The Audient EVO 8 is an audio interface at $249. It delivers 22 mW into 32Ω and 11 mW into 300Ω, which ranks it 273 of 280 for raw power among the sources in this database.
Measured at 100 dB SPL it has comfortable headroom on 371 of the 567 dynamic and planar headphones catalogued here, enough but not generous on 157, only marginal on 15 and not enough power for 24. Power is published at 30Ω, 60Ω, 600Ω; the rest of the table is derived from those figures. Output noise is not published, so the hiss estimate cannot be run.
This entry does not repeat the manufacturer's printed power figures. It uses 22 mW into 30Ω, 26 mW into 60Ω, 10 mW into 600Ω.
The power figures above are not the ones Audient prints, and that is deliberate. Audient publishes a peak voltage, an RMS voltage and a power figure on the same line — and the power is twice what the RMS voltage gives. On the iD4 MkII, 1.827 Vrms into 30Ω is 111 mW; Audient prints 223 mW. The same factor runs through all nine published points across the iD4 MkII, iD24 and EVO 4 — six of them within 1% of 2.00 and the other three 3–6% below it, the sort of spread two- and three-digit printed figures produce — so it is systematic rather than a slip on one line. Two things would produce it: squaring the peak voltage instead of the RMS one, or quoting both channels added together. The arithmetic cannot tell those apart — Vpk²/R and 2·Vrms²/R are the same number — and Audient does not say which it is. So this database does not guess at the cause. It applies one rule that follows straight from their own document: the power here is Vrms²/R computed from the RMS voltage Audient prints beside each load. That comes out at half the printed power, give or take the rounding of their figures. The voltages themselves are untouched, and they are what the matching maths on this page relies on.
Derivation holds output voltage steady between and beyond the published loads rather than output power, because that is what an amplifier actually does. The full method is written up here.
Source: audient.com.
| Load | Power | Status | How it was arrived at |
|---|---|---|---|
| 30 Ω | 22 mW | Recomputed | worked out here from the voltage the manufacturer printed on the same line, because its own power figure does not follow from it |
| 32 Ω | 22 mW | Derived | worked out between two published loads, holding output voltage linear between them |
| 60 Ω | 26 mW | Recomputed | worked out here from the voltage the manufacturer printed on the same line, because its own power figure does not follow from it |
| 150 Ω | 14 mW | Derived | worked out between two published loads, holding output voltage linear between them |
| 300 Ω | 11 mW | Derived | worked out between two published loads, holding output voltage linear between them |
| 600 Ω | 10 mW | Recomputed | worked out here from the voltage the manufacturer printed on the same line, because its own power figure does not follow from it |
Ordered from easiest to hardest to drive. Headroom is measured at 100 dB SPL, which is louder than almost anyone listens — a small negative number means the source still plays loud, just without reserve for peaks.
These figures come from each manufacturer's own sensitivity rating. A handful of planars — the HiFiMAN Susvara and the Abyss AB-1266 in particular — are widely reported to need far more than their published sensitivity implies, so treat a bare pass on those as optimistic rather than settled.
| Headphone | Impedance | Sensitivity | Needs | Headroom | Verdict |
|---|---|---|---|---|---|
| Shure SE846 | 9 Ω | 114.0 dB/mW | 0.04 mW | +22 dB | Comfortable damping |
| 64 Audio U12t | 12.6 Ω | 108.0 dB/mW | 0.16 mW | +18 dB | Comfortable damping |
| Shure SE215 | 17 Ω | 107.0 dB/mW | 0.20 mW | +18 dB | Comfortable damping |
| Moondrop Aria | 32 Ω | 107.1 dB/mW | 0.19 mW | +21 dB | Comfortable damping |
| Audeze LCD-X 2021 | 20 Ω | 103.0 dB/mW | 0.50 mW | +15 dB | Comfortable damping |
| Truthear Hexa | 20.5 Ω | 103.1 dB/mW | 0.49 mW | +15 dB | Comfortable damping |
| Sennheiser IE 200 | 18 Ω | 101.6 dB/mW | 0.69 mW | +13 dB | Comfortable damping |
| Sony MDR-7506 | 63 Ω | 106.0 dB/mW | 0.25 mW | +20 dB | Comfortable damping |
| Meze 99 Classics | 32 Ω | 103.0 dB/mW | 0.50 mW | +17 dB | Comfortable damping |
| Focal Clear MG | 55 Ω | 104.0 dB/mW | 0.40 mW | +18 dB | Comfortable damping |
| Philips SHP9500 | 32 Ω | 101.0 dB | 0.79 mW | +15 dB | Comfortable damping |
| Focal Utopia | 80 Ω | 104.0 dB/mW | 0.40 mW | +17 dB | Comfortable damping |
| Meze Empyrean | 32 Ω | 100.0 dB | 1.0 mW | +14 dB | Comfortable damping |
| Campfire Audio Andromeda 2020 | 9 Ω | 94.0 dB | 4.0 mW | +2 dB | Marginal damping |
| Etymotic ER2SE | 15 Ω | 96.0 dB/mW | 2.5 mW | +6 dB | Enough damping |
| AKG K371 | 32 Ω | 99.1 dB/mW | 1.2 mW | +13 dB | Comfortable damping |
