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    • 2. 发明授权
    • RF sensor clamp assembly
    • 射频传感器夹具组件
    • US07728250B2
    • 2010-06-01
    • US10851423
    • 2004-05-21
    • Terry R. TurnerRodney A. HermanDuane T. SmithJames D. Spain
    • Terry R. TurnerRodney A. HermanDuane T. SmithJames D. Spain
    • B23K10/00
    • G01R15/142G01R1/04G01R15/186G01R19/0061H01J37/32082
    • A clamp assembly for bringing an RF sensor into electrical contact with an RF current carrier is provided herein. The clamp assembly (101) comprises a first wedge-shaped element (103), and a second wedge-shaped element (105) which is slidingly engaged with said first wedge-shaped element. Preferably, the clamp assembly also comprises a collar (113) within which the first and second wedge-shaped elements are disposed. The clamp assembly preferably further comprises a fastener (111), such as a screw, which adjoins the first and second elements, in which case the clamp assembly is adapted such that, as the screw is rotated in a first direction, at least one of the first and second elements expands against the collar and/or the RF current carrier.
    • 本文提供了一种用于使RF传感器与RF电流载体电接触的夹具组件。 夹具组件(101)包括第一楔形元件(103)和与所述第一楔形元件滑动接合的第二楔形元件(105)。 优选地,夹具组件还包括其中设置第一和第二楔形元件的套环(113)。 夹具组件优选地还包括紧固件(111),例如螺钉,其邻接第一和第二元件,在这种情况下,夹具组件适于使得当螺钉沿第一方向旋转时,至少一个 第一和第二元件相对于套环和/或RF电流载体膨胀。
    • 4. 发明授权
    • Optical fiber connector system
    • 光纤连接器系统
    • US06789950B1
    • 2004-09-14
    • US09643333
    • 2000-08-22
    • Harry A. LoderDuane T. Smith
    • Harry A. LoderDuane T. Smith
    • G02B636
    • G02B6/387G02B6/3821G02B6/3825G02B6/3829G02B6/3849G02B6/3869G02B6/3879G02B6/3885G02B6/3887G02B6/389G02B6/3893G02B6/3897G02B6/4277G02B6/43G02B6/4478G02B2006/4297
    • A fiber optic connector system for connecting at least one optical fiber cable mounted near the edge of a planar substrate to a backplane, each optical fiber cable including a plurality of optical fibers and a terminating ferrule, the longitudinal orientation of the optical fibers within the terminating ferrule defining a longitudinal axis and a forward direction, the ferrule having a first longitudinal range of motion x1 and a ferrule spring element having a longitudinal ferrule spring force fn,. The optical connector system includes a substrate housing assembly and a backplane housing assembly. The substrate housing assembly is designed to be mounted on the planar substrate and includes at least one ferrule receiving cavity for receiving the optical fiber ferrule, and a substrate housing assembly spring. The substrate housing assembly has a longitudinal freedom of motion with respect to the substrate, the housing assembly spring controlling movement of the substrate housing assembly along the longitudinal axis and having a longitudinal spring force h, wherein h>&Sgr;1nfn The backplane housing assembly defines at least one longitudinal receiving cavity, the receiving cavity having a frontal opening along the first surface of the backplane member and a rear opening along the second surface of the backplane member. A frontal door covers the frontal opening and a rear door covers the rear opening.
    • 一种用于将安装在平面基板的边缘附近的至少一根光纤电缆连接到背板的光纤连接器系统,每条光纤电缆包括多根光纤和终端套圈,光纤在端接端的纵向取向 套圈限定纵向轴线和向前方向,套圈具有第一纵向运动范围x1和具有纵向套圈弹簧力fn的套圈弹簧元件。 光学连接器系统包括基板壳体组件和背板壳体组件。 基板壳体组件被设计成安装在平面基板上并且包括用于接收光纤套圈的至少一个套圈容纳腔和衬底壳体组件弹簧。 衬底壳体组件具有相对于衬底的纵向自由度,壳体组件弹簧控制衬底壳体组件沿着纵向轴线的运动并且具有纵向弹簧力h,其中背板壳体组件限定至少一个纵向容纳腔 所述接收腔具有沿着所述背板构件的第一表面的正面开口和沿所述背板构件的第二表面的后开口。 正面门覆盖正面开口,后门覆盖后开口。
    • 5. 发明申请
    • RF sensor clamp assembly
    • 射频传感器夹具组件
    • US20080024158A1
    • 2008-01-31
    • US11496277
    • 2006-07-31
    • Terry A. TurnerRodney A. HermanDuane T. SmithJames D. Spain
    • Terry A. TurnerRodney A. HermanDuane T. SmithJames D. Spain
    • G01R31/36
    • G01R1/0408G01R1/06772
    • A clamp assembly for bringing an RF sensor into electrical contact with an RF current carrier is provided herein. The clamp assembly (101) comprises a first wedge-shaped element (103), and a second wedge-shaped element (105) which is slidingly engaged with said first wedge-shaped element. Preferably, the clamp assembly also comprises a collar (113) within which the first and second wedge-shaped elements are disposed. The clamp assembly preferably further comprises a fastener (111), such as a screw, which adjoins the first and second elements, in which case the clamp assembly is adapted such that, as the screw is rotated in a first direction, at least one of the first and second elements expands against the collar and/or the RF current carrier.
