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    • 2. 发明申请
    • HARDENED MULTIPORT OPTICAL CONNECTOR ASSEMBLY
    • 硬化多光电连接器总成
    • US20130236139A1
    • 2013-09-12
    • US13413735
    • 2012-03-07
    • David Zhi ChenGeorge N. Bell
    • David Zhi ChenGeorge N. Bell
    • G02B6/38
    • G02B6/3878G02B6/3816G02B6/3821G02B6/3822
    • A multiport optical connector assembly (MOCA) includes an insertion optical fiber assembly having an insertion assembly housing and a connector disk that includes a first connector element having a first ferrule and a first optical fiber. The MOCA further includes a coupling optical fiber assembly having a second connector element including a second ferrule and a second optical fiber. The MOCA further includes an adapter assembly that includes an adapter assembly housing a docking unit for docking the first connector element and the second connector element when the MOCA is assembled. When the first connector element and the second connector element are docked, a tip of the first optical fiber and a tip of the second optical fiber abut one another and the first optical fiber and the second optical fiber form an optical path.
    • 多端口光连接器组件(MOCA)包括插入光纤组件,其具有插入组件壳体和连接器盘,该连接器盘包括具有第一套圈和第一光纤的第一连接器元件。 MOCA还包括具有包括第二套圈和第二光纤的第二连接器元件的耦合光纤组件。 MOCA还包括适配器组件,其包括适配器组件,该适配器组件容纳用于在组装MOCA时对接第一连接器元件和第二连接器元件的对接单元。 当第一连接器元件和第二连接器元件对接时,第一光纤的末端和第二光纤的末端彼此邻接,并且第一光纤和第二光纤形成光路。
    • 3. 发明授权
    • Hardened multiport optical connector assembly
    • 硬化多端口光连接器组件
    • US08814442B2
    • 2014-08-26
    • US13413735
    • 2012-03-07
    • David Zhi ChenGeorge N. Bell
    • David Zhi ChenGeorge N. Bell
    • G02B6/38G02B6/40
    • G02B6/3878G02B6/3816G02B6/3821G02B6/3822
    • A multiport optical connector assembly (MOCA) includes an insertion optical fiber assembly having an insertion assembly housing and a connector disk that includes a first connector element having a first ferrule and a first optical fiber. The MOCA further includes a coupling optical fiber assembly having a second connector element including a second ferrule and a second optical fiber. The MOCA further includes an adapter assembly that includes an adapter assembly housing a docking unit for docking the first connector element and the second connector element when the MOCA is assembled. When the first connector element and the second connector element are docked, a tip of the first optical fiber and a tip of the second optical fiber abut one another and the first optical fiber and the second optical fiber form an optical path.
    • 多端口光连接器组件(MOCA)包括插入光纤组件,其具有插入组件壳体和连接器盘,该连接器盘包括具有第一套圈和第一光纤的第一连接器元件。 MOCA还包括具有包括第二套圈和第二光纤的第二连接器元件的耦合光纤组件。 MOCA还包括适配器组件,其包括适配器组件,该适配器组件容纳用于在组装MOCA时对接第一连接器元件和第二连接器元件的对接单元。 当第一连接器元件和第二连接器元件对接时,第一光纤的末端和第二光纤的末端彼此邻接,并且第一光纤和第二光纤形成光路。
    • 8. 发明授权
    • Alignment-improved optical-fiber mechanical splicer
    • 对准改进的光纤机械接合器
    • US08366328B2
    • 2013-02-05
    • US12973230
    • 2010-12-20
    • David Zhi ChenGeorge N. Bell
    • David Zhi ChenGeorge N. Bell
    • G02B6/255
    • G02B6/3801
    • Apparatus and methodology for mechanically splicing two optical fibers of equal or different diameters. Instead of flat V-groove structure for holding the optical fibers to be spliced, embodiments of the present invention use a concave-walled channel to better align two optical fibers if they have different diameters. The cover holding the fibers in place in the concave channel is similarly curved. The improved alignment results in more area overlap between end surfaces of the two optical fibers to be spliced. This reduces insertion loss by 0.1 dB or better, at the splice junction and, therefore, improves light signal transmission. The radius of curvature of the concave structure can be approximately two to three times the radius of the optical fibers being spliced.
    • 用于机械拼接两根相同或不同直径的光纤的装置和方法。 代替用于保持要接合的光纤的平坦的V形槽结构,本发明的实施例使用凹壁通道来使两根光纤具有不同的直径来更好地对准两根光纤。 将纤维保持在凹槽中的位置的盖子类似地弯曲。 改进的对准导致要拼接的两根光纤的端面之间的更多区域重叠。 这在接合点处将插入损耗降低了0.1dB或更好,因此改善了光信号传输。 凹形结构的曲率半径可以是被拼接的光纤的半径的大约2至3倍。
    • 9. 发明申请
    • TESTING OF PASSIVE OPTICAL COMPONENTS
    • 被动光学元件的测试
    • US20130229648A1
    • 2013-09-05
    • US13411866
    • 2012-03-05
    • David Zhi Chen
    • David Zhi Chen
    • G01N21/59G01N21/55
    • G01M11/335G01M11/337
    • Methods and devices provide for transmitting a series of optical signals within a range of an O-band through a U-band into a device under test comprising one or more passive optical components; measuring powers of the optical signals that propagated through the device under test; calculating wavelength-dependent insertion loss values based on the measured power of the optical signals; measuring powers of reflected portions of the optical signals that propagated through the device under test; and calculating wavelength-dependent return loss values based on the measured powers of the reflected portion of the optical signal.
    • 方法和装置提供将O波段范围内的一系列光信号通过U波段传输到被测器件中,包括一个或多个无源光学部件; 测量通过被测器件传播的光信号的功率; 基于光信号的测量功率计算与波长相关的插入损耗值; 测量通过被测器件传播的光信号的反射部分的功率; 以及基于所测量的光信号的反射部分的功率来计算波长相关的返回损耗值。
    • 10. 发明授权
    • Return loss measurement system
    • 回波损耗测量系统
    • US08525981B2
    • 2013-09-03
    • US12748742
    • 2010-03-29
    • David Zhi ChenVijay Jain
    • David Zhi ChenVijay Jain
    • G01N21/00
    • G01M11/31
    • A method may include injecting a test signal having a first optical launch power into a device under test via an optical splitter. The optical splitter includes at least two upstream ports and a downstream port and the test signal is injected in a first upstream port of the optical splitter. The device under test is coupled to the downstream port. Return loss associated with the device under test is measured at a second upstream input of the optical splitter. The RL measurement in stored a database. The injecting, measuring, and storing are repeated for a number of different optical launch powers.
    • 一种方法可以包括通过光分路器将具有第一光发射功率的测试信号注入到被测器件中。 光分路器包括至少两个上游端口和下游端口,并且测试信号被注入到光分路器的第一上游端口中。 被测设备耦合到下游端口。 在分光器的第二上游输入处测量与被测器件相关联的回波损耗。 存储数据库中的RL测量。 对于许多不同的光发射功率重复注入,测量和存储。