Claims
- 1. A fetal heart monitoring system, comprising:
a backing plate having a generally concave front surface and a generally convex back surface; and at least one sensor element attached to the concave front surface for acquiring acoustic fetal heart signals produced by a fetus within a body.
- 2. The fetal heart monitoring system according to claim 1 further comprising:
a web belt; and a web belt guide movably attached to the web belt, the web belt guide being attached to the convex back surface of the backing plate.
- 3. The fetal heart monitoring system according to claim 1 wherein the at least one sensor element has a shape that conforms to the generally concave front surface of the backing plate.
- 4. The fetal heart monitoring system according to claim 1 wherein the at least one sensor element comprises:
an inner sensor; and a plurality of outer sensors surrounding the inner sensor.
- 5. The fetal heart monitoring system according to claim 4 wherein the inner sensor element has a generally hexagonal shape and each of the outer sensors has a generally trapezoidal shape.
- 6. The fetal heart monitoring system according to claim 1 wherein each sensor element comprises:
a first conductor, a first electrically conductive adhesive layer disposed over a portion of the first conductor; a first piezoelectric film layer disposed over the first electrically conductive adhesive layer; a second conductor having a portion thereof disposed over the first piezoelectric layer; a second electrically conductive adhesive layer disposed over said portion of the second conductor; a second piezoelectric film layer disposed over the second electrically conductive adhesive layer; a third conductor having a portion thereof disposed over the second piezoelectric film layer; a third electrically conductive adhesive layer disposed over said portion of the third conductor; and a metallic shield disposed over substantially the entire first and second piezoelectric films.
- 7. The fetal heart monitoring system according to claim 6 further comprising a jumper tab disposed over the third electrically conductive adhesive layer.
- 8. The fetal heart monitoring system according to claim 1 further comprising a high-dielectric electrically insulating layer disposed over the at least one sensor element.
- 9. The fetal heart monitoring system according to claim 1 wherein the backing plate is generally circular and has a perimetrical edge.
- 10. The fetal heart monitoring system according to claim 9 further comprising:
a web belt; a web belt guide movably attached to the web belt; a spacer block attached to the web belt guide and the back surface of the backing plate; a plurality of wires, each of which receiving electrical signals from the sensor element; and a clamp attached to the web belt guide for harnessing the wires.
- 11. The fetal heart monitoring system according to claim 10 comprising an annular support member molded about the perimetrical edge of the backing plate, the spacer block and the clamp, the annular support member being fabricated from an electrically non-conductive material.
- 12. A method for simultaneously making a plurality of acoustic signal sensor elements, comprising the steps of.
providing a plurality of flex cables and equidistantly positioning the flex cables along a working surface, each flex cable having a plurality of conductors thereon; configuring each flex cable such that all but a first one of the conductors are folded upward; disposing a first electrically conductive adhesive layer over a portion of the first one of the conductors of each flex cable; disposing a first strip of piezoelectric film over the first electrically conductive adhesive layer; configuring each flex cable such that a second one of the conductors is disposed over the first strip of piezoelectric film; disposing a second electrically conductive adhesive layer over a portion of the second one of the conductors of each flex cable; disposing a second strip of piezoelectric film over the second electrically conductive adhesive layer; configuring each flex cable such that a portion of a third one of the conductors of each flex cable is disposed over the second strip of piezoelectric film; disposing a third electrically conductive adhesive layer over said portion of the third one of the conductors; disposing a metallic strip over the third electrically conductive adhesive layer and substantially the entire second strip of piezoelectric film; curing the adhesive layers to form a laminate assembly; providing a template having indicia thereon that functions as a cutting guide; and cutting the laminate assembly according to the indicia to form a plurality of sensor elements.
- 13. The method according to claim 12 wherein the second electrically conductive adhesive layer is comprised of equidistantly spaced segments, each segment corresponding to a particular flex cable.
- 14. The method according to claim 12 further comprising the step of, prior to disposing the metallic strip, disposing a jumper tab over the third electrically conductive adhesive layer.
- 15. The method according to claim 12 wherein each of the electrically conductive adhesive layers comprises a layer of electrically conductive epoxy.
- 16. The method according to claim 12 wherein the metallic strip comprises a strip of stainless steel.
- 17. The method according to claim 12 wherein each of the piezoelectric films has a first side having a first polarity and a second side having a second polarity, and wherein the sides of the first and second piezoelectric films that confront each other have the same polarity.
- 18. The method according to claim 12 further comprising the step of providing a fixture having a main channel for receiving the piezoelectric films and a plurality of lateral channels for receiving the flex cables.
- 19. The method according to claim 12 wherein the providing step comprises the steps of providing a release film cloth and positioning the flex cables in a manner such that a portion of each flex cable is disposed over release film cloth.
- 20. The method according to claim 18 wherein the curing step comprises the steps of:
covering the fixture with a bleeder cloth; and thereafter, placing the fixture with the bleeder cloth into a vacuum bag.
- 21. A fetal heart monitoring system, comprising:
a backing plate having a front surface and a back surface; and at least one sensor element attached to the front surface for acquiring acoustic fetal heart signals produced by a fetus within a body.
- 22. The fetal heart monitoring system according to claim 21 wherein:
the front surface of the backing plate has a generally concave shape; and the back surface has a generally convex back surface.
