Claims
- 1. An optical detector for detecting at least three optical beams reflected by an optical information recording medium and outputting an electric signal, said optical detector comprising:
three light receiving areas each of which receives a respective one of said three optical beams and each of which has four light receiving surfaces; twelve signal lines to transmit an electric signal obtained on respective ones of said four light receiving surfaces of said three light receiving areas, selected ones of said twelve signal lines which are connected to said four light receiving surfaces of different ones of said three light receiving areas being joined together in a predetermined connection within said optical detector; and less than nine signal output lines which are formed by the joining of said selected ones of said twelve signal lines in the predetermined connection extend from said optical detector to a signal processing circuit.
- 2. The optical detector as claimed in claim 1, wherein said three light receiving areas are formed by a photo-electric conversion element which includes twelve light receiving surfaces, and further including an electric current voltage conversion amplifier that converts the signal electric current from said light receiving surfaces into a signal voltage.
- 3. A signal processing circuit which produces a focus error signal and a tracking error signal from optical spots irradiated on an optical information recording medium, and reproduces a data signal recorded in said optical information recording medium by using electric signal output from an optical detector detecting at least three optical beams reflected by the optical information recording medium, said signal processing circuit comprising:
means for adding or subtracting focusing error signals produced from each of three spots irradiated on said optical information recording medium using an astigmatic detection method and a tracking error signal for each of three spots irradiated on said optical information recording medium using a push-pull method; and means for outputting signals produced by said adding or subtracting means.
- 4. The signal processing circuit as claimed in claim 3, wherein a tracking error signal is produced by a three spot detection method using a signal representing the difference between two signals from two optical beams of said at least three optical beams detected by said optical detector.
- 5. The signal processing circuit as claimed in claim 3, wherein a tracking error signal is produced by a differential phase detection method using a signal from one of said at least three optical beams detected by said optical detector.
- 6. An optical information reproducing apparatus comprising:
a semiconductor laser; an optical dividing element that divides an optical beam that is emitted from the semiconductor laser into at least three optical beams; an optical system that converges each of the three optical beams and irradiates optical spots of the three optical beams at a prescribed position on an optical information recording medium; an optical detector which receives three optical beams that are reflected by said optical information recording medium and outputs electric signals representative thereof; a control circuit judging a kind of said optical information recording medium; and a signal processing circuit producing and outputting a focus error signal and a tracking error signal the optical information recording medium by changing selectively a prescribed focus error signal detecting method and tracking error signal detecting method according to the kind of optical information recording method which is judged by said control circuit, and reproducing a data signal recorded in said optical information recording medium.
- 7. The optical information reproducing apparatus as claimed in claim 6 comprising plural said semiconductor lasers wherein said control circuit changes selectively said plural semiconductor lasers according to the kind of said optical information recording method which is judged.
- 8. The optical information reproducing apparatus as claimed in claim 6 wherein said optical driving element is a diffraction grating.
- 9. An optical detector for detecting data recorded on an optical information recording medium, by receiving optical beams, which have emanated from a semiconductor laser, reflected from said optical information recording medium and branched into at least three beams, the optical detector comprising first, second and third light receiving areas, each of which is partitioned into four which are disposed at positions where the three optical beams are irradiated, respectively, the optical detector having twelve light receiving surfaces with a signal line extending therefrom so that twelve signal lines are provided, selected ones of the twelve signal lines which are connected to respective ones of the twelve receiving surfaces of different ones of the first, second and third light receiving areas being joined together in a predetermined connection within the optical detector, and no more than nine signal lines that output signals from the optical detector extend from the optical detector to a signal processing circuit.
- 10. The optical detector circuit as claimed in claim 9, wherein a tracking error signal is detected by a three spot detection method by outputting a signal that is substantially proportional to light amounts of optical beams irradiated onto the second and the third light receiving area in the optical detector to the signal processing circuit.
- 11. The optical detector as claimed in claim 9, wherein said light receiving surfaces, and a current-voltage conversion amplifier for converting signal current obtained by photo-electric conversion on the light receiving surfaces into signal voltage are provided in the same package.
- 12. An optical pickup, comprising the optical detector according to claim 9, and further comprising:
a semiconductor laser; an optical dividing element that divides an optical beam that emanates from the semiconductor laser into at least three optical beams; and an optical system that converges each of three optical beams and irradiates optical spots of three optical beams at prescribed positions on an optical information recording medium.
- 13. An optical pickup as claimed in claim 12, wherein said optical dividing element is a diffraction grating.
- 14. An optical pickup, comprising the optical detector according to claim 9 which is a single optical detector, and further comprising:
a plurality of semiconductor lasers; an optical dividing element that divides each optical beam emanating from the semiconductor lasers into at least three optical beams; and a single optical system that converges the optical beams and irradiates corresponding optical spots at prescribed positions on an optical information recording medium; wherein one of the plurality of semiconductor lasers is activated selectively, depending on the type of optical information recording medium.
