Claims
- 1. A laser system, comprising
a laser unit configured to produce laser radiation; an incoupling means configured to incouple laser radiation into a light-guide; an outcoupling means configured to incouple the laser radiation from the light-guide; a first data transmitting means coupled to the incoupling means or outcoupling means and configured to provide first optical signals which are incoupled into the light-guide using the incoupling means or the outcoupling means; and a first data receiving means at an end of the light-guide opposite the incoupling means or outcoupling means, wherein the first data receiving means is configured to receive the first optical signals of the first data transmitting means transmitted via the light-guide.
- 2. The laser system according to claim 1, wherein the first data transmitting means is coupled to the outcoupling means, the first data receiving means is coupled to the incoupling means, and the first optical signals are outcoupled from the optical path of the laser radiation by the incoupling means.
- 3. The laser system according to claim 2, further comprising:
a second data transmitting means coupled to the incoupling means and configured to provide second optical signals which are incoupled into the light-guide using the incoupling means; and a second data receiving means coupled to the outcoupling means and configured to receive the second optical signals of the second data transmitting means transmitted via the light-guide to establish a bidirectional optical signal transmission through the light-guide.
- 4. The laser system according to claim 3, wherein the wavelengths of the optical signals of the first and second data transmitting means are different.
- 5. The laser system according to claim 4, wherein the wavelength of the laser radiation and the wavelength of the optical signals of the first and second data transmitting means are different.
- 6. The laser system according to claim 5, wherein the first and second optical signals are used for transmitting information concerning the status of the laser system.
- 7. The laser system according to claim 6, wherein the first and second optical signals are used for transmitting information for controlling the laser unit, for producing laser radiation, or for controlling the incoupling means.
- 8. The laser system according to claim 7, wherein the first optical signals are used for controlling a power level of the laser radiation.
- 9. The laser system according to claim 8, wherein the laser radiation is a high-power laser radiation suitable for use in the field of medical applications.
- 10. The laser system according to claim 9, wherein the outcoupling means further comprises a focusing unit with a lens system for focusing the laser radiation, wherein the lens system used for incoupling the first optical signals into the light-guide.
- 11. The laser system according to claim 10, wherein the data transmitting means coupled to the outcoupling means further comprises a first light emitting diode for providing the first optical signals.
- 12. The laser system according to claim 11, wherein the first light emitting diode is configured to emit the first optical signals in a blue spectral range.
- 13. The laser system according to claim 12, wherein the lens system of the focusing unit is provided with a dielectric coating for the efficient incoupling of the first optical signals via the lens system.
- 14. The laser system according to claim 13, wherein the incoupling means further comprises a first mirror with a dielectric coating, wherein the mirror is transparent to the laser radiation produced and reflects the first optical signals.
- 15. The laser system according to claim 14, wherein the first optical signals have specific pulse durations which make them distinguishable from the second optical signals and other interfering signals.
- 16. The laser system according to claim 15, wherein the first data receiving means coupled to the incoupling means is further configured to detect additional optical signals.
- 17. The laser system according to claim 16, wherein the second data transmitting means coupled to the incoupling means further comprises a pilot laser configured to indicate the focus of the laser radiation.
- 18. The laser system according to claim 17, further comprising a means for measuring reemitted radiation, wherein the reemitted radiation is produced when material is treated by the laser radiation.
- 19. The laser system according to claim 18, wherein the first data receiving means are further configured to detect the reemitted radiation.
- 20. The laser system according to claim 19, further comprising a hand-piece connected via the light-guide to the laser unit, wherein the outcoupling means and the first data transmitting means are integrated in the hand-piece.
- 21. The laser system according to claim 19, further comprising a hand-piece connected via the light-guide to the laser unit, wherein the outcoupling means for outcoupling laser radiation from the light-guide, the first data transmitting means and the second data receiving means are integrated in the hand-piece.
- 22. The laser system according to claim 21, wherein the hand-piece further comprises operating means which are configured to provide electric signals that control the laser unit and to forward the electric signals to the first data transmitting means to be converted to first optical signals.
- 23. The laser system according to claim 22, wherein the hand-piece further comprises a display unit for displaying information received via the second data receiving means.
- 24. The laser system according to claim 23, wherein the hand-piece further comprises a rechargeable battery for supplying power to the first data transmitting means, the second data receiving means, the operating means, and the display unit.
- 25. The laser system according to claim 24, wherein the rechargeable battery is configured to be recharged by means of a charging device connected to the laser unit, the charging device is provided with a holder for detachably fastening the hand-piece, and the holder and the hand-piece comprise electric contacts used for charging the rechargeable battery.
- 26. The laser system according to claim 25, further comprising photocells configured to supply power to the first data transmitting means, the second data receiving means, the operating means, and the display unit, wherein the photocells are integrated in the hand-piece alternatively or additionally to the rechargeable batteries and are further configured to use conventional light or reflected laser radiation for generating electric energy.
- 27. The laser system according to claim 26, wherein the hand-piece comprises a modular structural design with attachable, replaceable, or removable elements that are mountable to the hand-piece depending on the respective intended use of the laser system.
- 28. The laser system according to claim 27, wherein the individual elements of the hand-piece comprise identification means that are evaluated electronically, optically, or mechanically and that are arranged to be identified via a reading unit in the hand-piece when the elements are mounted to the hand-piece, whereby the data provided by the identification means are forwarded to the operation means or the first data transmitting means and used for controlling the hand-piece or the laser unit.
- 29. The laser system according to claim 3, further comprising a hand-piece connected via the light-guide to the laser unit, wherein the outcoupling, the first data transmitting means, and the second data receiving means are integrated in the hand-piece.
- 30. The laser system according to claim 29, wherein the hand-piece further comprises operating means which are configured to provide electric signals used for controlling the laser unit and to forward the electric signals to the first data transmitting means to be converted to first optical signals.
- 31. The laser system according to claim 30, wherein the hand-piece further comprises a display unit configured to display information received via the second data receiving means.
- 32. The laser system according to claim 30, wherein the hand-piece comprises a modular structural design with attachable, replaceable, or removable elements which are mountable to the hand-piece depending on the respective intended use of the laser system.
- 33. The laser system according to claim 32, wherein the individual elements of the hand-piece comprise identification means that are evaluated electronically, optically, or mechanically and that are arranged for identification via a reading unit in the hand-piece when the elements are mounted to the hand-piece, whereby the data provided by the identification means is forwarded to the operation means or the first data transmitting means and used for controlling the hand-piece or the laser unit.
- 34. The laser system according to claim 4, wherein the spectral sensitivity of the first and second data receiving means are different.
- 35. The laser system according to claim 34, wherein the first data receiving means is further configured to detect additional optical signals.
- 36. The laser system according to claim 35, further comprising a means for measuring reemitted radiation, wherein the reemitted radiation is produced when material is treated by means of the laser radiation produced.
- 37. The laser system according to claim 36, wherein the first data receiving means are further configured to detect the reemitted radiation.
- 38. The laser system according to claim 1, wherein the first data transmitting means is coupled to the incoupling means and the first data receiving means is coupled to the outcoupling means and the first optical signals are outcoupled from the optical path of the laser radiation by the outcoupling means.
Priority Claims (1)
Number |
Date |
Country |
Kind |
102 36 175.4 |
Aug 2002 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to co-pending German Patent Application No. 102 36 175.4, which was filed on Aug. 7, 2002 and is incorporated herein by reference.