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    • 61. 发明申请
    • LINEAR TENSION MATERIAL FOR PLASTIC SURGERY
    • 线性拉伸材料用于塑料手术
    • US20080046094A1
    • 2008-02-21
    • US11768106
    • 2007-06-25
    • Kwang Hee HanJung Lee
    • Kwang Hee HanJung Lee
    • A61F2/02
    • A61F2/0059A61B17/06166A61B2017/00792A61B2017/06176
    • The present invention relates to a linear tension material for surgery used to pull skin tissue. An object of the present invention is to provide a linear tension material for plastic surgery which prevents permanent deformation due to excessive elongation and fatigue and of which a portion besides united portions is uniformly and properly united with body tissue. According to an aspect of the present invention, there is provided a linear tension material for plastic surgery which is provided to pull a predetermined site inside skin tissue of the body in a state of tensile load so as to smooth out wrinkles and pull the tissue to tighten a saggy portion, the linear tension material including: a core material in a code shape, which is made of a flexible resin including polyorganosiloxane; and a covering material which covers an outside of the core material to be united with the core material, shrinks together with the core material, and has a fiber textile structure formed by weaving a number of fiber threads.
    • 本发明涉及用于牵拉皮肤组织的用于手术的线性张力材料。 本发明的目的是提供一种用于整形手术的线性张力材料,其防止由于过度伸长和疲劳引起的永久变形,并且除了联合部分之外的部分与身体组织均匀且适当地结合。 根据本发明的一个方面,提供了一种用于整形手术的线性拉伸材料,其被设置成在拉伸载荷的状态下拉动身体的皮肤组织内的预定部位,以平滑皱纹并将组织拉到 拉紧下垂部分,所述线性张力材料包括:代码形状的芯材,其由包括聚有机硅氧烷的柔性树脂制成; 并且覆盖与芯材一体化的芯材的外侧的覆盖材料与芯材一起收缩,并且具有通过编织多根纤维线而形成的纤维织物结构。
    • 63. 发明申请
    • LOADING DEVICE FOR CHEMICAL MECHANICAL POLISHER OF SEMICONDUCTOR WAFER
    • 半导体器件化学机械抛光装置装置
    • US20070218817A1
    • 2007-09-20
    • US10599861
    • 2005-04-08
    • Jung Lee
    • Jung Lee
    • B24B29/00
    • B24B37/345
    • The present invention related to a loading device for a chemical mechanical polisher of semiconductor wafers comprising: a loading cup on wherein a cup plate is installed in a cup-shaped bath, a loading plate for receiving wafers sits on the cup plate, and a plurality of vertical damping devices lie between the cup plate and the loading plate so as for the loading plate to be damped in a vertical direction; a driving axis for a right and left pivot movement and an ascending and descending movement of the loading cup between a platen of the chemical mechanical polisher and a spindle; and an arm connecting the loading cup to the driving axis; wherein a plurality of horizontal damping devices are positioned with a constant angle in a radial direction along a bottom surface of the loading plate from its center in order for a polishing carrier head mounted on the spindle and the loading plate to be detachable after being calibrated to a normal position by shaking the loading plate finely in a horizontal direction within the limit of a certain driving tolerance, based on a position deviation between the polishing carrier head and the loading plate, when loading and unloading wafers therebetween; and wherein both ends of each horizontal damping device are fixed to the cup plate and the loading plate, respectively. With the structure of the loading device, the present invention accomplishes an advantage that the loading device can be actively adapted for a position deviation between the polishing carrier head and the loading cup of the loading device, caused during the process of loading and unloading wafers.
