WO2012163030A1 - 一种光纤连接器插座 - Google Patents

一种光纤连接器插座 Download PDF

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Publication number
WO2012163030A1
WO2012163030A1 PCT/CN2011/081516 CN2011081516W WO2012163030A1 WO 2012163030 A1 WO2012163030 A1 WO 2012163030A1 CN 2011081516 W CN2011081516 W CN 2011081516W WO 2012163030 A1 WO2012163030 A1 WO 2012163030A1
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WO
WIPO (PCT)
Prior art keywords
fiber optic
optical
optic connector
optical module
fiber
Prior art date
Application number
PCT/CN2011/081516
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English (en)
French (fr)
Inventor
曾理
邓琦
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2011/081516 priority Critical patent/WO2012163030A1/zh
Priority to CN201180002191XA priority patent/CN102725670A/zh
Publication of WO2012163030A1 publication Critical patent/WO2012163030A1/zh

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/381Dismountable connectors, i.e. comprising plugs of the ferrule type, e.g. fibre ends embedded in ferrules, connecting a pair of fibres
    • G02B6/3825Dismountable connectors, i.e. comprising plugs of the ferrule type, e.g. fibre ends embedded in ferrules, connecting a pair of fibres with an intermediate part, e.g. adapter, receptacle, linking two plugs
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3833Details of mounting fibres in ferrules; Assembly methods; Manufacture
    • G02B6/3847Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces
    • G02B6/3849Details of mounting fibres in ferrules; Assembly methods; Manufacture with means preventing fibre end damage, e.g. recessed fibre surfaces using mechanical protective elements, e.g. caps, hoods, sealing membranes
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/36Mechanical coupling means
    • G02B6/38Mechanical coupling means having fibre to fibre mating means
    • G02B6/3807Dismountable connectors, i.e. comprising plugs
    • G02B6/3897Connectors fixed to housings, casing, frames or circuit boards
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/24Coupling light guides
    • G02B6/42Coupling light guides with opto-electronic elements
    • G02B6/4292Coupling light guides with opto-electronic elements the light guide being disconnectable from the opto-electronic element, e.g. mutually self aligning arrangements

Definitions

  • the present invention relates to the field of optical modules, and in particular to a fiber optic connector socket. Background technique
  • the 100GE optical module also known as the Small Form Factor Pluggable 100G, has an overall size of approximately 145 x 82 x 13.6 mm.
  • the new generation of miniaturized 100GE recently being discussed is the CFP2, which is CFP-half, about 108 X 40 X 12.4 mm.
  • the optical interfaces of the two optical modules are adapted to the LC type optical fiber connector or the SC type optical fiber connector, and the LC type optical fiber connector or the SC type optical fiber connector can be connected to the optical module through the optical interface.
  • the optical module panel 101 is fixed on the optical module 100 through a knob 102.
  • the optical module panel 101 has a jack 103 for inserting a fiber connector.
  • 2 is a top view of the optical module 100 mounted on a printed circuit board (PCB) 21 of the main board.
  • the optical module panel 101 is parallel to the main board panel, and the external optical fiber 22 is inserted into the optical module 100 through the optical fiber connector 23.
  • PCB printed circuit board
  • the external optical fiber 22 is inserted into the optical module 100 through the optical fiber connector 23.
  • it requires an 45-degree angle between the external fiber and the motherboard panel to protect the eyes and make it easier to install the fiber.
  • the CFP optical module is tilted on the motherboard PCB, it will cause difficulty in PCB layout space, and it will also increase the difficulty of installing the motherboard panel. Summary of the invention
  • the embodiment of the invention provides a fiber optic connector socket for adapting various installation scenarios of the fiber optic connector and improving installation flexibility.
  • the embodiment of the present invention provides the following technical solutions:
  • a fiber optic connector socket comprising:
  • Fiber optic connector adapter shaft;
  • the rotating shaft is disposed at one end of the optical fiber connector adapter;
  • the above fiber optic connector adapter is provided with a jack for inserting the fiber optic connector.
  • optical fiber connector socket may be connected to the optical module panel through a rotating shaft.
  • the optical fiber connector socket further includes: a rotating firmware connected to the rotating shaft, so that the optical fiber connector socket is connected to the optical module panel through the rotating firmware.
