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    • 3. 发明授权
    • Top press tool
    • 热压工具
    • US07100257B2
    • 2006-09-05
    • US10417620
    • 2003-04-17
    • Martin Wisecarver
    • Martin Wisecarver
    • B30B9/00B23Q17/00
    • G02B7/023G02B27/62Y10T29/49771Y10T29/49778Y10T29/4978Y10T29/49998Y10T29/53039Y10T29/53061Y10T29/53091Y10T29/53961
    • Embodiments of the invention generally provide a fixture for assembling an optical component. The fixture generally includes a substantially rigid base member having a measurement aperture formed therein, a pair of upstanding frame members, each of the upstanding frame members having a pivotal mount and a vertical slot formed therein, and a support press slidably positioned within the vertical slot. The fixture may further include a component support assembly positioned below the support press, and a pivot arm connected to the support press at a first end, pivotally connected to the pivot mount at a middle portion, and a screw actuator at a second end.
    • 本发明的实施例通常提供用于组装光学部件的夹具。 夹具通常包括具有形成在其中的测量孔的基本上刚性的基座构件,一对直立框架构件,每个直立框架构件具有枢转安装件和形成在其中的垂直槽,以及可滑动地定位在竖直槽内的支撑压力 。 固定装置还可以包括位于支撑压力机下方的部件支撑组件,以及在第一端处连接到支撑压力机的枢转臂,在中间部分枢转地连接到枢转支架,在第二端处枢转地连接到螺杆致动器。
    • 4. 发明授权
    • Optical interconnection sub-assembly
    • 光互连子组件
    • US06905252B2
    • 2005-06-14
    • US10224827
    • 2002-08-21
    • Martin Wisecarver
    • Martin Wisecarver
    • G02B6/35G02B6/36G02B6/42G02B6/38
    • G02B6/4292G02B6/4236
    • The present invention generally is directed to an optical interconnection sub-assembly, which includes a housing, a longitudinal bore formed through the housing, a tapered ring press-fitted into a first end of the longitudinal bore, a split sleeve ring press-fitted into the tapered ring, a fiber stop press-fitted into the split sleeve ring, and one or more bushings threaded into a second end of the longitudinal bore. The interconnection generally operates to secure a fiber in one end and communicate a signal received from the fiber to a device attached thereto. Further, the interconnection generally does not require any epoxy or other chemical affixation methods, as press fitting and shrink fitting methods are employed, which substantially reduces the assembly time.
    • 本发明一般涉及一种光学互连子组件,其包括壳体,通过壳体形成的纵向孔,压配合到纵向孔的第一端中的锥形环,压配合到 锥形环,压配合到分开的套筒环中的纤维止动件,以及螺纹连接到纵向孔的第二端中的一个或多个衬套。 互连通常用于将光纤固定在一端,并将从光纤接收的信号传送到与其连接的设备。 此外,互连通常不需要任何环氧树脂或其他化学固定方法,因为采用压配合和收缩配合方法,这大大减少了组装时间。
    • 5. 发明申请
    • Two-piece nose assembly with solid sleeve for optical subassembly
    • 两件式鼻子组件,带有用于光学组件的实心套筒
    • US20060002660A1
    • 2006-01-05
    • US11076835
    • 2005-03-10
    • Martin WisecarverAxel Mehnert
    • Martin WisecarverAxel Mehnert
    • G02B6/36
    • G02B6/4292
    • A two piece nose assembly for optoelectronic devices is disclosed. The assembly includes a first piece having a central bore and an annular alignment recess about the central bore. The first piece can be attached to a housing of the optical device. The assembly also includes an annular second piece designed to receive an optical connector and having an outside surface designed to interference fit with an inside surface of the annular alignment recess. The annular second piece has an inside surface having a hardness of at least 35 on the Rockwell “C” scale. The first piece has an annular groove on an outside surface thereof that defines a lip adjacent to the housing. The annular groove has a tapered edge that facilitates an optimized angle of incidence for a laser beam used to weld the first piece to the housing.
    • 公开了一种用于光电子器件的两件式鼻部组件。 组件包括具有中心孔的第一件和围绕中心孔的环形排列凹槽。 第一件可以连接到光学装置的外壳。 组件还包括设计成接收光学连接器并且具有设计成与环形对准凹槽的内表面干涉配合的外表面的环形第二件。 环形第二片具有在洛氏“C”刻度上具有至少35度的硬度的内表面。 第一件在其外表面上具有环形槽,其限定了与壳体相邻的唇缘。 环形槽具有锥形边缘,其有助于用于将第一件焊接到外壳的激光束的最佳入射角。
    • 6. 发明授权
    • Optical isolator mounting apparatus
    • US06819509B2
    • 2004-11-16
    • US10224814
    • 2002-08-21
    • Martin WisecarverCharles Hu
    • Martin WisecarverCharles Hu
    • G02B702
    • G02F1/093G02B7/00
    • Embodiments of the invention provide for an improved optical component mounting apparatus and method. In one embodiment, the invention provides an optical component mounting apparatus that provides for accurate mounting of an optical component without the use of epoxy or other affixing agents. The optical component mounting apparatus includes a body having a bore formed longitudinally therethrough between a first and second end. The body also includes an inner sidewall of the body disposed adjacent the first end that defines a first component holding region. The first component holding region is in an offset alignment with the bore, the inner wall is adapted to frictionally accept a first component therein and exert a biasing force thereon to maintain the first component in a desired optical alignment. In another embodiment, the body includes an outer sidewall disposed between the first and second ends, wherein the inner and outer sidewalls define a second component holding region therebetween. The inner and outer sidewalls are adapted to frictionally accept a second component therein and exert a biasing force thereon to maintain the second component in a desired alignment relative the bore.
