Claims
- 1. A resonance damper for a piezoelectric driver used in a loudspeaker comprising a resilient membrane that is resiliently coupled to the piezoelectric driver, the membrane having a plurality of flaps that hold onto the piezoelectric driver by receiving the piezoelectric device between the flaps.
- 2. The resonance damper of claim 1 wherein the membrane defines an aperture that forms the plurality of flaps for resiliently coupling to the piezoelectric driver.
- 3. The resonance damper of claim 2 wherein the aperture is an annular opening and a plurality of slits extend from the opening to form the plurality of flaps.
- 4. The resonance damper of claim 3 wherein the slits are radially oriented.
- 5. The resonance damper of claim 2 wherein the aperture is a convolute opening having margins that form the plurality of flaps.
- 6. The resonance damper of claim 1 further including a mounting cup connected to an outer margin of the membrane.
- 7. The resonance damper of claim 1 wherein the resilient membrane is a closed-cell foam.
- 8. The resonance damper of claim 1 wherein the membrane further comprises slits for receiving and resiliently coupling a diaphragm associated with an audio transducer.
- 9. A one-piece damper for damping movement of a piezoelectric device comprising a resilient membrane having an outer margin and an inner portion defining a plurality of resilient flaps for holding the piezoelectric device wherein at least one flap presses against a first surface of the piezoelectric device and another flap presses against a second, oppositely directed surface of the piezoelectric device.
- 10. The damper of claim 9 wherein the flaps are arranged about the piezoelectric device in an alternating fashion such that adjacent flaps press against the first and second oppositely directed surfaces of the piezoelectric device.
- 11. The damper of claim 9 wherein the membrane is planer.
- 12. The damper of claim 9 wherein the membrane is dished after it is resiliently coupled to the piezoelectric device.
- 13. The damper of claim 9 wherein the outer margin is comprised of a plurality of contiguous linear margins.
- 14. The damper of claim 9 wherein the outer margin is annular.
- 15. An audio transducer driver, comprising:
- (a) a piezoelectric device; and
- (b) a resilient membrane defining an aperture that forms a plurality of flaps that resiliently engage first and second oppositely directed surfaces of the piezoelectric device.
- 16. The audio transducer of claim 15 wherein the aperture is an annular opening and a plurality of slits extend radially from the opening to form the plurality of flaps.
- 17. The audio transducer of claim 15 wherein the aperture is a convolute opening having margins that form the plurality of flaps.
- 18. The audio transducer driver of claim 15 wherein the resilient membrane is a closed-cell foam.
- 19. The audio transducer of claim 15 wherein the membrane further comprises slits for receiving and resiliently coupling a diaphragm associated with the audio transducer.
- 20. An audio transducer, comprising:
- (a) a piezoelectric driver;
- (b) a diaphragm having at least one flexible sheet arranged as a flat, curvilinear plane;
- (c) a substantially planar bridge having an apex and an opposed substantially linear margin wherein the apex is connected to the piezoelectric driver and the substantially linear margin is connected to the diaphragm and the bridge is located between the piezoelectric driver and the diaphragm; and
- (d) a resilient membrane resiliently coupled to first and second oppositely directed surfaces of the piezoelectric driver by having portions of the membrane to resiliently press against the oppositely directed surfaces of the piezoelectric driver without an adhesive or a mechanical fastener for providing resonance damping.
- 21. The audio transducer of claim 20 wherein a major surface of the bridge defines a linear plane that is substantially tangent to a curvature of the flat, curvilinear plane.
- 22. The audio transducer of claim 20 wherein the bridge has margins that define an apex which is connected to the piezoelectric driver.
- 23. The audio transducer of claim 20 wherein the bridge defines at least one aperture that is located between the piezoelectric driver and the diaphragm.
- 24. The audio transducer of claim 20 wherein the membrane defines an aperture that forms a plurality of flaps for resiliently coupling to the piezoelectric driver.
- 25. The audio transducer of claim 24 wherein the aperture is an annular opening and a plurality of slits extend from the opening to form the plurality of flaps.
- 26. The audio transducer of claim 25 wherein the slits are radially oriented.
- 27. The audio transducer of claim 24 wherein the aperture is a convolute opening having margins that form the plurality of flaps.
- 28. The audio transducer of claim 20 further including a mounting cup connected to an outer margin of the membrane.
- 29. The audio transducer of claim 20 wherein the resilient membrane is a closed-cell foam.
- 30. The audio transducer of claim 20 wherein the membrane further comprises slits for receiving and resiliently coupling the diaphragm.
- 31. A resonance damper for a piezoelectric driver used in a loudspeaker comprising a resilient membrane that is resiliently coupled to first and second oppositely directed surfaces of the piezoelectric driver by having portions of the membrane to resiliently press against the oppositely directed surfaces of the piezoelectric driver so that the damper holds itself onto the driver without mechanical or adhesive fasteners.
- 32. A resonance damper for a piezoelectric driver used in a loudspeaker comprising a resilient membrane defining an aperture, the aperture defining an inner margin having a slit such that the piezoelectric driver can be partially received in the slit and thus be resiliently coupled to the damper.
- 33. An audio transducer, comprising:
- (a) a piezoelectric driver;
- (b) a sheet-like diaphragm arranged as a flat, curvilinear plane having at least one linear diaphragm edge;
- (c) a substantially planar bridge having a first linear bridge edge secured to the linear diaphragm edge and a generally opposite second edge, the second edge defining at least one apex affixed to the piezoelectric driver; and
- (d) a substantially planar resonance damper having at least one interior opening and at least one flap located proximate to the opening to resiliently grip oppositely directed sides of the piezoelectric driver.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of U.S. patent application Ser. No. 08/236,209, filed May 2, 1994.
US Referenced Citations (12)
Foreign Referenced Citations (3)
Number |
Date |
Country |
58-182999 |
Oct 1983 |
JPX |
0182999 |
Oct 1983 |
JPX |
60-143099 |
Jul 1985 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
236209 |
May 1994 |
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