  • the optical fiber connector socket can be applied to the optical module panel, and the optical connector adapter is provided with a first positioning pin hole and a second positioning pin hole; wherein the first positioning pin hole is used for the optical fiber connector adapter and the above
  • the optical module panel is fixed in the first position, where the first position is the angle between the surface of the jack and the optical module panel at 0 degrees; the second positioning pin hole is used to fix the optical connector adapter and the optical module panel to the second
  • the second position is an angle of 45 degrees between the surface of the jack and the optical module panel.
  • the optical fiber connector socket in the embodiment of the invention comprises a fiber optic connector adapter and a rotating shaft, and the optical fiber connector adapter can be rotated on a certain plane along the rotating shaft. Further, the optical fiber connector socket can pass through the rotating shaft and the optical module panel. The connection enables the fiber optic connector adapter to rotate on the panel along the rotating shaft. By rotating the face of the jack on the fiber optic connector adapter, the panel can be at different angles to the panel, so that the fiber connector inserted into the jack can also be connected to the panel. In different angles, it can be seen that the optical fiber connector socket in the embodiment of the present invention can be applied to various installation scenarios of the optical fiber connector, and has high installation flexibility.
  • FIG. 1 is a schematic structural view of a conventional pluggable optical module
  • FIG. 2 is a schematic diagram of a pluggable optical module mounted on a motherboard
  • FIG. 3 is a schematic structural diagram of a fiber optic connector socket according to an embodiment of the present invention
  • FIG. 4 is another schematic structural diagram of a fiber optic connector socket according to an embodiment of the present invention
  • FIG. Another structural schematic diagram of the connection with the light module panel 6 is a schematic diagram of a fiber optic connector socket for mounting an LC type optical fiber connector according to an embodiment of the present invention
  • FIG. 7 is a schematic structural diagram of a fiber optic connector socket according to an embodiment of the present invention
  • FIG. 8 is a schematic diagram of an optical fiber connector socket according to an embodiment of the present invention
  • FIG. 10 is a schematic structural diagram of an optical module of an optical fiber connector socket according to an embodiment of the present invention. Specific implementation
  • Embodiments of the present invention provide a fiber optic connector socket and an optical module.
  • a fiber optic connector socket in the embodiment of the present invention is described below, as shown in FIG. 3, including: a fiber optic connector adapter 31 and a rotating shaft 32;
  • the rotating shaft 32 is disposed at the end of the optical fiber connector adapter 31, and the optical connector adapter 31 is provided with a jack 33 for inserting the optical fiber connector.
  • the fiber optic connector receptacle can be coupled to external components (e.g., optical module panels, veneers, etc.) via the spindle such that the fiber optic connector adapter 31 can be rotated along the spindle 32 over the outer component.
  • external components e.g., optical module panels, veneers, etc.
  • the fiber optic connector socket may further include a rotation fixing member 301 connected to the rotating shaft 32.
  • the optical fiber connector adapter 31 may be disposed on the rotating fixing member 301 along the rotating shaft 32.
  • Rotating, the fiber optic connector socket is connected to external components (such as an optical module panel, a single board, etc.) through the rotating firmware.
  • the rotating fixture 301 can be fixed to the optical module panel 30 by screws 302. Of course, it can also be welded, bonded or The rotation fixing member 301 is fixed to the optical module panel 30 in other manners, which is not limited herein.
  • the size of the jack on the fiber optic connector adapter can be set to be LC type
  • the fiber optic connector is adapted to accommodate the insertion of the LC-type fiber optic connector, or the jack on the fiber optic connector socket can be sized to fit the SC-type fiber optic connector to accommodate insertion of the SC-type fiber optic connector .
  • the jacks on the fiber optic connector sockets can be sized to fit other types of fiber optic connectors (such as FC fiber optic connectors, etc.) to accommodate the insertion of corresponding types of fiber optic connectors. This is not a limitation.
  • a fiber optic connector receptacle for an LC-type fiber optic connector can be inserted into the fiber optic connector adapter 41 through a receptacle 42 that is adapted thereto.
  • a set of locating pin holes may also be provided in the fiber optic connector adapter to optically mate the fiber optic connector adapter as it rotates to a position along an external component of the fiber optic connector receptacle
  • the connector socket is secured to the external components.
  • the first positioning pin hole 511 and the second positioning pin hole 512 are disposed on the optical fiber connector adapter 51, and the first positioning pin hole is provided.
