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    • 4. 发明授权
    • Beam-adjusting optics
    • 光束调整光学
    • US07787197B2
    • 2010-08-31
    • US12231720
    • 2008-09-04
    • Yong Qin Chen
    • Yong Qin Chen
    • G02B9/04G02B9/12G02B27/64G01N21/00
    • G02B7/08G01N15/1434G01N15/1459G01N2015/1452
    • The present invention provides an optical analyzer having illumination optics that include a light source, such as a laser or other source, adapted to emit a collimated, or approximately collimated, light beam, a focusing lens that focuses the beam onto a focus spot within a detection region, and beam-adjusting optics positioned in the light path between the light beam source and the focusing lens, which allow for precise positioning of the focus spot within the detection region. The beam-adjusting optics of the present invention comprise at least one movable focusing lens, mounted in a positioning device that allows repositioning of the lens in a plane perpendicular to the light path.
    • 本发明提供了一种具有照明光学器件的光学分析器,该光学分析仪包括适于发射准直或近似准直的光束的光源,例如激光器或其它光源,聚焦透镜将光束聚焦到光束内的焦点上 检测区域和位于光束源和聚焦透镜之间的光路中的光束调节光学元件,其允许焦点在检测区域内的精确定位。 本发明的光束调节光学元件包括至少一个安装在定位装置中的可移动聚焦透镜,该定位装置允许透镜在垂直于光路的平面中重新定位。
    • 5. 再颁专利
    • Compensating for chromatic dispersion in optical fibers
    • 补偿光纤中的色散
    • USRE43965E1
    • 2013-02-05
    • US13065669
    • 2011-03-28
    • Yong Qin ChenFei Zhu
    • Yong Qin ChenFei Zhu
    • G02B6/26
    • An optical chromatic dispersion compensator (60) betters optical communication system performance. The dispersion compensator (60) includes a collimating means (61) that receives a spatially diverging beam of light from an end of an optical fiber (30). The collimating means (61) converts the spatially diverging beam into a mainly collimated beam that is emitted therefrom. An optical phaser (62) receives the mainly collimated beam from the collimating means (61) through an entrance window (63), and angularly disperses the beam in a banded pattern that is emitted from the optical phaser (61). A light-returning means (66) receives the angularly dispersed light and reflects it back through the optical phaser (62) to exit the optical phaser near the entrance window (63) thereof.
    • 光学色散补偿器(60)提高了光通信系统的性能。 色散补偿器(60)包括准直装置(61),其从光纤(30)的端部接收空间发散的光束。 准直装置(61)将空间发散的光束转换成从其发射的主要准直的光束。 光学相位器(62)通过入射窗(63)从准直装置(61)接收主要准直的光束,并且以从光学相位器(61)发出的带状图案成角度地分散光束。 光返回装置(66)接收角度分散的光并通过光学相位器(62)将其反射回来,以离开其入射窗(63)附近的光学相位器。
    • 6. 发明授权
    • Compensating for chromatic dispersion in optical fibers
    • 补偿光纤中的色散
    • US07099531B2
    • 2006-08-29
    • US10619814
    • 2003-07-15
    • Yong Qin ChenFei Zhu
    • Yong Qin ChenFei Zhu
    • G02B6/26
    • G02B6/2713G02B6/2766G02B6/2931G02B6/29311G02B6/29358G02B6/29373G02B6/29394G02B6/29395
    • An optical chromatic dispersion compensator (60) betters optical communication system performance. The dispersion compensator (60) includes a collimating means (61) that receives a spatially diverging beam of light from an end of an optical fiber (30). The collimating means (61) converts the spatially diverging beam into a mainly collimated beam that is emitted therefrom. An optical phaser (62) receives the mainly collimated beam from the collimating means (61) through an entrance window (63), and angularly disperses the beam in a banded pattern that is emitted from the optical phaser (61). A light-returning means (66) receives the angularly dispersed light and reflects it back through the optical phaser (62) to exit the optical phaser near the entrance window (63) thereof.
