WO2014101368A1 - 接续盒 - Google Patents

接续盒 Download PDF

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Publication number
WO2014101368A1
WO2014101368A1 PCT/CN2013/075916 CN2013075916W WO2014101368A1 WO 2014101368 A1 WO2014101368 A1 WO 2014101368A1 CN 2013075916 W CN2013075916 W CN 2013075916W WO 2014101368 A1 WO2014101368 A1 WO 2014101368A1
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WO
WIPO (PCT)
Prior art keywords
mounting
hole
connector
mounting body
box according
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PCT/CN2013/075916
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English (en)
French (fr)
Inventor
吴小波
邵海波
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深圳日海通讯技术股份有限公司
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Publication of WO2014101368A1 publication Critical patent/WO2014101368A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B6/00Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
    • G02B6/44Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables

Definitions

  • This invention relates to fiber optic cable splice devices and, more particularly, to a splice closure.
  • the connection box is used for the connection of the outdoor optical cable of the optical communication terminal, and can provide the user with quick and convenient connection.
  • the connector of different optical cables can be inserted into the same connector to realize the connection of the optical cable.
  • the joint box in the prior art generally comprises a casing and a plurality of connectors disposed on the casing, and the plurality of connectors are generally arranged in such a manner that a plurality of top ends are disposed in the same plane and the extending directions are parallel to each other. Boss, each of which is provided with a plurality of connectors arranged in a straight line.
  • this way of setting the connector often results in a small operating space when the cable is connected, and the operation is not convenient.
  • the technical problem to be solved by the present invention is that the arrangement of the above-mentioned connector for the prior art has the defects of small operation space and inconvenient operation when the optical cable is connected, and provides a connection box.
  • the connecting box of the present invention overcomes the above drawbacks, the mounting boss has a ridge shape and the mounting boss has a plurality of mounting holes arranged in a staggered manner for mounting the connector, so as to ensure that the connectors in each mounting boss are staggered and discharged, so that the optical cable is connected.
  • the operating space is relatively wide and the operation is convenient.
  • the technical solution adopted by the present invention to solve the technical problem thereof is: constructing a a splicing box comprising an upper case and a lower case detachably assembled together, the upper case and the lower case forming an accommodating space, the lower case having a cable for introducing the cable into the accommodating space A through hole is formed, and the upper case is formed with at least one mounting boss that protrudes in a ridge shape, and the mounting boss has a plurality of mounting holes for mounting the connector in a staggered manner.
  • the mounting boss includes a first mounting body and a second mounting body, wherein the first mounting body and the second mounting body are both arcuate housings, wherein the height of the second mounting body is greater than the first mounting body The height of the first mounting body and the second mounting body are smoothly transitioned to form the mounting boss, and the first mounting body and the second mounting body are each formed with the mounting hole.
  • the upper casing includes a bottom plate, and the mounting boss is disposed on the bottom plate, and a protruding direction of the mounting boss forms an angle of less than 90 degrees with the bottom plate.
  • the top of the mounting hole is provided with a shielding piece for shielding the opening of the mounting hole and being separable from the mounting hole when the connector is mounted.
  • the top of the mounting hole is further provided with a sealing cover.
  • a first connecting ring is disposed on a side of the sealing cover, a second connecting ring is disposed on the connector, and a connecting line connecting the two is disposed between the first connecting ring and the second connecting ring .
  • the accommodating space is further provided with a splicing device for splicing the optical fibers in the cable.
  • a wiring guide for guiding the optical fiber branched from the fusion splicing device to the connector is further formed in the accommodating space.
  • the upper casing is rotatably connected to one side of the lower casing, and the other side is respectively formed with a first fixing hole corresponding to the position, and the first fixing hole is provided with a first fastener for detachable
  • the upper case and the lower case are connected to the ground.
