Optical semiconductor module
    1.
    发明授权
    Optical semiconductor module 失效
    光半导体模块

    公开(公告)号:US5802230A

    公开(公告)日:1998-09-01

    申请号:US912983

    申请日:1997-08-12

    IPC分类号: G02B6/36 G02B6/38 G02B6/42

    摘要: An optical semiconductor module including a housing (54), an optical semiconductor assembly (56), a movable ferrule (84), and a sleeve (60). The housing (54) has a hole (80) into which a connector ferrule (76) is inserted. The optical semiconductor assembly (56) is accommodated in the housing (54). An optical fiber (74,82) having a first end (82a) and a second end (82b) is fixed in the movable ferrule (84). The movable ferrule (84) has a thin hole (84a) in which the second end (82b) of the optical fiber (82) is inserted and fixed. The first end (82a) of the optical fiber (82) is supported so as to be optically coupled to the optical semiconductor assembly (36). The sleeve (60) is accommodated in the hole (80) of the housing (54), so as to align the movable ferrule (84) and the connector ferrule (76) with each other. The movable ferrule (84) is biased so as to be pressed against the connector ferrule (76) in the sleeve (60). With this configuration, even if an optical connector is repeatedly mounted/demounted with respect to the optical semiconductor module, a high efficiency of optical coupling between the optical connector and the optical semiconductor assembly (56) can be stably maintained, thus providing an optical semiconductor module having a high reliability.

    摘要翻译: 一种光学半导体模块,包括壳体(54),光学半导体组件(56),可移动套圈(84)和套筒(60)。 壳体(54)具有插入连接器套圈(76)的孔(80)。 光学半导体组件(56)容纳在壳体(54)中。 具有第一端(82a)和第二端(82b)的光纤(74,82)固定在可动套圈(84)中。 可移动套圈(84)具有插入并固定光纤(82)的第二端(82b)的细孔(84a)。 光纤(82)的第一端(82a)被支撑以光学耦合到光学半导体组件(36)。 套筒(60)容纳在壳体(54)的孔(80)中,以使可动套圈(84)和连接器套圈(76)彼此对准。 可移动套圈(84)被偏置以便被压靠在套筒(60)中的连接器套圈(76)上。 利用这种结构,即使相对于光学半导体模块重复地安装/拆卸光连接器,也可以稳定地保持光连接器和光半导体组件(56)之间的高效率的光耦合,从而提供光半导体 模块具有高可靠性。

    Receptacle optical module
    2.
    发明授权
    Receptacle optical module 失效
    插座光模块

    公开(公告)号:US5940563A

    公开(公告)日:1999-08-17

    申请号:US909018

    申请日:1997-08-11

    摘要: A receptacle optical module including a fixed housing adapted to be fixed to a mother board (substrate); an optical semiconductor assembly having an optical semiconductor chip for performing conversion between an optical signal and an electrical signal; a plurality of lead pins fixed to the fixed housing for mechanically fixing the fixed housing to the mother board and electrically connecting the optical semiconductor chip to the mother board; a movable housing pivotably provided on the fixed housing for supporting the optical semiconductor assembly; and a receptacle mechanism for detachably holding an optical connector in the movable housing so as to optically connect the optical semiconductor chip to the optical connector. With this configuration, the movable housing for supporting the optical semiconductor assembly is pivotably provided on the fixed housing, so that the optical connector can be easily attached/detached, and possible bending of the lead pins due to attachment/detachment of the optical connector is suppressed.

    摘要翻译: 一种插座光学模块,包括适于固定到母板(基板)上的固定壳体; 光学半导体组件,其具有用于在光信号和电信号之间进行转换的光半导体芯片; 多个引脚固定到固定壳体上,用于将固定壳体机械地固定到母板上,并将光学半导体芯片电连接到母板上; 可枢转地设置在所述固定壳体上用于支撑所述光学半导体组件的可移动壳体; 以及用于将光连接器可拆卸地保持在可移动壳体中以将光学半导体芯片光学连接到光学连接器的插座机构。 利用这种结构,用于支撑光学半导体组件的可移动壳体可枢转地设置在固定壳体上,使得光学连接器可以容易地安装/拆卸,并且由于光学连接器的附着/脱离引起的引脚的弯曲可能是 被压制

    Fiber-detachable-type optical module
    3.
    发明授权
    Fiber-detachable-type optical module 失效
    光纤可拆卸型光模块

    公开(公告)号:US6086265A

    公开(公告)日:2000-07-11

    申请号:US50418

    申请日:1998-03-31

    IPC分类号: G02B6/38 G02B6/42 G02B6/36

    摘要: An optical module has a module case in which an optical device and a circuit unit electrically connected to the optical device are mounted. An optical connector of an optical fiber is detachably connected to the module case so as to be in contact with the optical device. The optical module includes a supporting structure supporting the optical device in a state in which the optical device is movable along a line, a force applying mechanism applying a force to the optical device in a direction parallel to the line along which the optical device is movable, and a locking mechanism releasably locking the optical connector pressing the optical device in a direction parallel to the line so as to be in close contact with the optical device, light passing through a boundary between the optical connector and the optical device.