    • 本发明涉及一种用于半导体晶片的化学机械抛光机的装载装​​置,其特征在于,包括:杯形杯安装在杯状浴中的装载杯,用于接收晶片的装载板位于杯形板上,并且多个 垂直阻尼装置位于杯板和装载板之间,以使装载板在垂直方向上被阻尼; 用于左右枢转运动的驱动轴和装载杯在化学机械抛光机的台板和主轴之间的上升和下降运动; 以及将加载杯连接到驱动轴的臂; 其中多个水平阻尼装置从其中心沿着装载板的底表面在径向方向上以恒定的角度定位,以便安装在主轴上的抛光载具头,并且装载板在经过校准之后可拆卸 通过基于抛光载体头和装载板之间的位置偏差在一定的行驶公差的极限内沿水平方向微小地摇动装载板,当在其间装载和卸载晶片时,正常位置; 并且其中每个水平阻尼装置的两端分别固定在杯板和装载板上。 利用装载装置的结构,本发明实现了一种优点,即加载装置可以主动地适用于在装载和卸载晶片的过程中引起的抛光载体头和加载装置的装载杯之间的位置偏差。
    • 65. 发明申请
    • Method for allocating reverse traffic channels at the time of handoff in a cdma communication system
    • 在cdma通信系统中在切换时分配反向业务信道的方法
    • US20070160025A1
    • 2007-07-12
    • US10561068
    • 2004-07-26
    • Jung LeeHyun Heo
    • Jung LeeHyun Heo
    • C07K1/00H04B7/216H04Q7/00
    • H04W36/0085H04W72/04
    • A method for allocating reverse traffic channels at the time of handoff in a CDMA communication system, comprises the steps of: upon receiving a handoff request from a control station at a target base station, setting a Search Center Offset (SCO) to a Round Trip Delay (RTD) value received from a serving base station, and setting a searching area (S±β) to an area wider than a reference searching area (S) in view of an error (β) in the RTD value; dividing the searching area into a number of sub-areas, and allocating reverse traffic channels such that each reverse traffic channel covers its corresponding sub-area; monitoring the reverse traffic channels to determine whether a mobile station has been acquired; and if the mobile station has been acquired, releasing the remaining reverse traffic channels except for the reverse traffic channel which has acquired the mobile station.
    • 一种用于在CDMA通信系统中在切换时分配反向业务信道的方法包括以下步骤:在从目标基站的控制站接收到切换请求时,将搜索中心偏移(SCO)设置为往返 从服务基站接收的延迟(RTD)值,并且考虑到RTD值中的误差(β),将搜索区域(S±β)设置为比参考搜索区域(S)宽的区域; 将搜索区域划分成多个子区域,并且分配反向业务信道,使得每个反向业务信道覆盖其对应的子区域; 监控反向业务信道以确定是否已经获取移动站; 并且如果已经获取了移动站,则释放除获取了移动站的反向业务信道之外的剩余的反向业务信道。
    • 67. 发明申请
    • Lens driving device
    • 镜头驱动装置
    • US20070133972A1
    • 2007-06-14
    • US11521294
    • 2006-09-15
    • Dong LeeBurhanettin KocKi BaikJung RyuJung LeeByung Kang
    • Dong LeeBurhanettin KocKi BaikJung RyuJung LeeByung Kang
    • G03B3/10
    • G03B3/02G02B7/102
    • The present invention relates to a lens driving device includes a lens receiving part with a lens disposed therein, having first and second extension parts formed at opposed sides in a predetermined interval from each other. The lens driving device also includes an actuator having a body between the first and second extension parts. The actuator body has first and second output members contacting the first and second extension parts of the lens receiving part at opposed ends thereof, and thereby expands, contracts and bends when power is applied. The lens driving device also includes a preload member compressing the first and second extension parts against the actuator body to maintain a status of pressed contact. The lens driving device further includes a guide part for guiding the movement of the lens receiving part in an optical axis direction.
    • 透镜驱动装置本发明涉及透镜驱动装置,该透镜驱动装置包括具有设置在其中的透镜的透镜接收部分,其具有彼此以预定间隔形成在相对侧的第一和第二延伸部分。 透镜驱动装置还包括具有在第一和第二延伸部分之间的主体的致动器。 致动器主体具有第一和第二输出构件,其在相对的端部处接触透镜容纳部分的第一和第二延伸部分,从而在施加电力时膨胀,收缩和弯曲。 透镜驱动装置还包括预压构件,其将第一和第二延伸部分压靠在致动器本体上,以保持压接状态。 透镜驱动装置还包括用于引导透镜接收部在光轴方向上的运动的引导部。