  • a second fixing hole corresponding to the position is formed on one side of the upper shell and the lower shell, and a third fixing hole corresponding to the position is formed on the other side, and the second fixing hole is provided in the second fixing hole
  • a second fastener is disposed in the second fastening hole, and the second and third fasteners are configured to detachably connect the upper casing and the lower casing.
  • the mounting boss has a ridge shape and the mounting boss has a plurality of mounting holes arranged in a staggered manner for mounting the connector, so as to ensure that the connectors in each mounting boss are staggered and discharged, so that the operating space when the optical cable is connected is compared. Ample and convenient operation.
  • FIG. 1 is a schematic structural view of a first embodiment of a splice closure of the present invention
  • Figure 2 is a cross-sectional view taken along line A-A of Figure 1;
  • Figure 3 is a partial enlarged view of B in Figure 1;
  • Figure 4 is a schematic view showing the structure of the upper case and the lower case in Fig. 1;
  • Figure 5 is a schematic structural view of a second embodiment of the connection box of the present invention.
  • Figure 6 is a schematic structural view of a third embodiment of the connection box of the present invention.
  • Figure 7 is a schematic structural view of a fourth embodiment of the splice closure of the present invention.
  • FIG. 1 is a schematic structural view of the present embodiment
  • FIG. 2 is a cross-sectional view taken along line A-A of FIG. 1
  • FIG. Fig. 1 is a partially enlarged view of Fig. 1
  • Fig. 4 is a schematic view showing the structure of the upper case 1 and the lower case 2 in Fig. 1.
  • the splicing box of this embodiment includes detachably assembled together
  • the upper case 1 and the lower case 2, the upper case 1 and the lower case 2 are internally formed with an accommodating space 3, and the lower case 2 has an introduction through hole 21 for introducing the cable into the accommodating space 3, and the upper case 1 is formed with Ridged
  • At least one mounting boss 12 has mounting holes 13 for mounting the connector.
  • four mounting bosses 12 are provided, and four mounting bosses 12 are parallel to each other, each The mounting boss 12 has three mounting holes 13 which are arranged in a staggered manner, and the connector 11 is provided in the mounting hole 13.
  • the detachable assembly of the upper case 1 and the lower case 2 includes: upper case 1
  • the first fixing hole 16 is formed in a position corresponding to the one side of the lower case 2, and the first fixing hole 16 is disposed in the first fixing hole 16 to detachably fasten and connect the upper case 1 with Lower case 2; for example, upper case 1
  • One side of the lower case 2 is rotatably connected by a hinge or a rotating shaft, and the other side is formed with a first fixing hole 16 corresponding to the position.
  • the first fixing hole 16 is a threaded hole
  • the number of the first fixing holes 16 is four, and the number of the first fixing holes 16 of the lower case 2 is also four.
  • the first fixing hole 16 is provided with a screw threadedly connected with the screw hole as the first fastener. For The upper case 1 and the lower case 2 are detachably fastened.
  • the upper case 1 and the lower case 2 are detachably assembled
  • the manner may also be other ways, for example: in another embodiment, the upper shell 1 A second fixing hole corresponding to the position is formed on one side of the lower case 2, and a third fixing hole corresponding to the position is formed on the other side, and the second fixing hole is provided in the second fixing hole. a third fastener is disposed in the three fixing holes to The upper case 1 and the lower case 2 are detachably fastened. That is, the upper case 1 and the lower case 2 are fastened to the side portions of both by fasteners, and for example, the sides of both can be fastened by screws. What needs to be explained here is that the upper shell 1 The side where the second fixing hole is formed with the lower case 2 and the other side where the third fixing hole is formed are located in a direction in which the upper case 1 and the lower case 2 are opened.
  • the mounting boss 12 includes a first mounting body 121 and a second mounting body 122, the first mounting body 121 And the second mounting body 12 2 is an arc-shaped housing, wherein the height of the second mounting body 122 is greater than the height of the first mounting body 121, the first mounting body 121 and the second mounting body 122
  • the transitional connection is smoothly formed to form the mounting boss 12, and the first mounting body 121 and the second mounting body 122 are each formed with a mounting hole 13.
  • each mounting boss 12 includes two first mounting bodies 121 and one second mounting body 122, two The first mounting body 121 and the one second mounting body 122 are smoothly transitioned while the height of the second mounting body 122 is greater than the height of the first mounting body 121, such that each mounting boss 12 The connector 11 in the staggered discharge makes the operation space of the cable connection more convenient and convenient.
