Method and apparatus for the integration of a VCSEL flex with a parallel optical transceiver package
    1.
    发明授权
    Method and apparatus for the integration of a VCSEL flex with a parallel optical transceiver package 失效
    用于将VCSEL flex与并行光收发器封装集成的方法和装置

    公开(公告)号:US07242840B1

    公开(公告)日:2007-07-10

    申请号:US10773098

    申请日:2004-02-05

    IPC分类号: G02B6/00

    摘要: A method of integrating an optoelectronic device, for example a vertical cavity surface emitting laser, onto the electronic substrate of a parallel optical transceiver package by positioning and maintaining the exact relative alignment of the optoelectronic device relative to the electronic substrate for application of adhesive and curing. The method includes the utilization of a multi-piece fixture which clamps the elements into position and maintains position throughout the curing process. Alternatively, the fixture can comprise a unitary assembly for clamping the elements into position and maintaining their position throughout the curing process.

    摘要翻译: 通过定位和保持光电子器件相对于电子基片的精确相对对准来将光电器件(例如垂直腔表面发射激光器)集成到并行光收发器封装的电子衬底上的方法,用于施加粘合剂和固化 。 该方法包括利用多片固定装置,其将元件夹持在适当的位置并且在整个固化过程中保持位置。 或者,夹具可以包括用于将元件夹持在适当位置并在整个固化过程中保持其位置的整体组件。

    Method and apparatus for the integration of a VCSEL flex with a parallel optical transceiver package
    2.
    发明授权
    Method and apparatus for the integration of a VCSEL flex with a parallel optical transceiver package 失效
    用于将VCSEL flex与并行光收发器封装集成的方法和装置

    公开(公告)号:US07035521B2

    公开(公告)日:2006-04-25

    申请号:US10640583

    申请日:2003-08-13

    IPC分类号: G02B6/00

    摘要: A method of integrating an optoelectronic device, for example a vertical cavity surface emitting laser, onto the electronic substrate of a parallel optical transceiver package by positioning and maintaining the exact relative alignment of the optoelectronic device relative to the electronic substrate for application of adhesive and curing. The method includes the utilization of a multi-piece fixture which clamps the elements into position and maintains position throughout the curing process. Alternatively, the fixture can comprise a unitary assembly for clamping the elements into position and maintaining their position throughout the curing process.

    摘要翻译: 通过定位和保持光电子器件相对于电子基片的精确相对对准来将光电器件(例如垂直腔表面发射激光器)集成到并行光收发器封装的电子衬底上的方法,用于施加粘合剂和固化 。 该方法包括利用多片固定装置,其将元件夹持在适当的位置并且在整个固化过程中保持位置。 或者,夹具可以包括用于将元件夹持在适当位置并在整个固化过程中保持其位置的整体组件。

    VCSEL settling fixture
    5.
    发明授权
    VCSEL settling fixture 有权
    VCSEL沉降夹具

    公开(公告)号:US07135704B2

    公开(公告)日:2006-11-14

    申请号:US10641398

    申请日:2003-08-14

    IPC分类号: H01L23/58 H01L23/34 H01L23/12

    摘要: A VCSEL settling fixture provides for a plurality of VCSEL chip packages to be selectively tested within a burn-in or environmental chamber having a remote pendant controller. The settling fixture includes a mounting frame including a plurality of recesses and throughbores for positioning and aligning the VCSEL's on the mounting frame. The mounting frame further includes a plurality of terminal blocks in proximity to the recesses for interconnecting the mounting frame with the controller. An activation system including a plurality of electrical contacts electrically connects the individual VCSEL chip packages with the terminal blocks so that the controller can selectively trigger a laser output from the VCSEL chip package.

    摘要翻译: VCSEL沉降夹具提供多个VCSEL芯片封装,以在具有远程侧挂控制器的老化或环境室内进行选择性测试。 沉降固定装置包括安装框架,该安装框架包括用于在安装框架上定位和对准VCSEL的多个凹槽和通孔。 安装框架还包括靠近凹部的多个端子块,用于将安装框架与控制器互连。 包括多个电触点的激活系统将各个VCSEL芯片封装与端子块电连接,使得控制器能够选择性地触发来自VCSEL芯片封装的激光输出。

    Heat transfer device with flexible cooling layer
    9.
    发明授权
    Heat transfer device with flexible cooling layer 失效
    传热装置具有柔性冷却层

    公开(公告)号:US08215377B1

    公开(公告)日:2012-07-10

    申请号:US12436454

    申请日:2009-05-06

    IPC分类号: F28F7/00

    摘要: A heat transfer device generally includes a flexible cooling layer for use in heat pipe technology for example. The flexible layer has outer and inner surfaces. A backing layer has an outer surface and an inner surface facing the inner surface of the flexible layer. A rigid separator portion is disposed between the inner surfaces of the flexible and backing layers, and has inner and outer surfaces. The inner surfaces of the flexible and backing layers and the rigid separator portion define a sealed chamber. An evaporable working liquid is contained within the sealed chamber. The working liquid expands when heated to expand a volume within the sealed chamber, such that the flexible layer extends away from the sealed chamber. The flexible layer, when extended transfers heat through the sealed chamber to a cooler area of the device.

    摘要翻译: 传热装置通常包括用于例如热管技术的柔性冷却层。 柔性层具有外表面和内表面。 背衬层具有面向柔性层的内表面的外表面和内表面。 刚性分离器部分设置在柔性和背衬层的内表面之间,并且具有内表面和外表面。 柔性和背衬层和刚性分离器部分的内表面限定了密封室。 蒸发的工作液体容纳在密封室内。 工作液体在加热时膨胀,从而扩大密封室内的体积,从而柔性层远离密封室延伸。 当延伸时,柔性层将热量通过密封室传递到装置的较冷区域。

    Direct ocular virtual 3D workspace
    10.
    发明授权
    Direct ocular virtual 3D workspace 有权
    直接眼睛虚拟3D工作区

    公开(公告)号:US07538746B2

    公开(公告)日:2009-05-26

    申请号:US11187771

    申请日:2005-07-22

    IPC分类号: G09G5/00

    摘要: A direct ocular virtual 3D workspace (laser-based 3D display system) utilizes traditional binocular methods of image composition to produce a 3D workspace in the observers' psyche. This direct ocular virtual 3D workspace is implemented such that in moving environments, such as on a ship or vehicle, the immersion of the individual into the display environment will not result in vertigo and/or motion sickness. This is resolved by utilizing a system that accomplishes eye-tracking, and produces the display image within the eye by means of laser projection. Two images can thus be projected into an individual's eyes to produce a 3D holographic-like image space. The individual will still maintain partial vision, resulting in a holographic-like display in space that the observer can look through. The images provided to multiple collaborators/users are geometrically corrected for each collaborator.

    摘要翻译: 直观的眼睛虚拟3D工作空间(基于激光的3D显示系统)利用传统的双目镜图像组合方法在观察者的心灵中产生3D工作空间。 这种直接的眼睛虚拟3D工作空间被实现为使得在诸如船舶或车辆的移动环境中,个体在显示环境中的浸入将不会导致眩晕和/或运动疾病。 这通过利用完成眼睛跟踪的系统来解决,并且通过激光投射产生眼睛内的显示图像。 因此,两个图像可以投射到个人的眼睛中以产生3D全息像图像空间。 个体仍然保持部分视觉,导致观察者可以透视的空间中的全息像显示。 为每个协作者几何校正提供给多个协作者/用户的图像。