  • the 511 is used to fix the optical fiber connector adapter 51 and the optical module panel 50 in the first position. As shown in FIG.
  • the first position is the angle between the surface of the insertion hole 52 and the optical module panel 50 at an angle of 0 degrees, so that the insertion is performed.
  • the fiber connector 53 in the jack 52 can output the fiber signal in a direction perpendicular to the panel of the optical module; as shown in FIG. 9, the second positioning pin hole 512 is used to fix the fiber connector adapter 51 and the optical module panel 50 to the second.
  • the second position is at an angle of 45 degrees with the optical module panel 50 at the face of the jack 52, so that the optical fiber connector 53 inserted into the jack 52 can output a fiber signal in a 45-degree direction with the optical module panel.
  • the positioning pin holes can be disposed at other positions on the optical fiber connector adapter 51 to fix the optical fiber connector adapter 51 and the optical module panel 50 at different positions.
  • the positioning pin hole provided on the optical fiber connector adapter can be replaced with a buckle, and the optical fiber connector socket can be fixed on the external component by the buckle.
  • the embodiment of the present invention can also pass other The method is to fix the fiber connection socket to the external component, which is not limited herein.
  • the fiber connector adapter can be set to a fan-shaped structure, so that the fiber connector adapter is along the rotating shaft in the external component.
  • the optical fiber connector adapter can also be configured as a square structure or other structure, which is not limited herein.
  • the optical fiber connector socket can be applied to the optical module.
  • the optical fiber connector socket 61 is disposed in the slotted panel 601 of the optical module 60. Fiber optic connectors are connected via fiber optics The jack 613 on the receptacle 61 is inserted into the optical module 60 to effect transmission of the fiber optic signal from the fiber optic connector to the optical module 60.
  • the fiber optic connector adapter 611 in the fiber optic connector socket 61 can be rotated along the rotating shaft 612 on the slotted panel 601 such that the face of the jack 613 can be at 0 degrees, 45 degrees or other angles with the slotted panel 601, thereby
  • the fiber optic connector can input fiber optic signals to the optical module 60 in a direction perpendicular to the slotted panel 601, or at an angle of 45 degrees to the slotted panel 601, or in other directions.
  • the installation step of connecting the optical fiber connector to the optical module through the optical fiber connector socket can be as follows: First, the optical fiber connector adapter is rotated along the rotating shaft to a position parallel to the optical module panel, that is, the insertion on the optical fiber connector adapter. The surface of the hole is at a position of 0 degrees with the panel of the optical module, and then the optical fiber connector is inserted into the optical signal interface inside the optical module through the jack. Since the connection between the optical fiber connector and the optical module is an active connection, the optical fiber is connected by rotating the optical fiber.
  • the adapter allows the fiber optic connector to be moved to a desired position along with the jack on the fiber optic connector adapter, thereby enabling the fiber optic connector to input an optical signal to the optical module at an angle.
  • the embodiment of the present invention can also be connected to the optical fiber.
  • a plurality of positioning pin holes are arranged on the adapter, and when the fiber connector is moved to a desired position, the fiber connector adapter is fixed to the optical module panel by inserting the positioning pin into the corresponding positioning pin hole, and of course, other Way to fix the fiber connector adapter to the optical module panel, this It is not defined.
