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    • 3. 发明授权
    • Optical disc apparatus, tracking control method, and integrated circuit
    • 光盘装置,跟踪控制方法和集成电路
    • US07616539B2
    • 2009-11-10
    • US11708712
    • 2007-02-21
    • Kazuhiko MiyazakiKiyoshi MasakiHideki Shirane
    • Kazuhiko MiyazakiKiyoshi MasakiHideki Shirane
    • G11B7/095
    • G11B7/0938G11B7/0903G11B7/0906G11B7/0945G11B7/131
    • An optical disc apparatus has: an optical head 400 for emitting a light beam onto a predetermined track of an optical disc 300 before tracking control in order to detect reflected light with a photodetector; an arithmetic circuit 130 for generating measurement signals each indicative of a time-varying change of light received on a respective one of a plurality of light receiving areas of the photodetector; an A/D converter circuit 140 for A/D converting each measurement signal; a microcomputer 190 for determining a correction value based on a difference, in terms of high- and low-frequency components, between measurement signals having been A/D converted; and an adder circuit 180 for adding the correction value to a driving value output from a tracking control circuit 170, so that the driving value is corrected.
    • 光盘装置具有:用于在跟踪控制之前将光束发射到光盘300的预定轨道上以便用光电检测器检测反射光的光学头400; 算术电路130,用于产生测量信号,每个测量信号指示在光电检测器的多个光接收区域中的相应一个上接收的光的时变变化; 用于对每个测量信号进行A / D转换的A / D转换电路140; 微型计算机190,用于根据经过A / D转换的测量信号之间的高频和低频分量的差异来确定校正值; 以及加法器电路180,用于将校正值与从跟踪控制电路170输出的驱动值相加,从而校正驱动值。
    • 4. 发明申请
    • Optical disc apparatus, tracking control method, and integrated circuit
    • 光盘装置,跟踪控制方法和集成电路
    • US20070211588A1
    • 2007-09-13
    • US11708712
    • 2007-02-21
    • Kazuhiko MiyazakiKiyoshi MasakiHideki Shirane
    • Kazuhiko MiyazakiKiyoshi MasakiHideki Shirane
    • G11B7/00
    • G11B7/0938G11B7/0903G11B7/0906G11B7/0945G11B7/131
    • An optical disc apparatus has: an optical head 400 for emitting a light beam onto a predetermined track of an optical disc 300 before tracking control in order to detect reflected light with a photodetector; an arithmetic circuit 130 for generating measurement signals each indicative of a time-varying change of light received on a respective one of a plurality of light receiving areas of the photodetector; an A/D converter circuit 140 for A/D converting each measurement signal; a microcomputer 190 for determining a correction value based on a difference, in terms of high- and low-frequency components, between measurement signals having been A/D converted; and an adder circuit 180 for adding the correction value to a driving value output from a tracking control circuit 170, so that the driving value is corrected.
    • 光盘装置具有:用于在跟踪控制之前将光束发射到光盘300的预定轨道上以便用光电检测器检测反射光的光学头400; 算术电路130,用于产生测量信号,每个测量信号指示在光电检测器的多个光接收区域中的相应一个上接收的光的时变变化; 用于对每个测量信号进行A / D转换的A / D转换电路140; 微型计算机190,用于根据经过A / D转换的测量信号之间的高频和低频分量的差异来确定校正值; 以及加法器电路180,用于将校正值与从跟踪控制电路170输出的驱动值相加,从而校正驱动值。
    • 5. 发明申请
    • Track jumping scan control device and track searching device
    • 跟踪跳跃扫描控制装置和跟踪搜索装置
    • US20070115768A1
    • 2007-05-24
    • US11598822
    • 2006-11-14
    • Shinichi YamadaKiyoshi MasakiKazuhiko Miyazaki
    • Shinichi YamadaKiyoshi MasakiKazuhiko Miyazaki
    • G11B7/00
    • G11B7/08517G11B7/094
    • In a track jumping scan control device wherein an optical beam is irradiated on an optical disc provided with a header region capable of a mark-recording operation with respect to both of land and groove tracks adjacent in a radial direction of the disc and comprising prepits, and a signal based on a reflected light resulting therefrom is used to make the optical beam jumping-scan with respect to a predetermined track, a full track jumping scan for making the optical beam track-jump between the land tracks or the groove tracks or a half track jumping scan for making the optical beam track-jump from the land track to the groove track or from the groove track to the land track is executed as the track jumping scan. Which of the two track jumping scans is executed is selected in accordance with a cycle at which the header region is set.
