Claims
- 1. A musical instrument transducer comprising:
an inner conductor comprising electrically conductive material; a piezoelectric polymer layer about the inner conductor, wherein the thickness of the piezoelectric polymer layer is less than half the thickness of the inner conductor; and an outer conductor, comprising electrically conductive material, disposed about the piezoelectric layer.
- 2. The musical instrument transducer of claim 1, further comprising electrically conductive leads connected to the inner conductor and the outer conductor.
- 3. The musical instrument transducer of claim 1, wherein said piezoelectric polymer layer is provided as an extruded piezoelectric polymer layer.
- 4. The musical instrument transducer of claim 1, wherein the inner conductor has a thickness of between 0.075 and 0.08 inches.
- 5. The musical instrument transducer of claim 1, wherein the piezoelectric polymer layer has a thickness of between 0.010 and 0.015 inches.
- 6. The musical instrument transducer of claim 1, wherein the piezoelectric polymer layer is formed from one of a piezoelectric copolymer and piezoelectric homopolymer.
- 7. The musical instrument transducer of claim 1, wherein the inner conductor is a twisted bundle of wires.
- 8. The musical instrument transducer of claim 1, wherein the inner conductor is a solid, electrically conductive material.
- 9. The musical instrument transducer of claim 1, wherein the outer conductor is an electrically conductive ink formed on an outer surface of the piezoelectric polymer layer.
- 10. The musical instrument transducer of claim 1, wherein the outer conductor is an electrically conductive foil disposed on an outer surface of the piezoelectric polymer layer.
- 11. The musical instrument transducer of claim 1, wherein the outer conductor is an electrically conductive shrink tube disposed on an outer surface of the piezoelectric polymer layer.
- 12. The musical instrument transducer of claim 1, wherein the outer conductor is a braid of electrically conductive filaments disposed on an outer surface of the piezoelectric polymer layer.
- 13. The musical instrument transducer of claim 1, wherein said transducer has a substantially circular cross-section.
- 14. The musical instrument transducer of claim 1, wherein said transducer has a substantially rectangular cross-section.
- 15. The musical instrument transducer of claim 1, wherein said inner conductor further comprises a non-conductive filler material.
- 16. The musical instrument transducer of claim 1, further comprising a mechanically shielding layer disposed about said outer conductor.
- 17. A method of fabricating a musical instrument transducer, comprising the steps of:
providing an electrically conductive central core; providing a piezoelectric polymer layer about said electrically conductive central core, wherein said step of providing a piezoelectric polymer layer further comprises providing a piezoelectric polymer layer of a thickness less than one-half the thickness of said electrically conductive central core; forming an electrically conductive outer layer about said piezoelectric layer to produce an assembly; cutting said assembly to a desired length; and disposing electrically conductive leads in communication with said electrically conductive central core and said electrically conductive outer layer.
- 18. The method of claim 17, wherein said step of providing an electrically conductive central core further comprises providing an electrically conductive central core comprising at least one electrically conductive fiber.
- 19. The method of claim 18, wherein said step of providing an electrically conductive central core further comprises providing an electrically conductive central core comprising said at least one electrically conductive fiber in conjunction with at least one non-conductive fiber.
- 20. The method of claim 17, wherein said step of providing a piezoelectric polymer layer further comprises extruding said piezoelectric polymer layer about said electrically conductive central core.
- 21. The method of claim 20, wherein said step of providing a piezoelectric polymer layer further comprises simultaneously extruding and polarizing said piezoelectric polymer layer about said electrically conductive central core.
- 22. The method of claim 17, wherein said step of forming further comprises the step of braiding electrically conductive fibers about said piezoelectric polymer material.
- 23. The method of claim 17, wherein said step of forming further comprises the step of applying an electrically conductive foil about said piezoelectric polymer material.
- 24. The method of claim 17, wherein said step of forming further comprises the step of forming electrically conductive shrink tubing about said piezoelectric polymer material.
- 25. The method of claim 17, wherein said step of forming further comprises the step of applying an electrically conductive liquid on said piezoelectric polymer material and allowing said applied electrically conductive liquid to dry as said electrically conductive outer layer.
- 26. The method of claim 17, further comprising the step of disposing a mechanically shielding layer about said electrically conductive outer layer.
- 27. The method of claim 17, wherein said steps of providing an electrically conductive central core, providing a piezoelectric polymer layer, and forming an electrically conductive outer layer collectively result in a musical instrument transducer having a substantially circular cross-section.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of prior application Ser. No. 09/346,720, filed Jul. 2, 1999, entitled: COAXIAL MUSICAL INSTRUMENT TRANSDUCER.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60091742 |
Jul 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09346720 |
Jul 1999 |
US |
Child |
09862087 |
May 2001 |
US |