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    • 1. 发明授权
    • Information recording apparatus and information recording method
    • 信息记录装置和信息记录方法
    • US07965602B2
    • 2011-06-21
    • US12100463
    • 2008-04-10
    • Yoshio SasakiMasakazu FurukawaHisao TanakaHiroyuki Uchino
    • Yoshio SasakiMasakazu FurukawaHisao TanakaHiroyuki Uchino
    • G11B7/00
    • G11B7/0062G11B7/00456
    • In the information recording apparatus, by driving the light source by the pulse signal corresponding to the recording signal, the laser pulse corresponding to the recording signal is irradiated onto the recording medium. The recording signal has the mark period to form the recording mark, and the space period in which the recording mark is not formed. In the mark period, the output level of the laser pulse changes between the normal level and the writing level, thereby, the recording mark is formed on the recording medium. On the one hand, over a predetermined period in the space period, the output level of the laser pulse is changed to the low level lower than the normal level. Thereby, the heat accumulation onto the recording medium, due to the transient response of the laser pulse in the mark period, is reduced, and in the mark period after that, the correct recording mark can be formed.
    • 在信息记录装置中,通过与对应于记录信号的脉冲信号驱动光源,将与记录信号对应的激光脉冲照射到记录介质上。 记录信号具有用于形成记录标记的标记周期和不形成记录标记的空间周期。 在标记期间,激光脉冲的输出电平在正常电平和写入电平之间变化,由此在记录介质上形成记录标记。 一方面,在空间周期的预定时间段内,激光脉冲的输出电平变为低于正常电平的低电平。 因此,由于激光脉冲在标记周期中的瞬态响应而在记录介质上的积聚减少,并且在标记周期之后,可以形成正确的记录标记。
    • 2. 发明申请
    • INFORMATION RECORDING APPARATUS AND INFORMATION RECORDING METHOD
    • 信息记录装置和信息记录方法
    • US20090022027A1
    • 2009-01-22
    • US12100463
    • 2008-04-10
    • Yoshio SasakiMasakazu FurukawaHisao TanakaHiroyuki Uchino
    • Yoshio SasakiMasakazu FurukawaHisao TanakaHiroyuki Uchino
    • G11B7/0045
    • G11B7/0062G11B7/00456
    • In the information recording apparatus, by driving the light source by the pulse signal corresponding to the recording signal, the laser pulse corresponding to the recording signal is irradiated onto the recording medium. The recording signal has the mark period to form the recording mark, and the space period in which the recording mark is not formed. In the mark period, the output level of the laser pulse changes between the normal level and the writing level, thereby, the recording mark is formed on the recording medium. On the one hand, over a predetermined period in the space period, the output level of the laser pulse is changed to the low level lower than the normal level. Thereby, the heat accumulation onto the recording medium, due to the transient response of the laser pulse in the mark period, is reduced, and in the mark period after that, the correct recording mark can be formed.
    • 在信息记录装置中,通过与对应于记录信号的脉冲信号驱动光源,将与记录信号对应的激光脉冲照射到记录介质上。 记录信号具有用于形成记录标记的标记周期和不形成记录标记的空间周期。 在标记期间,激光脉冲的输出电平在正常电平和写入电平之间变化,由此在记录介质上形成记录标记。 一方面,在空间周期的预定时间段内,激光脉冲的输出电平变为低于正常电平的低电平。 因此,由于激光脉冲在标记周期中的瞬态响应而在记录介质上的积聚减少,并且在标记周期之后,可以形成正确的记录标记。
    • 6. 发明授权
    • Solid-state image pickup device and method for producing the same
    • 固体摄像装置及其制造方法
    • US07217961B2
    • 2007-05-15
    • US11340180
    • 2006-01-26
    • Keiji TataniHideshi AbeMasanori OhashiAtsushi MasagakiAtsuhiko YamamotoMasakazu Furukawa
    • Keiji TataniHideshi AbeMasanori OhashiAtsushi MasagakiAtsuhiko YamamotoMasakazu Furukawa
    • H01L31/0328
    • H01L27/1463H01L27/14643
    • A solid-state image pickup device includes an element isolation insulating film electrically isolating pixels on the surface of a well region; a first isolation diffusion layer electrically isolating the pixels under the element isolation insulating film; and a second isolation diffusion layer electrically isolating the pixels under the first isolation diffusion layer, wherein a charge accumulation region is disposed in the well region surrounded by the first and second isolation diffusion layers, the inner peripheral part of the first isolation diffusion layer forms a projecting region, an impurity having a conductivity type of the first isolation diffusion layer and an impurity having a conductivity type of the charge accumulation region are mixed in the projecting region, and a part of the charge accumulation region between the charge accumulation region and the second isolation diffusion layer is abutted or close to the second isolation diffusion layer under the projecting region.
    • 固态图像拾取装置包括电隔离阱区表面上的像素的元件隔离绝缘膜; 电隔离元件隔离绝缘膜下面的像素的第一隔离扩散层; 以及第二隔离扩散层,电隔离第一隔离扩散层下方的像素,其中电荷累积区域设置在由第一和第二隔离扩散层围绕的阱区域中,第一隔离扩散层的内周部分形成 投影区域,具有第一隔离扩散层的导电类型的杂质和具有电荷累积区域的导电类型的杂质在投影区域中混合,并且电荷累积区域和第二隔离区域之间的电荷累积区域的一部分 隔离扩散层与突出区域下方的第二隔离扩散层抵接或靠近。
    • 10. 发明授权
    • Solid-state image pickup device and method for producing the same
    • 固体摄像装置及其制造方法
    • US07943962B2
    • 2011-05-17
    • US12629755
    • 2009-12-02
    • Keiji TataniHideshi AbeMasanori OhashiAtsushi MasagakiAtsuhiko YamamotoMasakazu Furukawa
    • Keiji TataniHideshi AbeMasanori OhashiAtsushi MasagakiAtsuhiko YamamotoMasakazu Furukawa
    • H01L31/0328
    • H01L27/1463H01L27/14643
    • A solid-state image pickup device includes an element isolation insulating film electrically isolating pixels on the surface of a well region; a first isolation diffusion layer electrically isolating the pixels under the element isolation insulating film; and a second isolation diffusion layer electrically isolating the pixels under the first isolation diffusion layer, wherein a charge accumulation region is disposed in the well region surrounded by the first and second isolation diffusion layers, the inner peripheral part of the first isolation diffusion layer forms a projecting region, an impurity having a conductivity type of the first isolation diffusion layer and an impurity having a conductivity type of the charge accumulation region are mixed in the projecting region, and a part of the charge accumulation region between the charge accumulation region and the second isolation diffusion layer is abutted or close to the second isolation diffusion layer under the projecting region.
    • 固态图像拾取装置包括电隔离阱区表面上的像素的元件隔离绝缘膜; 电隔离元件隔离绝缘膜下面的像素的第一隔离扩散层; 以及第二隔离扩散层,电隔离第一隔离扩散层下方的像素,其中电荷累积区域设置在由第一和第二隔离扩散层围绕的阱区域中,第一隔离扩散层的内周部分形成 投影区域,具有第一隔离扩散层的导电类型的杂质和具有电荷累积区域的导电类型的杂质在投影区域中混合,并且电荷累积区域和第二隔离区域之间的电荷累积区域的一部分 隔离扩散层与突出区域下方的第二隔离扩散层抵接或靠近。