Silent Wings Pro 4 (BL098) in-depth review: Hard BeQuiet! KO

To write that we have something mapped out to the last detail is perhaps too bold, but after proper preparation, few pieces of hardware are as easy to evaluate as fans. Of course, this had to be preceded by long preparations, developing a methodology, but you already know the story. What you don’t know yet is the first fruit, or rather the results of Akasa, SilentiumPC, SilverStone, Xigmatek or more exotic Reeven fans.

33 dBA or 33 dBA

The noise level, given as a single dBA value, is good for quick reference, but it doesn’t give you an idea of exactly what the sound sounds like. That’s because it averages a mix of noise levels of all frequencies of sound. One fan may disturb you more than the other, even though they both reach exactly the same dBA, yet each is characterized by different dominant (louder) frequencies. To analyze thoroughly with an idea of the “color” of the sound, it is essential to record and assess noise levels across the entire spectrum of frequencies that we perceive.

Spectrograph with noise levels at individual sound frequencies

We already do this in graphics card tests, and we’ll do it for fans too, where it makes even more sense. Using the UMIK-1 miniDSP microphone and TrueRTA’s mode-specific, fixed dBA application, we also measure which frequencies contribute more and which contribute less to the sound. The monitored frequency range is 20-20,000 Hz, which we’ll work with at a fine resolution of 1/24 octave. In it, noise levels from 20 Hz to 20 000 Hz are captured at up to 240 frequencies.

The information captured in the spectrograph is a bit more than we will need for clear fan comparisons. While you’ll always find a complete spectrograph in the tests, we’ll only work with the dominant frequencies (and their noise intensities) in the low, mid, and high bands in the comparison tables and charts. The low frequency band is represented by 20–200 Hz, the medium by 201–2000 Hz and the high by 2001–20 000 Hz. From each of these three bands, we select the dominant frequency, i.e. the loudest one, which contributes most to the composition of the sound.

To the dominant frequency we also give the intensity of its noise. However, in this case it is in a different decibel scale than those you are used to from noise meter measurements. Instead of dBA, we have dBu. This is a finer scale, which is additionally expressed negatively. Be careful of this when studying the results – a noise intensity of -70 dBu is higher than -75 dBu. We discussed this in more detail in the article Get familiar with measuring the frequency response of sound.

Strict acoustic safeguards are required to ensure that these measurements can be carried out with satisfactory repeatability at all. We use acoustic panels to measure the same values at all frequencies across repeated measurements. These ensure that the sound is always reflected equally to the microphone regardless of the distribution of other objects we have in the testlab. The baseline noise level before each measurement is also naturally the same. The room in which we measure is soundproofed.

To accurately measure the frequency characteristics of sound, it is important to maintain acoustic conditions at all times. We use a set of acoustic panels to create these.

Like the noise meter, the microphone has a parabolic collar to increase resolution. The latter is specially in this case not only to amplify but also to filter out the noises that occur whether we want them or not behind the microphone. We are talking about the physical activity of the user (tester). Without this addition, human breathing, for example, would also be picked up by the spectrograph. However, this is successfully reflected off the microphone sensor by the back (convex) side of the collar. As a result, the spectrogram only contains information about the sound emitted by the fan itself.


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Dark Power 14 (ATX 3.1) PSU up for grabs in summer giveaway

We’d like to give one HWCooling reader a BeQuiet! Dark Power 14 power supply. We’ll do it through a very simple competition, so let’s get right to it. There aren’t that many highly efficient power supplies (with an 80 Plus Titanium certification) featuring a quiet fan. In this giveaway, however, you can win one if you correctly answer the question in this article. So let’s get started! 🙂 Read more “Dark Power 14 (ATX 3.1) PSU up for grabs in summer giveaway” »

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BeQuiet! also showcased keyboards and mice. Headsets not coming

Besides what BeQuiet! is best known for—PC components that go inside a case—the company also offers other PC hardware. The kind that connects to a computer (including laptops, of course), such as keyboards and mice. We also learned that anything producing sound is not currently on the horizon. So if you’re looking for an audio headset, you’ll have to turn elsewhere. More on that in this short report from Computex 2026. Read more “BeQuiet! also showcased keyboards and mice. Headsets not coming” »

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BeQuiet! news: Dark Rock 6 (Pro) and expect Silent Wings 5

At Computex 2026, we learned what BeQuiet! has in preparation. And there is really quite a lot—besides new coolers, there were also new cases on display, and we also have some details about new fans. And actually about old ones too, at least regarding product lines that will no longer be further developed. In the first of two articles, we will first focus exclusively on BeQuiet! PC components, including power supplies. Read more “BeQuiet! news: Dark Rock 6 (Pro) and expect Silent Wings 5” »

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Comments (2) Add comment

  1. Hi. Do you have any idea of why this fan is capped at 2800rpm at 100%PWM speed? I can see in the test results that you are getting 2800rpm max as I do, but do you know why? All three of my fans are capped at 2800rpm.

    1. Obviously this is caused by the limitations of the fan electronics. At 12,00 V (DC/PWM) the approx. 2800 rpm is simply a ceiling. Most of the BeQuiet! fans we have tested do not reach the max. specified speed. They always just fit within the +/- 10 % tolerance. Anyway, we will address your question to BeQuiet! and if we get an answer, we will write it here in the discussion, but the fact is that most fans are a bit faster compared to the parameters and BeQuiet! has it the other way around.

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