| Audio-Technica ATH-M50X | 38 Ω | 99.0 dB/mW | 1.3 mW | +13 dB | Comfortable damping |
| Beyerdynamic DT 900 Pro X | 48 Ω | 100.0 dB/mW | 1.0 mW | +14 dB | Comfortable damping |
| Audeze LCD-2 Classic | 70 Ω | 101.0 dB/mW | 0.79 mW | +15 dB | Comfortable damping |
| Grado SR80x | 38 Ω | 98.0 dB/mW | 1.6 mW | +12 dB | Comfortable damping |
| Sennheiser HD 560S | 120 Ω | 100.8 dB/mW | 0.83 mW | +13 dB | Comfortable damping |
| HiFiMAN Edition XS | 18 Ω | 92.0 dB | 6.3 mW | +3 dB | Enough damping |
| HiFiMAN Arya Stealth | 32 Ω | 94.0 dB | 4.0 mW | +8 dB | Enough damping |
| Dan Clark Audio AEON 2 Closed | 13 Ω | 90.0 dB/mW | 10 mW | -0 dB | Not enough damping |
| Audeze LCD-5 | 14 Ω | 90.0 dB/mW | 10 mW | +0 dB | Marginal damping |
| Beyerdynamic DT 1990 Pro (250Ω) | 250 Ω | 102.0 dB/mW | 0.63 mW | +13 dB | Comfortable damping |
| HiFiMAN HE400se | 25 Ω | 91.0 dB | 7.9 mW | +4 dB | Enough damping |
| HiFiMAN Sundara | 32 Ω | 92.0 dB | 6.3 mW | +6 dB | Enough damping |
| Dan Clark Audio Stealth | 23 Ω | 90.0 dB/mW | 10 mW | +2 dB | Marginal damping |
| Fostex T50RP MK3 | 50 Ω | 92.0 dB/mW | 6.3 mW | +6 dB | Enough damping |
| AKG K702 | 62 Ω | 92.9 dB/mW | 5.1 mW | +7 dB | Enough damping |
| ZMF Verite Closed | 300 Ω | 99.0 dB/mW | 1.3 mW | +9 dB | Enough damping |
| Sennheiser HD 650 | 300 Ω | 97.8 dB/mW | 1.7 mW | +8 dB | Enough damping |
| Sennheiser HD 800S | 300 Ω | 96.8 dB/mW | 2.1 mW | +7 dB | Enough damping |
| Beyerdynamic DT 770 Pro (250Ω) | 250 Ω | 96.0 dB | 2.5 mW | +7 dB | Enough damping |
| Audio-Technica ATH-R70X | 470 Ω | 98.0 dB/mW | 1.6 mW | +8 dB | Enough |
| ZMF Atrium | 300 Ω | 96.0 dB/mW | 2.5 mW | +6 dB | Enough damping |
| Abyss AB-1266 Phi TC | 50 Ω | 88.0 dB/mW | 16 mW | +2 dB | Marginal damping |
| Sennheiser HD 600 | 300 Ω | 91.8 dB/mW | 6.6 mW | +2 dB | Marginal damping |
| HiFiMAN Susvara | 60 Ω | 83.0 dB | 50 mW | -3 dB | Not enough damping |
The manufacturer does not publish an output noise figure for this source, so the hiss estimate that runs on every other page here cannot be run on this one. Rather than substitute a plausible number, this page leaves the question open.
If you know the noise figure from a measurement you trust, the hiss calculator takes it directly and tells you where that noise lands in your own in-ears.
At 50Ω output impedance, the one-eighth rule says this source suits headphones of 400.0Ω and above. 561 of the 567 models here fall below that. That is most of the database, not a niche — 222 of them multi-driver in-ears, and the mismatch tilts the frequency response audibly rather than subtly.
The rule is a rule of thumb, not physics: a source impedance below one eighth of the headphone's keeps the interaction under about 1 dB. The checker works it out for any pair.
| Source | Type | Price | Into 300 Ω | Output impedance | Output noise |
|---|---|---|---|---|---|
| FiiO KA11 | USB dongle | $29 | 22 mW | 0.7 Ω | 1.7 µV |
| FiiO BTR13 | Bluetooth receiver | $59 | 10.0 mW | 0.6 Ω | 1.0 µV |
| iFi GO link | USB dongle | $59 | 14 mW | 0.4 Ω | not published |
Of the 280 sources here, 44 do everything the Audient EVO 8 does as a headphone output: reach 100 dB on every headphone it reaches and stay inside the one-eighth rule wherever it does. The cheapest of them is the FiiO KA11 at $29, against this one’s $249 — $220 less, and a USB dongle rather than an audio interface.
The cheaper one also publishes a noise figure, which the Audient EVO 8 does not — so on the paperwork it is ahead, not merely level.
This counts a headphone output and nothing else. Inputs, converters, microphone preamps, balanced outputs, the volume control, the case and the warranty are all outside it, and any of them can be the reason to buy the dearer box. What the count does say is that the three numbers a maker can be held to do not separate them.
$249 · 45 mW into 32Ω · 51.5 Ω out
Compare →$250 · 27 mW into 32Ω · output Ω not published
Compare →$229 · 374 mW into 32Ω · 1 Ω out
Compare →$219 · 333 mW into 32Ω · output Ω not published
Compare →$279 · 55 mW into 32Ω · 11 Ω out
Compare →$279 · 333 mW into 32Ω · output Ω not published
Compare →Worked out in advance against its closest rivals: vs Apogee BOOM · vs Audient EVO 16 · vs Audient Horizon 8P · vs Audient iD14 MkII · vs Audient iD24 · vs Audient iD4 MkII · vs Audient iD44 MkII · vs Audient iD48 · vs Audient NERO · vs Audient ORIA · vs Focusrite Vocaster Two · vs SSL 2 MkII · vs SSL 2 Plus MkII · vs Steinberg UR44C · vs Tascam US-4x4HR. Each of those pages lists the headphones that tell the two apart.
Or put any two side by side in the source comparison tool, or run your own headphones through the amplifier matcher. Or see every Audient source in the database, and how much of what this site says about them came from Audient’s own documents.