Claims
- 1. A panel-form loudspeaker comprising:
- a resonant multi-mode radiator element forming a panel wherein said panel is such as to have ratio of bending stiffness (B), in all orientations, to the cube power of panel mass per unit surface area (.mu.) of at least 10 and wherein the panel has no planform dimension less than half the bending wavelength at the lowest frequency of a working frequency band;
- a mounting means which supports the panel or attaches it to a supporting body, in a free undamped manner;
- and an electromechanical drive means coupled to the panel which serves to excite a multi-modal resonance in the panel in response to an electrical input within a working frequency band for the loudspeaker.
- 2. A panel-form loudspeaker as claimed in claim 1 in which the panel is a sandwich panel having skins and core constituting the radiator element.
- 3. A panel-form loudspeaker as claimed in claim 2 wherein the outer skins of the panel sandwich are aluminium or aluminium alloy.
- 4. A panel-form loudspeaker as claimed in claim 2 in which the sandwich panel constituting the radiator element is such that it has a ratio of B/.mu..sup.3 of at least 100.
- 5. A panel-form loudspeaker as claimed in claim 1 when the electromechanical drive means is supplied with an electrical drive signal having a fundamental frequency component in excess of both the first resonant frequency and the coincidence frequency of the panel.
- 6. A panel-form loudspeaker comprising:
- a panel comprising at least a first skin, at least a second skin, and at least a core, said core interconnecting and spacing apart said first and second skins;
- a panel mount supporting the panel for vibration; and
- an electromagnetic exciter, coupled to the panel and responsive to an electrical input, which serves to excite a multi-modal resonance in the panel, said electrical input having a working frequency band for the loudspeaker, wherein said panel core has a shear modulus G which is not less than the value given by the relationship ##EQU1## where d is the depth of the panel core, .mu. is the mass per unit surface area of the panel and c is the speed of sound in air.
- 7. A loudspeaker according to claim 6, wherein the panel has a ratio of bending stiffness (B), in all orientations, to the cube power of panel mass per unit surface area (.mu.) of at least 10.
- 8. A loudspeaker according to claim 6, wherein the panel has a minimum planar dimension not less than half a bending wavelength at a lowest frequency of said working frequency band.
- 9. A loudspeaker according to claim 6 wherein the first and second skins comprise aluminum and both have planar dimensions of 1 m.times.1 m.
- 10. A loudspeaker according to claim 6 wherein the core comprises aluminum.
- 11. A loudspeaker according to claim 10 wherein the core comprises an aluminum honeycomb.
- 12. A loudspeaker according to claim 7 wherein the panel has a minimum planar dimension not less than half a bending wavelength at a lowest frequency of said working frequency band.
- 13. A loudspeaker according to claim 6 wherein said first and second skins and said core are at least partially comprised of aluminum.
- 14. A loudspeaker according to claim 13 wherein said aluminum core has a thickness of about 4.0 cm.
- 15. A loudspeaker according to claim 13 wherein said aluminum skin has a thickness of about 0.3 mm.
- 16. A loudspeaker according to claim 13 wherein said panel has a ratio of bending stiffness (B), in all orientations, to the cube power of panel mass per unit surface area (.mu.) of at least 10.
- 17. A panel-form loudspeaker for converting an electrical input signal into an acoustic output, said electrical input signal having a working frequency band, said loudspeaker comprising:
- a panel comprising at least a first skin, at least a second skin, and at least a core, said core interconnecting and spacing apart said first and second skins, the panel has a ratio of bending stiffness (B), in all orientations, to the cube power of panel mass per unit surface area (.mu.) of at least 10, has a minimum planar dimension not less than half a bending wavelength at a lowest frequency of said working frequency band, and has a shear modulus G which is not less than the value given by the relationship ##EQU2## where d is the depth of the panel core, .mu. is the mass per unit surface area of the panel and c is the speed of sound in air;
- a mounting means for supporting the panel for vibration; and
- an electromagnetic exciter, coupled to the panel and responsive to said electrical input, for exciting a multi-modal resonance in the panel.
- 18. A loudspeaker according to claim 17, wherein said at least a first skin is comprised of aluminum.
- 19. A loudspeaker according to claim 17, wherein said at least a second skin is comprised of aluminum.
- 20. A loudspeaker according to claim 17, wherein said at least a core is comprised of aluminum.
- 21. A loudspeaker according to claim 17, wherein said at least a first skin, at least a second skin and at least a core are all comprised of aluminum.
- 22. A loudspeaker according to claim 21, wherein said at least a core is comprised of an aluminum honeycomb.
- 23. A loudspeaker according to claim 22, wherein each of said at least a first skin and said at least a second skin has a thickness of about 0.3 mm and said core has a thickness of about 4.0 cm and said panel has planar dimensions of 1 m.times.1 m.
- 24. A panel-form loudspeaker comprising:
- a panel comprising at least a first skin, at least a second skin, and at least a core, said core interconnecting and spacing apart said first and second skins;
- a mounting means for supporting the panel for vibration; and
- an electromagnetic exciter means, coupled to the panel and responsive to an electrical input, for exciting a multi-modal resonance in the panel, said electrical input having a working frequency band for the loudspeaker, wherein said panel core has a shear modulus G which is not less than the value given by the d relationship ##EQU3## where d is the depth of the panel core, .mu. is the mass per unit surface area of the panel and c is the speed of sound in air.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9017133 |
Aug 1990 |
GBX |
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9103969 |
Feb 1991 |
GBX |
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Parent Case Info
This is a continuation of application Ser. No. 08/811,638, filed Mar. 5, 1997, ABN, which is a continuation of application Ser. No. 08/486,163, filed Jun. 7, 1995, ABN, which is a CIP of application Ser. No. 08/337,367, filed Nov. 8, 1994, ABN, which is a continuation of application Ser. No. 07/983,592, filed Feb. 4, 1993, ABN, which is a PCT 371 of PCT/GB91/01262 filed Jul. 26, 1991.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
4-157900 |
May 1992 |
JPX |
6-30488 |
Feb 1994 |
JPX |
Continuations (3)
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Number |
Date |
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Parent |
811638 |
Mar 1997 |
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Parent |
486163 |
Jun 1995 |
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Parent |
983592 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
337367 |
Nov 1994 |
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