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    • 6. 发明授权
    • Vertical-cavity surface-emitting laser generating light with a defined
direction of polarization
    • 垂直腔表面发射激光产生具有确定的极化方向的光
    • US5727014A
    • 1998-03-10
    • US551302
    • 1995-10-31
    • Shih-Yuan WangMichael R. T. TanWilliam D. HollandJohn P. ErtelScott W. Corzine
    • Shih-Yuan WangMichael R. T. TanWilliam D. HollandJohn P. ErtelScott W. Corzine
    • H01S5/00H01S5/183H01S5/30H01S5/42H01S3/19
    • H01S5/18355H01S5/18308H01S5/18338H01S5/18394H01S5/3054H01S5/3095H01S5/423
    • A vertical-cavity surface-emitting laser that generates light having a fixed direction of polarization. The laser has a plane light-generating region sandwiched between a first conductive mirror region and a second conductive mirror region. The first conductive mirror region has an opposite conductivity mode from the second conductive mirror region. The first conductive mirror region has a remote surface substantially parallel to the light-generating region and an electrode formed on the remote surface. The electrode bounds a light emission port from which the light is emitted in a direction defining an axis. A reduced-conductivity region is formed in the first conductive mirror region surrounding the axis and extending from the remote surface towards the light-emitting region to define a core region in the first conductive mirror region. The light emission port and/or the core region has first and second dimensions in orthogonal directions in a plane parallel to the light-generating region. The first dimension is greater than the second dimension to set the direction of polarization of the light to the direction of the first dimension.
    • 产生具有固定的偏振方向的光的垂直腔表面发射激光器。 激光器具有夹在第一导电镜区域和第二导电镜面区域之间的平面发光区域。 第一导电镜区域具有与第二导电镜区域相反的导电模式。 第一导电镜区域具有基本上平行于发光区域的远程表面和形成在远程表面上的电极。 电极在限定轴线的方向上限定发光的发光口。 导电区域形成在围绕轴线的第一导电反射镜区域中,并从远程表面朝向发光区域延伸以在第一导电反射镜区域中限定芯区域。 发光端口和/或芯区域在与发光区域平行的平面中具有正交方向上的第一和第二尺寸。 第一尺寸大于第二尺寸以将光的偏振方向设置为第一尺寸的方向。
    • 7. 发明申请
    • FERRULE-BASED OPTICAL COMPONENT ASSEMBLIES
    • 基于FERRULE的光学组件组件
    • US20130084043A1
    • 2013-04-04
    • US13248441
    • 2011-09-29
    • John P. ErtelGary R. Trott
    • John P. ErtelGary R. Trott
    • G02B6/36
    • G02B6/3817G02B6/4246G02B6/4261
    • In one embodiment, an optical transceiver assembly includes an active component substrate, first and second fiber securing devices, and a holder device coupled to the active component substrate. The holder device includes an active optical component recess that encloses a first and second active optical component of the active component assembly, and first and second fiber-locating holes having an engagement feature at the active optical component recess such that an end of first and second fibers inserted into the first and second fiber-locating holes are aligned with the first and second active optical components along the x-, y-, and z-axes. In another embodiment, an optical component assembly includes an active component substrate having a solder ring, a fiber securing device, and an active optical component on the active component substrate. The fiber securing device is aligned with the active optical component by the solder ring.
    • 在一个实施例中,光收发器组件包括有源部件衬底,第一和第二光纤固定装置以及耦合到有源部件衬底的保持器装置。 保持器装置包括有源光学部件凹部,其包围有源部件组件的第一和第二有源光学部件,以及在有源光学部件凹部处具有接合特征的第一和第二光纤定位孔,使得第一和第二 插入第一和第二光纤定位孔中的光纤沿着x轴,y轴和z轴与第一和第二有源光学部件对准。 在另一个实施例中,光学部件组件包括具有焊接环的有源部件基板,光纤固定装置和有源部件基板上的有源光学部件。 光纤固定装置通过焊环与有源光学部件对准。
    • 9. 发明申请
    • OPTICAL COMPONENT ASSEMBLIES
    • 光学组件组件
    • US20130084044A1
    • 2013-04-04
    • US13248463
    • 2011-09-29
    • John P. ErtelGary R. Trott
    • John P. ErtelGary R. Trott
    • G02B6/36
    • G02B6/428G02B6/3831G02B6/4221G02B6/4231G02B6/4246
    • In one embodiment, an optical component assembly includes an active component substrate, an active component positioned on the active component substrate, a collar and a fiber securing device. The collar is coupled to the active component substrate, and the fiber securing device is configured to mate with the collar such that a signal surface of the fiber securing device is located at a predetermined distance from the surface of the active component substrate, and a signal aperture of the fiber securing device is substantially located at a predetermined optical coupling location with respect to the active optical component. In another embodiment, an optical transceiver assembly includes an optically transmissive fiber securing device coupled to and aligned with a surface of the active component substrate using first and second alignment apertures that are aligned with first and second alignment locations of the active component substrate, respectively.
    • 在一个实施例中,光学部件组件包括有源部件基板,位于有源部件基板上的有源部件,套环和光纤固定装置。 轴环耦合到有源部件基板,并且光纤固定装置构造成与轴环配合使得光纤固定装置的信号表面位于与有源部件基板的表面预定距离处,并且信号 光纤固定装置的孔径基本上位于相对于有源光学部件的预定光耦合位置。 在另一个实施例中,光收发器组件包括光学透射光纤固定装置,其使用分别与有源元件基板的第一和第二对准位置对准的第一和第二对准孔耦合到有源元件基板的表面并与其对准。