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    • 91. 发明授权
    • Method for fabricating a solid-state image sensor having an HCCD and VCCDs
    • 制造具有HCCD和VCCD的固态图像传感器的方法
    • US06358768B1
    • 2002-03-19
    • US09466190
    • 1999-12-17
    • Yong ParkSang Ho Moon
    • Yong ParkSang Ho Moon
    • H01L2100
    • H01L27/14831
    • A solid-state image sensor and a fabricating method thereof in which poly gates in a horizontal charge coupled device (hereinafter referred to as HCCD) are made to have different lengths to omit a barrier ion implanting process step, thus simplifying the entire process and maximizing the charge-transferring efficiency are disclosed, the solid-state image sensor having an HCCD and VCCDs including a well region of a second conductivity type formed in a semiconductor substrate of a first conductivity type; a HCCD of the first conductivity type formed on the well region of the second conductivity type; and a plurality of polygate electrodes having sequentially different lengths repeatedly formed on the semiconductor substrate.
    • 一种固态图像传感器及其制造方法,其中将水平电荷耦合器件(以下简称为HCCD)中的多晶硅栅极制成具有不同长度以省略势垒离子注入工艺步骤,从而简化了整个工艺并使其最大化 公开了电荷转移效率,具有HCCD的固态图像传感器和形成在第一导电类型的半导体衬底中的包括第二导电类型的阱区的VCCD; 形成在第二导电类型的阱区上的第一导电类型的HCCD; 以及在半导体衬底上重复形成具有顺序不同长度的多个多晶硅电极。
    • 92. 发明授权
    • Method for fabricating charge coupled device image sensor
    • 电荷耦合器件图像传感器的制造方法
    • US5981309A
    • 1999-11-09
    • US934769
    • 1997-09-22
    • Hang Kyoo KimYong ParkSun Choi
    • Hang Kyoo KimYong ParkSun Choi
    • H01L21/339H01L27/148H01L21/00H01L21/28H01L21/44
    • H01L27/14812Y10S438/951
    • A method for fabricating a CCD image sensor includes the steps of forming a P type well in a surface of a semiconductor substrate, forming a buried CCD (BCCD) in a surface of the P type well, forming an offset gate and a reset gate on the BCCD at a predetermined interval, forming a floating diffusion region in the BCCD between the offset gate and the reset gate, forming a mask layer on an entire surface of the semiconductor substrate to form a contact hole in the floating diffusion region, forming a metal layer on the entire surface of the semiconductor substrate including the contact hole, and selectively removing the metal layer on the mask layer together with the mask layer to form a floating gate in the contact hole.
    • 一种用于制造CCD图像传感器的方法,包括以下步骤:在半导体衬底的表面中形成P型阱,在P型阱表面形成掩埋CCD(BCCD),形成偏移栅极和复位栅极 BCCD以预定间隔在BCCD中在偏移栅极和复位栅极之间形成浮动扩散区域,在半导体衬底的整个表面上形成掩模层,以在浮动扩散区域中形成接触孔,形成金属 在包括接触孔的半导体衬底的整个表面上,并且与掩模层一起选择性地去除掩模层上的金属层,以在接触孔中形成浮动栅极。
    • 94. 发明申请
    • Optical recording medium and method for formatting the same with improved compatability and consistency
    • 光记录介质及其格式化方法具有改进的兼容性和一致性
    • US20080062830A1
    • 2008-03-13
    • US11980583
    • 2007-10-31
    • Yong Park
    • Yong Park
    • G11B20/18G11B5/09
    • G11B20/1883G11B27/32G11B2020/1826G11B2020/1893G11B2020/1896G11B2220/20
    • The invention relates to an apparatus for formatting an optical recording medium, the optical recording medium having a spare area for replacing a defective area and a defect management area for managing the defective area, the apparatus including a recording/reproducing part configured to format the optical recording medium in response to a formatting request. The recording/reproducing part changes a portion of the spare area into a continuous portion of a user data area by formatting so that a size of the user data is increased. A controller is configured to create a new defect list for replacing an old defect list in the defect management area in response to changing of the spare area and to change a location information of the spare area to reflect the increased size of the spare area after formatting.
    • 本发明涉及一种用于格式化光学记录介质的装置,该光学记录介质具有用于替换缺陷区域的备用区域和用于管理该缺陷区域的缺陷管理区域,该装置包括一个记录/再现部件, 响应于格式化请求的记录介质。 记录/再现部分通过格式化将备用区域的一部分改变为用户数据区域的连续部分,使得用户数据的大小增加。 控制器被配置为创建新的缺陷列表,以响应于备用区域的改变来替换缺陷管理区域中的旧缺陷列表,并且改变备用区域的位置信息以反映格式化之后的备用区域的增加的大小 。
    • 99. 发明申请
    • Method and apparatus of recording data in the optical recording medium
    • 在光记录介质中记录数据的方法和装置
    • US20070079173A1
    • 2007-04-05
    • US11607871
    • 2006-12-04
    • Yong ParkMyong LeeJong ShinKyu Jeong
    • Yong ParkMyong LeeJong ShinKyu Jeong
    • G06F11/00
    • G11B20/1883G11B2020/10944G11B2020/1826G11B2020/1893G11B2020/1896G11B2220/20G11B2220/216G11B2220/2537
    • The present invention relates to a recording medium and apparatus and method for managing a defective area of the recording medium. According to an embodiment, the method includes (a) determining whether there is an available replacement block in a spare area and a found defective block is controlled by a linear replacement algorithm; (b) managing a defective data block based on the determination, such that the defective data block is replaced with the replacement block of the spare area if there is the available replacement block and the found defective data block is controlled by the linear replacement algorithm; and (c) recording a defect list to the recording medium, wherein the defect list includes first position information specifying the location of defective data block, second position information specifying the location of replacement block and identification information specifying that the defective data block is replaced.
    • 记录介质技术领域本发明涉及一种用于管理记录介质的缺陷区域的记录介质及其设备和方法。 根据实施例,该方法包括:(a)确定在备用区域中是否存在可用的替换块,并且通过线性替换算法来控制发现的缺陷块; (b)基于所述确定来管理有缺陷的数据块,使得如果存在可用替换块并且所发现的有缺陷的数据块被所述线性替换算法控制,则所述缺陷数据块被备用区的替换块替换; (c)将缺陷列表记录到记录介质上,其中缺陷列表包括指定缺陷数据块的位置的第一位置信息,指定替换块的位置的第二位置信息和指定该缺陷数据块被替换的识别信息。