    摘要翻译: 光学模块具有模块壳体,其中安装了与光学装置电连接的光学装置和电路单元。 光纤的光连接器可拆卸地连接到模块壳体,以便与光学装置接触。 所述光学模块包括支撑结构,所述支撑结构支撑所述光学装置处于所述光学装置沿着一条线移动的状态;施力机构,沿与所述光学装置可移动的所述线平行的方向向所述光学装置施加力 以及锁定机构,可释放地锁定光学装置沿平行于该线的方向按压光学装置,以便与光学装置紧密接触,通过光学连接器和光学装置之间的边界的光。

    Imprinting method and nano-imprinting apparatus
    5.
    发明申请
    Imprinting method and nano-imprinting apparatus 审中-公开
    压印方法和纳米压印装置

    公开(公告)号:US20070262049A1

    公开(公告)日:2007-11-15

    申请号:US11798447

    申请日:2007-05-14

    IPC分类号: B44C1/22 B29C33/40

    摘要: An imprinting method carries out imprinting on a workpiece by clamping UV-curable resin between a nano-imprinting mold and a workpiece and curing the UV-curable resin using UV light. In this method, the workpiece is supported on a setting table provided with through-holes that are disposed in a planar region of the setting table on which the workpiece is set and are connected to a gas pumping/evacuating mechanism. The UV-curable resin is supplied onto the workpiece and the setting table is raised to and stopped at a filling operation position where the mold surface of the nano-imprinting mold and the surface of the workpiece are apart. After this, gas is pumped toward the lower surface of the workpiece from the through-holes and the workpiece is pressed onto the nano-imprinting mold from a center of the workpiece toward a periphery of the workpiece while gradually filling the UV-curable resin between the nano-imprinting mold and the workpiece. The UV-curable resin is cured by irradiating the UV-curable resin with UV light in a state where the workpiece is pressed onto the nano-imprinting mold by the pumping pressure of the gas.

    摘要翻译: 压印方法通过将UV固化树脂夹在纳米压印模和工件之间并通过UV光固化UV固化树脂,在工件上进行压印。 在该方法中,工件被支撑在设置有设置在设置工作台的平面区域中并且与气体抽吸/排气机构连接的通孔的设置台上。 将紫外线固化树脂供给到工件上,并且将安装台升高并停止在填充操作位置,其中纳米压印模具的模具表面和工件表面分开。 此后,气体从通孔向工件的下表面泵送,并且工件从工件的中心朝向工件的周边压到纳米压印模具上,同时逐渐地将UV可固化树脂填充在 纳米压印模具和工件。 在通过气体的泵送压力将工件压在纳米压印模上的状态下,通过用UV光照射UV固化树脂来固化紫外线固化树脂。

    Mobile electronic device with luminance control according to surrounding brightness and contact
    7.
    发明授权
    Mobile electronic device with luminance control according to surrounding brightness and contact 有权
    移动电子设备根据周围的亮度和接触亮度进行控制

    公开(公告)号:US08872755B2

    公开(公告)日:2014-10-28

    申请号:US13335386

    申请日:2011-12-22

    IPC分类号: G09G3/36 G06F1/16 G09G3/34

    摘要: A luminance control device and method are disclosed. A surrounding brightness of a touch panel is measured to obtain a measured surrounding brightness. A luminance of the touch panel is controlled during a first time period starting from when the measured surrounding brightness changes from a first condition to a second condition, during which the measured surrounding brightness decreases by an amount equal to or greater than a threshold value. The luminance of the touch panel is maintained at a first luminance corresponding to the first condition when the measured surrounding brightness changes from the second condition to the first condition. The luminance of the touch panel is controlled to change to a second luminance corresponding to the second condition, when the measured surrounding brightness has not changed from the second condition to the first condition.

    摘要翻译: 公开了一种亮度控制装置和方法。 测量触摸面板的周围亮度以获得测量的周围亮度。 在从测量的周围亮度从第一状态变化到第二状态的第一时间段期间控制触摸面板的亮度,在此期间测量的周围亮度降低等于或大于阈值的量。 当测量的周围亮度从第二状态变为第一状态时,触摸面板的亮度保持在与第一状态相对应的第一亮度。 当所测量的周围亮度从第二状态变为第一状态时,控制触摸面板的亮度变为对应于第二状态的第二亮度。

    Position and orientation measurement apparatus, position and orientation measurement method, and storage medium
    8.
    发明授权
    Position and orientation measurement apparatus, position and orientation measurement method, and storage medium 有权
    位置和方向测量装置,位置和方向测量方法以及存储介质

    公开(公告)号:US08786700B2

    公开(公告)日:2014-07-22

    申请号:US13195478

    申请日:2011-08-01

    IPC分类号: G01S17/89

    摘要: A position and orientation measurement apparatus comprises: a distance information obtaining unit adapted to obtain distance information of a target object captured by a capturing unit; a grayscale image obtaining unit adapted to obtain a grayscale image of the target object; a first position and orientation estimation unit adapted to estimate a position and orientation of the target object based on the information of a three-dimensional shape model and the distance information; a second position and orientation estimation unit adapted to estimate a position and orientation of the target object based on a geometric feature of the grayscale image and projection information obtained by projecting, on the grayscale image, the information of the three-dimensional shape model; and a determination unit adapted to determine whether a parameter of the capturing unit is needed to be calibrated or not, based on both a first and second estimated values.

    摘要翻译: 位置和姿势测量装置包括:距离信息获取单元,用于获取由拍摄单元拍摄的目标对象的距离信息; 灰度图像获取单元,其适于获得所述目标对象的灰度图像; 第一位置和姿态估计单元,其适于基于三维形状模型和距离信息的信息来估计目标对象的位置和姿态; 第二位置和姿势估计单元,其适于基于灰度图像的几何特征和通过在灰度图像上投影三维形状模型的信息获得的投影信息来估计目标对象的位置和取向; 以及确定单元,其适于基于第一和第二估计值来确定捕获单元的参数是否需要被校准。