APPARATUS FOR DEMODULATING ADDRESS IN PRE-GROOVE SYMBOLS AND APPARATUS FOR DECODING PRE-PIT SYMBOLS
    31.
    发明申请
    APPARATUS FOR DEMODULATING ADDRESS IN PRE-GROOVE SYMBOLS AND APPARATUS FOR DECODING PRE-PIT SYMBOLS 失效
    用于解除预编码符号的地址的装置和解码前缀符号的装置

    公开(公告)号:US20070280072A1

    公开(公告)日:2007-12-06

    申请号:US11755237

    申请日:2007-05-30

    CPC classification number: G11B20/1419 G11B27/24 G11B2020/1269

    Abstract: The invention provides an apparatus for demodulating an Address In Pre-groove (ADIP) symbol. The ADIP symbol is carried by a wobble signal of an optical disk and comprises a series of ADIP bits permuted according to one of a plurality of permutation patterns to make up the ADIP symbol. A wobble extraction module extracts the wobble signal from the optical disk. A reference wobble generator generates a reference wobble with the same frequency and phase as a fundamental frequency and phase of a positive wobble cycle of the wobble signal. A waveform difference measurement module then measures a difference between the wobble signal and the reference wobble to obtain a series of difference measurement values respectively corresponding to the ADIP bits. A pattern matching module then compares probabilities of the permutation of the ADIP bits agreeing with each of the permutation patterns according to the difference measurement values to determine the ADIP symbol.

    Abstract translation: 本发明提供了一种用于解调预编码地址(ADIP)符号的装置。 ADIP符号由光盘的摆动信号承载,并且包括根据多个置换模式中的一个置换的一系列ADIP位,以构成ADIP符号。 摆动提取模块从光盘中提取摆动信号。 参考摆动发生器产生与摆动信号的正摆动周期的基频和相位相同的频率和相位的参考摆动。 波形差测量模块然后测量摆动信号和参考摆动之间的差异,以获得分别对应于ADIP位的一系列差分测量值。 模式匹配模块然后根据差值测量值来比较与每个置换模式一致的ADIP位置的概率,以确定ADIP符号。

    Method and Related apparatus for deriving a tracking error signal
    32.
    发明申请
    Method and Related apparatus for deriving a tracking error signal 有权
    用于导出跟踪误差信号的方法和相关装置

    公开(公告)号:US20070002711A1

    公开(公告)日:2007-01-04

    申请号:US11466458

    申请日:2006-08-23

    Applicant: Yuh Cheng

    Inventor: Yuh Cheng

    CPC classification number: G11B7/0906 G11B7/0943

    Abstract: A method for deriving a tracking error signal based on a first analog detection signal and a second analog detection signal. The method includes summing the first analog detection signal and the second analog detection signal to generate an analog sum signal. An analog delay device is utilized to delay the analog sum signal to be a delay signal. The delay signal is digitalized into a digital delay signal. The first analog detection signal and the second analog detection signal are respectively transformed into a first digital detection signal and a second digital detect signal. The tracking error signal is then generated utilizing a comparing operation among the digital delay signal, the first digital detect signal, and the first digital detect signal.

    Abstract translation: 一种用于基于第一模拟检测信号和第二模拟检测信号导出跟踪误差信号的方法。 该方法包括对第一模拟检测信号和第二模拟检测信号求和以产生模拟和信号。 使用模拟延迟装置将模拟和信号延迟为延迟信号。 延迟信号被数字化为数字延迟信号。 第一模拟检测信号和第二模拟检测信号分别变换为第一数字检测信号和第二数字检测信号。 然后利用数字延迟信号,第一数字检测信号和第一数字检测信号之间的比较操作产生跟踪误差信号。

    CONTROL CIRCUIT OF OPTICAL STORAGE DEVICE AND METHOD THEREOF
    33.
    发明申请
    CONTROL CIRCUIT OF OPTICAL STORAGE DEVICE AND METHOD THEREOF 有权
    光存储器件的控制电路及其方法

    公开(公告)号:US20060285455A1

    公开(公告)日:2006-12-21

    申请号:US11425153

    申请日:2006-06-20

    CPC classification number: G11B7/0956 G11B7/094 G11B7/0943

    Abstract: A control circuit of an optical storage device includes a loop phase calculation unit for calculating a closed loop phase of a servo system according to at least one error signal of the servo system and a system control unit coupled to the loop phase calculation unit for generating an optimized control parameter according to the closed loop phase to perform compensation control, wherein the servo system comprises a tracking servo control system or a focusing servo control system, the compensation control is radial tilt control or focus balance adjustment, and the optimized control parameter is at least one optimized control parameter determined according to a plurality of closed loop phases calculated by the loop phase calculation unit.

