Energy transmission cable connector with interchangeable locking
mechanisms
    15.
    发明授权
    Energy transmission cable connector with interchangeable locking mechanisms 失效
    能量传输电缆连接器,具有可互换的锁定机构

    公开(公告)号:US5197900A

    公开(公告)日:1993-03-30

    申请号:US631879

    申请日:1990-12-21

    CPC classification number: H01R13/6275 H01R13/6215 H01R13/516

    Abstract: An energy transmission cable connector having interchangeable locking mechanisms for attaching and releasably locking the connector to another device. The locking mechanisms can comprise retainers and rotatable jack screws or pivotal latches, the retainers and latches being interchangeably snap-fitted to the outer connector housing.

    Abstract translation: 能量传输电缆连接器具有用于将连接器附接和可释放地锁定到另一装置的可互换的锁定机构。 锁定机构可以包括保持器和可旋转的千斤顶螺钉或枢转闩锁,保持器和闩锁可互换地卡扣配合到外部连接器壳体。

    Energy transmission cable connector with latching mechanism
    16.
    发明授权
    Energy transmission cable connector with latching mechanism 失效
    带锁定机构的传输电缆连接器

    公开(公告)号:US5154629A

    公开(公告)日:1992-10-13

    申请号:US860227

    申请日:1992-03-27

    Abstract: An energy transmission cable connector for connecting terminals in a circuit has a cable coupled to a connector housing which is enclosed by a molded outer housing. The outer housing has a pair of side cavities pivotally receiving a pair of latches. The latches have locking fingers for engaging a connecting element and are biased into a locking position by integral leaf springs or helical compression springs. The pivotal coupling of the latches is accomplished by protrusions on the latches retained by recesses in the housing, a pin assembly, or an integrally molded hinge. The connector can be used with electrical or fiber optic cables.

    Abstract translation: 用于连接电路中的端子的能量传输电缆连接器具有耦合到由模制的外壳封闭的连接器壳体的电缆。 外壳具有枢转地接收一对闩锁的一对侧腔。 闩锁具有用于接合连接元件的锁定指状物,并且通过一体的片簧或螺旋压缩弹簧被偏压到锁定位置。 闩锁的枢转联接通过由壳体中的凹部保持的闩锁上的突起,销组件或整体模制的铰链来实现。 连接器可与电缆或光纤电缆一起使用。

    SYSTEM AND METHOD FOR MONITORING BIREFRINGENT PARTICLES IN A FLUID
    19.
    发明申请
    SYSTEM AND METHOD FOR MONITORING BIREFRINGENT PARTICLES IN A FLUID 有权
    用于监测流体中的双重颗粒的系统和方法

    公开(公告)号:US20120127298A1

    公开(公告)日:2012-05-24

    申请号:US13360260

    申请日:2012-01-27

    Abstract: An imaging system with an imaging mechanism which includes polarization analyzers, which may be crossed polarization analyzers, positioned to provide birefringence images of particles in the fluid passing through the flow chamber. Captured images are of high resolution and may be used in comparison to known images of a library of images. The system and related method enhance the accuracy and sensitivity of particle monitoring by utilizing birefringence imaging combined with particle analysis and the detection of each particle's characteristic features, such as crystalline features. The system includes a scatter detector used to trigger backlighting of the flow chamber and capture images of particles therein.

    Abstract translation: 具有成像机构的成像系统包括可以是交叉偏振分析器的偏振分析器,其被定位成在通过流动室的流体中提供颗粒的双折射图像。 捕获的图像具有高分辨率,并且可以与图像库的已知图像进行比较。 该系统和相关方法通过利用双折射成像结合粒子分析和检测每个粒子的特征,如晶体特征,提高了粒子监测的准确度和灵敏度。 该系统包括用于触发流动室的背光并捕获颗粒图像的散射检测器。

    Common lens helmet mounted display
    20.
    发明授权
    Common lens helmet mounted display 有权
    普通镜头安装显示屏

    公开(公告)号:US07375894B2

    公开(公告)日:2008-05-20

    申请号:US11370088

    申请日:2006-03-07

    CPC classification number: G02B27/0172 G02B7/12 G02B2027/0132

    Abstract: A common lens HMD is shown and described. The use of a common lens in a biocular or binocular helmet mounted display (HMD) system provides a means to manipulate light rays from an image(s) which are traveling from two or more separate upstream optics trains to the helmet visor and onward to each eye, with fields of view which overlap at the midpoint of the visor. The common lens changes the optical paths of each individual ray going to a single eye, and changes the corresponding ray traveling to the other eye in a mirrored fashion (i.e. with the opposite component in the Left/Right direction).

    Abstract translation: 公共透镜HMD被示出和描述。 在生物型或双目头盔安装显示器(HMD)系统中使用共同的透镜提供了一种手段来操纵来自两个或更多个单独的上游光学系列到头盔遮阳板的图像的光线,并向前到每个 眼睛,与遮阳板中点重叠的视野。 共同的透镜改变每个单独的射线的光路到单眼,并且以镜像的方式(即,在左/右方向上具有相反的分量)改变行进到另一只眼睛的相应的射线。

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