Nova Patents
EP1443501A2

Disk drive and pre-pit detection method

Abstract

A push-pull signal is detected from a disk-shaped storage medium on which wobbling grooves are formed as recording tracks and address information is recorded by forming pre-pits on lands between adjacent grooves. The detected push-pull signal is compared with a reference voltage thereby generating a land pre-pit detection signal. Of pulses included in the land pre-pit detection signal, those pulses having a small pulse width are regarded as noise pulses and removed thereby obtaining a corrected land pre-pit detection signal. The number of pulses included in the land pre-pit detection signal is counted, and the reference voltage is controlled in accordance with the counted number of pulses.

EP1443501A2, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 9 October 2023, 3 years ago.

  1. Priority
  2. Filed
  3. Published
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  5. Today

15 claims: 6 independent, 9 dependent

  1. 1
    A disk drive comprising:an optical head for emitting a laser beam so as to illuminate a disk-shaped storage medium thereby writing or reading data on or from the disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, pre-pits being formed on lands between adjacent grooves;a push-pull signal generator for generating a push-pull signal from reflected-light information detected by the optical head;a pre-pit detector for comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;and a noise remover for detecting a noise pulse on the basis of the pulse width of a pulse included in the detection signal output from the pre-pit detector, removing the noise pulse from the detection signal, and output the detection signal including no noise pulse.
  2. 5
    A disk drive comprising:an optical head for emitting a laser beam so as to illuminate a disk-shaped storage medium thereby writing or reading data on or from the disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, pre-pits being formed on lands between adjacent grooves;a push-pull signal generator for generating a push-pull signal from reflected-light information detected by the optical head;a pre-pit detector for comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;a counter for counting the number of pulses included in the detection signal output from the pre-pit detector, for each of predetermined periodic intervals;and a controller for changing the reference signal depending on the count value of the counter.
  3. 8
    A disk drive comprising:an optical head for emitting a laser beam so as to illuminate a disk-shaped storage medium thereby writing or reading data on or from the disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, pre-pits being formed on lands between adjacent grooves;a push-pull signal generator for generating a push-pull signal from reflected-light information detected by the optical head;a pre-pit detector for comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;a noise remover for detecting a noise pulse on the basis of the pulse width of a pulse included in the detection signal output from the pre-pit detector, removing the noise pulse from the detection signal, and output the detection signal including no noise pulse;a counter for counting the number of pulses included in the detection signal output from the pre-pit detector or included in the detection signal output from the noise remover, for each of predetermined periodic intervals;a controller for changing the reference signal depending on the count value of the counter;and an address decoder for acquiring the address information represented by the pre-pits, from the noise-removed detection signal.
  4. 13
    A method of detecting pre-pits formed on a disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, address information being represented by the pre-pits formed on lands between adjacent grooves, the method comprising the steps of:generating a push-pull signal from reflected-light information obtained when the disk-shaped storage medium is illuminated with a laser beam;comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;and detecting a noise pulse on the basis of the pulse width of a pulse included in the output detection signal, removing the detected noise pulse from the detection signal, and outputting the detection signal including no noise pulse.
  5. 14
    A method of detecting pre-pits formed on a disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, address information being represented by the pre-pits formed on lands between adjacent grooves, the method comprising the steps of:generating a push-pull signal from reflected-light information obtained when the disk-shaped storage medium is illuminated with a laser beam;comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;counting the number of pulses included in the output detection signal, for each of predetermined periodic intervals;and changing the reference signal depending on the count value.
  6. 15
    A method of detecting pre-pits formed on a disk-shaped storage medium, grooves serving as recording tracks being formed in a wobbling fashion on the disk-shaped storage medium, address information being represented by the pre-pits formed on lands between adjacent grooves, the method comprising the steps of:generating a push-pull signal from reflected-light information obtained when the disk-shaped storage medium is illuminated with a laser beam;comparing the push-pull signal with a reference signal and outputting a comparison result as a pre-pit detection signal;detecting a noise pulse on the basis of the pulse width of a pulse included in the output detection signal, removing the detected noise pulse from the detection signal, and outputting the detection signal including no noise pulse;counting the number of pulses included in the output detection signal, for each of predetermined periodic intervals;and changing the reference signal depending on the count value.