- 15. An optical pickup as claimed in claim 14, wherein said optical dividing element is a diffraction grating.
- 16. An optical information reproducing apparatus, comprising the optical detector according to claim 10, and further comprising:
a semiconductor laser; an optical dividing element that divides an optical beam that emanates from the semiconductor laser into at least three optical beams; an optical system that converges said three optical beams and irradiates respective optical spots at prescribed positions on the optical information recording medium; the optical detector receiving optical beams reflected from the optical information recording medium and outputting signals; a signal processing circuit processing signals obtained from the optical detector; and a control circuit judging the type of the optical information recording medium; wherein the signal processing circuit that switches the detecting method between the focus error signal detecting method and the tracking error signal detecting method, based on the judgement result of said control circuit of the type of the optical information recording medium, obtains a signal corresponding to the selected detecting method, and produces a focus error signal or tracking error signal.
- 17. An optical detector for detecting data recorded on an optical information recording medium, by receiving optical beams, which have been emitted from a semiconductor laser, reflected from said optical information recording medium and branched into at least three beams,
the optical detector having at least twelve light receiving surfaces in total constituted by first, second and third light receiving areas which are partitioned into four each and which are disposed at positions where the three optical beams are irradiated onto the optical detector; a signal connected to each of the receiving surfaces arranged in said first, second and third light receiving areas so that at least twelve signal lines are provided, selected ones of said at least twelve signal lines which are connected to different ones of the first, second and third light receiving areas being joined together in a predetermined connection within the optical detector, and no more than nine output signal lines extend from the optical detector so as to provide output signals to a signal processing circuit; and the signal processing circuit processing the output signals from the optical detector to provide a focus error signal and a tracking error signal.
- 18. An optical detector according to claim 17, wherein the processing circuit provides the focus error signal according to an astigmatic detection method with respect to the optical beam irradiated on the first light receiving area, and provides the tracking error signal according to differential phase detection method or push-pull method.
- 19. An optical detector according to claim 18, wherein the processing circuit provides a sum signal of the focus error signal according to an astigmatic detection method with respect to the optical beam irradiated on the second receiving area and the focus error signal according to an astigmatic detection method with respect to the optical beam irradiated on the third light receiving area, and a sum signal of the tracking error signal according to the push-pull method with respect to the optical beam irradiated on the second receiving area and the tracking error signal according to the push-pull method with respect to the optical beam irradiated on the third light receiving area.
- 20. The optical detector circuit as claimed in claim 17, wherein a tracking error signal is detected by a three spot detection method by outputting a signal that is substantially proportional to light amounts of optical beams irradiated onto the second and the third light receiving area in the optical detector to the signal processing circuit.
- 21. The optical detector as claimed in claim 17, wherein said light receiving surfaces, and a current-voltage conversion amplifier for converting signal current obtained by photo-electric conversion on the light receiving surfaces into signal voltage are provided in the same package.
- 22. An optical pickup, comprising the optical detector according to claim 17, and further comprising:
a semiconductor laser; an optical dividing element that divides an optical beam that emanates from the semiconductor laser into at least three optical beams; and an optical system that converges each of three optical beams and irradiates optical spots of three optical beams at prescribed positions on an optical information recording medium.
- 23. An optical pickup as claimed in claim 22, wherein said optical dividing element is a diffraction grating.
- 24. An optical pickup, comprising the optical detector according to claim 18 which is a single optical detector, and further comprising:
a plurality of semiconductor lasers; an optical dividing element that divides each optical beam emanating from the semiconductor lasers into at least three optical beams; and a single optical system that converges the optical beams and irradiates corresponding optical spots at prescribed position on an optical information recording medium; wherein one of the plurality of semiconductor lasers is activated selectively, depending on the type of optical information recording medium.
- 25. An optical pickup as claimed in claim 24, wherein said optical dividing element is a diffraction grating.
- 26. An optical information reproducing apparatus, comprising the optical detector according to claim 18, and further comprising:
a semiconductor laser; an optical dividing element that divides an optical beam that emanates from the semiconductor laser into at least three optical beams; an optical system that converges said three optical beams and irradiates respective optical spots at prescribed positions on the optical information recording medium; the optical detector receiving optical beams reflected from the optical information recording medium and outputs signals; a signal processing circuit processing signals obtained from the optical detector; and a control circuit judging the type of the optical information recording medium; wherein the signal processing circuit that switches the detecting method between the focus error signal detecting method and the tracking error signal detecting method, based on the judgement result of said control circuit of the type of the optical information recording medium, obtains a signal corresponding to the selected detecting method, and produces a focus error signal or tracking error signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P10-188509 |
Jul 1998 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation of U.S. application Ser. No. 09/347,530, filed Jul. 6, 1999, the subject matter of which is incorporated by reference herein.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09347530 |
Jul 1999 |
US |
Child |
10142896 |
May 2002 |
US |