Claims
- 1. An information reproducing system comprising an equalizer for equalizing a signal reproduced from a recording medium having a recorded digital information signal, and a decoder for decoding said equalized signal to an original digital signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1), said equalizer effects equalization so that an eye aperture rate of an eye pattern indicating an overlapping status of isolated waveforms becomes larger than that of a reproduced waveform from said recording medium.
- 2. An information reproducing system according to claim 1, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm .apprxeq.(2.multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical system of the information reproducing system is NA, and a linear speed of said recording medium is V.
- 3. An information reproducing system comprising an equalizer for equalizing a signal reproduced from a recording medium having a recorded digital information signal, and a decoder for decoding said equalized signal to an original digital signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient -with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=k.multidot.d.multidot.Fm(K>1), said equalizer effects equalization of a reproduced waveform so that a ratio of amplitude to a pulse width of a reproduced isolating pulse from said recording medium is increased.
- 4. An information reproducing system according to claim 3, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm .apprxeq.(2.multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical system of the information reproducing system is NA, and a linear speed of said recording medium is V.
- 5. An information reproducing system comprising an equalizer for equalizing a signal reproduced from a recording medium having a recorded digital information signal and a decoder for decoding said equalized signal to said original digital signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1), said equalizer effects equalization of a reproduced waveform so that an amplitude of a reproduced isolating pulse from said recording medium is increased.
- 6. An information reproducing system according to claim 5, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm.apprxeq.(2.multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical system of the information reproducing system is NA, and a linear speed of said recording medium is V.
- 7. An equalizing method of equalizing a signal reproduced from a recording medium having a recorded digital information signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1);
- said method comprising the step of effecting equalization so that an eye aperture rate of an eye pattern indicating an overlapping status of isolated waveforms becomes larger than that of a reproduced waveform from said recording medium.
- 8. An equalizing method according to claim 7, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm .apprxeq.(2.multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical systems is NA, and a linear velocity of said recording medium is V.
- 9. An equalizing method of equalizing a signal reproduced from a recording medium having a recorded digital information signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1);
- said method comprising the step of equalizing a reproduced waveform so that a ratio of an amplitude to a pulse width of a reproduced isolating pulse from said recording medium is increased.
- 10. An equalizing method according to claim 9, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm .apprxeq.(2.multidot..multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical systems is NA, and a linear velocity of said recording medium is V.
- 11. An equalizing method of equalizing a signal reproduced from a recording medium having a recorded digital information signal, wherein:
- said digital information signal recorded on said recording medium is a digital information signal modulated by use of a run length limited code having a minimum run length of d; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded on said recording medium at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1);
- said method comprising the step of equalizing a reproduced waveform so that an amplitude of a reproduced isolating pulse from said recording medium is increased.
- 12. An equalizing method according to claim 11, wherein said recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by an equation Fm .apprxeq.(2.multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical systems is NA, and a linear velocity of said recording medium is V.
- 13. A recording medium having a recorded digital information signal to be used in an information reproducing system comprising an equalizer for equalizing a reproduced signal, and a decoder for decoding said equalized signal to an original digital information signal, wherein:
- a digital information signal modulated by use of a run length limited code having a minimum run length of d is recorded on said medium; and
- when Fm denotes a cut-off frequency of said recording medium, and K denotes a coefficient with regard to a recording density which is a value larger than 1, and said digital information signal is recorded at a recording bit rate Fb satisfying an equation Fb=K.multidot.d.multidot.Fm(K>1).
- 14. A recording medium according to claim 13, wherein said-recording medium is an optical disk and said cut-off frequency Fm of said recording medium is expressed by the equation, Fm.apprxeq.(2.multidot..multidot.V.multidot.NA)/.lambda., wherein a wavelength of a laser is .lambda., a numerical aperture of an optical system is NA, and a linear velocity of said recording medium is V.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-210098 |
Sep 1994 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/692,091, filed Aug. 7, 1996, now U.S. Pat. No. 5,650,989, which is a continuation of 08/517,584, filed Aug. 22, 1995, now U.S. Pat. No. 5,602,816.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5488591 |
Kobayashi et al. |
Jan 1996 |
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Continuations (2)
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Number |
Date |
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Parent |
692091 |
Aug 1996 |
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Parent |
517584 |
Aug 1995 |
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