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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  • AssBall - Tuesday, July 7, 2015 - link

    No it isn't. The mounting mechanisms on these higher priced sinks are, as, had you read the article, solid. If you are missing an arm and wanted to mount a 100$ heat sink in your 25$ case, you might care about the weight, in which case, the manufacturer's website is a one armed lazy click away.
  • Schickenipple - Monday, July 6, 2015 - link

    Cheaper still, at under $50, is the ZALMAN CNPS9500A. I use it on almost every build due to it's all-copper design and razor thin fins. I can keep the fan on the lowest speed without my Core i7 going over 40 Deg. C under load. It's silent no matter what I'm doing.

    My only complaint is that the fan is not PWM. Quibbles.
  • meacupla - Monday, July 6, 2015 - link

    The only thing I haven't liked about Zalman, is that the fans they use in their heatsinks aren't exactly the quietest and are usually not easily swappable. At least, not when compared against manufacturers like Scythe and Noctua.
  • Nfarce - Monday, July 6, 2015 - link

    I have the 9700LED variant of that design for my old Core 2 Duo E8400 build. It does okay for medium overclocks (running my 3.0GHz E8400 at 3.4GHz), but that was about it. And considering I paid $55 for it back in 2009 when I built that rig (about $60 in today's money), it wasn't exactly a cheap option. I would have spent a little more for a better cooler so I could get a higher overclock, but the new Sandy Bridge chipset was coming out soon and I decided to just keep it as a backup rig.
  • Eidigean - Monday, July 6, 2015 - link

    The conversion from Euro to Dollar for the Reeven Okeanos is incorrect. 60€ != $54. 60€ == $66. I think you divided instead of multiplied.
  • GeekTech - Monday, July 6, 2015 - link

    I just want to mention that the Cryorig R1 Ultimate CPU Cooler that you listed and said was currently available only through a foreign store registered in Amazon.com that ships from Korea is currently being sold at PC Case Gear here in Australia for AU$89 (US$66.82).

    Link: https://www.pccasegear.com/index.php?main_page=pro...
  • letmepicyou - Monday, July 6, 2015 - link

    I would have liked to see the Noctua's real arch nemesis included in this shootout, the Thermalright Silver Arrow. Crushes the Macho Zero. I have a Silver Arrow on my i7 4790k running seti@home, and it owns.
  • Innokentij - Tuesday, July 7, 2015 - link

    The Phanteks PH-TC14PЕ is a better cooler using noctunas own fans on it and even better if u add AF140 fans to it . Is why i took it over the Noctua for myself.

    http://www.xbitlabs.com/articles/coolers/display/n...
  • UltraWide - Monday, July 6, 2015 - link

    There is an updated version of the noctua: http://www.noctua.at/main.php?show=productview&...
  • Eidigean - Monday, July 6, 2015 - link

    It's not so much as updated, as it is an off-center version of the same NH-D15. I would need the NH-D15S that you linked to on my MB as the former would hit my GPU in the first slot. I was considering modifying the D15 to move it up and away until I saw the D15S. A good link none the less.

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