    Abstract translation: 光存储装置的控制电路包括:循环相位计算单元,用于根据所述伺服系统的至少一个误差信号计算伺服系统的闭环相位;耦合到所述环路相位计算单元的系统控制单元,用于产生 根据闭环相位优化控制参数进行补偿控制,其中伺服系统包括跟踪伺服控制系统或聚焦伺服控制系统,补偿控制为径向倾斜控制或聚焦平衡调整,优化控制参数为 根据由循环相位计算单元计算出的多个闭环相位来确定最少一个优化控制参数。

    Circuit for tracking error signal detection on an optical storage medium
    34.
    发明授权
    Circuit for tracking error signal detection on an optical storage medium 失效
    用于在光学存储介质上跟踪误差信号检测的电路

    公开(公告)号:US07113461B2

    公开(公告)日:2006-09-26

    申请号:US10601642

    申请日:2003-06-24

    CPC classification number: G11B7/0943 G11B7/0906

    Abstract: A circuit for tracking error signal detection on an optical storage medium, which has a plurality of digitizers, a plurality of logic comparators and a difference amplifier, is disclosed. The circuit involves summing the signals to be compared and obtaining a delay signal via a delayer. Therefore, the phase difference of the signals is detected via the delay signal to obtain the tracking error signal of the optical storage medium.

    Abstract translation: 公开了一种用于跟踪具有多个数字化仪,多个逻辑比较器和差分放大器的光存储介质上的误差信号检测的电路。 该电路包括对要比较的信号进行求和并经延迟器获得延迟信号。 因此,通过延迟信号检测信号的相位差,以获得光存储介质的跟踪误差信号。

    Method and apparatus for data recovery
    35.
    发明申请
    Method and apparatus for data recovery 有权
    用于数据恢复的方法和装置

    公开(公告)号:US20050097422A1

    公开(公告)日:2005-05-05

    申请号:US10976121

    申请日:2004-10-28

    CPC classification number: G11B20/10009 G11B20/1426

    Abstract: An apparatus for data recovery includes a multi-level comparison unit, a detection logic unit, and a data composer. The multi-level comparison unit compares an input signal with M different reference signal levels to generate M digital data, the number M being greater than or equal to 2. The detection logic unit is coupled to the multi-level comparison unit, and performs logic operations upon specified lengths over the M digital data obtained from the multi-level comparison unit. The data composer is coupled to the multi-level comparison unit and the detection logic unit. The data composer generates recovered data conforming with a run length encoding constraint based on the M digital data obtained from the multi-level comparison unit and the result obtained from the detection logic unit.

    Abstract translation: 用于数据恢复的装置包括多级比较单元,检测逻辑单元和数据编辑器。 多电平比较单元将输入信号与M个不同的参考信号电平进行比较以产生M个数字数据,数字M大于或等于2.检测逻辑单元耦合到多电平比较单元,并执行逻辑 在从多级比较单元获得的M数字数据上指定长度的操作。 数据编辑器耦合到多级比较单元和检测逻辑单元。 数据编辑器基于从多级别比较单元获得的M数字数据和从检测逻辑单元获得的结果,生成符合游程长度编码约束的恢复数据。

    OPTICAL DISC DRIVE
    36.
    发明申请
    OPTICAL DISC DRIVE 审中-公开
    光盘驱动器

    公开(公告)号:US20110276988A1

    公开(公告)日:2011-11-10

    申请号:US13091157

    申请日:2011-04-21

    CPC classification number: G11B17/056 G11B33/122

    Abstract: An optical disc drive includes a housing, a disc tray, a connector, a spindle motor, an OPU, a motor drive, and a control circuit. The disc tray may slide into or out of the housing through its opening. The connector is installed on the housing for transmitting host signals to the disc tray. The control circuit is installed on the disc tray for processing the host signals, thereby operating the spindle motor and the OPU accordingly.

    Abstract translation: 光盘驱动器包括外壳,盘托盘,连接器,主轴马达,OPU,马达驱动器和控制电路。 光盘托盘可以通过其开口滑入或移出外壳。 连接器安装在外壳上,用于将主机信号传输到光盘托盘。 控制电路安装在盘托架上,用于处理主机信号,从而相应地操作主轴电机和OPU。

    Land/groove track and pickup head movement direction detection
    37.
    发明授权
    Land/groove track and pickup head movement direction detection 有权
    陆/槽轨道和拾取头运动方向检测

    公开(公告)号:US07944784B2

    公开(公告)日:2011-05-17

    申请号:US12716907

    申请日:2010-03-03

    CPC classification number: G11B7/0903 G11B7/0053 G11B7/00718

    Abstract: A detector is scanned across an optical storage medium having groove tracks and land tracks, each track having a wobble structure, to detect light reflected from the optical storage medium. A wobble signal and a tracking error signal are generated based on an output of the detector, and the wobble signal is sampled according to the tracking error signal. A determination about whether the detector is at the groove track or the land track is made based on the tracking error signal and a comparison of sampled values of the wobble signal.