  • the mounting boss 12 is disposed at an acute angle with the upper casing 1, that is, the upper casing 1 includes a bottom plate 17, and the mounting boss 12 is disposed at On the bottom plate 17, and the protruding direction of the mounting boss 12 forms an angle of less than 90 degrees with the bottom plate 17.
  • the main effect of this design is to ensure the external and connector 11
  • the reasonable bending radius of the connected cable protects the cable from being easily broken.
  • the mounting hole 13 is in communication with the accommodating space 3, and the connector 11 is provided in the mounting hole 13 to prevent outside rain or dust from entering.
  • the housing 11 is housed in the space 3 and the connector 11 is protected.
  • a sealing cover 14 is further disposed on the top of the mounting hole 13. The sealing cover 14 is inserted over the mounting hole 13 to provide protection for the connector 11 in the mounting hole 13. .
  • the side of the sealing cover 14 is provided with a first connecting ring 141, the connector 11 A second connecting ring 123 is disposed thereon, and a connecting line 15 connecting the two is provided between the first connecting ring 141 and the second connecting ring 123.
  • a fusion splicing device 31 for fusing the optical fibers in the cable is also disposed in the accommodating space 3.
  • Accommodating space 3 A wiring guide for guiding the optical fiber branched from the fusion splicing device 31 to the connector 11 is also formed therein.
  • the connector 11 of this embodiment is an LC type optical fiber connector (made by a modular jacking mechanism with convenient operation, a router is commonly used), of course,
  • the type of the connector 11 is not limited thereto.
  • other types of optical fiber connectors may be used, such as an SC-type optical fiber connector (the outer casing is rectangular, and the fastening method is a plug-and-pin type, Must be rotated) or FC type fiber optic connector (the external reinforcement method is a metal sleeve and the fastening method is a turnbuckle).
  • the optical cable When in use, the optical cable can be first introduced into the accommodating space through the through hole 21 Then, the introduced optical cable is welded to the welding device 31. After the welding, the optical fibers separated by the welding device 31 are respectively connected to the corresponding connectors 11, and then the upper shell 1 and the lower shell 2 are fastened. .
  • the connection cable can be connected to the optical cable introduced into the through hole 21 through the connector 11. That is, the connection box is only used as a termination box.
  • the optical cable may be spliced in the connection box of the embodiment in advance, and the connection box is used as a wiring box.
  • Fig. 5 is a schematic structural view of the present embodiment.
  • the top of the mounting hole 13 is substantially sealed and each The mounting hole 13 has two through holes at the top.
  • the optical cable can pass through the through hole into the accommodating space 3 in the splicing box.
  • the other components are the same as those in Embodiment 1, and will not be described again.
  • Fig. 6 is a schematic structural view of the present embodiment.
  • the mounting hole 13 It is circular, its outer wall is formed with an external thread, and an internal thread is formed inside the sealing cover 14, thereby achieving a screw connection of the sealing cover 14 with the mounting hole 13.
  • Other components are the same as those in Embodiment 1, and will not be described again.
  • Fig. 7 is a schematic structural view of the present embodiment.
  • the connection box of the embodiment, the top of the mounting hole 13 is provided for shielding The opening 18 of the mounting hole 13 and the shielding piece 18 which is separable from the mounting hole 13 when the connector 11 is mounted.
  • the shielding piece 18 functions to temporarily block the opening of the mounting hole 13 to prevent dust or rain from entering the mounting hole 13 Inside, of course, the connector 11 is not mounted in the mounting hole 13 at this time; when the connector 11 needs to be mounted in the mounting hole 13, the shielding piece 18 can be knocked off, thereby exposing the mounting hole 13 To install the connector 11 in the mounting hole 13.
  • the top of the mounting hole 13 may not be provided with a shielding piece, and the others are the same as the embodiment, and will not be described again.
  • the shielding piece 18 and the sealing cover 14 are different members, although both are disposed in the mounting hole 13
  • the shielding piece 18 is present before the connector 11 is installed in the mounting hole 13, when the connector 11 is mounted, the shielding piece 18 is separated from the mounting hole 13, and the connector 11 is mounted in the mounting hole 13;
  • the sealing cover 14 can be provided at the top of the mounting hole 13 at this time.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Light Guides In General And Applications Therefor (AREA)

