WO2020063662A1 - 光纤熔接盘 - Google Patents

光纤熔接盘 Download PDF

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Publication number
WO2020063662A1
WO2020063662A1 PCT/CN2019/107789 CN2019107789W WO2020063662A1 WO 2020063662 A1 WO2020063662 A1 WO 2020063662A1 CN 2019107789 W CN2019107789 W CN 2019107789W WO 2020063662 A1 WO2020063662 A1 WO 2020063662A1
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WO
WIPO (PCT)
Prior art keywords
optical fiber
fiber fusion
fusion splice
identifier
splice tray
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2019/107789
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English (en)
French (fr)
Inventor
马爱萍
谢云鹏
林钊
周峰轮
曹峰云
何志敏
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ZTE Corp
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ZTE Corp
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Publication date
Application filed by ZTE Corp filed Critical ZTE Corp
Priority to EP19867999.5A priority Critical patent/EP3855222A4/en
Priority to US17/279,367 priority patent/US11609399B2/en
Publication of WO2020063662A1 publication Critical patent/WO2020063662A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • G02B6/4439Auxiliary devices
    • G02B6/444Systems or boxes with surplus lengths
    • G02B6/4453Cassettes
    • G02B6/4454Cassettes with splices
    • 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
    • G02B6/4439Auxiliary devices
    • G02B6/444Systems or boxes with surplus lengths
    • G02B6/4452Distribution frames
    • G02B6/44526Panels or rackmounts covering a whole width of the frame or rack
    • 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
    • G02B6/4479Manufacturing methods of optical cables
    • G02B6/4482Code or colour marking
    • 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
    • G02B6/255Splicing of light guides, e.g. by fusion or bonding
    • G02B6/2551Splicing of light guides, e.g. by fusion or bonding using thermal methods, e.g. fusion welding by arc discharge, laser beam, plasma torch
    • 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
    • G02B6/4201Packages, e.g. shape, construction, internal or external details
    • G02B6/4219Mechanical fixtures for holding or positioning the elements relative to each other in the couplings; Alignment methods for the elements, e.g. measuring or observing methods especially used therefor
    • G02B6/422Active alignment, i.e. moving the elements in response to the detected degree of coupling or position of the elements
    • G02B6/4221Active alignment, i.e. moving the elements in response to the detected degree of coupling or position of the elements involving a visual detection of the position of the elements, e.g. by using a microscope or a camera
    • G02B6/4224Active alignment, i.e. moving the elements in response to the detected degree of coupling or position of the elements involving a visual detection of the position of the elements, e.g. by using a microscope or a camera using visual alignment markings, e.g. index methods
    • 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
    • G02B6/4439Auxiliary devices
    • G02B6/444Systems or boxes with surplus lengths
    • G02B6/4441Boxes
    • G02B6/4442Cap coupling boxes
    • 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
    • G02B6/4439Auxiliary devices
    • G02B6/444Systems or boxes with surplus lengths
    • G02B6/4453Cassettes
    • G02B6/4455Cassettes characterised by the way of extraction or insertion of the cassette in the distribution frame, e.g. pivoting, sliding, rotating or gliding

Definitions

  • the present disclosure relates to the field of communication equipment, and in particular, to an optical fiber fusion splicer capable of identifying its identity intuitively, accurately, and stably.
  • a colored disk body is usually used to achieve this request, that is, a specific color disk body is used to characterize a specific business / functional area; for example, the disk body is divided into functions according to function: beam splitter disk body, spare fiber core disk body, lease For business core storage disks, you can choose to use the yellow disk body, blue disk body, and red disk body as described above, and install the disk body according to its functions.
  • the number of spare core disks needs to be reduced, and the number of core storage disks for rental business needs to be increased. At this time, only the target color disk can be replaced. To implement this function. Replacing the disk body is a waste of resources and rising costs.
  • the material of the disk body is non-metal, which causes certain pressure on the natural environment.
  • the current implementation technology also includes a self-adhesive label with a corresponding identification color on the disk body, which can be affixed on-site according to the actual use of the disk body, although the disadvantages of the need to replace the disk body when the pre-planned color disk body plan is inconsistent with the actual situation are solved
  • the thickness of the disk is less than 4mm, and a color label with a width of not more than 4mm needs to be pasted on the surface with a width of not more than 4mm.
