Dayton Audio MX10-22
subwoofer · EBP 62 → suits either box · nominal (full) — Dayton Audio datasheet (https://www.daytonaudio.com/images/resources/295-164--dayton-audio-mx10-22-spec-sheet.pdf)
Thiele/Small parameters
| Fs (resonance) | 32.6 Hz |
| Qts | 0.46 |
| Qes / Qms | 0.53 / 3.59 |
| Vas | 23.7 L |
| Re / nominal Z | 4.76 Ω / 2 Ω |
| Xmax | 11.6 mm |
| Sensitivity | 83.7 dB (1 W/1 m, calc); 86.1 dB (2.83 V/1 m, mfr) |
| Power handling | 400 W |
Published (nominal) values, params full — verify by measurement (DATS/REW) before building.
Datasheet (PDF) ↗ — manufacturer-hosted
Recommended enclosures
| Sealed (Qtc 0.707) — Vb | 17.4 L |
| Sealed — Fc / F3 | 50.1 / 50.1 Hz |
| Ported (suggested) — Vb | 36.5 L |
| Ported — Fb / F3 | 28.5 / 26.3 Hz |
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About this driver
The Dayton Audio MX10-22 is a 10.5″ subwoofer with a free-air resonance of 32.6 Hz and a total Q (Qts) of 0.46. Its efficiency-bandwidth product (EBP) of 62 points toward either alignment. In a 17.4 L sealed box it reaches an F3 of 50.1 Hz (Qtc 0.707); a suggested 36.5 L box tuned to 28.5 Hz extends to about 26.3 Hz. See the sealed vs ported guide for how to choose.
Recommended partners
modeled estimateThe tweeters below pair well with the Dayton Audio MX10-22 in a two-way design — each grade is a modeled estimate of the crossover match, with a suggested crossover point. Open any pair in the guided builder to design the crossover and total the parts.
- Seas C18EN002-AGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair → - Seas L12RE-XFCGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair → - Seas MR18REX-XFGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair → - Seas T18REX-XFCGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair → - Tang Band 75-1558SHGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair → - Tang Band W4-1749SGood match· 91/100
Suggested crossover 773 Hz (4th-order, Linkwitz-Riley)
Build this pair →
Modeled estimate from T/S + geometry — no measurements. The verdict is robust; it improves with measured FRD/ZMA data.