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    • 2. 发明授权
    • Fiber guiding platform for mechanical splicer, optical connectors, fiber holder and methods
    • 用于机械接头,光纤连接器,光纤夹持器和方法的光纤引导平台
    • US07883275B2
    • 2011-02-08
    • US12455106
    • 2009-05-27
    • Wei-Min Wang
    • Wei-Min Wang
    • G02B6/38G02B6/36G02B6/255
    • G02B6/3806G02B6/3841G02B6/3846G02B6/3882
    • A three rod bundle confined inside a sleeve is constructed as a light guiding fiber mechanical splicing device which is stiff, strong and precise, with no moving parts. The design also applies to splicing fibers to pre-polished optical connectors through a built-in model of this innovative mechanical splicer. Applying the Soddy circles formula and using a bin approach assists in deriving the exact rod sizes needed and sleeve bore size to accommodate the three-rod bundle, so that this apparatus can be properly designed to guide any size of light guide fibers and studs with minimum clearance. Rods of varying diameters are sorted into bins and chosen based upon the aperture desired, thus eliminating the need for tight tolerance of the diameters of the three rods. This unique design allows for construction of a precision virtual hole of very long depth, which enables two optical fiber studs to butt against each other with a core to core misalignment of less than 1 um for single mode fiber optics cables. Unlike prior arts, the sleeve holding the rods eliminates the need for any clamping mechanism to tighten a loose bundle, which induces undesirable mechanical strain. It also eliminates the need to use a fiber clamp to force the fiber studs against dimensionally unstable V or U groove alignment features which also induce undesirable mechanical strain. A fiber holder is also presented to depict the usefulness of this invention on hold fiber in position.
    • 被限制在套筒内的三根棒被构造为光导纤维机械拼接装置,其刚性,强度和精度都没有移动部件。 该设计还适用于通过这种创新的机械拼接机的内置型号将拼接纤维连接到预抛光光学连接器。 应用Soddy圆形公式和使用垃圾箱方法有助于推导所需的精确杆尺寸和套筒孔尺寸以适应三杆束,使得该装置可以被适当地设计成以最小的方式引导任何尺寸的导光纤维和螺柱 清关 不同直径的杆根据所需孔径进行分选并选择,从而消除了对三根杆的直径的严格公差的需要。 这种独特的设计允许构建非常长的深度的精密虚拟孔,这使得两个光纤螺柱彼此对接,对于单模光纤电缆,芯与芯之间的不对准小于1um。 与现有技术不同,保持杆的套筒不需要任何夹紧机构来拧紧松散的束,这引起不期望的机械应变。 它还消除了使用纤维夹具迫使纤维柱抵抗尺寸不稳定的V或U槽对准特征的需要,这也引起不期望的机械应变。 还提供了一种光纤保持器以将本发明的有用性描述在保持光纤就位上。
    • 5. 发明授权
    • Vacuum calibration system and method for fiberoptic pressure transducer
    • 光纤压力传感器的真空校准系统和方法
    • US4856317A
    • 1989-08-15
    • US189333
    • 1988-05-02
    • John PidorenkoAlan R. HoffmanRobert F. HodgeWei-Min Wang
    • John PidorenkoAlan R. HoffmanRobert F. HodgeWei-Min Wang
    • G01L27/00
    • G01L27/002
    • A system and method for initializing and calibrating a fiber optic pressure transducer so that a measured intensity of light which varies as a function of pressure can be accurately translated to the value of pressure which produces that value of light intensity. The transducer includes an enclosed sensor tip having a diaphragm which is exposed to atmospheric pressure on the inside and the pressure to be determined on the outside as measurements are taken, the resulting pressure differential producing a related attenuation in light intensity. Calibration according to the present invention is performed by exposing the diaphragm to atmospheric pressure on the outside and sub-atmospheric pressure on the inside while transmitting light through the fiber in the usual manner. The sub-atmospheric pressure is changed gradually as simultaneous measurements are made of the intensity of light returned through the fiber and the actual value of the sub-atmospheric pressure at a number of discrete times. The paired values are stored in a look-up table which is subsequently used to determine unknown pressures from matched values of measured light intensity.