  • the actual implementation is difficult, and the consistency and aesthetics of the paste are poor.
  • the optical cable connector box will be used in manholes, outdoor cabinets and other environments, the outdoor environment may have high humidity, dust cannot be controlled or eliminated, and the optical cable may come with grease, etc. Even if alcohol wiping is used, it is difficult to ensure the label and The adhered surfaces between the plates meet the ideal, theoretically adhered surface finish requirements. This practical difficulty will affect the adhesion of the label, which may cause the label to fall off and lose the meaning of reliable identification. At the same time, outdoor products cannot avoid high and low temperatures. Label life is also a big challenge.
  • the current implementation technology also provides a larger label near the disk body, which reflects the partitioning of the disk body. There is actually a mapping relationship between the disk body and the label. The actual function of the disk body is marked after the actual application function is completed. On the label. However, there is a simple mapping relationship between the disk body and the label, which needs to be inferred based on the label "seeing the picture and speaking", which is not intuitively instructive.
  • the purpose of the embodiments of the present disclosure is to provide an optical fiber splicing disc that intuitively, accurately, and stably identifies the identity, so as to solve the problem that since the colors of the cores and core sleeves are cyclic, it is a guide for large-core optical cables. Not intuitive technical issues.
  • an optical fiber fusion splicing tray that is convenient for classified management, and includes an optical fiber fusion splice tray body and a marker detachably connected to the optical fiber splice tray body. The position where the marker is easily observed when the discs are stacked.
  • FIG. 1 is a schematic exploded structure diagram of an optical fiber fusion splicer according to an embodiment of the present disclosure
  • FIG. 2 is a schematic structural diagram of an optical cable terminal box according to an embodiment of the present disclosure
  • FIG. 3 is a schematic structural diagram of another optical fiber fusion splice tray according to an embodiment of the present disclosure
  • FIG. 4 is a schematic structural diagram of another optical fiber fusion splice tray and an optical fiber fusion splice tray according to an embodiment of the present disclosure
  • FIG. 5 is a schematic structural diagram of another optical fiber fusion splicer identifier according to an embodiment of the present disclosure.
  • an embodiment of the present disclosure provides an optical fiber fusion splicing tray that is convenient for classification management, and includes an optical fiber fusion splicing tray body 100 and an identifier 200 detachably connected to the optical fiber fusion splicing tray body 100.
  • the identifier 200 The position is set at a position where the marker 200 can be easily observed when a plurality of optical fiber fusion splice trays 100 are stacked.
  • the structure of setting the identifier 200 on the optical fiber fusion disk body 100 achieves the goals of partitioning and managing functions according to the identifier 200 identifier.
  • the business change partition is performed by quickly removing and replacing the identifier, thereby solving the problem of the need to replace the disk body as a whole by changing the color of the disk body partition in some cases.
  • two methods of plug connection are exemplified for the detachable connection. In practical applications, it is not limited to this type of detachable connection. For example, a detachable connection that can be fastened using a strong magnet, a Velcro, etc. The modes are all within the protection scope of this disclosure.
  • FIG. 1 to FIG. 5 provides a fiber splicing tray that is convenient for classification management, and includes a fiber splicing tray body 100 and a marker 200.
  • the position of the marker 200 is set so that when multiple fiber splice trays are stacked, Identify and facilitate removal of the identifier 200.
  • FIG. 2 is a schematic diagram of an optical cable splice box according to an embodiment of the present disclosure.
  • the optical cable splice box includes a plurality of optical fiber splicing disks that are stacked in an orderly manner. One end (called a fixed end) of each optical fiber splicing disk is movably connected to a fixed back. On the rack, the other end (referred to as the non-fixed end) of each optical fiber splicing tray can be rotated up and down relative to the fixed end for optical fiber installation, optical path maintenance, or removal / insertion of markers.
  • the optical fiber fusion splicing trays will be stacked in high density and large numbers.
  • the positions of the identifiers 200 are set at the outer frame positions of the non-fixed ends of the optical fiber fusion splice body 100 when the optical fiber fusion splice trays are stacked.
  • the identification objects are all within the protection scope of the present disclosure.
  • a stepped groove 101 is provided on one side of the surface of the optical fiber fusion splice body 100, and the identifier 200 can fit into the groove 101 and the identifier
  • the object 200 is movably inserted into the groove 101.
