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    • 5. 发明申请
    • INFORMATION RECORDING MEDIUM, RECORDING METHOD AND REPRODUCTION METHOD
    • 信息记录介质,记录方法和再现方法
    • US20100142346A1
    • 2010-06-10
    • US12565840
    • 2009-09-24
    • Yoshihisa TAKAHASHIHiroshi UEDAMotoshi ITO
    • Yoshihisa TAKAHASHIHiroshi UEDAMotoshi ITO
    • G11B20/18G11B7/26
    • G11B7/24038G11B7/00736G11B7/1267
    • On a recording medium, data is recorded on at least one of a plurality of recording layers by laser light incident on a surface of the recording medium. The plurality of recording layers include a first recording layer, and second through N-th recording layers (N is an integer of 3 or greater) which are sequentially located in a direction from the first recording layer toward the surface on which the laser is incident. The plurality of recording layers each have a first calibration area and a second calibration area located outer to the first calibration area. The first calibration area located in each of the first through N-th recording layers is located at a different radial position from a radial position of the first calibration area in each of the other recording layers; and the second calibration area located in each of the first through N-th recording layers is located at the same radial position as a radial position of the second calibration area in each of the other recording layers.
    • 在记录介质上,通过入射在记录介质表面上的激光将数据记录在多个记录层中的至少一个上。 多个记录层包括第一记录层和第二至第N记录层(N为3以上的整数),其顺序地位于从第一记录层朝向激光入射的表面的方向 。 多个记录层各自具有位于第一校准区域外部的第一校准区域和第二校准区域。 位于第一至第N记录层中的每一个中的第一校准区域位于与每个其它记录层中的第一校准区域的径向位置不同的径向位置处; 并且位于第一至第N记录层中的每一个中的第二校准区域位于与每个其它记录层中的第二校准区域的径向位置相同的径向位置处。
    • 10. 发明申请
    • INFORMATION RECORDING MEDIUM, INFORMATION RECORDING METHOD AND INFORMATION RECORDING APPARATUS
    • 信息记录介质,信息记录方法和信息记录装置
    • US20100110850A1
    • 2010-05-06
    • US12264300
    • 2008-11-04
    • Yoshihisa TAKAHASHIHiroshi UEDAMotoshi ITO
    • Yoshihisa TAKAHASHIHiroshi UEDAMotoshi ITO
    • G11B7/00
    • G11B7/24038G11B7/1267
    • OPC areas are used for adjusting recording parameters (power and strategy). In an optical disc including two recording layers, the recording power for one recording layer is likely to be influenced by a transmittance variance or the like provided by the recording state of the other recording layer (either already recorded or unrecorded). In addition, recording is performed while changing the power. For these reasons, the OPC areas are located so as not to be at the same radial positions among the recording layers. However, as the number of recording layers is increased, the area size for securing the OPC areas is increased, which may undesirably lead to an increase of the lead-in zone or the lead-out zone (decrease of the user data zone) and a decrease of the OPC area size in each recording layer (decrease of the number of times of usage by the user). According to the present invention, an area for power calibration in which recording is performed while changing the power and so which is significantly influenced by the transmittance balance, is separated from an area for strategy calibration or the like in which recording is performed at a fixed power suitable to the disc and so which is unlikely to be influenced by the transmittance balance. Only power calibration areas are located at different radial positions among different recording layers so as not be influenced by the recording state of the other recording layers, and the strategy calibration areas are located so as to include the same radial position among different recording layers.
    • OPC区域用于调整记录参数(功率和策略)。 在包括两个记录层的光盘中,一个记录层的记录功率可能受到另一个记录层的记录状态(已记录或未被记录)提供的透射率变化等的影响。 另外,在改变电源的同时执行记录。 由于这些原因,OPC区域被定位成不在记录层之间处于相同的径向位置。 然而,随着记录层的数量的增加,用于固定OPC区域的区域尺寸增加,这可能不期望地导致引入区或导出区的增加(用户数据区的减少)和 每个记录层中的OPC区域尺寸的减小(用户使用次数的减少)。 根据本发明,用于在改变对透射率平衡的显着影响的功率进行同时进行记录的功率校准区域与用于策略校准等的区域分离,其中以固定的方式执行记录 适用于光盘的功率,因此不太可能受透射率平衡的影响。 只有功率校准区域位于不同记录层之间的不同径向位置,以便不受其它记录层的记录状态的影响,并且策略校准区域被定位成在不同的记录层之间包括相同的径向位置。