Abstract

一种接续盒,包括可拆卸地装配在一起的上壳(1)与下壳(2),所述上壳(1)与所述下壳(2)内部形成有容置空间(3),所述下壳(2)具有用于将缆线引入所述容置空间(3)的引入通孔(21),所述上壳(1)形成有呈山脊形凸出的至少一安装凸台(12),所述安装凸台(12)具有交错设置的若干用于安装连接器(11)的安装孔(13)。该接续盒中的每个安装凸台中的连接器错开排放,使得光缆接续时的操作空间较宽裕,操作也较方便。

Description

接续盒 技术领域
本发明涉及光缆接续装置,更具体地说,涉及一种接续盒。
背景技术
接续盒用于光通讯终端室外光缆的接续,可为用户提供快速、方便的接续。当用户有需要时,将不同光缆的接头插入同一连接器便可实现光缆的接续。现有技术中的接续盒一般包括外壳及设置在外壳上的若干连接器,若干连接器的设置方式一般是在外壳上设置若干顶端处于同一平面内,且延伸方向相互平行的安装 凸台 ,每个安装 凸台 里面按照直线排列方式设置若干连接器。然而,这种设置连接器的方式经常导致 光缆接续时操作空间较小,操作不够方便。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述连接器的设置方式存在光缆接续时操作空间小、操作不方便的缺陷,提供一种接续盒。本实用新型的接续盒克服了上述缺陷,安装凸台呈山脊形且安装凸台具有交错设置的若干安装孔用于安装连接器,这样确保每个安装凸台中的连接器错开排放,使得光缆接续时的操作空间较宽裕,操作也较方便。
技术解决方案
本发明解决其技术问题所采用的技术方案是:构造 一种 接续盒,包括可拆卸地装配在一起的上壳与下壳,所述上壳与所述下壳内部形成有容置空间,所述下壳具有用于将缆线引入所述容置空间的引入通孔,所述上壳形成有呈山脊形凸出的至少一安装凸台,所述安装凸台具有交错设置的若干用于安装连接器的安装孔。
在本发明所述的 接续盒中, 所述安装凸台包括第一安装体和第二安装体,该第一安装体与第二安装体均为弧形的壳体,其中所述第二安装体的高度大于所述第一安装体的高度,所述第一安装体和第二安装体平滑地过渡连接以形成所述安装凸台,且所述第一安装体和第二安装体均形成有所述安装孔。
在本发明所述的 接续盒中, 所述上壳包括一底板,所述安装凸台设置于所述底板上,且所述安装凸台的凸出方向与所述底板形成小于90度的夹角。
在本发明所述的 接续盒中,所述安装孔顶部设有用于遮挡所述安装孔的开口、并在安装所述连接器时可与所述安装孔分离的遮挡片。
在本发明所述的 接续盒中, 所述安装孔顶部还设有密封盖。
在本发明所述的 接续盒中, 所述密封盖的侧部设有第一连接环,所述连接器上设置有第二连接环,所述第一连接环与所述第二连接环之间设有将两者连接的连接线。
在本发明所述的 接续盒中, 所述容置空间内还设置有用于熔接所述缆线中的光纤的熔接装置。
在本发明所述的 接续盒中, 所述容置空间内还形成有用于将自所述熔接装置分出的光纤引至所述连接器的布线导槽。
在本发明所述的 接续盒中, 所述上壳与所述下壳的一侧可转动地连接,另一侧上分别形成有位置相对应的第一固定孔,所述第一固定孔内设有第一紧固件以可拆卸地连接所述上壳与所述下壳。
在本发明所述的 接续盒中, 所述上壳与所述下壳的一侧上分别形成有位置相对应的第二固定孔,另一侧上分别形成有位置相对应的第三固定孔,所述第二固定孔内设有第二紧固件、所述第三固定孔内设有第三紧固件,该第二及第三紧固件用以可拆卸地连接所述上壳与所述下壳。
有益效果
实施本发明的 接续盒 ,具有以下有益效果:安装凸台呈山脊形且安装凸台具有交错设置的若干安装孔用于安装连接器,这样确保每个安装凸台中的连接器错开排放,使得光缆接续时的操作空间较宽裕,操作也较方便。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明 接续盒 第一实施例的结构示意图;
图2是 图1中沿A-A线的剖视图 ;
图 3 是 图1中B处的局部放大图;
图 4 是 图1中上壳与下壳打开后的结构示意图 ;
图 5 是本发明 接续盒 第 二 实施例的结构示意图;
图 6 是本发明 接续盒 第 三 实施例的结构示意图;
图 7 是本发明 接续盒 第 四 实施例的结构示意图;
图中元件名称与标号的对应关系如下:
1- 上壳;11- 连接器 ,12- 安装凸台 ,13- 安装孔 ,14- 密封盖 ,15- 连接线 ,16-第一固定孔,17-底板,18-遮挡片;121- 第一安装体 ,122- 第二安装体 ,123- 第二连接环 ;141- 第一连接环 ; 2- 下壳; 3- 容置空间;31-熔接装置。
本发明的最佳实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
实施例1
如图1-图4所示, 图1是本实施例的结构示意图 , 图2是 图1中沿A-A线的剖视图, 图 3 是 图1中B处的局部放大图, 图 4 是 图1中上壳1与下壳2打开后的结构示意图。
本实施例的 接续盒 ,包括可拆卸 地装配在一起 的上壳1与下壳2,上壳1与下壳2内部形成有容置空间3,下壳2具有用于将缆线引入容置空间3的引入通孔 21 ,上壳1形成有呈 山脊形凸出的 至少一安装凸台12,安装凸台12具有交错设置的若干 用于安装连接器的 安装孔13。 本实施例中设置有4个 安装凸台12 ,4个 安装凸台12 彼此平行,每个 安装凸台12具有交错设置的 3 个 安装孔13 , 安装孔13内设置连接器11。
