IP Library › Granted Patent US 11,026,016
Granted Patent B2
US 11,026,016 · App. 16/420,164 · Granted Jun 1, 2021

Tubular passive acoustic radiator module

Inventor: Joseph Yaacoub Sahyoun (Redwood City, CA)
H04R1/2834H04R1/2826H04R1/227H04R1/2857H04R2205/021
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Quick Facts
Patent No.
US 11,026,016
App. No.
16/420,164
Granted
Jun 1, 2021
Kind
B2
Abstract

A low cost/high efficiency passive radiator module component includes: a tubular ported cavity structure adapted for placement inside an acoustic enclosure with a port communicating out of the acoustic enclosure and one or more pairs of passive radiators symmetrically oriented and supported on opposing side walls of the ported cavity each having a predetermined or tuned mass distribution, stiff acoustic radiating diaphragm surfaces, and spaced apart inner and outer suspensions configured to suppress diaphragm wobble that induces each pair to symmetrically vibrate inertially responsive to variable sound pressure pulses originating from an active acoustic radiator within the acoustic enclosure. Different variable acoustic pressure pulses may be detected inside and outside the ported cavity; the constricting horn connecting to the ported cavity from outside may be tuned by horn loading to achieve a desired effect.

Claims (18)

1. A passive acoustic radiator module capable of being installed into an acoustic speaker enclosure, wherein said passive acoustic radiator module comprises: a tubular element having a mouth at one end and closed at an end opposite said mouth, wherein one or more passive acoustic radiating surfaces are suspended in one or more sidewalls of said tubular element.

2. The acoustic radiator module as in claim in 1 , wherein a center of gravity of a moving mass of said radiating surfaces are offset from their dimensional centers along the a central axis of said tubular element towards said mouth.

3. The acoustic radiator module as in claim in 3 wherein the space between a smallest constrict area of said mouth and the radiating surfaces defines a horn loaded volume.

4. The acoustic radiator module as in claim 3 , where a mounting flange surrounds said mouth to support and seal said acoustic radiator module in an opening of a surface.

5. The acoustic radiator module as in claim 2 , where a mounting flange surrounds said mouth to support and seal said acoustic radiator module in an opening of a surface.

6. The passive acoustic radiator module of claim 2 , wherein a cross-section of the tubular element is elliptical or rectangular or triangular.

7. The passive acoustic radiator module of claim 1 , wherein said tubular element is curved.

8. The passive acoustic radiator module of claim 1 , wherein said tubular element is curved and has a predetermined length.

9. The passive acoustic radiator module of claim 1 , wherein a cross-section of the tubular element is elliptical or rectangular or triangular.

10. A passive acoustic radiator module capable of being installed into an acoustic speaker enclosure, wherein said passive acoustic radiator module comprises: a tubular element open at both ends, wherein one or more passive acoustic radiating surfaces are suspended in one or more sidewalls of said tubular element symmetrically positioned equidistant from both ends of said tubular element.

11. The passive acoustic radiator module of claim 10 , wherein said tubular element is curved.

12. The passive acoustic radiator module of claim 10 , wherein said tubular element is curved and has a predetermined length.

13. The passive acoustic radiator module of claim 10 , wherein a cross-section of the tubular element is elliptical or rectangular or triangular.

14. In an acoustic enclosure having an active acoustic radiator, capable of radiating variable acoustic pressure pulses within the acoustic enclosure, an improvement comprising, in combination therewith: a tubular passive radiator module having a ported cavity supported within the acoustic enclosure; a substantially matched pair of passive radiators symmetrically oriented to and supported on opposing side walls of said tubular ported cavity each having a predetermined mass distribution that induces the pair of passive radiators to symmetrically vibrate responsive to variable acoustic pressure pulses when radiated by said active acoustic radiator within the acoustic enclosure.

15. The acoustic enclosure of claim 14 , wherein said tubular ported cavity includes a horn to act a source from which a series of radiated variable pressure pulses directed outside the acoustic enclosure emanate.

16. The passive radiator module of claim 14 , wherein said cavity is contained within a tubular structure extending into the acoustic enclosure having a closed hemispherical end within the acoustic enclosure and an open end adapted for mounting on, sealed to, and communicating through a wall of the acoustic enclosure.

17. The passive radiator module of claim 16 , wherein the tubular cavity is cylindrical.

18. The passive radiator module of claim 16 wherein the tubular cavity is hexahedral.

Continuity (3)
Division 15165379 · May 26, 2016
Provisional Application 62167713 · May 28, 2015
Related Publication 20190281382A1 · Sep 12, 2019
Cited By (1)
US 12,231,842