    • 7. 发明授权
    • Method for in situ measurement of the optical offset of an optical component
    • 用于原位测量光学部件的光学偏移的方法
    • US07103953B2
    • 2006-09-12
    • US10420207
    • 2003-04-22
    • Martin WisecarverCharles Hu
    • Martin WisecarverCharles Hu
    • B23P19/00
    • G02B27/62Y10T29/49764Y10T29/49771Y10T29/49778Y10T29/4978Y10T29/49895Y10T29/49998
    • Embodiments of the invention generally provide an in situ method for assembling and measuring optical characteristics of an optical component. The method generally includes pressing an optical source or lens into an optical housing while simultaneously measuring the optical output of the device. The measured optical output is used to determine and control when the optical source or lens is pressed to an optical position within optical housing. Once the source or lens is pressed into the optical housing, the method includes measuring the optical offset and/or pointing angle of the assembled component in the same apparatus that assembled the component. The measured optical offset and/or pointing angle information is used to determine how to mechanically alter the optical housing to correct or compensate for the optical offset and pointing angle.
    • 本发明的实施例通常提供用于组装和测量光学部件的光学特性的原位方法。 该方法通常包括将光源或透镜压入光学外壳,同时测量器件的光输出。 测量的光输出用于确定和控制何时将光源或透镜按压到光学外壳内的光学位置。 一旦源或透镜被压入光学壳体中,该方法包括在组装该部件的同一装置中测量组装的部件的光学偏移和/或指向角度。 测量的光学偏移和/或指向角度信息用于确定如何机械地改变光学外壳以校正或补偿光学偏移和指向角度。
    • 8. 发明授权
    • Optical component assembly system
    • 光学元件装配系统
    • US06931714B2
    • 2005-08-23
    • US10420266
    • 2003-04-22
    • Martin WisecarverCharles Hu
    • Martin WisecarverCharles Hu
    • G02B7/02G02B27/62B23P21/00
    • G02B27/62G02B7/023Y10T29/53009Y10T29/53039Y10T29/53061Y10T29/53087Y10T29/53091Y10T29/53961
    • Embodiments of the invention generally provide an apparatus for pressing an optical component into an optical housing. The apparatus generally includes a fixture configured to support the optical housing, a press tool configured to press the optical component into the optical housing, and a controller in electrical communication with the press tool, the controller being configured to control the press operation. The apparatus may further include a camera positioned in an optical path of the optical housing, the camera being configured to receive an optical output of the optical component and transmit data representative of the output to the controller for use in controlling the press operation. The controller is generally configured to use the optical measurements taken by the camera to control the pressing operation such that the optical source or lens is pressed to an optimal longitudinal position within the optical housing.
    • 本发明的实施例通常提供一种用于将光学部件按压到光学壳体中的装置。 该装置通常包括被配置为支撑光学壳体的夹具,构造成将光学部件按压到光学壳体中的压制工具以及与压制工具电连通的控制器,该控制器构造成控制压制操作。 该装置还可以包括位于光学壳体的光路中的照相机,该照相机被配置为接收光学部件的光学输出,并将表示输出的数据传送到控制器,以用于控制按压操作。 控制器通常被配置为使用照相机拍摄的光学测量来控制按压操作,使得光源或透镜被按压到光学外壳内的最佳纵向位置。
    • 9. 发明申请
    • Deformable optical signal transmitter port
    • 变形光信号发射端口
    • US20050135757A1
    • 2005-06-23
    • US11030402
    • 2005-01-06
    • Martin Wisecarver
    • Martin Wisecarver
    • G02B6/42G02B6/36
    • G02B6/4292G02B6/4204
    • This disclosure concerns optical components such as optical signal transmitter ports. One example of an optical signal transmitter port includes a nose body of single piece construction that has a bendable portion configured to facilitate alignment of an optical axis of the nose body with an optical axis of an optical signal associated with the optical signal transmitter port. The optical signal transmitter port further includes an optical source assembly having an optical signal housing within which is disposed an optical emitter such as a laser. The optical signal housing is partially received within the nose body.
    • 本公开涉及诸如光信号发射器端口的光学部件。 光信号发射器端口的一个示例包括单件结构的鼻体,其具有弯曲部分,该弯曲部分被配置为便于使鼻体的光轴与光信号发射器端口相关联的光信号的光轴对准。 光信号发射器端口还包括具有光学信号外壳的光源组件,其中设置有诸如激光器的光发射器。 光信号外壳部分地接纳在鼻体内。
    • 10. 发明授权
    • Deformable optical signal transmitter port
    • 变形光信号发射端口
    • US07212714B2
    • 2007-05-01
    • US11030402
    • 2005-01-06
    • Martin Wisecarver
    • Martin Wisecarver
    • G02B6/42
    • G02B6/4292G02B6/4204
    • This disclosure concerns optical components such as optical signal transmitter ports. One example of an optical signal transmitter port includes a nose body of single piece construction that has a bendable portion configured to facilitate alignment of an optical axis of the nose body with an optical axis of an optical signal associated with the optical signal transmitter port. The optical signal transmitter port further includes an optical source assembly having an optical signal housing within which is disposed an optical emitter such as a laser. The optical signal housing is partially received within the nose body.
    • 本公开涉及诸如光信号发射器端口的光学部件。 光信号发射器端口的一个示例包括单件结构的鼻体,其具有弯曲部分,该弯曲部分被配置为便于使鼻体的光轴与光信号发射器端口相关联的光信号的光轴对准。 光信号发射器端口还包括具有光学信号外壳的光源组件,其中设置有诸如激光器的光发射器。 光信号外壳部分地接纳在鼻体内。