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    • 5. 发明申请
    • Lens mount assembly for optical components
    • 镜头安装组件用于光学元件
    • US20060139774A1
    • 2006-06-29
    • US11026238
    • 2004-12-29
    • Stefan PfnuerDavid MorgensternKinya Nippa
    • Stefan PfnuerDavid MorgensternKinya Nippa
    • G02B7/02
    • G02B7/022
    • A lens mount assembly for securing a lens in a predetermined position within an optical device is disclosed. The lens mount assembly is configured so as to retain the lens in a press fit arrangement, thereby eliminating the need for adhesives or other mechanical means in order to secure the lens. In one embodiment the lens mount assembly includes a glass lens having an outer surface with a predetermined amount of surface roughness. A retention tube defines a cylindrical volume and is composed of a compliant material that resiliently deforms when the lens is pressed into the cylindrical volume. The compliant material recompresses a small amount around the lens to secure it within the retention tube. A base is attached to or integrally formed with the retention tube and includes a corrugated surface for securing the lens mount assembly within the optical device.
    • 公开了一种用于将透镜固定在光学装置内的预定位置的透镜安装组件。 透镜安装组件被配置为将透镜保持在压配合布置中,从而不需要粘合剂或其它机械装置来固定透镜。 在一个实施例中,透镜安装组件包括具有预定量表面粗糙度的外表面的玻璃透镜。 保持管限定圆柱体积,并且由柔性材料构成,当镜片被压入圆筒体积时弹性变形。 柔性材料在透镜周围重新压缩少量以将其固定在保持管内。 基座附接到保持管或与保持管一体地形成,并且包括用于将透镜安装组件固定在光学装置内的波纹状表面。
    • 7. 发明申请
    • FERRULE CONNECTOR ASSEMBLY
    • FERRULE连接器总成
    • US20060251359A1
    • 2006-11-09
    • US11381105
    • 2006-05-01
    • David Morgenstern
    • David Morgenstern
    • G02B6/36
    • G02B6/4292G02B6/3877
    • A ferrule connector assembly including a housing having a base member and a nose member is disclosed. The base member includes a bore having a first diameter portion that receives the nose member and a second diameter portion. A split sleeve cooperates with the base member and has first and second ends. The split sleeve has an outer diameter that varies based upon forces applied thereto. A fiber stop is disposed within the split sleeve and includes an optical path for light propagating through the assembly. A member mounts within the second diameter portion of the bore and is fixed within the second diameter portion by the nose member. The member mounts to the first end of the split sleeve and fixes the outer diameter of the split sleeve at the first end and allows the outer diameter of the second end to vary based upon forces applied thereto.
    • 公开了一种套圈连接器组件,其包括具有基部构件和鼻部构件的壳体。 基部构件包括具有容纳鼻部构件的第一直径部分和第二直径部分的孔。 分开的套筒与基座构件配合并具有第一和第二端。 开口套筒具有基于施加到其上的力而变化的外径。 纤维止动器设置在分裂套筒内,并包括用于光传播通过组件的光路。 构件安装在孔的第二直径部分内并且通过鼻构件固定在第二直径部分内。 构件安装到分离套筒的第一端并且在第一端处固定分开套筒的外径,并且允许第二端的外径基于施加到其上的力而变化。
    • 9. 发明授权
    • Lens mount assembly for optical components
    • 镜头安装组件用于光学元件
    • US07372647B2
    • 2008-05-13
    • US11026238
    • 2004-12-29
    • Stefan PfnuerDavid MorgensternKinya Nippa
    • Stefan PfnuerDavid MorgensternKinya Nippa
    • G02B7/02
    • G02B7/022
    • A lens mount assembly for securing a lens in a predetermined position within an optical device is disclosed. The lens mount assembly is configured so as to retain the lens in a press fit arrangement, thereby eliminating the need for adhesives or other mechanical means in order to secure the lens. In one embodiment the lens mount assembly includes a glass lens having an outer surface with a predetermined amount of surface roughness. A retention tube defines a cylindrical volume and is composed of a compliant material that resiliently deforms when the lens is pressed into the cylindrical volume. The compliant material recompresses a small amount around the lens to secure it within the retention tube. A base is attached to or integrally formed with the retention tube and includes a corrugated surface for securing the lens mount assembly within the optical device.
    • 公开了一种用于将透镜固定在光学装置内的预定位置的透镜安装组件。 透镜安装组件被配置为将透镜保持在压配合布置中,从而不需要粘合剂或其它机械装置来固定透镜。 在一个实施例中,透镜安装组件包括具有预定量表面粗糙度的外表面的玻璃透镜。 保持管限定圆柱体积,并且由柔性材料构成,当镜片被压入圆筒体积时弹性变形。 柔性材料在透镜周围重新压缩少量以将其固定在保持管内。 基座附接到保持管或与保持管一体地形成,并且包括用于将透镜安装组件固定在光学装置内的波纹状表面。