    • 用于初始化和校准光纤压力传感器的系统和方法,使得可以将测量的作为压力函数变化的光强度转化为产生该光强值的压力值。 换能器包括封闭的传感器尖端,其具有在测量时暴露于内部的大气压力和要在外部确定的压力的隔膜,所得到的压力差产生光强度中的相关衰减。 根据本发明的校准是通过将隔膜暴露在外部的大气压力和内部的副大气压力下进行的,同时以通常的方式透过光纤。 随着同时测量通过光纤返回的光的强度和多个离散时间的次大气压力的实际值,副大气压逐渐变化。 成对值存储在查找表中,随后用于从测量的光强度的匹配值确定未知压力。
    • 7. 发明申请
    • FIBER GUIDING PLATFORM FOR MECHANICAL SPLICER, OPTICAL CONNECTORS, FIBER HOLDER AND METHODS
    • 光纤连接器,光纤支架及方法的光纤引导平台
    • US20100303418A1
    • 2010-12-02
    • US12455106
    • 2009-05-27
    • Wei-Min Wang
    • Wei-Min Wang
    • G02B6/38G02B6/00G02B6/255
    • G02B6/3806G02B6/3841G02B6/3846G02B6/3882
    • A three rod bundle confined inside a sleeve is constructed as a light guiding fiber mechanical splicing device which is stiff, strong and precise, with no moving parts. The design also applies to splicing fibers to pre-polished optical connectors through a built-in model of this innovative mechanical splicer. Applying the Soddy circles formula and using a bin approach assists in deriving the exact rod sizes needed and sleeve bore size to accommodate the three-rod bundle, so that this apparatus can be properly designed to guide any size of light guide fibers and studs with minimum clearance. Rods of varying diameters are sorted into bins and chosen based upon the aperture desired, thus eliminating the need for tight tolerance of the diameters of the three rods. This unique design allows for construction of a precision virtual hole of very long depth, which enables two optical fiber studs to butt against each other with a core to core misalignment of less than 1 um for single mode fiber optics cables. Unlike prior arts, the sleeve holding the rods eliminates the need for any clamping mechanism to tighten a loose bundle, which induces undesirable mechanical strain. It also eliminates the need to use a fiber clamp to force the fiber studs against dimensionally unstable V or U groove alignment features which also induce undesirable mechanical strain. A fiber holder is also presented to depict the usefulness of this invention on hold fiber in position.
    • 被限制在套筒内的三根棒被构造为光导纤维机械拼接装置,其刚性,强度和精度都没有移动部件。 该设计还适用于通过这种创新的机械拼接机的内置型号将拼接纤维连接到预抛光光学连接器。 应用Soddy圆形公式和使用垃圾箱方法有助于推导所需的精确杆尺寸和套筒孔尺寸以适应三杆束,使得该装置可以被适当地设计成以最小的方式引导任何尺寸的导光纤维和螺柱 清关 不同直径的杆根据所需孔径进行分选并选择,从而消除了对三根杆的直径的严格公差的需要。 这种独特的设计允许构建非常长的深度的精密虚拟孔,这使得两个光纤螺柱彼此对接,对于单模光纤电缆,芯与芯之间的不对准小于1um。 与现有技术不同,保持杆的套筒不需要任何夹紧机构来拧紧松散的束,这引起不期望的机械应变。 它还消除了使用纤维夹具迫使纤维柱抵抗尺寸不稳定的V或U槽对准特征的需要,这也引起不期望的机械应变。 还提供了一种光纤保持器以将本发明的有用性描述在保持光纤就位上。
    • 9. 发明授权
    • Removable disk pack hub and clamp for media servowriter
    • 用于媒体伺服驱动器的可移动磁盘包集线器和夹具
    • US07394617B2
    • 2008-07-01
    • US11137372
    • 2005-05-26
    • Kien-Wee LaiWei-Min Wang
    • Kien-Wee LaiWei-Min Wang
    • G11B17/08
    • G11B17/028
    • The present invention provides a hub/clamp assembly for holding a disk hub in position when the hub is spin in a high speed. The hub/clamp assembly comprises of: a removable disk hub having a shaft for stacking a plurality of storage disks, a flange portion integrally attached to one end of the shaft, and an extension shaft integrally attached to the flange portion opposite to the shaft; wherein the axes of the shaft, the flange portion, and the extension shaft are in alignment; and a hub clamp housing having a housing with side walls and top and bottom surfaces, and a clamp means disposed within the cavity formed within the housing. The present invention also provides a multi-disk servowriter for writing servo information onto multiple storage disks at the same time. The multi-disk servowriter comprises a base with an air spindle shaft providing the spinning power for the servowriter; a removable disk hub having a shaft for stacking a plurality of storage disks, a flange portion integrally attached to one end of the shaft, and an extension shaft integrally attached to the flange portion opposite to the shaft; wherein the axes of the shaft, the flange portion, and the extension shaft are in alignment; and a hub clamp housing having a housing with side walls and top and bottom surfaces, and a clamp means disposed within the cavity formed within the housing.
    • 本发明提供一种用于在轮毂高速旋转时将盘毂保持在适当位置的轮毂/夹紧组件。 毂/夹具组件包括:具有用于堆叠多个存储盘的轴的可移除盘毂;与轴的一端整体连接的凸缘部分和与轴相对的凸缘部分一体地附接的延伸轴; 其中所述轴,所述凸缘部分和所述延伸轴的轴线对齐; 以及具有壳体的轮毂夹具壳体,该壳体具有侧壁和顶表面和底表面,以及设置在形成在壳体内的空腔内的夹紧装置。 本发明还提供了一种用于将伺服信息同时写入多个存储盘的多盘伺服驱动器。 多盘伺服驱动器包括一个带空气主轴的基座,为伺服驱动器提供旋转动力; 具有用于堆叠多个存储盘的轴的可移动盘毂,一体地附接到所述轴的一端的凸缘部和与所述轴相对的所述凸缘部一体地附接的延伸轴; 其中所述轴,所述凸缘部分和所述延伸轴的轴线对齐; 以及具有壳体的轮毂夹具壳体,该壳体具有侧壁和顶表面和底表面,以及设置在形成在壳体内的空腔内的夹紧装置。