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    • 2. 发明申请
    • Method and apparatus for phase and/or copy window control for use with a domain expansion recording medium and record carrier
    • 用于与域扩展记录介质和记录载体一起使用的相位和/或复制窗口控制的方法和装置
    • US20080259743A1
    • 2008-10-23
    • US12041382
    • 2008-03-03
    • COEN ADRIANUS VERSCHUREN
    • COEN ADRIANUS VERSCHUREN
    • G11B11/00G11B11/105G11B20/18
    • G11B11/10515G11B11/10595G11B20/182
    • The present invention relates to a method, apparatus and record carrier for controlling read-out and/or synchronization between an external magnetic field and written data during a reading operation from a magneto-optical recording medium comprising a storage layer and a read-out layer. An expanded domain leading to a pulse in a reading signal is generated in said read-out layer by copying a mark region from said storage layer to said read-out layer upon heating by a radiation power and with the help of the external magnetic field. The waveform of the reading signal is analyzed, and the analyzing result is used for correcting a phase deviation and/or for controlling a copy window size of the mark copying. Thereby, phase errors can be corrected for any size of the copy window. Even small changes in the copy window can be detected and corrected.
    • 本发明涉及一种在包括存储层和读出层的磁光记录介质的读取操作期间控制外部磁场和写入数据之间的读出和/或同步的方法,装置和记录载体 。 通过在辐射功率加热和外部磁场的帮助下,通过将标记区域从所述存储层复制到所述读出层,在所述读出层中产生导通读取信号中的脉冲的扩展域。 分析读取信号的波形,分析结果用于校正相位偏差和/或用于控制标记复印的复印窗口尺寸。 因此,可以针对复制窗口的任何大小校正相位误差。 复制窗口中的微小更改也可以被检测和更正。
    • 3. 发明授权
    • Optical recording/reproducing method for multiple recording media with different recording density
    • 具有不同记录密度的多种记录介质的光学记录/再现方法
    • US07420910B2
    • 2008-09-02
    • US11526392
    • 2006-09-25
    • Kazutomo MiyataTeruyuki OtaMakoto WatanabeYoshihito Fukushima
    • Kazutomo MiyataTeruyuki OtaMakoto WatanabeYoshihito Fukushima
    • G11B7/24
    • G11B11/10578G11B7/24079G11B11/10515G11B11/10584G11B11/10597
    • An optical recording and reproducing method is able to record and reproduce information by using an optical system using recording and reproducing light with a wavelength selected in a range of from 780 nm±10 nm and an objective lens with a numerical aperture NA selected in a range of from 0.45±0.01 and records and reproduces first and second optical recording mediums having different recording capacities. The first optical recording medium is constructed by using a substrate with a track pitch Tp1 being selected in a range of from 1.5 μm to 1.7 μm and a groove depth d1 being selected in a range of from 70 nm to 90 nm, and the second optical recording medium is constructed by using a substrate 11 with a track pitch Tp2 being selected in a range of from 1.2 μm to 1.3 μm and a groove depth d2 of the groove 12 being selected in a range of from 150 nm to 180 nm. This, the optical recording medium has compatibility with existing optical discs and has a recording density high enough to record a moving picture.
    • 光学记录和再现方法能够通过使用使用在780nm±10nm范围内选择的波长的记录和再现光的光学系统来记录和再现信息,并且在范围内选择数值孔径NA的物镜 从0.45±0.01开始记录和再现具有不同记录容量的第一和第二光记录介质。 第一光记录介质通过使用在1.5μm至1.7μm的范围内选择的轨道间距T p 1> 1的衬底和凹槽深度d 1 1 < 选择在70nm至90nm的范围内,并且第二光学记录介质通过使用在1.2μm至1.3μm的范围内选择的轨道间距T p 2 <2>的基板11来构造 并且沟槽12的凹槽深度d 2 2 在150nm至180nm的范围内选择。 这样,光学记录介质与现有的光盘具有兼容性并且具有足够高的记录密度来记录运动图像。
    • 6. 发明授权
    • Disk reproduction device
    • 磁盘重放设备
    • US07242651B2
    • 2007-07-10
    • US10432638
    • 2001-12-10
    • Kenji AsanoHideaki YanoKoichi Tada
    • Kenji AsanoHideaki YanoKoichi Tada
    • G11B7/05G11B11/10
    • G11B20/10222G11B7/005G11B7/094G11B7/0941G11B7/0945G11B11/10515G11B20/10009G11B20/10481G11B20/1816G11B27/10G11B2020/1287G11B2220/2562
    • The invention provides a disk playback device wherein a disk (1) is irradiated with a laser beam from an optical head (4) to reproduce signals from the disk, and which comprises an external synchronizing signal producing circuit (8) and a delay circuit (12) for producing a reproduction synchronizing signal providing reference timing at which a reproduced signal is detected by reading an output signal from the optical head (4), a circuit (7) for detecting the reproduced signal by reading the output signal from the optical head (4) based on the reproduction synchronizing signal, and a system controller (10) for determining an optimum phase for a normal reproduction operation by altering the phase of the reproduction synchronizing signal and executing a reproduction operation, the controller (10) being operable to make a phase adjustment for the reproduction synchronizing signal prepared by the delay circuit (12). A normal reproduction operation can be performed at all times by assuring the reproduction synchronizing signal of the optimum phase.
