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    • 72. 发明申请
    • Optical pick-up device
    • 光学拾取装置
    • US20060171263A1
    • 2006-08-03
    • US10934133
    • 2004-09-03
    • Gyoung ChoTae KimCheong Seo
    • Gyoung ChoTae KimCheong Seo
    • G11B7/00
    • G11B7/0956G02B26/0841G02B26/085G11B7/09G11B7/1362G11B7/1374
    • An optical pick-up device comprising at least one micromirror array lens. The micromirror array lens enables focusing, tracking, and/or tilt compensation in the optical pick-up device without macroscopic motions. The micromirror array lens provides the device with a simple structure, which can reduce the size, weight, and cost of the recording/reproducing system. The device is also durable for vibration. Optical pick-up devices using an array of micromirror array lenses can increase the recording/reading speed without macroscopic motions. The recording/reading speed can be increased by adding more micromirror array lenses to the lens array. The present invention can also be used to record/read information on/from a multi-layered optical disc.
    • 一种包括至少一个微镜阵列透镜的光学拾取装置。 微镜阵列透镜可以在光学拾取装置中进行聚焦,跟踪和/或倾斜补偿,而无需宏观运动。 微镜阵列透镜为设备提供简单的结构,可以减小记录/再现系统的尺寸,重量和成本。 该装置对于振动也是耐用的。 使用微镜阵列透镜阵列的光学拾取装置可以增加记录/读取速度,而不需要宏观运动。 可以通过向镜头阵列添加更多的微镜阵列透镜来增加记录/读取速度。 本发明还可以用于在多层光盘上记录/读取信息。
    • 73. 发明申请
    • CMOS image sensor and method for fabricating the same
    • CMOS图像传感器及其制造方法
    • US20060138492A1
    • 2006-06-29
    • US11318575
    • 2005-12-28
    • Hee ShimTae Kim
    • Hee ShimTae Kim
    • H01L31/113
    • H01L27/14689H01L27/14603H01L27/1463
    • A CMOS image sensor and a method for fabricating the same are disclosed, in which an impurity ion area is formed in a semiconductor substrate to form a transfer path for optical charges. Dead zone and dark current characteristics are thereby simultaneously improved. The CMOS image sensor includes a first conductive type semiconductor substrate, a device isolation film, a gate electrode, a second conductive type first impurity ion area and a first conductive type first impurity ion area formed with a deposition structure in the semiconductor substrate below the gate electrode, a second conductive type second impurity ion area, and a first conductive type second impurity ion area formed on a surface of the second conductive type second impurity ion area.
    • 公开了一种CMOS图像传感器及其制造方法,其中在半导体衬底中形成杂质离子区以形成用于光电荷的传输路径。 从而同时改善死区和暗电流特性。 CMOS图像传感器包括第一导电类型半导体衬底,器件隔离膜,栅电极,第二导电型第一杂质离子区域和在栅极下方的半导体衬底中形成有沉积结构的第一导电型第一杂质离子区域 电极,第二导电型第二杂质离子区域和形成在第二导电型第二杂质离子区域的表面上的第一导电类型的第二杂质离子区域。
    • 77. 发明申请
    • Flexible bottle handle
    • 灵活的瓶把手
    • US20060090300A1
    • 2006-05-04
    • US10527965
    • 2003-12-29
    • Tae Kim
    • Tae Kim
    • A47J45/07
    • B65D23/0842B65D23/106B65D2313/00B65D2313/02Y10T16/4707
    • Disclosed is a handle for bottle, which can prevent slip of the bottle from a user's hand or pouring-out of fluid contained in the bottle due to bending of a waist portion of the bottle when the user drinks the fluid contained in the bottle. The handle for bottle includes: a ribbon made of flexible material and positioned on one side surface of a bottle vertically, the central portion of the ribbon being fixed to the central part of the bottle by a trademark attaching film, which wraps the central part of the bottle; and a pair of coupling members adhered on both end portions of the ribbon, wherein the both end portions of the ribbon are bended in upward and downward directions respectively and the coupling members are coupled with each other to form a ribbon type handle for allowing the user to fit one hand into the ribbon type handle or grasp the ribbon type handle with one hand.
    • 公开了一种用于瓶子的手柄,当使用者饮用包含在瓶子中的流体时,其可以防止瓶子从使用者的手滑动或者由于瓶子的腰部弯曲而容纳在瓶子中的流体的倾倒。 瓶的手柄包括:由柔性材料制成的带子,垂直地位于瓶子的一个侧面上,带的中心部分通过商标安装膜固定到瓶子的中心部分,商标安装膜包裹着瓶子的中心部分 瓶子; 以及粘合在所述带的两端部的一对联接件,其中所述带的两个端部分别沿上下方向弯曲,并且所述连接件彼此连接以形成带状手柄,以允许使用者 将一只手装入带状手柄或用一只手抓住带状手柄。