our manually overclocked 4.3 GHz with 1.375 V. All three profiles we're actually similar to just enabling Precision Boost Overdrive in terms of temperatures, POV-Ray performance and power draw; these are more PBO focused enhancements as opposed to overclocking profiles. 

Gaming Performance Power Delivery Thermal Analysis
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  • xelc - Tuesday, August 13, 2019 - link

    Here's picture of the board from back https://t1.daumcdn.net/cfile/tistory/99A240425D3D7... It looks like there are four screws holding the chipset heatsink.
  • xelc - Tuesday, August 13, 2019 - link

    remove the period at the end of the link
  • Peter2k - Tuesday, August 13, 2019 - link

    Der8auer actually replaced that chipset fan with a simple "ye ol" passive fan, like we had in the past

    Not that gamery awesome looking, so bit tall and black
    Worked well, it seemed
  • jabber - Monday, August 12, 2019 - link

    That is a cool looking board! One any adult could be seen with.
  • Alistair - Monday, August 12, 2019 - link

    You know you can turn off the lights right? Adults aren't disturbed by the fact that their motherboard hidden in their case can be turned on. This motherboard is a royal ripoff, you get all the features except the 3rd x8 slot in a board half the price.
  • Operandi - Monday, August 12, 2019 - link

    I appreciated the minimalist aesthetics and lack of "gamer brah" marketing BS. I don't care that it can be turned off, I never want to see it period.

    As to the price this board is a beast and it has some unique features; its price accordingly. Margins on high-end boards are probably less than you expect.
  • jabber - Monday, August 12, 2019 - link

    Yep and some of us don't like paying for kiddie crap we don't want. I'd rather they spend the $20 worth of RGB on better power delivery or a better Ethernet chip, that kind of thing.

    Or just knock $20 off the price. That goes a good way with a SSD or some ram.
  • Alistair - Monday, August 12, 2019 - link

    except this motherboard is an extra $180 for no reason, so removing a 5 cent led that can be turned off in the bios probably won't help, but whatever...
  • CheapSushi - Tuesday, August 13, 2019 - link

    I like the board too. But if you can't see your board, then what are you complaining about? Whining is something children do.
  • Thunder 57 - Tuesday, August 13, 2019 - link

    Yea I hate how it seems everything is "gamer this" or "gamer that".

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