Intel's Core i9-9900K: Technically The Highest Performing Gaming CPU

When Intel announced the new processor lineup, it billed the Core i9-9900K as the ‘world’s best gaming processor’. Here’s Intel’s Anand Srivatsa, showcasing the new packaging for this eight core, sixteen thread, 5.0 GHz giant:

In actual fact, the packaging is very small. Intel didn’t supply us with this upgraded retail version of the box, but we were sampled with a toasty Core i9-9900K inside. We sourced the i7-9700K and i5-9600K from Intel’s partners for this review.

With the claim of ‘world’s best ever gaming processor’, it was clear that this needed to be put to the test. Intel commissioned (paid for) a report into the processor performance by a third party in order to obtain data, which unfortunately had numerous issues, particularly with how the chips it was tested against were benchmarked, but here at AnandTech we’ll give you the right numbers.

For our gaming tests this time around, we put each game through four different resolutions and scenarios, labelled IGP (for 720p), Low (for 1080p), Medium (for 1440p to 4K), and High (for 4K and above). Here’s a brief summary of results:

  • World of Tanks: Best CPU at IGP, Low, Medium, and top class in High
  • Final Fantasy XV: Best CPU or near top in all
  • Shadow of War: Best CPU or near top in all
  • Civilization VI: Best CPU at IGP, a bit behind at 4K, top class at 8K/16K
  • Ashes Classic: Best CPU at IGP, Low, top class at Medium, mid-pack at 4K
  • Strange Brigade DX12/Vulkan: Best CPU or near top in all
  • Grand Theft Auto V: Best CPU or near top in all
  • Far Cry 5: Best CPU or near top in all
  • Shadow of the Tomb Raider: Near top in all
  • F1 2018: Best CPU or near top in all

There’s no way around it, in almost every scenario it was either top or within variance of being the best processor in every test (except Ashes at 4K). Intel has built the world’s best gaming processor (again).

On our CPU tests, the i9-9900K hit a lot of the synthetics higher than any other mainstream processor. In some of our real world tests, such as application loading or web performance, it lost out from time to time to the i7 and i5 due to having hyper-threading, as those tests tend to prefer threads that have access to the full core resources. For memory limited tests, the high-end desktop platforms provide a better alternative.

While there’s no specific innovation in the processors driving the performance, Intel re-checked the box for STIM, last used on the mainstream in Sandy Bridge. The STIM implementation has enabled Intel to push the frequency of these parts. It was always one of the tools the company had in its back pocket, and many will speculate as to the reasons why it used that tool at this point in time.

But overall, due to the frequency push and the core push, the three new 9th Generation processors sit at the top of most of our mixed workload tests, given the high natural frequency, and set a new standard in Intel’s portfolio for being a jack of all trades. If a user has a variable workload, and wants to squeeze performance, then these new processors will should get you there.

So now, if you are the money-no-object kind of gamer, this is the processor for you. But it’s not a processor for everyone, and that comes down to cost and competition.

At $488 SEP, plus a bit more for 'on-shelf price', plus add $80-$120 for a decent cooler or $200 for a custom loop, it’s going to be out of the range for almost all builds south of $1500 where GPU matters the most. When Intel’s own i5-9600K is under half the cost with only two fewer cores, or AMD’s R7 2700X is very competitive in almost every test, while they might not be the best, they’re more cost-effective.

The outlandish flash of the cash goes on the Core i9-9900K. The smart money ends up on the 9700K, 9600K, or the 2700X. For the select few, money is no object. For the rest of us, especially when gaming at 1440p and higher settings where the GPU is the bigger bottleneck, there are plenty of processors that do just fine, and are a bit lighter on the power bill in the process.

Edit: We initially posted this review with data taken with an ASRock Z370 motherboard. After inspection, we discovered that the motherboard used intentionally over-volts 9th Generation Core processors in our power testing. While benchmarking seems unaffected, we have redone power numbers using an MSI MPG Z390 Gaming Edge AC motherboard, and updated the review accordingly.

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  • 3dGfx - Friday, October 19, 2018 - link

    game developers like to build and test on the same machine
  • mr_tawan - Saturday, October 20, 2018 - link

    > game developers like to build and test on the same machine

    Oh I thought they use remote debugging.
  • 12345 - Wednesday, March 27, 2019 - link

    Only thing I can think of as a gaming use for those would be to pass through a gpu each to several VMs.
  • close - Saturday, October 20, 2018 - link

    @Ryan, "There’s no way around it, in almost every scenario it was either top or within variance of being the best processor in every test (except Ashes at 4K). Intel has built the world’s best gaming processor (again)."

    Am I reading the iGPU page wrong? The occasional 100+% handicap does not seem to be "within variance".
  • daxpax - Saturday, October 20, 2018 - link

    if you noticed 2700x is faster in half benchmarks for games but they didnt include it
  • nathanddrews - Friday, October 19, 2018 - link

    That wasn't a negative critique of the review, just the opposite in fact: from the selection of benchmarks you provided, it is EASY to see that given more GPU power, the new Intel chips will clearly outperform AMD most of the time - generally with average, but specifically minimum frames. From where I'm sitting - 3570K+1080Ti - I think I could save a lot of money by getting a 2600X/2700X OC setup and not miss out on too many fpses.
  • philehidiot - Friday, October 19, 2018 - link

    I think anyone with any sense (and the constraints of a budget / missus) will be stupid to buy this CPU for gaming. The sensible thing to do is to buy the AMD chip that provides 99% of the gaming performance for half the price (even better value when you factor in the mobo) and then to plough that money into a better GPU, more RAM and / or a better SSD. The savings from the CPU alone will allow you to invest a useful amount more into ALL of those areas. There are people who do need a chip like this but they are not gamers. Intel are pushing hard with both the limitations of their tech (see: stupid temperatures) and their marketing BS (see: outright lies) because they know they're currently being held by the short and curlies. My 4 year old i5 may well score within 90% of these gaming benchmarks because the limitation in gaming these days is the GPU. Sorry, Intel, wrong market to aim at.
  • imaheadcase - Saturday, October 20, 2018 - link

    I like how you said limitations in tech and point to temps, like any gamer cares about that. Every game wants raw performance, and the fact remains intel systems are still easier to go about it. The reason is simple, most gamers will upgrade from another intel system and use lots of parts from it that work with current generation stuff.

    Its like the whole Gsync vs non gsync. Its a stupid arguement, its not a tax on gsync when you are buying the best monitor anyways.
  • philehidiot - Saturday, October 20, 2018 - link

    Those limitations affect overclocking and therefore available performance. Which is hardly different to much cheaper chips. You're right about upgrading though.
  • emn13 - Saturday, October 20, 2018 - link

    The AVX 512 numbers look suspicious. Both common sense and other examples online suggest that AVX512 should improve performance by much less than a factor 2. Additionally, AVX-512 causes varying amounts of frequency throttling; so you;re not going to get the full factor 2.

    This suggests to me that your baseline is somehow misleading. Are you comparing AVX512 to ancient SSE? To no vectorization at all? Something's not right there.

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