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    • 5. 发明授权
    • Jitter detection apparatus
    • 抖动检测装置
    • US07433286B2
    • 2008-10-07
    • US11372051
    • 2006-03-10
    • Youichi OguraToshihiko TakahashiShinichi Konishi
    • Youichi OguraToshihiko TakahashiShinichi Konishi
    • G11B7/00
    • G11B20/10212G11B20/10037G11B20/10046G11B20/10194G11B20/10425G11B20/10481G11B20/14G11B20/22G11B2220/2537
    • In a jitter detection apparatus, a playback RF signal 3 detected from an optical disc medium 1 is subjected to waveform shaping, and thereafter, converted into a digital RF signal 6 with a sampling clock having a cycle twice as long as a cycle of a channel clock. Thereafter, an offset variation in a high-frequency band is corrected by an offset correction circuit 9, and data that are missing in the time direction are restored by a Nyquist interpolation filter 23. Then, positions where jitter is to be extracted are selected from an output signal of the Nyquist interpolation filter 23, by a jitter detection preprocessing circuit 28, according to the playback speed of the optical disc medium 1 and the arithmetic capacity of a digital signal operation circuit 29, whereby highly accurate jitters can be extracted by using the digital signal operation circuit 29.
    • 在抖动检测装置中,从光盘介质1检测到的重放RF信号3经受波形整形,然后被转换成具有采样时钟的数字RF信号6,采样时钟的周期是通道的周期的两倍 时钟。 此后,通过偏移校正电路9校正高频带中的偏移变化,并且通过奈奎斯特内插滤波器23恢复在时间方向上丢失的数据。 然后,根据光盘介质1的重放速度和数字信号操作的运算能力,由抖动检测预处理电路28从奈奎斯特插值滤波器23的输出信号中选择要提取抖动的位置 电路29,由此可以通过使用数字信号操作电路29提取高精度的抖动。
    • 6. 发明申请
    • Jitter detection apparatus
    • 抖动检测装置
    • US20060208766A1
    • 2006-09-21
    • US11372051
    • 2006-03-10
    • Youichi OguraToshihiko TakahashiShinichi Konishi
    • Youichi OguraToshihiko TakahashiShinichi Konishi
    • H03D13/00G01R25/00
    • G11B20/10212G11B20/10037G11B20/10046G11B20/10194G11B20/10425G11B20/10481G11B20/14G11B20/22G11B2220/2537
    • In a jitter detection apparatus, a playback RF signal 3 detected from an optical disc medium 1 is subjected to waveform shaping, and thereafter, converted into a digital RF signal 6 with a sampling clock having a cycle twice as long as a cycle of a channel clock. Thereafter, an offset variation in a high-frequency band is corrected by an offset correction circuit 9, and data which are missing in the time direction are restored by a Nyquist interpolation filter 23. Then, positions where jitter is to be extracted are selected from an output signal of the Nyquist interpolation filter 23, by a jitter detection preprocessing circuit 28, according to the playback speed of the optical disc medium 1 and the arithmetic capacity of a digital signal operation circuit 29, whereby highly accurate jitters can be extracted by using the digital signal operation circuit 29.