    • 本文提供了一种用于使RF传感器与RF电流载体电接触的夹具组件。 夹具组件(101)包括第一楔形元件(103)和与所述第一楔形元件滑动接合的第二楔形元件(105)。 优选地,夹具组件还包括其中设置第一和第二楔形元件的套环(113)。 夹具组件优选地还包括紧固件(111),例如螺钉,其邻接第一和第二元件,在这种情况下,夹具组件适于使得当螺钉沿第一方向旋转时,至少一个 第一和第二元件相对于套环和/或RF电流载体膨胀。
    • 7. 发明授权
    • Optical fiber connector system
    • 光纤连接器系统
    • US06419399B1
    • 2002-07-16
    • US09443713
    • 1999-12-01
    • Harry A. LoderDuane T. Smith
    • Harry A. LoderDuane T. Smith
    • G02B636
    • G02B6/3893G02B6/3821G02B6/3849G02B6/3869G02B6/3885G02B6/3887G02B6/389G02B6/3897G02B6/43G02B2006/4297
    • A fiber optic connector system for connecting at least one optical fiber cable mounted near the edge of a planar substrate to a backplane, each optical fiber cable including a plurality of optical fibers and a terminating ferrule, the longitudinal orientation of the optical fibers within the terminating ferrule defining a longitudinal axis and a forward direction, the ferrule having a first longitudinal range of motion x1 and a ferrule spring element having a longitudinal ferrule spring force fn,. The optical connector system includes a substrate housing assembly and a backplane housing assembly. The substrate housing assembly is designed to be mounted on the planar substrate and includes at least one ferrule receiving cavity for receiving the optical fiber ferrule, and a substrate housing assembly spring. The substrate housing assembly has a longitudinal freedom of motion with respect to the substrate, the housing assembly spring controlling movement of the substrate housing assembly along the longitudinal axis and having a longitudinal spring force h, wherein h > ∑ 1 n ⁢ f n The backplane housing assembly defines at least one longitudinal receiving cavity, the receiving cavity having a frontal opening along the first surface of the backplane member and a rear opening along the second surface of the backplane member. A frontal door covers the frontal opening and a rear door covers the rear opening.
    • 一种用于将安装在平面基板的边缘附近的至少一根光纤电缆连接到背板的光纤连接器系统,每条光纤电缆包括多根光纤和终端套圈,光纤在端接端的纵向取向 套圈限定纵向轴线和向前方向,套圈具有第一纵向运动范围x1和具有纵向套圈弹簧力fn的套圈弹簧元件。 光学连接器系统包括基板壳体组件和背板壳体组件。 基板壳体组件被设计成安装在平面基板上并且包括用于接收光纤套圈的至少一个套圈容纳腔和衬底壳体组件弹簧。 衬底壳体组件具有相对于衬底的纵向自由度,壳体组件弹簧控制衬底壳体组件沿着纵向轴线的运动并且具有纵向弹簧力h,其中背板壳体组件限定至少一个纵向容纳腔 所述接收腔具有沿着所述背板构件的第一表面的正面开口和沿所述背板构件的第二表面的后开口。 正面门覆盖正面开口,后门覆盖后开口。
    • 8. 发明授权
    • Furcation apparatus for optical fibers
    • 光纤分路装置
    • US06389214B1
    • 2002-05-14
    • US09860014
    • 2001-05-17
    • Duane T. SmithChing-Long TsaiRobert T. SmithKirk A. Halliburton
    • Duane T. SmithChing-Long TsaiRobert T. SmithKirk A. Halliburton
    • G02B600
    • G02B6/3878G02B6/4472
    • A furcation apparatus for a multi-conductor cable of the type having reinforcing fibers for longitudinal strength. The furcation apparatus includes a furcation spacer having a plurality of passages extending through an interior of the furcation spacer from a first end to a second end. Each passage is of a size sufficient to receive a furcation tube having reinforcing fibers, and each furcation tube is of a size sufficient to receive one of the plurality of conductors of the cable. The furcation tube reinforcing fibers approach the furcation spacer from the second end and are anchored adjacent the first end, and the cable reinforcing fibers approach the furcation spacer from the first end and are anchored adjacent the second end, such that tensioning the furcation tube reinforcing fibers and cable reinforcing fibers places the furcation spacer under compressive stress.
    • 一种用于纵向强度的具有增强纤维的多导体电缆的分叉装置。 分叉装置包括分叉间隔件,其具有从第一端延伸穿过分叉间隔物的内部到第二端的多个通道。 每个通道具有足以容纳具有增强纤维的分叉管的尺寸,并且每个分叉管的尺寸足以容纳电缆的多个导体中的一个。 分叉管增强纤维从第二端接近分叉间隔件并且在第一端附近锚固,并且电缆增强纤维从第一端接近分叉间隔件并且邻近第二端锚固,使得分叉管增强纤维 电缆增强纤维将分叉垫片放置在压应力下。