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    • 1. 发明授权
    • Erasable WORM optical disk and method of writing thereto multiple times
    • 可擦除WORM光盘及其写入方式多次
    • US06377526B1
    • 2002-04-23
    • US09283050
    • 1999-04-01
    • Richard C. ViningKent Macleod
    • Richard C. ViningKent Macleod
    • G11B700
    • G11B20/1252G11B7/0037G11B7/0055G11B7/006G11B11/10519G11B11/10595G11B19/12G11B27/329G11B2020/1232G11B2020/1267G11B2020/1285G11B2220/218
    • A method for selectively enabling writing of data multiple times onto a write-once read-many optical disk by a host system, the disk having a disk type indicator, and each sector having a SWF field and a flag field and user data, wherein new data bits replace existing data bits in a one-for-one ratio without mapping, comprising the steps of: reading a disk type indicator; setting a firmware flag allowing writing to the disk if the disk type is erasable WORM; receiving a write command from the host system, the command specifying a sector to write to; reading the contents of the disk SWF and flag fields for the sector; overwriting all user data on the sector with all zeroes if the firmware flag is set; replacing every user data bit in the sector with a zero in a one-for-one ratio without mapping; and resetting the contents of the disk SWF and flag fields to indicate the sector is available for writing. Apparatus for selectively enabling writing of data multiple times onto a write-once read-many optical disk by a host system, the disk having a disk type indicator, and each sector having a SWF field and a flag field and user data, wherein new data bits replace existing data bits in a one-for-one ratio without mapping, comprising an optical disk drive having: a spindle motor rotating an optical disk; an optical assembly/laser generating a laser beam adapted to heat a minute region on the optical disk; a bias magnet affecting the polarity of the heated region; a write/read channel driving the optical assembly/laser and bias magnet; a write/read controller adapted to process a unique erase command and thereby controlling the optical assembly/laser and bias magnet to write every user data bit of a sector to zero in a one-for-one ratio without mapping; and a small computer system interface receiving write commands from a host system.
    • 一种用于选择性地允许数据由主机系统多次写入一次写入许多光盘的方法,该盘具有盘类型指示符,并且每个扇区具有SWF字段和标志字段以及用户数据,其中新 数据位以一比一的比例替换现有的数据位而不进行映射,包括以下步骤:读取磁盘类型指示符; 设置固件标志,如果磁盘类型为可擦除WORM,则允许写入磁盘; 从主机系统接收写入命令,该命令指定要写入的扇区; 读取磁盘SWF的内容和扇区的标志字段; 如果设置了固件标志,则覆盖扇区上的所有用户数据全为零; 以一比一的比例替换扇区中的每个用户数据位,而不进行映射; 并重置磁盘SWF的内容和标志字段以指示扇区可用于写入。 用于选择性地允许由主机系统将数据多次写入到一次写入许可光盘上的装置,该盘具有盘类型指示符,并且每个扇区具有SWF字段和标志字段以及用户数据,其中新数据 比特替换现有数据比例,而不进行映射,包括具有:主轴电机旋转光盘的光盘驱动器; 产生适于加热光盘上的微小区域的激光束的光学组件/激光器; 影响加热区域极性的偏置磁体; 驱动光学组件/激光器和偏置磁体的写入/读取通道; 写入/读取控制器,其适于处理唯一的擦除命令,从而控制光学组件/激光器和偏置磁体,以一比一的比例将扇区的每个用户数据位写入零,而不进行映射; 以及从主机系统接收写命令的小型计算机系统接口。
    • 4. 发明授权
    • Multilayered magnetooptical recording medium
    • 多层磁光记录介质
    • US5458987A
    • 1995-10-17
    • US91904
    • 1993-07-16
    • Masatoshi SatoJun SaitoHideki Akasaka
    • Masatoshi SatoJun SaitoHideki Akasaka
    • G11B11/105G11B5/66
    • G11B11/10519G11B11/105G11B11/10506G11B11/10521G11B11/10586Y10S428/90Y10S430/146Y10T428/12493Y10T428/12771Y10T428/12861Y10T428/12951
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged, and that of the reference layer is aligned either upward or downward; radiating a laser beam onto the medium; pulse modulating an intensity of the laser beam in accordance with binary data to be recorded; when the laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization and that having downward-magnetization, and when the intensity of the pulse-modulated laser beam is at low level, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:使用由第一层构成的多层磁记录介质 具有作为记录层的垂直磁各向异性,和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将激光束照射到介质上; 根据要记录的二进制数据对激光束的强度进行脉冲调制; 当激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化并具有向下磁化的位之一,并且当脉冲调制激光束的强度处于低电平时,形成 其他位
    • 5. 发明授权
    • Method of magneto-optical recording and overwriting
    • 磁光记录和重写方法
    • US5420836A
    • 1995-05-30
    • US948452
    • 1992-09-21
    • Hajime Machida
    • Hajime Machida
    • C09D5/23G11B11/105G11B13/04G11B11/10G11B11/12
    • G11B11/10586G11B11/10519
    • A method of magneto-optical recording and overwriting information onto a double-layer magneto-optical recording medium which has laminated first and second magnetic layers having different coercive forces at a lower operation temperature and a higher operation temperature of which one is a recording operation temperature and the other is an erasing operation temperature, without using an initializing external magnetic field. The method includes the steps of recording by applying a laser beam to an area of the recording medium at a power level corresponding to one of these operating temperatures and erasing by applying a laser beam to an area of the recording medium at a different power level corresponding to the other of the operating temperatures, while applying a bias magnetic field to the magneto-optical recording medium with the same magnetization direction during both recording and erasing, the intensity of the bias magnetic field being greater than the coercive forces of the first and second magnetic layers at the lower operation temperature.