    • 本发明提供了一种光盘播放装置,其中光盘(1)被来自光头(4)的激光束照射以再现来自盘的信号,并且包括外部同步信号产生电路(8)和延迟电路 12),用于产生再现同步信号,通过读取来自光头(4)的输出信号,提供检测再现信号的参考定时;电路(7),用于通过从光头读出输出信号来检测再现信号 (4),以及系统控制器(10),用于通过改变再现同步信号的相位并执行再现操作来确定用于正常再现操作的最佳相位,所述控制器(10)可操作为 对由延迟电路(12)准备的再现同步信号进行相位调整。 通过确保最佳相位的再现同步信号,可以始终执行正常再现操作。
    • 9. 发明授权
    • Magneto-optical recording medium having multiple magnetic layers
    • 具有多个磁性层的磁光记录介质
    • US07126884B2
    • 2006-10-24
    • US10337354
    • 2003-01-07
    • Masahiro Tabata
    • Masahiro Tabata
    • G11B11/00
    • G11B11/10586G11B11/10515G11B11/10584
    • In a magneto-optical recording medium, a first magnetic layer is made of a material using a Gd—Fe film or a Gd—Fe—Co film as a base so that a magnetic field normalized based on saturation magnetization of a magnetic domain wall driving field can be smaller than 1. A second magnetic layer is made of a material using a Tb—Fe film or a Dy—Fe film as a base, to which a nonmagnetic element such as Al or Cr, and Co are added. A third magnetic layer is made of a material using a Tb—Fe—Co film or a Dy—Fe—Co film as a base, and an element concentration ratio (at. % ratio) of Tb or Dy to Fe—Co is set in a range of 24.5≦Tb≦26.5 or 26.5≦Dy≦29.5. Addition amounts of Co and a nonmagnetic element to each magnetic layer are adjusted to set Curie temperatures Tc11, Tc12, and Tc13 of the first, second and third magnetic layers to Tc13>Tc11>Tc12.
    • 在磁光记录介质中,第一磁性层由使用Gd-Fe膜或Gd-Fe-Co膜作为基底的材料制成,使得基于磁畴壁驱动的饱和磁化而归一化的磁场 场可以小于1.第二磁性层由使用Tb-Fe膜或Dy-Fe膜作为基底的材料制成,添加诸如Al或Cr的非磁性元素和Co。 第三磁性层由使用Tb-Fe-Co膜或Dy-Fe-Co膜作为基材的材料制成,并且设定Tb或Dy与Fe-Co的元素浓度比(at。%比) 在24.5 <= Tb <= 26.5或26.5 <= Dy <= 29.5的范围内。 调整各磁性层的Co和非磁性元素的添加量,使第一,第二,第三磁性层的居里温度Tc11,Tc12,Tc13为Tc13> Tc11> Tc12。
    • 10. 发明授权
    • Disk playback device
    • 磁盘播放设备
    • US07106678B2
    • 2006-09-12
    • US10466328
    • 2002-01-28
    • Hideaki YanoKenji AsanoHideharu Baba
    • Hideaki YanoKenji AsanoHideharu Baba
    • G11B7/00
    • G11B11/10595G11B7/005G11B7/126G11B7/1267G11B11/10515
    • The present invention provides a disk playback device comprising a laser drive circuit 15 for feeding a drive signal to an optical head 4 and adjusting the power of a laser beam irradiated by the optical head 4, an error correcting circuit 11 for detecting an error rate of a reproduced signal, and a system controller 10 for controlling operation of the laser drive circuit for signal reproduction and signal recording based on the output of the error correction circuit 11. The system controller 10 retrieves one limit value of two limit values of a reproduction power wherein the error rate is not beyond a prescribed value, and calculates an optimum reproduction power based on the one limit value retrieved. Accordingly it is possible to move to signal reproduction in a short period of time and to reproduce signals with high accuracy by setting the optimum reproduction power.
    • 本发明提供了一种盘回放装置,包括:激光驱动电路15,用于将驱动信号馈送到光头4并调节由光头4照射的激光束的功率;纠错电路11,用于检测光头4的错误率 再现信号,以及系统控制器10,用于基于误差校正电路11的输出来控制用于信号再现和信号记录的激光驱动电路的操作。 系统控制器10检索错误率不超过规定值的再现功率的两个极限值的一个限制值,并且基于检索到的一个限制值来计算最佳再现功率。 因此,可以在短时间内移动到信号再现,并且通过设置最佳再现功率来高精度地再现信号。