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    • 1. 发明授权
    • Sensor with integrated living hinge and spring
    • 传感器配有活动铰链和弹簧
    • US08897850B2
    • 2014-11-25
    • US12345345
    • 2008-12-29
    • Robert JochimJoseph CoakleyRobert W. FlaglerDarius EghbalMichael H. VardanegaDonald S. Nelson
    • Robert JochimJoseph CoakleyRobert W. FlaglerDarius EghbalMichael H. VardanegaDonald S. Nelson
    • A61B5/00A61B5/1455
    • A61B5/6826A61B5/14552A61B5/6838Y10T29/49004
    • Embodiments of the present disclosure relate generally to a sensor assembly. In various embodiments the sensor assembly includes a body having a first segment, a second segment, and a living hinge. The living hinge has a pivot axis and mechanically couples the first segment and the second segment. Further, the living hinge facilitates the first segment and the second segment to pivoting relative to one another about the pivot axis. Embodiments may also relate to a method of manufacturing a sensor frame. The method may include forming an integral sensor body having a first frame segment, a second frame segment, and a living hinge. The first frame segment and the second frame segment are configured to pivot relative to one another about a pivot axis of the living hinge. The method may also include coupling one or more biasing mechanisms to the first frame segment and the second frame segment. The biasing mechanism is configured to generate a moment about the pivot axis of the living hinge. The moment biases the first segment and second segment into a closed position.
    • 本公开的实施例大体上涉及传感器组件。 在各种实施例中,传感器组件包括具有第一段,第二段和活动铰链的主体。 活动铰链具有枢转轴线并机械地联接第一段和第二段。 此外,活动铰链有助于第一段和第二段围绕枢转轴线相对于彼此枢转。 实施例还可以涉及制造传感器框架的方法。 该方法可以包括形成具有第一框架段,第二框架段和活动铰链的整体传感器主体。 第一框架段和第二框架段构造成围绕活动铰链的枢转轴线相对于彼此枢转。 该方法还可以包括将一个或多个偏置机构联接到第一框架段和第二框架段。 偏置机构构造成围绕活动铰链的枢转轴线产生力矩。 该时刻将第一段和第二段偏移到关闭位置。
    • 2. 发明申请
    • SENSOR WITH INTEGRATED LIVING HINGE AND SPRING
    • 传感器与一体化生活兴奋和弹簧
    • US20090171224A1
    • 2009-07-02
    • US12345345
    • 2008-12-29
    • Robert JochimJoseph CoakleyRobert W. FlaglerDarius EghbalMichael H. VardanegaDonald S. Nelson
    • Robert JochimJoseph CoakleyRobert W. FlaglerDarius EghbalMichael H. VardanegaDonald S. Nelson
    • A61B5/0245A61B5/02
    • A61B5/6826A61B5/14552A61B5/6838Y10T29/49004
    • Embodiments of the present disclosure relate generally to a sensor assembly. In various embodiments the sensor assembly includes a body having a first segment, a second segment, and a living hinge. The living hinge has a pivot axis and mechanically couples the first segment and the second segment. Further, the living hinge facilitates the first segment and the second segment to pivoting relative to one another about the pivot axis. Embodiments may also relate to a method of manufacturing a sensor frame. The method may include forming an integral sensor body having a first frame segment, a second frame segment, and a living hinge. The first frame segment and the second frame segment are configured to pivot relative to one another about a pivot axis of the living hinge. The method may also include coupling one or more biasing mechanisms to the first frame segment and the second frame segment. The biasing mechanism is configured to generate a moment about the pivot axis of the living hinge. The moment biases the first segment and second segment into a closed position.
    • 本公开的实施例大体上涉及传感器组件。 在各种实施例中,传感器组件包括具有第一段,第二段和活动铰链的主体。 活动铰链具有枢转轴线并机械地联接第一段和第二段。 此外,活动铰链有助于第一段和第二段围绕枢转轴线相对于彼此枢转。 实施例还可以涉及制造传感器框架的方法。 该方法可以包括形成具有第一框架段,第二框架段和活动铰链的整体传感器主体。 第一框架段和第二框架段构造成围绕活动铰链的枢转轴线相对于彼此枢转。 该方法还可以包括将一个或多个偏置机构联接到第一框架段和第二框架段。 偏置机构构造成围绕活动铰链的枢转轴线产生力矩。 该时刻将第一段和第二段偏移到关闭位置。
    • 6. 发明授权
    • Lens housing for sterile cover of an operating microscope
    • 镜头外壳用于手术显微镜的无菌盖
    • US5155624A
    • 1992-10-13
    • US543152
    • 1990-06-25
    • Robert W. Flagler
    • Robert W. Flagler
    • A61B19/08B65D85/38G02B21/00
    • B65D85/38A61B46/10G02B21/00
    • A lens housing and cover for a disposable microscope drape including a housing formed of a flexible, easily distortable, resilient material adapted to be connected to a disposable microscope drape and positioned adjacent to an objective lens of an operating room microscope. The housing includes an opening for registering with the objective lens. A lens cover includes an optically clear portion for spanning the opening and a gripping portion projecting from the optically clear portion and from the housing when the lens cover is in the housing. The housing further includes a wall defining said opening, the wall including an elongated slot through which the lens cover can be inserted gripping portion can be inserted for installing the cover end through which the cover can be removed by pulling on the gripping portion, the elongated dimension of the slot being smaller than at least one portion of the dimension of the lens cover which spans the opening so that the housing has to be distorted for the lens cover to be inserted and removed. The portion of the wall defining the opening is aligned with the slot and includes two pairs of spaced ridges for holding the lens cover in place after it has been inserted through the slot.
