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    • 4. 发明申请
    • “不可擦除的光学数据存储”
    • WO2002093579A1
    • 2002-11-21
    • PCT/AU2002/000589
    • 2002-05-14
    • SWINBURNE UNIVERSITY OF TECHNOLOGYGU, MinDAY, Daniel
    • GU, MinDAY, Daniel
    • G11B007/24
    • G11B7/245B82Y10/00G11B7/00452G11B7/244G11B23/40G11B2007/0009
    • The invention relates to materials and devices including these materials having non-erasable optical data capability, as well as to methods of storing optical data and to apparatus for carrying out these functions. In particular there is provided a method of storage of non-erasable optical data comprising exposing data storage material of a three-dimensional optical data storage device to focussed electromagnetic radiation wherein the radiation is of a wavelength and power appropriate to generate micro-cavity formation within the data storage material and wherein the location of micro-cavities encodes for stored data; the data storage material comprising a polymer matrix and a photosensitive agent dispersed through the polymer matrix.
    • 本发明涉及包括具有不可擦除光学数据能力的这些材料的材料和装置,以及存储光学数据的方法和用于执行这些功能的装置。 特别地,提供了一种存储不可擦除光学数据的方法,包括将三维光学数据存储设备的数据存储材料曝光到聚焦电磁辐射,其中辐射具有适于在其内产生微腔形成的波长和功率 数据存储材料,并且其中微腔的位置对存储的数据进行编码; 所述数据存储材料包含分散在所述聚合物基质中的聚合物基质和感光剂。
    • 5. 发明申请
    • Handheld electronic apparatus
    • 手持电子仪器
    • US20040266477A1
    • 2004-12-30
    • US10877212
    • 2004-06-25
    • Casio Computer Co., Ltd.
    • Yoshiyuki Murata
    • G11B007/24
    • H04M1/0229H04M1/0212H04M1/0243H04M1/0264H04M2250/52H04N5/2252H04N5/2254
    • The present invention relates to a handheld electronic apparatus, which allows the user to photograph an object while watching an image of the object H on it display unit. A first case 1 having the display unit 5 and a second case 2 having a key input section 7 are connected in an openable and closable manner by means of a connecting shaft 120, which has a built-in image pick-up unit 121. When the first case 1 and the second case 2 are kept in an open state, the display unit 5 on the first case and the key input section 7 face in the same direction, and the image pick-up unit 121 faces in the opposite direction to a display screen of the display unit and the key input section. The user can photograph the object H, while reviewing the image of the object H displayed on the display unit 5.
    • 本发明涉及一种手持电子设备,其允许用户在观看对象H的图像的同时在其显示单元上拍摄对象。 具有显示单元5的第一壳体1和具有键输入部分7的第二壳体2通过具有内置图像拾取单元121的连接轴120以可打开和关闭的方式连接。当 第一壳体1和第二壳体2保持打开状态,第一壳体上的显示单元5和键输入部分7面向相同的方向,并且图像拾取单元121面向与 显示单元和键输入部分的显示屏幕。 用户可以在查看显示在显示单元5上的对象H的图像的同时拍摄对象H。
    • 7. 发明申请
    • Recording medium and methods of and device for recording information on the recording medium
    • 用于在记录介质上记录信息的记录介质和方法以及设备
    • US20040264337A1
    • 2004-12-30
    • US10494188
    • 2004-04-30
    • Steven Broelis LuitjensWilhelmus Jacobus van Gestel
    • G11B005/09G11B007/24
    • G11B20/1883G11B7/007G11B2220/20
    • The invention relates to a recording medium (2), particularly an optical recording disk, which comprises at least one record track (3) having a physical volume (32) with addressable blocks (4). The physical volume (32) is divided into spare area (36;38) and user-accessible logical volume (37). A single spare area (36) is only located at the beginning of the physical volume (32), or a single spare area (38) is only located at the end of the physical volume (32). Alternatively, a first spare area (36) is located at the beginning of the physical volume (32) and a second spare area (38) is located at the end of the physical volume (32). Thus, the logical volume (37) is physically contiguous, that is, not interrupted by any spare area The recording medium according to the invention can be used both for storing computer data as well as for recording audio and/or video information. The invention also relates to methods and a device for use in conjunction with the recording medium.
    • 本发明涉及一种记录介质(2),特别是光记录盘,其包括具有物理容量(32)的至少一个记录轨道(3)和可寻址块(4)。 物理卷(32)被划分为备用区(36; 38)和用户可访问的逻辑卷(37)。 单个备用区域(36)仅位于物理卷(32)的开始处,或者单个备用区域(38)仅位于物理卷(32)的末尾。 或者,第一备用区域(36)位于物理卷(32)的开始处,并且第二备用区域(38)位于物理卷(32)的末端。 因此,逻辑卷(37)在物理上是连续的,即不被任何备用区中断。根据本发明的记录介质可以用于存储计算机数据以及用于记录音频和/或视频信息。 本发明还涉及与记录介质一起使用的方法和装置。
    • 8. 发明申请
    • Domain wall displacement detection system magneto-optical recording medium and its manufacturing method
    • 畴壁位移检测系统磁光记录介质及其制造方法
    • US20040264306A1
    • 2004-12-30
    • US10864395
    • 2004-06-10
    • Takeshi MikiGoro Fujita
    • G11B011/00G11B007/24
    • G11B11/10584G11B7/24082G11B11/10515G11B11/10578G11B11/10582
    • A domain wall displacement detection (DWDD) system magneto-optical recording medium forms a land 3 and a groove 4 as signal recording areas. When a domain wall displacement improvement is changed by irradiating annealing light La on a boundary wall surface 5 between the land 3 and the groove 4, the position of this annealing light is detected by an annealing light scanning position displacement detecting wobbling portion 7 formed at a portion extending along the recording track length direction of the boundary wall surface 5. The annealing light scans this wobbling portion 7, whereby a vibration amplitude of a cycle corresponding to the cycle of the wobbling portion 7 is produced to thereby detect and monitor the miniscule change of the scanning position of the annealing light with high sensitivity. Thus, in the DWDD system magneto-optical recording medium, the scanning position of the annealing light at the boundary wall surface between the land 3 and the groove 4 can be detected with high sensitivity.
    • 域壁位移检测(DWDD)系统磁光记录介质形成作为信号记录区域的平台3和凹槽4。 当通过在焊盘3和槽4之间的边界壁表面5照射退火光La来改变畴壁位移改进时,该退火光的位置通过形成在第一焊盘的退火光扫描位置检测摆动部分7 沿着边界壁面5的记录轨迹长度方向延伸的部分。退火光扫描该摆动部分7,由此产生与摆动部分7的周期相对应的周期的振幅,从而检测并监视微小变化 的退火光的扫描位置具有高灵敏度。 因此,在DWDD系统磁光记录介质中,可以高灵敏度地检测焊盘3与槽4之间的边界壁表面处的退火光的扫描位置。