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    • 1. 发明授权
    • Method of manufacturing a magnetic disk
    • 制造磁盘的方法
    • US08567044B2
    • 2013-10-29
    • US13223060
    • 2011-08-31
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • G11B5/127H04R31/00
    • G11B5/82B82Y10/00G11B5/743G11B5/8404G11B5/855
    • A defect inspection is performed for each of glass substrates by a surface defect detector. The distance from the center of the glass substrate to a detected defect, as a radius of a nonmagnetic region to be formed circular, is recorded along with an ID assigned to the glass substrate. Such defect information is recorded in a defect list using a printer or recorded in an RFID tag using an RFID writer. The defect list or the RFID tag is attached to a glass-substrate case. Each glass substrate and its defect information are in one-to-one correspondence and are provided to a customer as a magnetic disk manufacturer. Based on the obtained defect information, the customer manufactures magnetic disks each being a discrete track recording medium having the nonmagnetic region formed at the position where the defect is present.
    • 通过表面缺陷检测器对玻璃基板进行缺陷检查。 将从玻璃基板的中心到检测到的缺陷的距离作为形成圆形的非磁性区域的半径与分配给玻璃基板的ID一起被记录。 使用打印机将这样的缺陷信息记录在缺陷列表中,或者使用RFID写入器记录在RFID标签中。 缺陷列表或RFID标签附着在玻璃基板外壳上。 每个玻璃基板及其缺陷信息是一一对应的,并作为磁盘制造商提供给客户。 基于获得的缺陷信息,客户制造磁盘,每个磁盘都是具有在存在缺陷的位置处形成的非磁性区域的离散轨道记录介质。
    • 2. 发明授权
    • Method for supporting manufacture of a magnetic disk
    • 支持制造磁盘的方法
    • US08033008B2
    • 2011-10-11
    • US12014398
    • 2008-01-15
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • Hiroshi TakedaKen-ichi NishimoriTomotaka YokoyamaTadashi Tomonaga
    • G11B5/127H04R31/00
    • G11B5/82B82Y10/00G11B5/743G11B5/8404G11B5/855
    • A defect inspection is performed for each of glass substrates by a surface defect detector. The distance from the center of the glass substrate to a detected defect, as a radius of a nonmagnetic region to be formed circular, is recorded along with an ID assigned to the glass substrate. Such defect information is recorded in a defect list using a printer or recorded in an RFID tag using an RFID writer. The defect list or the RFID tag is attached to a glass-substrate case. Each glass substrate and its defect information are in one-to-one correspondence and are provided to a customer as a magnetic disk manufacturer. Based on the obtained defect information, the customer manufactures magnetic disks each being a discrete track recording medium having the nonmagnetic region formed at the position where the defect is present.
    • 通过表面缺陷检测器对玻璃基板进行缺陷检查。 将从玻璃基板的中心到检测到的缺陷的距离作为形成圆形的非磁性区域的半径与分配给玻璃基板的ID一起被记录。 使用打印机将这样的缺陷信息记录在缺陷列表中,或者使用RFID写入器记录在RFID标签中。 缺陷列表或RFID标签附着在玻璃基板外壳上。 每个玻璃基板及其缺陷信息是一一对应的,并作为磁盘制造商提供给客户。 基于获得的缺陷信息,客户制造磁盘,每个磁盘都是具有在存在缺陷的位置处形成的非磁性区域的离散轨道记录介质。
    • 8. 发明授权
    • Liquid crystal display device and driving method thereof
    • 液晶显示装置及其驱动方法
    • US07515131B2
    • 2009-04-07
    • US11281619
    • 2005-11-18
    • Hiroshi Takeda
    • Hiroshi Takeda
    • G09G3/36
    • G09G3/3406G09G2300/023G09G2310/0221G09G2310/024
    • It is a liquid crystal display device which can display simultaneously information which is different in the front and rear sides. It has a single liquid crystal panel, a lighting unit which is arranged at both-sides and comprised with the light source, and a control circuit which carries out drive controlling of these. This control circuit controls lighting on and off the light source of the lighting unit and controls a screen display of the liquid crystal panel, and realize the display which is different to both sides of the liquid crystal panel. Thereby, when the screen of the liquid crystal panel is simultaneously seen from both sides, an independent different image can be recognized visually.
    • 它是能够同时显示前后不同的信息的液晶显示装置。 它具有单个液晶面板,布置在两侧并由光源组成的照明单元,以及执行这些驱动控制的控制电路。 该控制电路控制照明单元的光源的照明和照明,并控制液晶面板的屏幕显示,并实现与液晶面板的两侧不同的显示。 因此,当从两侧同时看到液晶面板的屏幕时,可以目视识别独立的不同图像。