BAPCo SYSmark 2018

The Gemini Lake UCFF PCs were evaluated using our Fall 2018 test suite for small-form factor PCs. In the first section, we will be looking at SYSmark 2018.

BAPCo's SYSmark 2018 is an application-based benchmark that uses real-world applications to replay usage patterns of business users in the areas of productivity, creativity, and responsiveness. The 'Productivity Scenario' covers office-centric activities including word processing, spreadsheet usage, financial analysis, software development, application installation, file compression, and e-mail management. The 'Creativity Scenario' represents media-centric activities such as digital photo processing, AI and ML for face recognition in photos and videos for the purpose of content creation, etc. The 'Responsiveness Scenario' evaluates the ability of the system to react in a quick manner to user inputs in areas such as application and file launches, web browsing, and multi-tasking.

Scores are meant to be compared against a reference desktop (the SYSmark 2018 calibration system, a Dell Optiplex 5050 tower with a Core i3-7100 and 4GB of DDR4-2133 memory to go with a 128GB M.2 SATA III SSD). The calibration system scores 1000 in each of the scenarios. A score of, say, 2000, would imply that the system under test is twice as fast as the reference system.

SYSmark 2018 - Productivity

SYSmark 2018 - Creativity

SYSmark 2018 - Responsiveness

SYSmark 2018 - Overall

SYSmark 2018 also adds energy measurement to the mix. A high score in the SYSmark benchmarks might be nice to have, but, potential customers also need to determine the balance between power consumption and the efficiency of the system. For example, in the average office scenario, it might not be worth purchasing a noisy and power-hungry PC just because it ends up with a 2000 score in the SYSmark 2014 SE benchmarks. In order to provide a balanced perspective, SYSmark 2018 also allows vendors and decision makers to track the energy consumption during each workload. In the graphs below, we find the total energy consumed by the PC under test for a single iteration of each SYSmark 2018 workload. For reference, the calibration system consumes 5.36 Wh for productivity, 7.71 Wh for creativity, 5.61 Wh for responsiveness, and 18.68 Wh overall.

SYSmark 2018 - Productivity Energy Consumption

SYSmark 2018 - Creativity Energy Consumption

SYSmark 2018 - Responsiveness Energy Consumption

SYSmark 2018 - Overall Energy Consumption

Despite being passively cooled, the ECS LIVA Z2 manages to put up a credible fight against the actively-cooled Arches Canyon NUC. Other than that, the scores are along expected lines, with the June Canyon NUC coming out on top (due to its use of the most powerful Gemini Lake SoC available).

Introduction and Platform Analysis UL Benchmarks - PCMark and 3DMark
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  • mode_13h - Friday, December 21, 2018 - link

    Oops, wrong again.

    https://www.anandtech.com/show/13053/sapphire-unve...

    Real Ryzen cores should run circles around Goldmont+, and even a 3 CU Vega should stand up well to Intel's 18 EU HD Graphics (192 shaders vs. 144). Configurable TDP down to 12 W is comparable to the J5005's 10 W.
    Reply
  • drzzz - Thursday, December 20, 2018 - link

    The configuration comparison table on the first page is broken. It only shows the J5005 config for all possible choices in the right column. The J5005 is configured with what Intel says is an unsupported dimm size which begs the question how is this working? Actually the Pentium N5000 is also limited according to Intel to 8GB dimm modules. What is going on and why should I accept these results as valid if the configurations are not officially supported by Intel? No guarantee the unit I receive would be able to use 16GB modules and no guarantee it will perform like these test units. Disappointed by this article and the testing methodology used. Reply
  • Death666Angel - Thursday, December 20, 2018 - link

    One of the few times Intel ark is wrong in my experience. A lot of the Atom SKUs have wrong max memory sizes. Reply
  • mczak - Thursday, December 20, 2018 - link

    It is not really wrong per se. This is intel's official stance, those chips only support 8GB in total, apparently they want to sell you Core-based chips if you need more.
    But luckily intel didn't go that far and actually really limited them to 8GB, so yes from a technical perspective the ark pages are wrong.
    Noone (at least for home use) should ever care about the official max memory limit (well as long as they know it's only a marketing limitation...).
    Reply
  • Jorgp2 - Thursday, December 20, 2018 - link

    Gemini Lake was also originally listed as supporting HDR10, but was later corrected Reply
  • Ryan Smith - Thursday, December 20, 2018 - link

    "The configuration comparison table on the first page is broken."

    Fixed! Thanks for the heads up.
    Reply
  • fackamato - Thursday, December 20, 2018 - link

    Any chance you can include non-NUC systems on the charts? The graphs are great to see which of the 3 NUCs are faster... but that does not give me a sense of how much slower (if any) these are to a mATX PC, or a 45w CPU, or an AMD APU etc. Reply
  • ganeshts - Thursday, December 20, 2018 - link

    These are results based on our new Fall 2018+ benchmark suite - We actually re-benched a whole lot of systems (starting with the Coffee Lake SODIMM memory scaling piece). I have some other results from systems targeting a different market segment, and I will add them in for the next Gemini Lake review (probably mid Q1 2019) Reply
  • mode_13h - Friday, December 21, 2018 - link

    Please do.

    Thanks.
    Reply
  • Mikewind Dale - Thursday, December 20, 2018 - link

    In the meantime, the Cinebench R15 scores are useful for comparisons. That benchmark is widely available for a variety of CPUs.

    Just for comparison, I have a Core i7-7500U dual core laptop that gets 145/345 in Cinebench R15.

    And online, I see the Core i7-8550U gets a median of 164/558.
    Reply

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