  • the identifier 200 referred to here can be filled and filled into the groove 101. It means that the filler 200 will not affect the stacking of multiple optical fiber splicing tray bodies 100 after being filled into the groove 101. At the same time, it can be intuitively distinguished after being stacked.
  • the optical fiber fusion splice body 100 of different identifiers 200 This mechanical connection structure can intuitively distinguish the optical fiber fusion splice tray and also effectively prevent the identifier 200 on the optical fiber fusion splice tray 100 from falling off during use.
  • the stepped groove 101 refers to that the thickness of the groove 101 is smaller than the entire thickness of the optical fiber fusion disk body 100.
  • the height of the outer frame of the optical fiber fusion disk body represents the overall thickness of the optical fiber fusion disk body 100.
  • the thickness of the optical fiber fusion splice body 100 after inserting the identifier 200 is still not higher than or slightly equal to the overall thickness of the optical fiber fusion splice body 100.
  • a buckle hole 102 is provided at a position of the groove 101 of the optical fiber fusion splice body 100, and a buckle 201 capable of matching into the buckle hole 102 is provided on one side of the identifier 200.
  • the button hole 102 is provided in the groove 101.
  • the button hole 102 can also be provided on the side of the groove 101, as long as the identifier 200 has The buckles 201 that are inserted into the buckle holes 102 are all within the protection scope of the present disclosure.
  • stepped grooves 101 are respectively provided on two corners of the non-fixed end of the optical fiber fusion splicing plate 100 opposite to the fixed end of the optical fiber fusion splice tray 100, and the grooves 101 are respectively provided with movable insertable identifiers 200.
  • the head of the buckle 201 is swollen and is provided with a tensioning head that is an axial cracking groove 202, so that the identifier 200 is not easy to fall off after being inserted into the optical fiber fusion disc body 100, and can be easily used under force. Unplug and replace the identifier 200.
  • the identifier 200 is provided with a combination of one or more of different colors, different letters, different numbers, and different patterns from the optical fiber fusion splice tray body 100, so that the optical fibers of the buckle can be visually identified. Welding plate.
  • an RFID tag is provided on the identifier 200. Therefore, an electronic terminal with an RFID reading function (such as a smart phone) can read the information stored in the RFID tag to identify the optical fiber fusion splice tray.
  • an electronic terminal with an RFID reading function such as a smart phone
  • FIG. 3 to FIG. 4 provides another type of optical fiber fusion splicing tray that is convenient for classification management.
  • the embodiment of the present disclosure is an improvement on the existing optical fiber fusion splicing tray, that is, only the existing optical fiber fusion splicing tray body is needed.
  • the easy-to-view position setting of the outer frame can match the openings or card slots of the marker.
  • the optical fiber fusion splicing tray includes an optical fiber fusion splicing tray body 100 and an identifier 200, and a button hole 103 is opened at a side of the optical fiber fusion splicing tray body 100, and the identifier 200
  • a buckle 203 capable of matching into the buckle hole 103.
  • the buckle 203 can also be provided as a tensioning head with an enlarged head and an axially cracked groove.
  • two stepped grooves of the optical fiber fusion splice tray body 100 are respectively provided with buckle holes 103, and two markers 200 can be movably inserted on the two corners of the non-fixed end of the optical fiber fusion splice tray body 100. Therefore, different optical fiber splicing discs can be distinguished intuitively on different sides.
  • the setting of the structure and position of the markers in the optical fiber fusion splicing plate of the present disclosure requires that the markers 200 can be easily observed and disassembled when a plurality of optical fiber splicing disk bodies 100 are stacked, and when multiple optical fiber splicing disks are stacked and applied to an optical cable splice box
  • the middle time will not affect the stacking effect because of the marking, for example, the stacking thickness is increased unnecessarily, which affects the number of optical fiber fusion splicing trays in the optical cable splice box.
  • optical fiber fusion splicing tray provided by the embodiment of the present disclosure can intuitively, accurately, and stably identify the identity of the optical fiber fusion splicing tray.
  • the embodiment of the present disclosure mentions that by arranging the structure of the optical fiber splice tray body with an identifier, the goal of partitioning and managing functions according to the identifier of the identifier is achieved.