    • 在抖动检测装置中,从光盘介质1检测到的重放RF信号3经受波形整形,然后被转换成具有采样时钟的数字RF信号6,采样时钟的周期是通道的周期的两倍 时钟。 此后,通过偏移校正电路9校正高频带中的偏移变化,并且通过奈奎斯特内插滤波器23恢复在时间方向上丢失的数据。然后,从提取抖动的位置选择 奈奎斯特插值滤波器23的输出信号,通过抖动检测预处理电路28,根据光盘介质1的重放速度和数字信号操作电路29的运算能力,由此可以通过使用高精度的抖动来提取高精度的抖动 数字信号运算电路29。
    • 7. 发明授权
    • Optical disc playback apparatus
    • 光盘播放装置
    • US07558177B2
    • 2009-07-07
    • US11344184
    • 2006-02-01
    • Youichi OguraShinichi Konishi
    • Youichi OguraShinichi Konishi
    • G11B7/00
    • G11B20/10055G11B20/10037G11B20/10046G11B20/10083G11B20/10101G11B20/10111G11B20/10166G11B20/10203G11B20/10212G11B20/10222G11B20/1876G11B2220/2537
    • After a playback RF signal 3 detected from an optical disc medium 1 is waveform-shaped, it is converted into a digital RF signal 6 with a sampling clock 8 having a cycle twice as long as a channel clock. Thereafter, a first offset correction circuit 9 corrects an offset fluctuation in a high frequency band, and a digital adaptive equalizer 23 performs adaptive equalization, and then a second offset correction circuit 27 corrects an offset component that remains after the offset correction by the first offset correction circuit 9, thereby demodulating a digital binary signal 37. Therefore, even when high-speed playback is carried out and an asymmetry depending on the recording quality is large, a reduction in power consumption can be realized while maintaining high-performance playback. Consequently, it is possible to provide an optical disc playback apparatus which can realize sufficient playback performance at low power consumption.
    • 在从光盘介质1检测到的重放RF信号3是波形的之后,它被转换成具有采样时钟8的数字RF信号6,采样时钟8的周期是通道时钟的两倍。 此后,第一偏移校正电路9校正高频带中的偏移波动,并且数字自适应均衡器23执行自适应均衡,然后第二偏移校正电路27将偏移校正之后剩余的偏移分量校正为第一偏移 校正电路9,从而解调数字二进制信号37.因此,即使执行高速重放,并且取决于记录质量的不对称性大,可以在保持高性能回放的同时实现功耗的降低。 因此,可以提供能够以低功耗实现充分的播放性能的光盘播放装置。
    • 9. 发明授权
    • Asymmetry detection apparatus, jitter detection apparatus, and recording/reproduction apparatus
    • 不对称检测装置,抖动检测装置和记录/再现装置
    • US06807134B2
    • 2004-10-19
    • US09749079
    • 2000-12-27
    • Takeshi NakajimaShinichi KonishiHarumitsu MiyashitaToshihiko Takahashi
    • Takeshi NakajimaShinichi KonishiHarumitsu MiyashitaToshihiko Takahashi
    • G11B509
    • G11B7/126G11B7/005G11B20/10G11B20/1403G11B20/24
    • An asymmetry detection apparatus includes: a clock signal generator for generating a clock signal based on a reproduced signal; an A/D converter for sampling the reproduced signal in synchronization with the clock signal; a determiner for determining whether a level of each of a plurality of sampled data obtained by the sampling operation is equal to or greater than a predetermined level; and a detector for detecting asymmetry in the reproduced signal by using predetermined ones of the sampled data based on an output from the determiner. A jitter detection apparatus includes: a clock signal generator for generating a clock signal based on a reproduced signal; an A/D converter for sampling the reproduced signal in synchronization with the clock signal; a determiner for determining whether a level of each of a plurality of sampled data obtained by the sampling operation is equal to or greater than a predetermined level; and a detector for detecting jitter in the reproduced signal by using predetermined ones of the plurality of sampled data based on an output from the determiner.
    • 不对称检测装置包括:时钟信号发生器,用于基于再现信号产生时钟信号; A / D转换器,用于与时钟信号同步地对再现信号进行采样; 确定器,用于确定通过采样操作获得的多个采样数据中的每一个的电平是否等于或大于预定电平; 以及检测器,用于基于来自确定器的输出,通过使用预定的采样数据来检测再现信号中的不对称性。 抖动检测装置包括:时钟信号发生器,用于基于再现信号产生时钟信号; A / D转换器,用于与时钟信号同步地对再现信号进行采样; 确定器,用于确定通过采样操作获得的多个采样数据中的每一个的电平是否等于或大于预定电平; 以及检测器,用于基于来自所述确定器的输出,通过使用所述多个采样数据中的预定数量来检测再现信号中的抖动。