Testing Methodology

Although the testing of a cooler appears to be a simple task, that could not be much further from the truth. Proper thermal testing cannot be performed with a cooler mounted on a single chip, for multiple reasons. Some of these reasons include the instability of the thermal load and the inability to fully control and or monitor it, as well as the inaccuracy of the chip-integrated sensors. It is also impossible to compare results taken on different chips, let alone entirely different systems, which is a great problem when testing computer coolers, as the hardware changes every several months. Finally, testing a cooler on a typical system prevents the tester from assessing the most vital characteristic of a cooler, its absolute thermal resistance.

The absolute thermal resistance defines the absolute performance of a heatsink by indicating the temperature rise per unit of power, in our case in degrees Celsius per Watt (°C/W). In layman's terms, if the thermal resistance of a heatsink is known, the user can assess the highest possible temperature rise of a chip over ambient by simply multiplying the maximum thermal design power (TDP) rating of the chip with it. Extracting the absolute thermal resistance of a cooler however is no simple task, as the load has to be perfectly even, steady and variable, as the thermal resistance also varies depending on the magnitude of the thermal load. Therefore, even if it would be possible to assess the thermal resistance of a cooler while it is mounted on a working chip, it would not suffice, as a large change of the thermal load can yield much different results.

Appropriate thermal testing requires the creation of a proper testing station and the use of laboratory-grade equipment. Therefore, we created a thermal testing platform with a fully controllable thermal energy source that may be used to test any kind of cooler, regardless of its design and or compatibility. The thermal cartridge inside the core of our testing station can have its power adjusted between 60 W and 340 W, in 2 W increments (and it never throttles). Furthermore, monitoring and logging of the testing process via software minimizes the possibility of human errors during testing. A multifunction data acquisition module (DAQ) is responsible for the automatic or the manual control of the testing equipment, the acquisition of the ambient and the in-core temperatures via PT100 sensors, the logging of the test results and the mathematical extraction of performance figures.

Finally, as noise measurements are a bit tricky, their measurement is being performed only manually. Fans can have significant variations in speed from their rated values, thus their actual speed during the thermal testing is being acquired via a laser tachometer. The fans (and pumps, when applicable) are being powered via an adjustable, fanless desktop DC power supply and noise measurements are being taken 1 meter away from the cooler, in a straight line ahead from its fan engine. At this point we should also note that the Decibel scale is logarithmic, which means that roughly every 3 dB(A) the sound pressure doubles. Therefore, the difference of sound pressure between 30 dB(A) and 60 dB(A) is not "twice as much" but nearly a thousand times greater. The table below should help you cross-reference our test results with real-life situations.

The noise floor of our recording equipment is 30.2-30.4 dB(A), which represents a medium-sized room without any active noise sources. All of our acoustic testing takes place during night hours, minimizing the possibility of external disruptions.

<35dB(A) Virtually inaudible
35-38dB(A) Very quiet (whisper-slight humming)
38-40dB(A) Quiet (relatively comfortable - humming)
40-44dB(A) Normal (humming noise, above comfortable for a large % of users)
44-47dB(A)* Loud* (strong aerodynamic noise)
47-50dB(A) Very loud (strong whining noise)
50-54dB(A) Extremely loud (painfully distracting for the vast majority of users)
>54dB(A) Intolerable for home/office use, special applications only.

*noise levels above this are not suggested for daily use

The Thermalright Macho Zero Testing results, maximum fan speed (12 Volts)
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  • jenesuispasbavard - Tuesday, July 7, 2015 - link

    I've had great performance with the Spire Thermax Eclipse II for five years now, and for the last three years, even better performance when paired with two Corsair SP120's. It's still the highest rated heatsink on Frostytech; not sure why it isn't included here.
  • jenesuispasbavard - Tuesday, July 7, 2015 - link

    Edit: Maybe too old? Released in mid-2010 I think.
  • Iketh - Tuesday, July 7, 2015 - link

    did I miss the thermal medium? what paste is used? I've looked over the article twice
  • Beany2013 - Wednesday, July 8, 2015 - link

    Whatever was supplied - it's a test of the product as supplied (for most of them) or as recommended by the manufacturer (as in the TR one, where they provided a suitable fan when requested, as the rest came with one).

    Thermal pastes are best tested on *one* cooled as a known quantity, really, which would be a separate test of it's own, I'd say.
  • Iketh - Tuesday, July 7, 2015 - link

    also, EVGA's cpu ACX cooler should be in a cheaper roundup
  • creed3020 - Wednesday, July 8, 2015 - link

    Thanks for the review! This is certainly your best review since joining AT, kudos to getting a good spread of products from around the world. There were a few in there that I hadn't heard of so it was great that the final results would be a surprise.

    The results were somewhat what I expected and nice to see where each of the companies's products sit. I have to say that not having the Cyrorig on the final recommendation is a bit sad as their products are simply bespoke. I don't have the R1 Ultimate but I do use their C1 in my SFF case on an overlocked Core i5 4690k and the temperature to noise performance is unbelievable, especially compared to some SFF coolers I've used in the past from other vendors.

    Looking forward to more of these, perhaps a SFF cooler showdown could be next...?
  • JimmiG - Wednesday, July 8, 2015 - link

    I went with the Phanteks PH-TC14PE back when I built my Haswell system back in 2013. It and my (de-lidded) 4770K are still holding up fine.

    All those coolers are really close though, especially at full fan speeds. We've probably hit the limit of air cooling with heatpipe technology at this point.
  • PPB - Thursday, July 9, 2015 - link

    Why review the Macho Zero and not the True Spirit 140 Power or the IB-E Extreme? Those 2 are far a better match for the rest of the lineup that the one you reviewed from Thermalright.
  • katinacooker - Saturday, July 11, 2015 - link

    Cryorig stock is availble in the UK from Alternate

    https://www.alternate.co.uk/html/search.html?query...

    I got my R1 Universal from there
  • DPOverLord - Saturday, July 11, 2015 - link

    You can't do a real air cooling review without the Thermalright Silver Arrow, this review is lacking.

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