  • the business change partition is performed by quickly removing and replacing the identifier, thereby solving the problem of the need to replace the disk body as a whole by changing the color of the disk body partition in some cases.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Light Guides In General And Applications Therefor (AREA)
  • Plasma & Fusion (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

一种光纤熔接盘,包括光纤熔接盘本体(100)和可拆卸连接在光纤熔接盘本体(100)上的标识物(200),标识物(200)设置在当多个光纤熔接盘(100)层叠时标识物(200)易于被观察到识别的位置。

Description

光纤熔接盘
本公开要求享有2018年09月25日提交的名称为“光纤熔接盘”的中国专利申请CN201821577775.5的优先权,其全部内容通过引用并入本文中。
技术领域
本公开涉及通信设备领域,特别涉及一种能直观、准确、稳定地标识其身份的光纤熔接盘。
背景技术
光纤通道上的海量接续和配线,纤芯、纤芯套管虽然有约定的色谱规律可循,但该颜色属于循环的,对于大芯数光缆指导并不直观。行业里称其处于“哑”状态,需要一种直观、准确、稳定地标识其身份的方式。
在一些情况下通常采用彩色盘体来实现该诉求,即用特定颜色的盘体来表征特定的业务/功能区域;例如盘体按照功能分为:分光器盘体、备用纤芯盘体、租赁业务纤芯存储盘等,可选择使用黄色盘体、蓝色盘体、红色盘体等代表如上含义,并将该盘体按照功能进行分区安装。实际网络建设和应用中,由于网络规划与实际发展存在较大变数,例如备用纤芯盘体数量需要减少,而租赁业务纤芯存储盘数量需要增加,此时只能通过更换目标颜色的盘体来实现该功能。更换盘体是一种资源浪费和成本上升,同时由于该盘体材料为非金属,对自然环境造成一定压力。
当前实现技术还有在盘体上粘贴相应标识色的自带背胶的标签,该标签可以根据盘体实际用途现场粘贴,虽然解决了预规划彩色盘体规划与实际不一致需要更换盘体的弊端,但在高密解决方案里,盘体厚度小于4mm,现场需要将宽度不大于4mm的彩色标签粘贴到宽度不大于4mm的表面上,实际实施难度较大,粘贴一致性和美观性较差;且由于光缆接头盒会应用于人井、室外柜等环境,室外环境湿度可能较大、灰尘无法控制或消除,而且光缆可能会自带油膏等,即便实施酒精擦拭等手段,也难于确保标签与盘体之间的附着表面达到理想的、理论粘贴表面光洁性要求,此实际困难将影响标签的附着力,进而可能造成标签脱落,失去可靠标识意义;同时室外产品无法避免高温、低温,对粘贴标签的寿命也是一项很大的挑战。
当前实现技术还有是在盘体附近提供一张较大标签,在标签上体现盘体分区,盘体与标签之间实际是一种映射关系,盘体的实际功能在完成实际应用功能后标记在标签上。但盘体与标签之间是一种简单的映射关系,需要根据标签“看图说话”的方式进行推理,其直观指导性较差。
实用新型内容
有鉴于此,本公开实施例的目的在于提供一种直观、准确、稳定地标识其身份的光纤熔接盘,以解决由于纤芯、纤芯套管的颜色属于循环的,对于大芯数光缆指导并不直观的技术问题。
本公开实施例解决上述技术问题所采用的技术方案如下:
根据本公开实施例的一个方面,提供一种便于分类管理的光纤熔接盘,包括光纤熔接盘本体和可拆卸连接在光纤熔接盘本体上的标识物,所述标识物设置在当多个光纤熔接盘层叠时所述标识物易于被观察到识别的位置。
附图说明
图1为本公开实施例的一种光纤熔接盘的分解结构示意图;
图2为本公开实施例应用于光缆终端盒的结构示意图;
图3为本公开实施例提供的另一种光纤熔接盘的结构示意图;
