发明申请
US20050243676A1 Laser beam power modulation pattern decision method, device for recording data onto optical recording medium, and optical recording medium
失效
激光束功率调制模式决定方法,用于将数据记录到光记录介质上的装置和光记录介质
- 专利标题: Laser beam power modulation pattern decision method, device for recording data onto optical recording medium, and optical recording medium
- 专利标题(中): 激光束功率调制模式决定方法,用于将数据记录到光记录介质上的装置和光记录介质
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申请号: US10516701申请日: 2003-06-02
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公开(公告)号: US20050243676A1公开(公告)日: 2005-11-03
- 发明人: Tatsuya Kato , Hideki Hirata , Hiroyasu Inoue
- 申请人: Tatsuya Kato , Hideki Hirata , Hiroyasu Inoue
- 申请人地址: JP Tokyo
- 专利权人: TDK Corporation
- 当前专利权人: TDK Corporation
- 当前专利权人地址: JP Tokyo
- 优先权: JP2002-161954 20020603
- 国际申请: PCT/JP03/06923 WO 20030602
- 主分类号: G11B7/0045
- IPC分类号: G11B7/0045 ; G11B7/125 ; G11B7/24 ; G11B7/243 ; G11B3/00
摘要:
It is an object of the present invention to provide a method for determining a pattern for modulating the power of a laser beam which can determine a pattern for modulating the power of a laser beam so that data can be recorded in a write-once type optical recording medium with a laser beam having a low recording power at a high linear recording velocity. The method for determining a pattern for modulating the power of a laser beam according to the present invention includes the steps of determining pulse train patterns by fixing a recording power at a predetermined level and varying the level of a bottom power, modulating the power of the laser beam in accordance with the pulse train patterns to record first test signals in the optical recording medium, reproducing the first test signals, determining the optimum level of the bottom power based on the amplitude of the thus reproduced first test signals, determining pulse train patterns by fixing the bottom power at the optimum level and varying the level of the recording power, modulating the power of the laser beam in accordance with the pulse train patterns to record second test signals in the optical recording medium, reproducing the second test signals and determining the optimum level of the recording power based on at least one of jitter and error rates of the thus reproduced second test signals.
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