  • the optical fiber connector socket in the embodiment of the invention comprises a fiber optic connector adapter and a rotating shaft, and the optical fiber connector adapter can be rotated on a certain plane along the rotating shaft. Further, the optical fiber connector socket can pass through the rotating shaft and the optical module panel. The connection enables the fiber optic connector adapter to rotate on the panel along the rotating shaft, and the face of the jack on the fiber optic connector adapter can be at different angles to the panel, so that the fiber connector inserted into the jack can also be formed with the panel. It can be seen from different angles that the optical fiber connector socket in the embodiment of the present invention can be applied to various installation scenarios of the optical fiber connector, and has high installation flexibility.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

一种光纤连接器插座,包括光纤连接器适配器(31),转轴(32),其中转轴(32)设置在光纤连接器适配器(31)一端。光纤连接器适配器(31)上设置有用于插入光纤连接器的插孔(33)。该光纤连接器插座上的光纤连接器适配器(31)沿转轴(32)可在一定平面上转动,光纤连接器插座通过转轴(32)可与外部部件例如光模块面板连接,实现在外部部件上转动,且安装灵活。

Description

一种光纤连接器插座 技术领域
本发明涉及光模块领域, 尤其涉及一种光纤连接器插座。 背景技术
2010年 6月,美国电气和电子工程师协会( IEEE, Institute of Electrical and Electronics Engineers ) 802.3ba 标准发布 100 吉比特以太网 ( GE , Gigabit Ethernet )接口成为路由器等设备的标准接口,各厂家着力实现 100GE光模块, 并成立 100GE光模块多源厂家协议( MSA, Multi-Source Agreement )。 100GE 光模块, 又名小型可插拔模块(CFP, Centum Factor Pluggable 100G ), 整体尺 寸约为 145 x 82 x 13.6毫米。随着技术发展,下一代 100GE光模块朝更小型方 向发展。 最近正在讨论的新一代小型化 100GE为 CFP2, 尺寸为 CFP—半, 约 108 X 40 X 12.4毫米。 这两种光模块的光接口适应于 LC型光纤连接器或者 SC型光纤连接器, LC型光纤连接器或者 SC型光纤连接器可通过该光接口与 光模块连接。
图 1为传统的光模块 100,光模块面板 101通过旋鈕 102固定在光模块 100 上,光模块面板 101上开有用于插入光纤连接器的插孔 103。图 2为光模块 100 安装在主板的印制电路板(PCB, Printed Circuit Board) 21上的俯视图, 光模 块面板 101平行于主板面板,外连光纤 22通过光纤连接器 23插入光模块 100。 然而, 对于部分主板而言, 其要求外连光纤与主板面板成 45度夹角, 以此保 护人眼安全、 更便于外连光纤的安装。 在这种情况下, 若将 CFP光模块倾斜 安装在主板 PCB上, 将导致 PCB布局空间困难, 同时也加大了安装主板面板 的开槽难度。 发明内容
本发明实施例提供了一种光纤连接器插座,用于适应光纤连接器的各种安 装场景, 提高安装灵活性。
为解决上述技术问题, 本发明实施例提供以下技术方案:
一种光纤连接器插座, 包括:
光纤连接器适配器, 转轴; 上述转轴设置在上述光纤连接器适配器一端;
上述光纤连接器适配器上设置有用于插入光纤连接器的插孔。
进一步的, 上述光纤连接器插座可通过转轴与光模块面板连接。
进一步的, 上述光纤连接器插座还包括: 与上述转轴连接的旋转固件, 以 便光纤连接器插座通过上述旋转固件与光模块面板连接。