图4为本公开实施例提供的另一种光纤熔接盘光纤熔接盘本体的结构示意图;
图5为本公开实施例提供的另一种光纤熔接盘标识物的结构示意图。
本公开目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
为了使本公开所要解决的技术问题、技术方案及有益效果更加清楚、明白,以下结合附图和实施例,对本公开进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅以解释本公开,并不用于限定本公开。
请参考图1至图4,本公开实施例提供一种便于分类管理的光纤熔接盘,包括光纤熔接盘本体100和可拆卸连接在光纤熔接盘本体100上的标识物200,所述标识物200的位 置设置在当多个光纤熔接盘本体100层叠时所述标识物200易于被观察到的位置。
本公开实施例通过在光纤熔接盘本体100上设置标识物200的结构,实现了按照标识物200标识进行分区、分功能管理的目标。同时,当业务变更即需要整体更换盘体时通过快速地拆卸更换标识物来进行业务变更分区,从而解决了在一些情况下通过不同颜色盘体分区一旦业务变更即需要整体更换盘体带来的资源浪费和环境污染的固有弊端。在下面的实施例中对于可拆卸连接例举了插接的二种方式,在实际应用中,不限于这种可拆卸连接方式,如采用强力磁石、魔术贴等能快速紧固的可拆卸连接方式都在本公开的保护范围。
下面结合具体的实施方式来对本公开进行进一步说明;
实施例一
请参考图1至图5,提供了一种便于分类管理的光纤熔接盘,包括光纤熔接盘本体100和标识物200,所述标识物200的位置设置在,当多个光纤熔接盘层叠时能识别并方便拆卸所述标识物200。
图2所示为本公开实施例提供的光缆接头盒示意图,该光缆接头盒包括多个上下有序层叠的光纤熔接盘,各光纤熔接盘的一端(称为固定端)都活动连接在固定背架上,各光纤熔接盘的另一端(称为非固定端)则可以相对固定端上下旋转翻动进行光纤安装、光路维护或进行标识物的拆卸/插拔操作。
实际应用中,光纤熔接盘会高密度大量层叠,如图2所示,当需要对光纤熔接盘进行分类管理调整时,在光纤熔接盘本体100非固定端,其外侧边框位置比较容易对标识物200进行拆卸/插拔操作,因此,本公开以下实施例中,标识物200的位置都设置在:当光纤熔接盘层叠时,光纤熔接盘本体100非固定端的外侧边框位置。当然,标识物的设置,只要满足当多个光纤熔接盘层叠应用在光缆接头盒中时易于被识别并方便拆卸所述标识物均在本公开保护范围之内。
根据本公开的一个实施例,如图1所示,所述光纤熔接盘本体100表面的一侧设置有台阶形凹槽101,所述标识物200能吻合填充入凹槽101内,所述标识物200设置为可活动插拔在凹槽101内。这里所指的标识物200能吻合填充入凹槽101内是指标识物200填充入凹槽101后不会影响多个光纤熔接盘本体100层叠,同时在其层叠后也能直观地区分安装有不同标识物200的光纤熔接盘本体100,这种机械连接结构直观区别光纤熔接盘的同时还能有效防止光纤熔接盘本体100上的标识物200在使用时脱落。
所述台阶形凹槽101指的是该凹槽101的厚度小于光纤熔接盘本体100的整体厚度,通常,光纤熔接盘本体外侧边框的高度代表光纤熔接盘本体100的整体厚度。如此,当将标识物200吻合填充入凹槽101内时,插入标识物200之后光纤熔接盘本体100的厚度仍然不高于或略等同于光纤熔接盘本体100的整体厚度,如此当具有标识物的多个光纤熔接盘本体100层叠时不会因为标识物的设置而影响层叠效果。
在一实施方式中,所述光纤熔接盘本体100的凹槽101位置处设置有扣孔102,所述标识物200的一面设置有能匹配扣入扣孔102内的卡扣201。在图1所示的实施例中,所述扣孔102设置在凹槽101内,当然可以理解的是,该扣孔102还可以设置在凹槽101的侧边等位置,只要标识物200具有匹配插入该扣孔102的卡扣201,均在本公开保护范围之内。
在一实施方式中,所述光纤熔接盘100的相对其固定端的非固定端二角上分别设置有台阶形凹槽101,所述凹槽101上分别设置有可活动插拔的标识物200。