上壳1与下壳2 的 可拆卸 地装配 的 方式包括: 上壳1 与下壳2的一侧转动连接,另一侧上分别形成有位置相对应的第一 固定 孔16,第一 固定 孔16内设有第一紧固件以 可拆卸紧固连接上壳1与下壳2 ;例如 上壳1 与下壳2的一侧通过铰链或者转动轴转动连接,另一侧上分别形成有位置相对应的第一固定孔16。在本实施例中,第一固定孔16为螺纹孔, 上壳1 的第一固定孔16的数量为4个,下壳2的第一固定孔16的数量也为4个,第一固定孔16内设有与螺纹孔螺纹连接的螺丝作为上述第一紧固件,用以 可拆卸紧固连接上壳1与下壳2 。
在其它的实施例中, 上壳1与下壳2 的 可拆卸 地装配 的 方式也可以是其它方式,例如:在另一个实施例中, 上壳1 与下壳2的一侧上分别形成有位置相对应的第二固定孔,另一侧上分别形成有位置相对应的第三固定孔,第二固定孔内设有第二紧固件、第三固定孔内设有第三紧固件以 可拆卸紧固连接上壳1与下壳2 。也就是说, 上壳1 与下壳2通过紧固件紧固连接两者的侧部,例如可以通过螺丝紧固连接两者的侧部。在此需要说明的是, 上壳1 与下壳2形成所述第二固定孔的一侧和形成所述第三固定孔的另一侧均位于 上壳1 与下壳2开合的方向。
进一步讲, 安装凸台12包括第一 安装 体121和第二 安装 体122, 该第一安装体 121 与第二安装体 12 2 均为弧形的壳体, 其中第二 安装 体122的高度大于第一 安装 体121的高度,第一安装体121和第二安装体122 平滑地过渡连接以形成安装凸台12 , 且 第一安装体121和第二安装体122均形成有安装孔13。
本实施例中,每一 安装凸台12包括 2 个 第一安装体121和 1 个 第二安装体122 ,2个 第一安装体121和 1 个 第二安装体122 平滑地过渡连接 , 同时 第二安装体122的高度大于第一安装体121的高度 ,这样使得 每个 安装凸台 12 中的连接器 11 错开排放,使得 光缆接续时 的 操作空间 较宽裕,操作也较方便。
优选地 ,安装凸台12 与 上壳1 呈锐角设置,也即:上壳1包括一底板17, 安装凸台12设置于 底板17 上 ,且安装凸台12的凸出方向与底板17形成小于90度的夹角。这种设计的主要效果是 保证外部与 连接器 11 连接的光缆的合理弯曲半径,保护光缆不易被折断。
安装孔13 与 容置空间3 联通, 安装孔13 内设置 连接器 11 ,为了避免外界雨水或者灰尘进入 容置空间3 内、并保护 连接器 11 ,安装孔13顶部还设有密封盖14。密封盖14 插接在 安装孔13 上方,从而为 安装孔13 内的 连接器 11 提供保护 。
为了避免在使用时 密封盖14 的丢失 ,密封盖14的侧部设有第一连接环 141 , 连接器11 上设置有第二连接环 123 ,第一连接环 141 与第二连接环 123 之间设有将两者连接的连接线 15 。
容置空间3 内还设置有用于熔接缆线中的光纤的熔接装置31。 容置空间3 内还形成有用于将自熔接装置31分出的光纤引至 连接器11 的布线导槽。
本实施例的连接器11为LC 型光纤连接器(采用操作方便的模块化插孔闩锁机理制成,路由器常用),当然, 连接器11的类型并不限于此,在其它的实施例中,也可以是其它类型的 光纤连接器,例如 SC 型光纤连接器(外壳呈矩形,紧固方式是采用插拔销闩式,不须旋转)或 FC 型光纤连接器(外部加强方式是采用金属套,紧固方式为螺丝扣)。
使用时,可以先将光缆通过 引入通孔 21 引入容置空间3 内,再于熔接装置31对引入的光缆进行熔接,熔接后,熔接装置31分出的光纤分别与相应的 连接器11 连接,然后再紧固连接 上壳1与下壳2 。在室外进行光缆接续时,代接光缆可以通过 连接器11 实现与 引入通孔 21 内的光缆的连接。也即此时 接续盒 只是作为端接盒。
当然,在一些实施例中,也可以预先在本实施例的 接续盒 内熔接光缆,将 接续盒 作为配线盒使用。
实施例 2
如图5所示, 图 5 是本实施例的结构示意图 。本实施例中, 安装孔13 顶部基本密闭、且每一 安装孔13 顶部设有2个贯穿孔,使用时,光缆可以穿过贯穿孔进入 接续盒 内的 容置空间3 内 , 其它部件与实施例1均相同,不再赘述。
实施例 3
如图6所示, 图 6 是本实施例的结构示意图 。本实施例中, 安装孔13 呈圆形,其外壁形成有外螺纹,密封盖14内部形成有内螺纹,以此实现密封盖14与 安装孔13 的螺纹连接。其它部件与实施例1均相同,不再赘述。
实施例4
如图7所示, 图 7 是本实施例的结构示意图 。 本实施例的 接续盒 , 安装孔13顶部 设有用于遮挡 安装孔13 的开口、并在安装连接器11时可与 安装孔13 分离的遮挡片18。遮挡片18起到临时遮挡 安装孔13 的开口作用,避免灰尘或者雨水进入 安装孔13 内,当然,此时的安装孔13内并未安装连接器11;需要在安装孔13内安装连接器11时,可以敲掉遮挡片18,从而露出 安装孔13 ,以在安装孔13内安装连接器11。在一些实施例中, 安装孔13 顶部也可以不设置遮挡片,其他与本实施例相同,不再赘述。
需要说明的是,遮挡片18与 密封盖14 是不同的构件,虽然两者都设置在 安装孔13 处,但是,遮挡片18是在 安装孔13 内安装连接器11之前存在的,在安装连接器11时,遮挡片18与 安装孔13 分离,再在 安装孔13 内安装连接器11; 安装孔13 内安装有连接器11时,此时可以在安装孔13的顶部设置 密封盖14 。
其它部件与实施例1均相同,不再赘述。
上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本发明的保护之内。
本发明的实施方式
工业实用性
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Claims (10)