进一步的, 光纤连接器插座可应用在光模块面板上, 光纤连接器适配器上 设置有第一定位销孔和第二定位销孔; 其中, 第一定位销孔用于将光纤连接器 适配器与上述光模块面板固定在第一位置,第一位置为上述插孔的所在面与上 述光模块面板成 0度夹角;第二定位销孔用于将光纤连接器适配器与光模块面 板固定在第二位置, 第二位置为上述插孔的所在面与上述光模块面板成 45度 夹角。
由上可见, 本发明实施例中光纤连接器插座包括光纤连接器适配器和转 轴, 该光纤连接器适配器沿转轴可实现在一定平面上转动, 进一步的, 光纤连 接器插座可通过转轴与光模块面板连接,使得光纤连接器适配器可沿该转轴在 面板上转动,通过转动光纤连接器适配器上插孔的所在面, 可与面板成不同角 度, 从而使得插入该插孔的光纤连接器也可与面板成不同角度, 可见, 本发明 实施例中的光纤连接器插座可适用于光纤连接器的各种安装场景,具有较高的 安装灵活性。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作筒单地介绍,显而易见地, 下面描述 中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲, 在不付 出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为传统的可插拔光模块的结构示意图;
图 2为可插拔光模块安装在主板上的示意图;
图 3为本发明实施例提供的光纤连接器插座的一个结构示意图; 图 4为本发明实施例提供的光纤连接器插座的另一个结构示意图; 图 5 为本发明实施例提供的光纤连接器插座与光模块面板连接的另一个 结构示意图; 图 6为本发明实施例提供的安装上 LC型光纤连接器的光纤连接器插座示 意图;
图 7为本发明实施例提供的光纤连接器插座的再一个结构示意图; 图 8为本发明实施例提供的光纤连接器插座在一种应用场景下的示意图; 图 9 为本发明实施例提供的光纤连接器插座在另一种应用场景下的示意 图;
图 10为应用本发明实施例提供的光纤连接器插座的光模块结构示意图。 说 具体实施方式
本发明实施例提供了一种光纤连接器插座及光模块。
为使得本发明的发明目的、 特征、 优点能够更加的明显和易懂, 下面将结 合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、 完整地描 述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而非全部实施例。 基 于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获 得的所有其他实施例, 都属于本发明保护的范围。
下面对本发明实施例中一种光纤连接器插座进行描述,请参阅图 3 , 包括: 光纤连接器适配器 31和转轴 32;
其中, 转轴 32设置在光纤连接器适配器 31—端, 光纤连接器适配器 31 上设置有用于插入光纤连接器的插孔 33。
在本发明实施例中, 光纤连接器插座可通过该转轴与外部部件(如光模块 面板、 单板等)连接, 使得光纤连接器适配器 31可沿转轴 32在该外部部件上 转动。
在本发明实施例的一种应用场景中, 如图 4所示, 光纤连接器插座还可包 括与转轴 32连接的旋转固定件 301 , 光纤连接器适配器 31可沿转轴 32在旋 转固定件 301上转动, 光纤连接器插座通过该旋转固件与外部部件(如光模块 面板、 单板等)连接。 以外部部件为光模块面板为例, 如图 5所示, 在本发明 实施例中可通过螺丝 302将旋转固定件 301固定在光模块面板 30上, 当然, 也可以是通过焊接、 粘接或其它方式将旋转固定件 301 固定在光模块面板 30 上, 此处不作限定。
在本发明实施例中, 光纤连接器适配器上的插孔的大小可设置为与 LC型 光纤连接器适配, 以适应 LC型光纤连接器的插入, 或者, 光纤连接器插座上 的插孔的大小也可设置为与 SC型光纤连接器适配, 以适应 SC型光纤连接器 的插入。 当然, 在实际应用中, 光纤连接器插座上的插孔的大小可设置为与其 它类型的光纤连接器(如 FC型光纤连接器等)适配, 以适应相应类型的光纤 连接器的插入, 此处不作限定。 如图 6所示为适应 LC型光纤连接器的光纤连 接器插座, LC型光纤连接器 43可通过与其适配的插孔 42插入到光纤连接器 适配器 41中。