在一实施方式中,所述卡扣201头部膨大并设有为轴向开裂槽202的涨紧头,使标识物200插入光纤熔接盘本体100后不易脱落,并能在用力的情况下方便拔出并更换标识物200。
在一实施方式中,所述标识物200设置有与光纤熔接盘本体100不同颜色、不同字母、不同数字、不同图案中的一种或多种的组合,从而能直观地辩别插扣的光纤熔接盘。
在一实施方式中,所述标识物200上设置有RFID标签。从而能通过带RFID读取功能的电子终端(如智能手机)读取贮存在RFID标签内的信息来识别光纤熔接盘。
实施例二
请参考图3至图4,提供了另一种便于分类管理的光纤熔接盘,本公开实施例是在现有光纤熔接盘的基础上进行的改进,即,仅需要在现有光纤熔接盘本体外框易于观察的位置设置可以匹配标识物的开孔或卡槽等结构。
根据本公开的一个实施例,如图3所示,所述光纤熔接盘包括光纤熔接盘本体100和标识物200,在光纤熔接盘本体100的侧边开有扣孔103,所述标识物200活动扣的一面设置有能匹配扣入扣孔103内的卡扣203,同样地卡扣203也可设置为头部膨大并轴向开裂槽的涨紧头。在本实施例中,光纤熔接盘本体100的二个台阶型凹槽上分别开有扣孔103,二个标识物200可活动插拔在光纤熔接盘本体100的非固定端二角边上,从而在不同面都能直观地辩别不同的光纤熔接盘。
本公开光纤熔接盘中标识物结构及位置的设置,需要当多个光纤熔接盘本体100层叠时能方便观察到并拆卸所述标识物200,而且当多个光纤熔接盘层叠应用在光缆接头盒中时亦不会因为设置了标识物而影响了层叠效果,例如不必要地增加了层叠厚度,影响了光缆接头盒中光纤熔接盘可层叠的数量。
本公开实施例提供的光纤熔接盘能直观、准确、稳定地标识光纤熔接盘的身份。
本公开实施例提通过在光纤熔接盘本体上设置标识物的结构,实现了按照标识物标识进行分区、分功能管理的目标。同时,当业务变更即需要整体更换盘体时通过快速地拆卸更换标识物来进行业务变更分区,从而解决了在一些情况下通过不同颜色盘体分区一旦业务变更即需要整体更换盘体带来的资源浪费和环境污染的固有弊端。
以上参照附图说明了本公开的优选实施例,并非因此局限本公开的权利范围。本领域技术人员不脱离本公开的范围和实质内所作的任何修改、等同替换和改进,均应在本公开的权利范围之内。

Claims (10)

  1. 一种光纤熔接盘,其中,包括光纤熔接盘本体和可拆卸连接在光纤熔接盘本体上的标识物,所述标识物设置在当多个光纤熔接盘层叠时所述标识物易于被观察到识别的位置。
  2. 根据权利要求1所述的光纤熔接盘,其中,所述光纤熔接盘本体表面的一侧设置有台阶形凹槽,所述标识物能吻合填充入凹槽内,所述标识物设置为可活动插拔在凹槽内。
  3. 根据权利要求2所述的光纤熔接盘,其中,所述光纤熔接盘本体的凹槽内设置有扣孔,所述标识物的一面设置有能匹配扣入扣孔内的卡扣。
  4. 根据权利要求2所述的光纤熔接盘,其中,所述光纤熔接盘的相对其固定端的非固定端二角上分别设置有台阶形凹槽,所述凹槽上分别设置有可活动插拔的标识物。
  5. 根据权利要求1所述的光纤熔接盘,其中,所述标识物可活动插拔于光纤熔接盘的侧边上。
  6. 根据权利要求5所述的光纤熔接盘,其中,所述光纤熔接盘本体的侧边设置有扣孔,所述标识物设置有能匹配扣入扣孔内的卡扣。
  7. 根据权利要求1所述的光纤熔接盘,其中,光纤熔接盘的相对其固定端的非固定端二角边上分别活动插拔有标识物。
  8. 根据权利要求3或6所述的光纤熔接盘,其中,所述卡扣头部膨大并设有为轴向开裂槽的涨紧头。
  9. 如权利要求1至7任一所述的光纤熔接盘,其中:所述标识物设置有与接光纤熔接盘本体不同颜色、不同字母、不同数字、不同图案中的一种或多种的组合。
  10. 如权利要求1至7任一所述的光纤熔接盘,其中:所述标识物上设置有RFID标签。
PCT/CN2019/107789 2018-09-25 2019-09-25 光纤熔接盘 Ceased WO2020063662A1 (zh)

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