  1. 一种 接续盒 ,包括可拆卸地装配在一起的上壳(1)与下壳(2),所述上壳(1)与所述下壳(2)内部形成有容置空间(3),所述下壳(2)具有用于将缆线引入所述容置空间(3)的引入通孔(21),其特征在于,所述上壳(1)形成有呈山脊形凸出的至少一安装凸台(12),所述安装凸台(12)具有交错设置的若干用于安装连接器(11)的安装孔(13)。
  2. 根据权利要求1所述的接续盒 ,其特征在于,所述安装凸台(12)包括第一安装体(121)和第二安装体(122),该第一安装体(121)与第二安装体(122)均为弧形的壳体,其中所述第二安装体(122)的高度大于所述第一安装体(121)的高度,所述第一安装体(121)和第二安装体(122)平滑地过渡连接以形成所述安装凸台(12),且所述第一安装体(121)和第二安装体(122)均形成有所述安装孔(13)。
  3. 根据权利要求2所述的 接续盒 ,其特征在于,所述上壳(1)包括一底板(17),所述安装凸台(12)设置于所述底板(17)上,且所述安装凸台(12)的凸出方向与所述底板(17)形成小于90度的夹角。
  4. 根据权利要求1所述的 接续盒 ,其特征在于,所述安装孔(13)顶部 设有用于遮挡所述 安装孔(13) 的开口、并在安装所述连接器(11)时可与 所述安装孔(13) 分离的遮挡片(18)。
  5. 根据权利要求1所述的 接续盒 ,其特征在于,所述安装孔(13)顶部还设有密封盖(14)。
  6. 根据权利要求 5 所述的 接续盒 ,其特征在于,所述密封盖(14)的侧部设有第一连接环( 141 ) ,所述 连接器(11) 上设置有第二连接环 (123) ,所述第一连接环( 141 ) 与所述第二连接环 (123) 之间设有将两者连接的连接线 (15) 。
  7. 根据权利要求1所述的 接续盒 ,其特征在于, 所述 容置空间(3) 内还设置有用于熔接所述缆线中的光纤的熔接装置(31)。
  8. 根据权利要求 7 所述的 接续盒 ,其特征在于, 所述 容置空间(3) 内还形成有用于将自所述熔接装置(31)分出的光纤引至所述 连接器(11) 的布线导槽。
  9. 根据权利要求1所述的 接续盒 ,其特征在于, 所述 上壳(1) 与所述下壳(2)的一侧可转动地连接,另一侧上分别形成有位置相对应的第一固定孔(16),所述第一固定孔(16)内设有第一紧固件以 可拆卸 地 连接 所述 上壳(1)与 所述 下壳(2) 。
  10. 根据权利要求1所述的 接续盒 ,其特征在于, 所述 上壳(1) 与所述下壳(2)的一侧上分别形成有位置相对应的第二固定孔,另一侧上分别形成有位置相对应的第三固定孔,所述第二固定孔内设有第二紧固件、所述第三固定孔内设有第三紧固件,该第二及第三紧固件用以 可拆卸 地 连接 所述 上壳(1)与 所述 下壳(2) 。
PCT/CN2013/075916 2012-12-27 2013-05-20 接续盒 WO2014101368A1 (zh)