在本发明实施例中,还可在光纤连接器适配器上设置一组定位销孔, 以便 当光纤连接器适配器沿上述转轴在与光纤连接器插座连接的外部部件上转动 到一定位置时,将光纤连接器插座与外部部件进行固定。 以光纤连接器插座与 光模块面板连接为例进行, 如图 7和图 8所示, 在光纤连接器适配器 51上设 置第一定位销孔 511和第二定位销孔 512, 第一定位销孔 511用于将光纤连接 器适配器 51与光模块面板 50固定在第一位置上, 如图 8所示, 第一位置为插 孔 52的所在面与光模块面板 50成 0度夹角, 使得插入到插孔 52中的光纤连 接器 53可垂直与光模块面板方向输出光纤信号; 如图 9所示, 第二定位销孔 512用于将光纤连接器适配器 51与光模块面板 50固定在第二位置, 第二位置 为插孔 52的所在面与光模块面板 50成 45度夹角,使得插入到插孔 52中的光 纤连接器 53可与光模块面板成 45度方向输出光纤信号。 当然, 本发明实施例 中也可通过在光纤连接器适配器 51上的其它位置设置定位销孔, 以实现在不 同位置将光纤连接器适配器 51与光模块面板 50进行固定。 当然, 本发明实施 例中也可将光纤连接器适配器上设置的定位销孔替换为卡扣,通过卡扣来将光 纤连接器插座固定在外部部件上, 当然, 本发明实施例也可通过其它方式实现 将光纤连接插座固定在外部部件上, 此处不作限定。
在本发明实施例的一种应用场景中,若光纤连接器插座通过嵌入方式安装 在外部部件的开槽中, 可将光纤连接器适配器设置为扇形结构,使光纤连接器 适配器沿转轴在外部部件上实现更平滑地转动, 当然, 光纤连接器适配器也可 设置为方形结构或其它结构, 此处不作限定。
本发明实施例中光纤连接器插座可应用于光模块上, 如图 10所示, 光纤 连接器插座 61安置在光模块 60的开槽面板 601中。光纤连接器通过光纤连接 器插座 61上的插孔 613插入光模块 60中,从而实现光纤信号从光纤连接器至 光模块 60的传输。 光纤连接器插座 61 中的光纤连接器适配器 611可沿转轴 612实现在开槽面板 601上转动, 使得插孔 613的所在面可与开槽面板 601成 0度、 45度或其它角度,进而使得光纤连接器可在垂直与开槽面板 601的方向, 或者与开槽面板 601成 45度夹角的方向,或者其它方向向光模块 60输入光纤 信号。
本发明实施例中,光纤连接器通过光纤连接器插座与光模块连接的安装步 骤可如下: 首先将光纤连接器适配器沿转轴转动到与光模块面板平行的位置, 即光纤连接器适配器上的插孔所在面与光模块面板成 0度的位置,然后将光纤 连接器通过插孔插入到光模块内部的光信号接口上,由于光纤连接器与光模块 的连接为活性连接, 因此通过转动光纤连接器适配器,使光纤连接器随光纤连 接器适配器上的插孔移动到需要的位置,从而使光纤连接器可实现在一定角度 向光模块输入光信号, 进一步, 本发明实施例还可在光纤连接器适配器上设置 若干定位销孔,在将光纤连接器移动到需要的位置时,通过将定位销插入到相 应位置的定位销孔将光纤连接器适配器与光模块面板固定, 当然, 也可通过其 它方式将光纤连接器适配器与光模块面板进行固定, 此处不作限定。
由上可见, 本发明实施例中光纤连接器插座包括光纤连接器适配器和转 轴, 该光纤连接器适配器沿转轴可实现在一定平面上转动, 进一步的, 光纤连 接器插座可通过转轴与光模块面板连接,使得光纤连接器适配器可沿该转轴在 面板上转动, 通过转动光纤连接器适配器上插孔的所在面可与面板成不同角 度, 从而使得插入该插孔的光纤连接器也可与面板成不同角度, 可见, 本发明 实施例中的光纤连接器插座可适用于光纤连接器的各种安装场景,具有较高的 安装灵活性。
以上对本发明所提供的一种光纤连接器插座及光模块进行了详细介绍,对 于本领域的一般技术人员,依据本发明实施例的思想,在具体实施方式及应用 范围上均会有改变之处, 综上, 本说明书内容不应理解为对本发明的限制。

Claims

权 利 要 求
1、 一种光纤连接器插座, 其特征在于, 包括:
光纤连接器适配器(31 ), 转轴 (32 );
所述转轴设置在所述光纤连接器适配器 (31 )—端;
所述光纤连接器适配器( 31 )上设置有用于插入光纤连接器的插孔( 33 )。
2、 根据权利要求 1所述的光纤连接器插座, 其特征在于,
所述光纤连接器插座通过所述转轴与光模块面板连接。
3、 根据权利要求 1所述的光纤连接器插座, 其特征在于,
所述光纤连接器插座还包括:
与所述转轴连接的旋转固件;
所述光纤连接器插座通过所述旋转固件与光模块面板连接。
4、 根据权利要求 2或 3所述的光纤连接器插座, 其特征在于,
所述光纤连接器适配器上设置有第一定位销孔和第二定位销孔;
所述第一定位销孔用于将所述光纤连接器适配器与所述光模块面板固定 在第一位置, 所述第一位置为所述插孔的所在面与所述光模块面板成 0度夹 角;
所述第二定位销孔用于将所述光纤连接器适配器与所述光模块面板固定 在第二位置, 所述第二位置为所述插孔的所在面与所述光模块面板成 45度夹 角。
5、 根据权利要求 1至 4任一项所述的光纤连接器插座, 其特征在于, 所述插孔的大小与 LC型光纤连接器适配, 用于插入所述 LC型光纤连接 器。
6、 根据权利要求 1至 4任一项所述的光纤连接器插座, 其特征在于, 所述插孔的大小与 SC型光纤连接器适配, 用于插入所述 SC型光纤连接 器。
7、 根据权利要求 1至 6任一项所述的光纤连接器插座, 其特征在于, 所述光纤连接器适配器为扇形结构。
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