Claims
- 1. A bending wave loudspeaker, comprising:a panel capable of supporting bending waves and having opposed faces; a transducer extending over and coupled to a large fraction of a panel face; and at least one local constraint coupled to a discrete small region of the panel constraining the movement of the panel, so that activation of the transducer material is capable of exciting a plurality of resonant bending modes of the panel.
- 2. A bending wave loudspeaker according to claim 1, wherein the transducer includes a sheet of transducer material extending over and coupled to the large fraction of a panel face.
- 3. A bending wave loudspeaker according to claim 2, wherein the sheet of transducer material is disposed between a pair of electrodes.
- 4. A bending wave loudspeaker according to claim 3, wherein one electrode of said pair of electrodes covers said large fraction of one face of the panel and mechanically couples the transducer material to the panel.
- 5. A bending wave loudspeaker according to claim 2, wherein the transducer material is a piezo-electric material.
- 6. A bending wave loudspeaker according to claim 5, wherein the piezoelectric material is transparent.
- 7. A bending wave loudspeaker according to claim 1, wherein said constraint is a mass.
- 8. A bending wave loudspeaker according to claim 1, wherein said constraint is a rigid coupling piece coupled to the panel over a small region of the panel for substantially impeding movement of said small region of the panel.
- 9. A bending wave loudspeaker according to claim 1, wherein the large fraction of the area of the panel is at least 75%.
- 10. A bending wave loudspeaker according to claim 1, wherein said small region has a linear size less than or equal to 20% of the width of the panel.
- 11. A bending wave loudspeaker according to claim 1, wherein said small region has an area less than 1% of the area of the panel.
- 12. A bending wave loudspeaker according to claim 1, wherein opposed transducers are mounted, one on each of the opposed faces of the panel, over said large fraction of the area of the panel.
- 13. A bending wave loudspeaker according to claim 12, wherein said transducers include a sheet of transducer material disposed between a pair of electrically conductive electrodes.
- 14. A bending wave loudspeaker according to claim 1, wherein said constraint is located at a distance away from the edge of the panel of at least 20% of the width of the panel.
- 15. A bending wave loudspeaker according to claim 14, wherein the panel has an axis of symmetry and the constraint is located spaced away from the axis of symmetry by a distance of at least 4% of the width of the panel.
- 16. (currently amended) A bending wave loudspeaker according to claim 1, wherein the panel is supported by the constraint(s).
- 17. A bending wave loudspeaker according to claim 1, wherein the resonant bending wave modes of the panel constrained by the constraint are distributed substantially evenly in frequency.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9916091 |
Jul 1999 |
GB |
|
Parent Case Info
This application claims the benefit of provisional application No. 60/150,808, filed Aug. 26, 1999.
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
4003449 |
Bertagni |
Jan 1977 |
A |
5115472 |
Park et al. |
May 1992 |
A |
5400414 |
Thiele |
Mar 1995 |
A |
5901231 |
Parrella et al. |
May 1999 |
A |
6064746 |
Nakamura et al. |
May 2000 |
A |
Foreign Referenced Citations (5)
Number |
Date |
Country |
0 599 250 |
Jun 1994 |
EP |
2 052 919 |
Jan 1981 |
GB |
2 343 811 |
May 2000 |
GB |
9709842 |
Mar 1997 |
WO |
WO 9902012 |
Jan 1999 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/150808 |
Aug 1999 |
US |