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CN207882531U (zh) * 2017-12-29 2018-09-18 深圳市英通达光纤技术有限公司 一种光纤分纤保护接续盒
CN108363154A (zh) * 2018-04-20 2018-08-03 佛山汇众森泰科技有限公司 一种具有防水的电子通信接续装置

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US4669802A (en) * 1986-03-26 1987-06-02 Amp Incorporated Outlet for optical fiber connectors
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CN201549684U (zh) * 2009-11-05 2010-08-11 浙江大学 一种接线板
CN201993496U (zh) * 2011-03-30 2011-09-28 武汉光迅科技股份有限公司 一种用于光纤适配器的金属接头座
CN202268531U (zh) * 2011-08-11 2012-06-06 李培刚 高效实用接线板插座

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US4669802A (en) * 1986-03-26 1987-06-02 Amp Incorporated Outlet for optical fiber connectors
JP2003244816A (ja) * 2002-02-15 2003-08-29 Yazaki Corp 情報コンセント
CN201549684U (zh) * 2009-11-05 2010-08-11 浙江大学 一种接线板
CN201993496U (zh) * 2011-03-30 2011-09-28 武汉光迅科技股份有限公司 一种用于光纤适配器的金属接头座
CN202268531U (zh) * 2011-08-11 2012-06-06 李培刚 高效实用接线板插座

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