    Abstract translation: 检测器跨越具有凹槽轨道和脊迹道的光学存储介质扫描,每个轨道具有摆动结构,以检测从光学存储介质反射的光。 基于检测器的输出产生摆动信号和跟踪误差信号,并且根据跟踪误差信号对摆动信号进行采样。 基于跟踪误差信号和摆动信号的采样值的比较来确定检测器是否位于凹槽轨道或脊迹道。

    Apparatus for Controlling Servo Signal Gains of an Optical Disc Drive and Method of the Same
    38.
    发明申请
    Apparatus for Controlling Servo Signal Gains of an Optical Disc Drive and Method of the Same 有权
    用于控制光盘驱动器的伺服信号增益的装置及其方法

    公开(公告)号:US20110110205A1

    公开(公告)日:2011-05-12

    申请号:US13009668

    申请日:2011-01-19

    CPC classification number: G11B7/0941 G11B7/0903

    Abstract: The invention provides an apparatus for controlling servo signal gains of an optical disc drive. The apparatus adjusts the gains of a plurality of servo signals controlling a servo system of the optical disc drive when the optical disk drive encounters an operating state transition. In a first mode, at least one AGC loop of the apparatus compensates the gains of the servo signals with a selectable bandwidth during a specific period after the operating state transition to accelerate the convergence of the servo signals. In a second mode, at least one AGC loop of the apparatus reloads the previously saved convergence values or pre-determined values as the initial values according to the current operating state immediately after the operating state transition to accelerate the convergence of the servo signals.

    Abstract translation: 本发明提供一种用于控制光盘驱动器的伺服信号增益的装置。 当光盘驱动器遇到操作状态转换时,该装置调节控制光盘驱动器的伺服系统的多个伺服信号的增益。 在第一模式中,该装置的至少一个AGC环路在操作状态转换之后的特定时段期间以可选择的带宽补偿伺服信号的增益,以加速伺服信号的收敛。 在第二模式中,装置的至少一个AGC环路根据紧接在运行状态转换之后的当前运行状态重新加载先前存储的收敛值或预定值作为初始值,以加速伺服信号的收敛。

    Device, method for processing RF signal, and optical disk drive utilizing the same
    39.
    发明授权
    Device, method for processing RF signal, and optical disk drive utilizing the same 有权
    用于处理RF信号的装置,方法和利用其的光盘驱动器

    公开(公告)号:US07773480B2

    公开(公告)日:2010-08-10

    申请号:US12028023

    申请日:2008-02-08

    Abstract: A device for processing a radio frequency (RF) signal of an optical disk drive includes a high-pass (HP) filter, an RF variable gain amplifier (VGA), an RF analog-digital converter (ADC), and a digital module. The HP filter filters the RF signal and is capable of selectively utilizing one of a first cut-off frequency and a second cut-off frequency. The RF VGA amplifies the filtered RF signal. The RF ADC converts the amplified RF signal into a digital code. The digital module is capable of executing a first function and a second function with the digital code. The HP filter utilizes the first cut-off frequency when the digital module desires to execute the first function, and the HP filter utilizes the second cut-off frequency when the digital module desires to execute the second function.

    Abstract translation: 用于处理光盘驱动器的射频(RF)信号的装置包括高通(HP)滤波器,RF可变增益放大器(VGA),RF模数转换器(ADC)和数字模块。 HP滤波器对RF信号进行滤波,并且能够选择性地利用第一截止频率和第二截止频率中的一个。 RF VGA放大滤波后的RF信号。 RF ADC将放大的RF信号转换为数字码。 数字模块能够利用数字代码执行第一功能和第二功能。 当数字模块希望执行第一功能时,HP滤波器利用第一截止频率,当数字模块希望执行第二功能时,HP滤波器利用第二截止频率。

    LAND/GROOVE TRACK AND PICKUP HEAD MOVEMENT DIRECTION DETECTION
    40.
    发明申请
    LAND/GROOVE TRACK AND PICKUP HEAD MOVEMENT DIRECTION DETECTION 有权
    LAND / GROOVE TRACK和PICKUP头运动方向检测

    公开(公告)号:US20100157783A1

    公开(公告)日:2010-06-24

    申请号:US12716907

    申请日:2010-03-03

    CPC classification number: G11B7/0903 G11B7/0053 G11B7/00718

    Abstract: A detector is scanned across an optical storage medium having groove tracks and land tracks, each track having a wobble structure, to detect light reflected from the optical storage medium. A wobble signal and a tracking error signal are generated based on an output of the detector, and the wobble signal is sampled according to the tracking error signal. A determination about whether the detector is at the groove track or the land track is made based on the tracking error signal and a comparison of sampled values of the wobble signal.

    Abstract translation: 检测器跨越具有凹槽轨道和脊迹道的光学存储介质扫描,每个轨道具有摆动结构,以检测从光学存储介质反射的光。 基于检测器的输出产生摆动信号和跟踪误差信号,并且根据跟踪误差信号对摆动信号进行采样。 基于跟踪误差信号和摆动信号的采样值的比较来确定检测器是否位于凹槽轨道或脊迹道。

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