Claims
- 1. A system for ultrasonic bonding comprising:
an ultrasonic horn in contact with a material to be bonded; and non-contact means for measuring an amplitude of said ultrasonic horn.
- 2. A system in accordance with claim 1, wherein said ultrasonic horn is a rotating ultrasonic horn.
- 3. A system in accordance with claim 2, wherein said non-contact means comprises a light source disposed perpendicular to an axis of rotation of said rotary ultrasonic horn, said light source transmitting a high intensity light beam onto a material contacting surface of said rotating ultrasonic horn, at least one lens positioned to receive a portion of a plurality of reflected light beams reflected off said material contacting surface and to project said portion of said plurality of reflected light beam as a light spot, at least one detector positioned to detect each said light spot, said at least one detector producing a detector output signal proportional to a strength and a location of each said light spot on said detector, integrated signal conditioning means for conditioning said detector output signal and translation means for converting a light spot displacement on said at least one detector into a horn displacement.
- 4. A system in accordance with claim 3, wherein said non-contact means comprises two said detectors aligned such that a line drawn between corresponding points of said detectors is parallel to said axis of rotation of said rotating ultrasonic horn.
- 5. A system in accordance with claim 2, wherein said non-contact means comprises:
optical fibers including a light emitting optical fiber disposed perpendicular to an axis of rotation of said rotary ultrasonic horn, said light emitting optical fiber transmitting a light beam onto a material contacting surface of said rotating ultrasonic horn; the optical fibers further including a light receiving optical fiber optically conected to a photodetector and positioned to receive a portion of reflected light reflected off said material contacting surface and transmit the reflected light to the photodetector; the photodetector producing a detector output signal proportional to an intensity of said light on said detector; integrated signal conditioning means for conditioning said detector output signal; and translation means for converting a conditioned detector output signal into a horn displacement.
- 6. A system in accordance with claim 5, wherein said non-contact means comprises two or more of the emitter or the detector optical fibers.
- 7. A system in accordance with claim 3, wherein said translation means comprises a data acquisition system adapted to receive said output signal from said integrated signal conditioning means and correlate said displacement to said amplitude of said rotating ultrasonic horn.
- 8. A system in accordance with claim 5, wherein said translation means comprises a data acquisition system adapted to receive said output signal from said integrated signal conditioning means and correlate said displacement to said amplitude of said rotating ultrasonic horn.
- 9. A system in accordance with claim 1 further comprising control means for directly regulating said amplitude of said ultrasonic horn operably connected to said ultrasonic horn.
- 10. A system in accordance with claim 2, wherein said light source is a laser.
- 11. A system in accordance with claim 2, wherein said light source is an LED.
- 12. A system for directly controlling an amplitude of an ultrasonic horn comprising:
an ultrasonic horn; non-contact measurement means for directly measuring an amplitude of said ultrasonic horn; and control means for modulating said amplitude of said ultrasonic horn in communication with said non-contact measurement means.
- 13. A system in accordance with claim 12, wherein said non-contact measurement means comprises a non-contact amplitude sensor and a data acquisition and analysis system, said data acquisition and analysis system operatively connected to said amplitude sensor and determining an amplitude of said ultrasonic horn.
- 14. A system in accordance with claim 13, wherein said ultrasonic horn is a rotating ultrasonic horn.
- 15. A system in accordance with claim 13, wherein said non-contact amplitude sensor comprises:
a light source for directing a beam of light onto a surface of an ultrasonic horn, thereby generating reflected light; a photodetector for receiving said reflected light, said detector producing an output signal proportional to at least one of an intensity of said light and a location of said light on said detector; translating means for correlating said output signal to the amplitude of the ultrasonic horn; and means for adjusting the amplitude of said horn in accordance with said correlated signal.
- 16. A system in accordance with claim 15, wherein said non-contact means comprises two said detectors aligned such that a line drawn between corresponding points of said detectors is parallel to said axis of rotation of said rotating ultrasonic horn.
- 17. A system in accordance with claim 15, wherein said data acquisition and analysis system further comprises translation means for converting a displacement of said light spot on said detector into a horn displacement.
- 18. A system in accordance with claim 15, wherein said non-contact means comprises:
optical fibers including a light emitting optical fiber disposed perpendicular to an axis of rotation of said rotary ultrasonic horn, said light emitting optical fiber transmitting a light beam onto a material contacting surface of said rotating ultrasonic horn; the optical fibers further including a light receiving optical fiber optically connected to a photodetector and positioned to receive a portion of reflected light reflected off said material contacting surface and transmit the reflected light to the photodetector; and the photodetector producing a detector output signal proportional to an intensity of said light on said detector.
- 19. A system in accordance with claim 18, wherein said non-contact means comprises two said detectors aligned such that a line drawn between corresponding points of said detectors is parallel to said axis of rotation of said rotating ultrasonic horn.
- 20. A system in accordance with claim 13, wherein said non-contact amplitude sensor comprises a non-contact displacement measuring device employing the eddy current principle.
- 21. A system in accordance with claim 13, wherein said non-contact amplitude sensor comprises a non-contact inductive displacement measuring device.
- 22. A system in accordance with claim 13, wherein said non-contact amplitude sensor comprises a non-contact capacitive displacement measuring device.
Parent Case Info
[0001] This application is a Divisional of Ser. No. 09/651,920, filed on Aug. 31, 2000, which is a continuation-in-part of Ser. No. 09/292,194.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09651920 |
Aug 2000 |
US |
Child |
10609318 |
Jun 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09292194 |
Apr 1999 |
US |
Child |
09651920 |
Aug 2000 |
US |