    • 在轨道跳跃扫描控制装置中,其中光束被照射在具有相对于在盘的径向相邻的陆地和凹槽轨迹的标记记录操作的头部区域的光盘上,并且包括预凹坑, 并且使用基于由其产生的反射光的信号来相对于预定轨道进行光束跳跃扫描,用于使轨迹轨迹或凹槽轨道之间的光束轨迹跳跃的全轨道跳跃扫描或 作为轨道跳跃扫描,执行用于使光束从脊轨道到凹槽轨道或从凹槽轨道到脊轨道的轨迹跳跃的半径跳跃扫描。 根据设置标题区域的周期来选择执行两个轨迹跳跃扫描中的哪一个。
    • 6. 发明授权
    • Track jumping scan control device and track searching device
    • 跟踪跳跃扫描控制装置和跟踪搜索装置
    • US07885150B2
    • 2011-02-08
    • US11598822
    • 2006-11-14
    • Shinichi YamadaKiyoshi MasakiKazuhiko Miyazaki
    • Shinichi YamadaKiyoshi MasakiKazuhiko Miyazaki
    • G11B7/00
    • G11B7/08517G11B7/094
    • In a track jumping scan control device wherein an optical beam is irradiated on an optical disc provided with a header region capable of a mark-recording operation with respect to both of land and groove tracks adjacent in a radial direction of the disc and comprising prepits, and a signal based on a reflected light resulting therefrom is used to make the optical beam jumping-scan with respect to a predetermined track, a full track jumping scan for making the optical beam track-jump between the land tracks or the groove tracks or a half track jumping scan for making the optical beam track-jump from the land track to the groove track or from the groove track to the land track is executed as the track jumping scan. Which of the two track jumping scans is executed is selected in accordance with a cycle at which the header region is set.
    • 在轨道跳跃扫描控制装置中,其中光束被照射在具有相对于在盘的径向相邻的陆地和凹槽轨迹的标记记录操作的头部区域的光盘上,并且包括预凹坑, 并且使用基于由其产生的反射光的信号来相对于预定轨道进行光束跳跃扫描,用于使轨迹轨迹或凹槽轨道之间的光束轨迹跳跃的全轨道跳跃扫描或 作为轨道跳跃扫描,执行用于使光束从脊轨道到凹槽轨道或从凹槽轨道到脊轨道的轨迹跳跃的半径跳跃扫描。 根据设置标题区域的周期来选择执行两个轨迹跳跃扫描中的哪一个。
    • 7. 发明授权
    • Apparatus and method for tracking control
    • 跟踪控制的装置和方法
    • US07307926B2
    • 2007-12-11
    • US10664719
    • 2003-09-17
    • Masaya KuwaharaKiyoshi Masaki
    • Masaya KuwaharaKiyoshi Masaki
    • G11B7/00
    • G11B7/0941G11B7/00736G11B7/08517G11B7/0945
    • A tracking controller includes a tracking error detecting section and a tracking control section. The tracking error detecting section generates and outputs a tracking error signal that represents how much the focal point of a light beam has shifted from a target track on a storage medium. The tracking control section generates a drive signal in response to the tracking error signal so as to move the light beam such that the focal point of the light beam is located right on the target track. The gain of at least one of the tracking error signal and the drive signal is switched depending on whether or not the focal point of the light beam is located on a recorded area of the storage medium on which data has already been written.