    • 光学色散补偿器(60)提高了光通信系统的性能。 色散补偿器(60)包括准直装置(61),其从光纤(30)的端部接收空间发散的光束。 准直装置(61)将空间发散的光束转换成从其发射的主要准直的光束。 光学相位器(62)通过入射窗(63)从准直装置(61)接收主要准直的光束,并且以从光学相位器(61)发出的带状图案成角度地分散光束。 光返回装置(66)接收角度分散的光并通过光学相位器(62)将其反射回来,以离开其入射窗(63)附近的光学相位器。
    • 7. 发明申请
    • Beam-adjusting optics
    • 光束调整光学
    • US20090073579A1
    • 2009-03-19
    • US12231720
    • 2008-09-04
    • Yong Qin Chen
    • Yong Qin Chen
    • G02B3/00
    • G02B7/08G01N15/1434G01N15/1459G01N2015/1452
    • The present invention provides an optical analyzer having illumination optics that include a light source, such as a laser or other source, adapted to emit a collimated, or approximately collimated, light beam, a focusing lens that focuses the beam onto a focus spot within a detection region, and beam-adjusting optics positioned in the light path between the light beam source and the focusing lens, which allow for precise positioning of the focus spot within the detection region. The beam-adjusting optics of the present invention comprise at least one movable focusing lens, mounted in a positioning device that allows repositioning of the lens in a plane perpendicular to the light path.
    • 本发明提供了一种具有照明光学器件的光学分析器,该光学分析仪包括适于发射准直或近似准直的光束的光源,例如激光器或其它光源,聚焦透镜将光束聚焦到光束内的焦点上 检测区域和位于光束源和聚焦透镜之间的光路中的光束调节光学元件,其允许焦点在检测区域内的精确定位。 本发明的光束调节光学元件包括至少一个安装在定位装置中的可移动聚焦透镜,该定位装置允许透镜在垂直于光路的平面中重新定位。
    • 9. 发明授权
    • Method for calibrating photonic crossconnect device
    • 校准光子交叉连接装置的方法
    • US07042922B2
    • 2006-05-09
    • US10384270
    • 2003-03-07
    • Babu NarayananYong-Qin ChenRobert WardRani IndahengHumair Raza
    • Babu NarayananYong-Qin ChenRobert WardRani IndahengHumair Raza
    • H01S3/08
    • G02B6/3586G01M11/00G02B6/3512G02B6/357
    • A method for calibrating a preferred disposition for a moveable first mirror of an optical switch core of a photonic crossconnect device relative to a second mirror thereof, the method comprising the steps of determining approximate geometric coordinates of the first mirror relative to the second mirror, effecting a laser light crossconnection between the first and second mirrors to produce data from which to provide first order corrections to refine the geometric coordinates, and effecting a further laser light crossconnection between the first mirror and a third mirror, to produce data from which to provide second order corrections to further refine the geometric coordinates, whereby to calibrate the first mirror such that upon initiation of a laser light crossconnection involving the first mirror, a switching element detects deviation of the first mirror from the preferred disposition thereof and effects corrective changes.
    • 一种用于校准光子交叉连接装置的光学开关芯相对于其第二反射镜的可移动的第一反射镜的优选配置的方法,所述方法包括以下步骤:确定第一反射镜相对于第二反射镜的近似几何坐标, 在第一和第二反射镜之间的激光交叉连接以产生数据,从该数据提供一阶校正以细化几何坐标,以及实现第一反射镜和第三反射镜之间的另外的激光交叉连接,以产生从其提供第二反射镜的数据 订单校正以进一步细化几何坐标,由此校准第一反射镜,使得在开始涉及第一反射镜的激光交叉连接时,开关元件检测第一反射镜与其优选布置的偏差并且实现校正改变。