Reference

Reference · Tiles

TILEEVERY ENCLOSUREDB

Transfer Function Magnitude

Each design’s response as dB above or below its own reference level. Power and listening distance drop out, so this is the tile to compare the shape of different boxes on, whatever their sensitivity.
Shows
Each design’s response in dB against its own reference level, so power and listening distance drop out and only the shape is left.
Healthy when
The curve holds near 0 dB through the band you want and rolls off smoothly below it, with no peak you did not plan.
If it is not
Change the box, tuning or EQ for the shape, then read the level on the SPL tile.

The tile#

Transfer Function Magnitude

dB

  • Vented example0 dB = 88.1 dB SPL at 1 W
Ciare 12.00SW in the 55 L vented example tuned to 32 Hz, at any power, half space, 1 m. Simulated when this page was built.

Here the vented example’s 0 dB is 88.1 dB at 1 W, and at 30 Hz it is −3.2 dB. At 200 W the SPL is higher but this curve is the same: the largest difference is 0.0 dB.

  • Open this example in the simulator and add the tile, then hover the curve for the level at a frequency.
  • Each visible enclosure draws its own curve in its colour, each against its own reference. The dashed line is 0 dB.
  • For most enclosures, 0 dB is the average level over the top end of the simulated range: its highest 12 % of frequencies, on the chart’s log scale.
  • For a bandpass box, which falls away at both ends, 0 dB is its peak.

How to read it#

  • Below 0 dB is how far the bass has fallen compared with the top of the range. Above 0 dB is a hump.
  • Boxes with different drivers or power line up near 0 dB, so the tile shows which one keeps its level deeper, not which is louder.
  • It is the same curve as SPL (dB) moved up or down, EQ and all. Read the level there, and the limits on Excursion and Max SPL (dB).
  • The F3 markers on the SPL tile measure from the loudest octave, not from this 0 dB, so the two can differ a little on a curve that is not flat at the top.

Three shapes#

The sealed, vented and bandpass examples: three drivers and three powers, on one scale.

Transfer Function Magnitude

dB

  • Sealed example−11.8 dB at 30 Hz
  • Vented example−3.2 dB at 30 Hz
  • Bandpass example−8.8 dB at 30 Hz
The sealed example (Dayton Audio DCS205-4, 15 L), the vented example (Ciare 12.00SW, 55 L at 32 Hz) and the bandpass example (B&C 18SW115), half space, 1 m. Simulated when this page was built.
  • The sealed box rolls off early and gently: −11.8 dB at 30 Hz.
  • The vented box holds its level down to its 32 Hz tuning and then falls fast: −3.2 dB at 30 Hz.
  • The bandpass box peaks at 0 dB and falls away on both sides: −8.8 dB at 30 Hz.

What moves it#

ChangeEffectWhy
Power, 1 W to 200 WNone (0.0 dB)The SPL and its reference rise together.
Listening distanceNoneIt moves every frequency by the same amount.
Radiation spaceNone for a boxA box moves by the same amount at every frequency. A horn’s shape changes, because the walls and floor change how its mouth radiates.
A 25 Hz high-pass, 24 dB/oct−10.1 dB → −13.2 dB at 25 HzEQ is in the curve, as on the SPL tile.
Box size, tuning or enclosure typeThe shapeThis is what the tile is for.
Upper frequencyCan shift the whole curveThe reference is the top of the simulated range.

Settings and controls#

ControlWhereWhat it does
EQTile headerEdits the selected enclosure’s filters on the chart. Exit leaves.
Y-axis settingsTile headerShows −30 to +5 dB in 5 dB steps, in Auto and Manual alike. For more room, type a Min (down to −80 dB) and Max in Manual.
Add filter, Add noteRight-click the chartA filter, or a note, at the frequency you clicked.

What to try#

TryWhat it changes
Compare shapes, not levelsA quiet design and a loud one both sit near 0 dB here, so you see only how each box rolls off.
Try a high-passFilters show here as they do on SPL (dB): click EQ in the tile header, or right-click the chart and choose Add filter.
Read horns on SPLA horn’s passband can sit well above 0 dB on this tile. SPL (dB) shows its real level.

Ask your AI#

Ask your AI

Your assistant runs the same solver on your own designs through the 00 Simulator connector.
Using 00 Simulator, simulate my open workspace and compare the response shape of each enclosure regardless of its level: how many dB each is below its own passband at 25, 35 and 50 Hz. Then put the Transfer Function Magnitude tile on screen.
or open it inClaudeChatGPT

Connect your assistant so it can open your designs.