    • 跟踪控制器包括跟踪误差检测部分和跟踪控制部分。 跟踪误差检测部分产生并输出跟踪误差信号,该跟踪误差信号表示光束的焦点已经从存储介质上的目标轨迹偏移了多少。 跟踪控制部分响应于跟踪误差信号产生驱动信号,以使光束移动,使得光束的焦点位于目标轨道上。 根据光束的焦点是否位于已经写入数据的存储介质的记录区域上,来切换跟踪误差信号和驱动信号中的至少一个的增益。
    • 8. 发明授权
    • Disk access device
    • 磁盘访问设备
    • US07554886B2
    • 2009-06-30
    • US11707270
    • 2007-02-16
    • Kiyoshi MasakiKazuhiko MiyazakiYoshiyuki Sugahara
    • Kiyoshi MasakiKazuhiko MiyazakiYoshiyuki Sugahara
    • G11B17/22
    • G11B7/08505G11B7/0079
    • A disk access device records to and plays back from a disk on which data recording is performed according to the ZCLV format, and includes a head that reads/writes data from/to the disk. The disk access device calculates a deferment time period that begins upon completion of data reading/writing in the user area of a currently accessed zone and ends when the head enters a predetermined area of the guard track zone following the user area, and a setting time period for performing settings for data reading/writing in the zone to be accessed next. If the deferment time period is shorter than the setting time period, the disk access device moves the head back, when data reading or writing in the currently accessed zone ends, to a position such that the setting time period ends before the head advancing from the position arrives at the predetermined area.
    • 磁盘访问设备根据ZCLV格式从执行数据记录的磁盘记录到并重放,并且包括从/向磁盘读取/写入数据的磁头。 磁盘访问装置计算在当前访问区域的用户区域中完成数据读取/写入之后开始的延迟时间段,并且当头部进入跟随用户区域的保护轨道区域的预定区域结束时, 用于执行下一个要访问的区域中的数据读取/写入设置的周期。 如果延迟时间段比设定时间段短,则在当前访问区域的数据读取或写入结束时,磁盘存取装置将头部移回到使头部从头部前进开始的结束位置 位置到达预定区域。
    • 9. 发明申请
    • Disk access device
    • 磁盘访问设备
    • US20070201318A1
    • 2007-08-30
    • US11707270
    • 2007-02-16
    • Kiyoshi MasakiKazuhiko MiyazakiYoshiyuki Sugahara
    • Kiyoshi MasakiKazuhiko MiyazakiYoshiyuki Sugahara
    • G11B7/085
    • G11B7/08505G11B7/0079
    • A disk access device records to and plays back from a disk on which data recording is performed according to the ZCLV format, and includes a head that reads/writes data from/to the disk. The disk access device calculates a deferment time period that begins upon completion of data reading/writing in the user area of a currently accessed zone and ends when the head enters a predetermined area of the guard track zone following the user area, and a setting time period for performing settings for data reading/writing in the zone to be accessed next. If the deferment time period is shorter than the setting time period, the disk access device moves the head back, when data reading or writing in the currently accessed zone ends, to a position such that the setting time period ends before the head advancing from the position arrives at the predetermined area.
    • 磁盘访问设备根据ZCLV格式从执行数据记录的磁盘记录到并重放,并且包括从/向磁盘读取/写入数据的磁头。 磁盘访问装置计算在当前访问区域的用户区域中完成数据读取/写入之后开始的延迟时间段,并且当头部进入跟随用户区域的保护轨道区域的预定区域结束时, 用于执行下一个要访问的区域中的数据读取/写入设置的周期。 如果延迟时间比设定时间短,则在当前访问区域的数据读取或写入结束时,磁盘访问装置将磁头返回到使头部从头部前进开始的结束位置 位置到达预定区域。