Nova Patents
EP0803866A2

Optical storage apparatus

Abstract

A light emission adjustment processing unit of a laser diode sequentially instructs a D/A converter for light emission of a light emission by test powers at predetermined two points, allows the laser diode to emit the light, instructs a D/A converter for subtraction of subtraction currents corresponding to the test powers at two points, and measures each power by an A/D converter for monitoring. From the measurement results, a relation of the instruction values to an arbitrary power in each D/A converter is obtained by a linear approximation and registered into a power table. When deciding an optimum writing power by a test write, a limit power on the lower limit side is detected while gradually decreasing the writing power from a starting power and a predetermined offset is added to the detected limit power, thereby obtaining the optimum writing power.

EP0803866A2, drawing sheet 1
Sheet 1 of 104

Term

Term ended

Projected expiry passed 23 December 2016, 9.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

42 claims: 11 independent, 31 dependent

  1. 1
    An optical storage apparatus comprising:a laser diode (30, 100) for emitting a laser beam;a light emission current source circuit (24, 104-110, 122-126, 140-144) for supplying a drive current according to a plurality of powers to said laser diode;an automatic power control unit (138) for controlling a light emitting power of said laser diode to a specified target power;a monitor photosensitive device (102) for receiving a part of the laser beam of said laser diode and outputting a photosensitive current I O;a subtraction current source circuit (112-116, 128-132, 146-150) for subtracting a specified subtraction current i 1 corresponding to a difference between a specified light emitting power and said target power from said photosensitive current and converting into a monitor im current and feeding back said monitor current to said automatic power control unit (138);a measuring unit (118, 152, 134) for monitoring to read the monitor current derived from said subtraction current source circuit as a power measurement value;and a light emission adjustment processing unit (14, 160-166) for sequentially instructing a light emission by predetermined test powers at two points to said light emission current source circuit (24), light emission driving said laser diode (30, 100), instructing said subtraction current source circuit of specified subtraction currents i corresponding to said test powers at two points, measuring each test power from said measuring unit for monitoring, and obtaining a relation between the instruction values to said light emission current source circuit and said subtraction current source circuit in an arbitrary power by a linear approximation on the basis of results of said measurement.
  2. 18
    An optical storage apparatus comprising:a laser diode (30,100) for emitting a laser beam a light emission current source circuit (24) for supplying a drive current according to a plurality of powers to said laser diode;an automatic power control unit (138) for controlling a light emitting power of said laser diode to a specified target power;a monitor photosensitive device (102) for receiving a part of the laser beam of said laser diode and outputting a photosensitive current;a subtraction current source circuit (112-116, 128-132, 146-150) for subtracting a specified subtraction current corresponding to a difference between a specified light emitting power and said target power from said photosensitive current and converting into a monitor current and feeding back said monitor current to said automatic power control unit;and a measuring unit (118, 134, 152) for monitoring to read the monitor current derived from said subtraction current source circuit as a power measurement value, wherein    when a medium loaded into said apparatus is a recording medium of a pit position modulation (PPM), said light emission coarse adjustment processing unit and said light emission fine adjustment processing unit adjust each of said erasing power and said first writing power, and    when the medium loaded into said apparatus is a recording medium of a pulse width modulation (PWM), said light emission coarse adjustment processing unit and said light emission fine adjustment processing unit adjust each of said erasing power, said first writing power, and said second writing power.
  3. 19
    An optical storage apparatus comprising:a laser diode (30,100) for emitting a laser beam;and a writing power adjusting unit (300) for writing a predetermined test pattern to a medium while gradually reducing a writing power of said laser diode step by step, reading out said test pattern after that and comparing with an original test pattern, counting the number of times of dissidence of data, detecting the writing power in which said number of times of dissidence exceeds a predetermined threshold value as a limit writing power, and determining a value obtained by adding a predetermined offset to said limit writing power as an optimum writing power.
  4. 25
    An optical recording apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power;and an adjustment timing judging unit (302) for judging a necessity of a writing power adjusting process to optimize the writing power to said medium and activating said adjustment timing judging unit in accordance with a result of said judgment.
  5. 34
    An optical recording apparatus comprising:a writing power adjusting unit(300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    said writing power adjusting unit designates a part of a user un-used area of the disk medium as a test area and executes a writing operation and a reading operation of the test pattern.
  6. 35
    An optical recording apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    said writing power adjusting unit executes the writing operation and the reading operation of the test pattern by using continuous partial sectors of a specified track among a plurality of tracks constructing said test area.
  7. 36
    An optical recording apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    said writing power adjusting unit designates a proper sector among a plurality of tracks constructing said test area at random by generating a random number and executes the writing operation and the reading operation of the test pattern.
  8. 37
    An optical recording apparatus comprising:a writing power adjusting unit(300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    when a data sync pattern cannot be detected upon reading of the test pattern, said writing power adjusting unit counts the maximum number of times of dissidence.
  9. 38
    An optical recording apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    when the number of times of dissidence in a range from a head sector to a predetermined number of sectors is equal to or less than a predetermined threshold value upon reading of the test pattern, said writing power adjusting unit regards that all of the sectors are good quality sectors, interrupts a data comparison, and counts a predetermined minimum value as the number of times of dissidence.
  10. 39
    An optical recording apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern onto a medium while changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power, wherein    said writing power adjusting unit determines the writing power to be set first from a temperature of the apparatus.
  11. 40
    An optical storage apparatus comprising:a writing power adjusting unit (300) for writing a predetermined test pattern to a medium while gradually changing a writing power step by step, reading out said test pattern after that, comparing said test pattern with an original test pattern, counting the number of times of dissidence of data, and deciding an optimum writing power from said number of times of dissidence and said writing power;and a test executing unit (304) for designating a part of a user un-used area of a disk medium as a test area and executing a writing operation and a reading operation of the test pattern at the time of the adjustment by said writing power adjusting unit.