    • 一种在双层磁光记录介质上磁光记录和重写信息的方法,其具有在较低操作温度下具有不同矫顽力的层压的第一和第二磁性层,以及较高的操作温度,其中一个是记录操作温度 另一种是擦除操作温度,而不使用初始化外部磁场。 该方法包括以对应于这些操作温度之一的功率电平将激光束施加到记录介质的区域并通过以对应于不同功率电平施加激光束到记录介质的区域来擦除的步骤 在另一个操作温度下,同时在记录和擦除期间以相同的磁化方向对磁光记录介质施加偏置磁场,偏磁场的强度大于第一和第二磁场的矫顽力 磁性层在较低的工作温度。
    • 6. 发明授权
    • Magneto-optic memory device for overwriting information on magneto-optic
recording medium by using a pair of light spots without using an
external magnetic field
    • 磁光存储器件,用于通过在不使用外部磁场的情况下使用一对光点覆盖磁光记录介质上的信息
    • US5357493A
    • 1994-10-18
    • US933771
    • 1992-08-24
    • Yukinori OkazakiMieko Kobukata
    • Yukinori OkazakiMieko Kobukata
    • G11B11/105G11B13/04
    • G11B11/10519G11B11/10536
    • In a magneto-optic memory device for recording information on a magneto-optic recording medium having a magneto-optic recording film irradiated by a first small diameter light spot and a second larger diameter light spot which is substantially concentric with the first light spot, the temperature of a portion of the recording film around a recording position is changed by the irradiation of the second light spot in accordance with an information signal to be recorded, between a temperature, which is lower than a compensation temperature of the recording film and produces spontaneous magnetization of the recording film having intensity necessary for recording information, and a temperature which is higher than the compensation temperature of the recording film and produces spontaneous magnetization of the recording film having intensity necessary for recording information, and the intensity of the first light spot is increased to raise the temperature of the recording position of the recording film so as to reach near the Curie temperature of the recording film, thereby erasing old information and recording new information at the same time.
    • 在用于在具有由第一小直径光点照射的磁光记录膜和与第一光斑基本同心的第二较大直径光点的磁光记录介质上记录信息的磁光存储器件中, 记录膜周围记录位置的一部分的温度根据要记录的信息信号在第二光点的照射之间在低于记录膜的补偿温度的温度之间改变,并产生自发的 具有记录信息所需的强度的记录膜的磁化和高于记录膜的补偿温度的温度,并且产生具有记录信息所需的强度的记录膜的自发磁化,并且第一光点的强度是 增加以提高记录位置的温度 以便达到接近记录膜的居里温度,从而同时擦除旧信息并记录新信息。
    • 8. 发明授权
    • Over write capable magnetooptical recording method using two beams, and
magnetooptical recording apparatus therefor
    • 使用两个光束的写可写磁光记录方法及其光磁记录装置
    • US5014252A
    • 1991-05-07
    • US570978
    • 1990-08-22
    • Hideki AkasakaMasatoshi Sato
    • Hideki AkasakaMasatoshi Sato
    • G11B11/105
    • G11B11/10586G11B11/10506G11B11/10519
    • A magnetooptical recording method for recording data using a bit having upward-magnetization and a bit having downward-magnetization on a recording layer of a magnetooptical-recording medium comprises the steps of using, as the medium, a multilayered magnetic recording medium consisting of a first layer having a perpendicular magnetic anisotropy acting as a recording layer, and a second layer having a perpendicular magnetic anisotropy acting as a reference layer; moving the medium; applying an initial field so that, before recording, the direction of magnetization of the recording layer is left unchanged and that of the reference layer is aligned either upward or downward; radiating two adjacent laser beams, i.e., a leading beam and a trailing beam onto the medium; the leading beam being an erasing beam of low level which is not modulated in principle; the trailing beam is a writing beam which is pulse modulated between high level and basis level in accordance with binary data to be recorded; and the basis level being able to have an intensity equal to or lower than the low level and to be zero level; when the trailing laser beam is radiated, applying a bias field to the irradiated portion; and when the intensity of the pulse-modulated laser beam is at high level, forming one of the bit having upward-magnetization, and when the leading low-level laser beam is radiated, forming the other bit.
    • 使用具有向上磁化的位和在磁光记录介质的记录层上具有向下磁化的位的数据记录数据的磁光记录方法包括以下步骤:将作为介质的多层磁记录介质用作第一 具有作为记录层的垂直磁各向异性的层和具有作为参考层的垂直磁各向异性的第二层; 移动媒体; 施加初始场,使得在记录之前,记录层的磁化方向保持不变,并且参考层的磁化方向向上或向下排列; 将两个相邻的激光束,即前导光束和后向光束照射到介质上; 前导光束是原则上未调制的低电平擦除光束; 拖尾光束是根据要记录的二进制数据在高电平和基准电平之间进行脉冲调制的写入光束; 并且基准能够具有等于或低于低水平的强度并且为零水平; 当后向激光束被照射时,向照射部分施加偏置场; 并且当脉冲调制激光束的强度处于高电平时,形成具有向上磁化的位之一,并且当引导低级激光束被辐射时,形成另一位。