- 23. The fetal heart monitoring system according to claim 21 further comprising:
a web belt; and a web belt guide movably attached to the web belt, the web belt guide being attached to the back surface of the backing plate.
- 24. The fetal heart monitoring system according to claim 21 wherein the at least one sensor element has a shape that conforms to the front surface of the backing plate.
- 25. The fetal heart monitoring system according to claim 21 wherein the at least one sensor element comprises:
an inner sensor; and a plurality of outer sensors surrounding the inner sensor.
- 26. The fetal heart monitoring system according to claim 25 wherein the inner sensor element has a generally hexagonal shape and each of the outer sensors has a generally trapezoidal shape.
- 27. The fetal heart monitoring system according to claim 21 wherein each sensor element comprises:
a first conductor, a first electrically conductive adhesive layer disposed over a portion of the first conductor; a first piezoelectric film layer disposed over the first electrically conductive adhesive layer; a second conductor having a portion thereof disposed over the first piezoelectric layer; a second electrically conductive adhesive layer disposed over said portion of the second conductor; a second piezoelectric film layer disposed over the second electrically conductive adhesive layer; a third conductor having a portion thereof disposed over the second piezoelectric film layer; a third electrically conductive adhesive layer disposed over said portion of the third conductor, and a metallic shield disposed over substantially the entire first and second piezoelectric films.
- 28. The fetal heart monitoring system according to claim 27 further comprising a jumper tab disposed over the third electrically conductive adhesive layer.
- 29. The fetal heart monitoring system according to claim 21 further comprising a high-dielectric electrically insulating layer disposed over the at least one sensor element.
- 30. The fetal heart monitoring system according to claim 21 wherein the backing plate is generally circular and has a perimetrical edge.
- 31. The fetal heart monitoring system according to claim 30 further comprising:
a web belt; a web belt guide movably attached to the web belt, a spacer block attached to the web belt guide and the back surface of the backing plate; a plurality of wires, each of which receiving electrical signals from the at least one sensor element; and a clamp attached to the web belt guide for harnessing the wires.
- 32. The fetal heart monitoring system according to claim 31 comprising an annular support member molded about the perimetrical edge of the backing plate, the spacer block and the clamp, the annular support member being fabricated from an electrically non-conductive material.
- 33. A method for simultaneously making a plurality of acoustic signal sensor elements, comprising the steps of:
providing a plurality of flex cables and equidistantly positioning the flex cables along a working surface, each flex cable having a plurality of conductors thereon, configuring each flex cable such that all but a first one of the conductors are folded upward; disposing a first electrically conductive adhesive layer over a portion of the first one of the conductors of each flex cable; disposing a first strip of piezoelectric film over the first electrically conductive adhesive layer; configuring each flex cable such that a second one of the conductors is disposed over the first strip of piezoelectric film; disposing a second electrically conductive adhesive layer over a portion of the second one of the conductors of each flex cable; disposing a second strip of piezoelectric film over the second electrically conductive adhesive layer; configuring each flex cable such that a portion of a third one of the conductors of each flex cable is disposed over the second strip of piezoelectric film; disposing a third electrically conductive adhesive layer over said portion of the third one of the conductors; disposing a metallic strip over the third electrically conductive adhesive layer and substantially the entire second strip of piezoelectric film; curing the adhesive layers to form a laminate assembly; and cutting the laminate assembly to form a plurality of sensor elements.
- 34. The method according to claim 33 wherein the second electrically conductive adhesive layer is comprised of equidistantly spaced segments, each segment corresponding to a particular flex cable.
- 35. The method according to claim 33 further comprising the step of, prior to disposing the metallic strip, disposing a jumper tab over the third electrically conductive adhesive layer.
- 36. The method according to claim 33 wherein each of the electrically conductive adhesive layers comprises a layer of electrically conductive epoxy.
- 37. The method according to claim 33 wherein the metallic strip comprises a strip of stainless steel.
- 38. The method according to claim 33 wherein each of the piezoelectric films has a first side having a first polarity and a second side having a second polarity, and wherein the sides of the first and second piezoelectric films that confront each other have the same polarity.
- 39. The method according to claim 33 further comprising the step of providing a fixture having a main channel for receiving the piezoelectric films and a plurality of lateral channels for receiving the flex cables.
- 40. The method according to claim 33 wherein the providing step comprises the steps of providing a release film cloth and positioning the flex cables in a manner such that a portion of each flex cable is disposed over release film cloth.
- 41. The method according to claim 39 wherein the curing step comprises the steps of:
covering the fixture with a bleeder cloth; and thereafter, placing the fixture with the bleeder cloth into a vacuum bag.
- 42. The method according to claim 33 further comprising the step of providing a template having indicia thereon that functions as a cutting guide; and
the step of cutting the laminate assembly comprises cutting the laminate assembly according to the indicia to form the plurality of sensor elements.
CLAIM OF BENEFIT OF PROVISIONAL APPLICATION
[0001] Pursuant to 35 U.S.C. §119, the benefit of priority from provisional application 60/182,344, with a filing date of Feb. 14, 2000, is claimed for this non-provisional application.
ORIGIN OF THE INVENTION
[0002] The invention described herein was made by an employee of the United States Government and may be used by or for the Government for governmental purposes without the payment of any royalties thereon or therefor.
Provisional Applications (1)
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Number |
Date |
Country |
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60182344 |
Feb 2000 |
US |