Power Consumption and Thermal Performance

The power consumption at the wall was measured with a 1080p display being driven through the HDMI port. In the graphs below, we compare the idle and load power of the Intel NUC5i7RYH with other low power PCs evaluated before. For load power consumption, we ran Furmark 1.12.0 and Prime95 v27.9 together. The numbers are not beyond the realm of reason for the combination of hardware components in the machine.

Idle Power Consumption

Load Power Consumption (Prime95 + FurMark)

In the steady state, the clocks are managed in order to ensure that the at-wall power consumption stays within the limits of the thermal design's capabilities. As we will see further down, the unit can consume more than 55 W at the wall for short bursts before the thermal management kicks in.

Our thermal stress routine starts with the system at idle, followed by 30 minutes of pure CPU loading. This is followed by another 30 minutes of both CPU and GPU being loaded simultaneously. After this, the CPU load gets removed, allowing the GPU to be loaded alone for another 30 minutes. The various clocks in the system as well as the temperatures within the unit are presented below.

According to Intel's official specifications, the junction temperature of the Core i7-5557U is 105C. We find that pure CPU loading takes us close to it with turbo frequencies (3.4 GHz). However, before thermal throttling can kick in, the CPU cores revert to the rated operating frequency of 3.1 GHz. At that frequency, the cores have no trouble staying below the junction temperature.

The case of CPU and GPU getting loaded simultaneously is more interesting. The CPU cores run at 1.5 GHz and the GPU around 750 MHz. The temperature of the CPU package doesn't go above 85 C in this scenario. Obviously, we are not being thermally limited. The at-wall power consumption graph provides more insight.

The limiting factor on the performance / operating frequencies turns out to be the at-wall power consumption. With both CPU and GPU loaded simultaneously, the unit has a sustained power consumption of around 45 W, and we find that the number is similar for both the CPU-only and GPU-only scenarios.

On the whole the thermal design works well. As long as the limiting factors for the performance of the NUC are understood, the end users should not be in for any surprises.

 

HTPC Credentials Final Words
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  • jameskatt - Wednesday, April 22, 2015 - link

    Yikes! This Intel's NUCs are expensive. $300 I'd bite. $900 no way.
  • extide - Thursday, April 23, 2015 - link

    On the last page you lambash this unit for having mini-HDMI, yet in the photo's it appears to have full-size HDMI. I see mini displayport there though, did you mean to say mini displayport instead of mini-hdmi?
  • DG4RiA - Sunday, April 26, 2015 - link

    In the Power Consumption and Thermal Performance section, did I read the graph correctly in that the CPU will throttle down to around 1.5 GHz when the GPU is loaded ? That's like half the speed. Where I'm this i7 NUC cost nearly $200 more than the i5 NUC, what's the point if it will only run at the i5 speed when it really matter.

    I've been undecided between buying this i7 NUC and the Brix Pro 4770R. I prefer the Brix Pro performance but the overheating and high failure rate of the Brix Pro in the long run has kept me away from buying it. But this NUC can reach 105 degrees anyway. Anyone here own Brix Pro 4770R willing to comment ?
  • massib80 - Wednesday, April 29, 2015 - link

    I love my NUC! I'm using very successfully as a Plex Media Server :)

    Here if you are interested: http://www.nas-ho.me/?p=61
  • raymov - Thursday, April 30, 2015 - link

    What is the height in mm with the lid & rubber feet removed?
    I am trying to figure out if it will fit within 1 rack unit?
    http://en.wikipedia.org/wiki/Rack_unit = 1.75 inches (44.45 mm)
  • Ethos Evoss - Saturday, May 2, 2015 - link

    shame u anandtech didnt make price vs preformance comparsion

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