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    • 1. 发明专利
    • OPTICAL DISK
    • JPH06203390A
    • 1994-07-22
    • JP35867592
    • 1992-12-28
    • MATSUSHITA ELECTRIC IND CO LTD
    • MURAOKA KOJISUENAGA KIYOYUKIGONDO HIROYUKISAKATA SHINGO
    • G11B7/085G11B7/095G11B21/10
    • PURPOSE:To make a high-band and high-function servo control even at the time of high-speed rotation of the optical disk by controlling the optical pickup by a 3rd control signal with the 1st and 2nd control signals added. CONSTITUTION:A focusing servo high frequency band compensating means 67 leads, the phase of an inputted focusing error signal 19 by 60 deg.. The means 67 shows the good phase characteristic without phase lag in the arithmetic delay time and control signal hold because of its analog circuit. In a normal servo state reading and writing the signal on an optical disk 1, when a vibration is applied from outside on a focusing servo means 100, an enough open loop gain causing no focus blurring is required. Thus, a focusing servo low-frequency band gain increasing means 78 can change the filter constant so as to increase the gain in the vibration frequency band 1-500Hz by few decibels. Further, a control signal addition means 69 adding the control signals outputted by the means 67 and 78 is provided to enable both the high servo band and the high function compensation.
    • 3. 发明专利
    • OPTICAL DISK DEVICE
    • JPH064989A
    • 1994-01-14
    • JP16242592
    • 1992-06-22
    • MATSUSHITA ELECTRIC IND CO LTD
    • SAKATA SHINGOGONDO HIROYUKISUENAGA KIYOYUKIMURAOKA KOJI
    • G11B7/00G11B7/004G11B7/095G11B19/04G11B19/20
    • PURPOSE:To provide a highly precise position control even when a low performance servo control system and an optical pickup are used by changing the relative loading position of an optical disk on a spindle motor. CONSTITUTION:A disk deviation detector 22 which detects the eccentricity and the wobbling surface of an optical disk 1 and outputs signals and a position change signal generator 23 are provided. The detector 22 detects a maximum amount of eccentricity of the disk 1 including the eccentricity of a spindle motor 2 from the size of tracking error signals while a tracking servo is turned on. One revolution of the disk 1 is equally divided by reference pulses, the position of the maximum eccentricity of the disk 1 is judged and the position at which the maximum amount of eccentricity is generated is outputted to the generator 23. The generator 23 outputs the signal which shows the position change to an automatic loading mechanism 3. The mechanism 3 unloads the disk 1 from the motor 2 after the motor 2 stops, rotates the motor 2 with prescribed number of reference pulses and again reloads the disk 1 onto the motor 2 so as to change the relative position.