TECHNIQUES FOR ATTACHMENT AND ALIGNMENT OF OPTICAL COMPONENTS ON A THERMOELECTRIC COOLER (TEC) AND AN OPTICAL SUBASSEMBLY IMPLEMENTING SAME

    公开(公告)号:US20210013696A1

    公开(公告)日:2021-01-14

    申请号:US16506587

    申请日:2019-07-09

    Abstract: In general the present disclosure is directed to a temperature control device, e.g., a TEC, that includes a top plate with at least first and second contact pads to allow for a soldering process to attach optical components to the first contact pad without causing one or more layers of the second contact pad to reflow and solidify with an uneven mounting surface. Thus, optical components such as a focus lens can be mounted to the second contact pad via, for instance, thermal epoxy. This avoids the necessity of a submount to protect the focus lens from the relatively high heat introduced during a soldering process as well as maintain the flatness of the second contact pad within tolerance so that the mounted focus lens optically aligns by virtue of its physical location/orientation with other associated optical components coupled to the first contact pad, e.g., a laser diode.

    OPTICAL FILTER SUB-ASSEMBLY CARTRIDGE FOR USE IN A RECEIVER OPTICAL SUBASSEMBLY (ROSA) HOUSING

    公开(公告)号:US20170176698A1

    公开(公告)日:2017-06-22

    申请号:US14974492

    申请日:2015-12-18

    CPC classification number: G02B6/4215 G02B6/4214 G02B6/4263 H04B10/40 H04B10/60

    Abstract: An optical sub-assembly cartridge for use in a multi-channel receiver optical sub-assembly (ROSA) is disclosed and includes pre-aligned demultiplexing optics. The optical sub-assembly cartridge may include a plurality of sidewalls which define a cartridge body and at least partially enclose a cavity therein. A sidewall of the cartridge body may include a sidewall opening configured to allow light to enter the cavity. A first optical filter disposed opposite the sidewall opening may receive light entering the cavity and be configured to pass unassociated channel wavelengths out of the cavity while reflecting associated channel wavelengths to a mirror disposed in the cavity. The mirror may then reflect the received channel wavelengths to a second optical filter within or external to the cavity. The second optical filter may emit a narrow spectrum of channel wavelengths to a photodiode package to convert the same to a proportional electrical signal.

    MULTI-CHANNEL TRANSMITTER OPTICAL SUBASSEMBLY (TOSA) WITH AN OPTICAL COUPLING RECEPTACLE PROVIDING AN OFF-CENTER FIBER

    公开(公告)号:US20180284366A1

    公开(公告)日:2018-10-04

    申请号:US15759100

    申请日:2016-09-06

    Abstract: A multi-channel transmitter optical subassembly (TOSA) with an off-center fiber in an optical coupling is disclosed, and can provide passive compensation for beam displacement introduced by optical isolators. The optical coupling receptacle can include an optical isolator configured to receive a focused light beam from a focus lens within the TOSA. The optical coupling receptacle may be offset such that a center line of the focused light beam entering the optical isolator is offset from a center line of a fiber within optical coupling receptacle. Thus the optical isolator receives the focused light beam from the focus lens and introduces beam displacement such that an optical signal is launched generally along a center line of the fiber. Thus the expected beam displacement introduced by the optical isolator is eliminated or otherwise mitigated by the offset between a center line of the fiber and a center position of the focus lens.

    MULTI-CHANNEL TRANSMITTER OPTICAL SUBASSEMBLY (TOSA) WITH AN OPTICAL COUPLING RECEPTACLE PROVIDING AN OFF-CENTER FIBER
    10.
    发明申请
    MULTI-CHANNEL TRANSMITTER OPTICAL SUBASSEMBLY (TOSA) WITH AN OPTICAL COUPLING RECEPTACLE PROVIDING AN OFF-CENTER FIBER 有权
    多通道发射器光分路器(TOSA)具有提供非中心光纤的光耦合接收器

    公开(公告)号:US20170075079A1

    公开(公告)日:2017-03-16

    申请号:US14850367

    申请日:2015-09-10

    Abstract: A multi-channel transmitter optical subassembly (TOSA) with an off-center fiber in an optical coupling is disclosed, and can provide passive compensation for beam displacement introduced by optical isolators. The optical coupling receptacle can include an optical isolator configured to receive a focused light beam from a focus lens within the TOSA. The optical coupling receptacle may be offset such that a center line of the focused light beam entering the optical isolator is offset from a center line of a fiber within optical coupling receptacle. Thus the optical isolator receives the focused light beam from the focus lens and introduces beam displacement such that an optical signal is launched generally along a center line of the fiber. Thus the expected beam displacement introduced by the optical isolator is eliminated or otherwise mitigated by the offset between a center line of the fiber and a center position of the focus lens.

    Abstract translation: 公开了一种在光耦合中具有偏心光纤的多通道发射器光学组件(TOSA),并可为光隔离器引入的光束位移提供无源补偿。 光耦合插座可以包括配置成从TOSA内的聚焦透镜接收聚焦光束的光隔离器。 光耦合插座可以偏移,使得进入光隔离器的聚焦光束的中心线偏离光耦合插座内的光纤的中心线。 因此,光隔离器接收来自聚焦透镜的聚焦光束并且引入光束位移,使得光信号大致沿着光纤的中心线发射。 因此,由光隔离器引入的预期光束位移被消除或者通过光纤的中心线与聚焦透镜的中心位置之间的偏移来缓和或减轻。

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