    • 一种用于一次性显微镜的透镜壳体和盖,包括由柔性易变形的弹性材料形成的壳体,其适于连接到一次性显微镜盖布并且邻近手术室显微镜的物镜定位。 壳体包括用于与物镜配准的开口。 透镜盖包括用于跨越开口的光学透明部分和当透镜盖在壳体中时从光学透明部分和外壳突出的抓握部分。 壳体还包括限定所述开口的壁,所述壁包括细长的狭槽,透镜盖可以插入其中的抓握部分可以插入,用于安装盖端,通过该盖端可以拉动抓握部分,拉长 狭槽的尺寸小于跨越开口的透镜盖的尺寸的至少一部分,使得壳体必须变形以使透镜盖被插入和移除。 限定开口的壁的部分与槽对准,并且包括两对间隔开的脊,用于在透镜盖插入通过槽之后将其保持在适当的位置。
    • 7. 发明授权
    • Method and apparatus for aligning and securing a cable strain relief
    • 用于对准和固定电缆应变消除装置的方法和装置
    • US08070508B2
    • 2011-12-06
    • US12343791
    • 2008-12-24
    • Robert W. Flagler
    • Robert W. Flagler
    • H01R13/58
    • H01R13/58A61B5/0002A61B5/1455A61B2562/227H01R13/5804H01R13/5845Y10T29/49117
    • The present disclosure relates to a strain relief. In various embodiments, the strain relief includes a strain relief body and at least one alignment feature. The strain relief body is configured to provide support for connection of a cable and/or a wire lead of the cable to a frame. The alignment feature is configured to facilitate alignment of the strain relief relative to the frame. In various embodiments, provided are methods of manufacturing a sensor with a strain relief. The methods may include forming the strain relief about a cable and/or wire leads, wherein the strain relief comprises at least one alignment feature, aligning the alignment feature of the strain relief to a complementary alignment feature of a frame, engaging the complementary alignment feature of the frame with the alignment feature of the strain relief, and electrically coupling the cable and/or wire leads to a circuit.
    • 本公开涉及应变消除。 在各种实施例中,应变消除包括应变消除体和至少一个对准特征。 应变消除体构造成为电缆和/或电缆的导线连接到框架提供支撑。 对准特征被配置为便于应变消除相对于框架的对准。 在各种实施例中,提供了制造具有应变消除的传感器的方法。 所述方法可以包括围绕电缆和/或电线引线形成应变消除,其中应变消除部包括至少一个对准特征,将应变消除部的对准特征与框架的互补对准特征对准, 具有应变消除器的对准特征,并将电缆和/或导线电连接到电路。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR ALIGNING AND SECURING A CABLE STRAIN RELIEF
    • 用于校准和保护电缆应变消除的方法和装置
    • US20120053430A1
    • 2012-03-01
    • US13290922
    • 2011-11-07
    • Robert W. Flagler
    • Robert W. Flagler
    • A61B5/1455
    • H01R13/58A61B5/0002A61B5/1455A61B2562/227H01R13/5804H01R13/5845Y10T29/49117
    • The present disclosure relates to a strain relief. In various embodiments, the strain relief includes a strain relief body and at least one alignment feature. The strain relief body is configured to provide support for connection of a cable and/or a wire lead of the cable to a frame. The alignment feature is configured to facilitate alignment of the strain relief relative to the frame. In various embodiments, provided are methods of manufacturing a sensor with a strain relief. The methods may include forming the strain relief about a cable and/or wire leads, wherein the strain relief comprises at least one alignment feature, aligning the alignment feature of the strain relief to a complementary alignment feature of a frame, engaging the complementary alignment feature of the frame with the alignment feature of the strain relief, and electrically coupling the cable and/or wire leads to a circuit.
    • 本公开涉及应变消除。 在各种实施例中,应变消除包括应变消除体和至少一个对准特征。 应变消除体构造成为电缆和/或电缆的导线连接到框架提供支撑。 对准特征被配置为便于应变消除相对于框架的对准。 在各种实施例中,提供了制造具有应变消除的传感器的方法。 所述方法可以包括围绕电缆和/或电线引线形成应变消除,其中所述应变消除部包括至少一个对准特征,将所述应变消除部的对准特征与框架的互补对准特征对准,使所述互补对准特征 具有应变消除器的对准特征,并将电缆和/或导线电连接到电路。