WO2017092212A1 - 一种将智能模块装配到熔配盘体的通用安装结构 - Google Patents

一种将智能模块装配到熔配盘体的通用安装结构 Download PDF

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Publication number
WO2017092212A1
WO2017092212A1 PCT/CN2016/078611 CN2016078611W WO2017092212A1 WO 2017092212 A1 WO2017092212 A1 WO 2017092212A1 CN 2016078611 W CN2016078611 W CN 2016078611W WO 2017092212 A1 WO2017092212 A1 WO 2017092212A1
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Prior art keywords
plane
connector
connecting member
clamping
elastic
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PCT/CN2016/078611
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English (en)
French (fr)
Inventor
李建强
裘凌红
谭迅
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中兴通讯股份有限公司
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Publication of WO2017092212A1 publication Critical patent/WO2017092212A1/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
    • G02B6/24Coupling light guides
    • G02B6/255Splicing of light guides, e.g. by fusion or bonding
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q11/00Selecting arrangements for multiplex systems

Definitions

  • the present application relates to the technical field of optical fiber communication devices, for example, to a universal mounting structure for assembling a smart module to a fusion-distribution disk.
  • the traditional fiber-melting disk body uses a paper label to mark the state of the fiber port, and the port maintainability is poor, resulting in serious waste of port resources.
  • equipment manufacturers propose the concept of an intelligent optical distribution network (ODN), that is, adding intelligent modules based on the original optical fiber fusion disk, and electronically managing optical fiber port resources using electronic tags. .
  • ODN intelligent optical distribution network
  • the installation, wiring and maintenance of the intelligent module must not affect the normal operation of the original business. Since most of the ODN melt-distributing discs used in the installation were completed many years ago, there was no industry standard constraint at that time. Different brands of melt-distributed discs were more messy in size and product shape, so the lack of one was more effective. Smart module installation structure.
  • the present application provides a universal mounting structure for assembling a smart module to a fusion-distributing disk body, which can realize assembly between different sizes of the fusion-distributing disk body and the intelligent module, and has a simple structure and easy assembly.
  • the universal mounting structure for assembling the smart module to the fusion splicing body comprises a first connecting member, a second connecting member and a third connecting member, wherein:
  • the first connector is disposed to be coupled to the first end of the smart module
  • the second connector is disposed to be coupled to the second end of the smart module
  • the third connector is plugged into the first a connector and adjustable insertion position
  • the second connecting member has a first elastic clamping structure; the third connecting member has a second elastic clamping structure, and the first elastic clamping structure and the second elastic clamping structure are used for mating the clamping Melt the disc body.
  • the first end of the smart module is provided with a first mounting interface
  • the second end of the smart module is provided with a second mounting interface
  • the first connecting component is engaged with the first mounting interface
  • the second connecting member is engaged with the second mounting interface.
  • the first mounting interface has a first insertion slot for inserting the first connector and a first fastening slot located in the first insertion slot
  • the second mounting interface has For the second connector a second inserting slot and a second retaining slot in the second inserting slot
  • the first connecting component comprises a first insertion plane and a first connecting component
  • the first insertion plane is configured to be inserted into the first insertion slot, the first insertion plane is provided with a first buckle, and the first buckle is used for buckle accessing the first Inside a buckle groove;
  • the first connecting member is for connecting the first insertion plane, and the first connecting member has a socket.
  • the second connecting component further includes a second insertion plane
  • the second insertion plane is configured to be inserted into the second insertion slot, and the second insertion plane is provided with a second buckle, and the second buckle is used for buckle accessing the Inside the second buckle groove;
  • the second insertion plane is coupled to the first elastic clamping structure.
  • the first elastic clamping structure comprises a first clamping abutting surface, a first connecting plane and a first elastic surface
  • the first clamping abutting surface is connected and perpendicular to the second insertion plane
  • the first connecting plane is perpendicular to the first clamping abutting surface, and the first side of the first connecting plane is connected to the first clamping abutting surface;
  • the first side of the first elastic surface is connected to the first connecting plane, and the second side of the first elastic surface is abutted on the first clamping abutting surface.
  • the third connecting component further includes a bearing plane
  • the bearing plane is configured to be inserted into a jack of the first connecting component, and the carrying plane is horizontally slidable along the jack;
  • the bearing plane is connected to the second elastic clamping structure.
  • the second elastic clamping structure comprises a second clamping abutting surface, a second connecting plane and a second elastic surface
  • the second clamping abutting surface is connected to the bearing plane and perpendicular to each other;
  • the second connecting plane is perpendicular to the second clamping abutting surface, and the first side of the second connecting plane is connected to the second clamping abutting surface;
  • the first side of the second elastic surface is connected to the second connecting plane, and the second side of the second elastic surface is abutted on the second clamping abutting surface.
  • the first end of the bearing plane is connected to the second clamping abutting surface, and the second end has a baffle.
  • the utility model can realize the assembly between the intelligent module and the fusion-distribution disk of different size specifications by using one set of installation parts, and does not need to separately customize different installation structures and parts thereof for different brands of fusion-distributing disk bodies, thereby saving cost; and the application
  • the assembly process between the different sizes of the fusion plate body and the intelligent module is simple, the assembly is not easy by means of other auxiliary tools, the operation is easy, and the engineering installation of the ODN intelligent upgrade is more convenient.
  • FIG. 1 is a schematic structural view of a first connecting member according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view of a second connecting member according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural view of a third connecting member according to an embodiment of the present invention.
  • FIG. 4 is a schematic view showing the installation between the first connecting member, the second connecting member and the intelligent module
  • Figure 5 is a schematic view of the first connector, the second connector and the smart module mounted in place;
  • Figure 6 is a schematic view showing the installation of the third connecting member and the first connecting member
  • FIG. 7 is a schematic view of assembling an intelligent module and a fusion-distributing disk body according to an embodiment of the present invention.
  • Figure 8 is a schematic view of the smart module and the melted disk body in place.
  • an embodiment of the present invention provides a universal mounting structure for assembling an intelligent module to a fusion-distributing disk body, comprising: a first connecting member 1, a second connecting member 2, and a third connecting member 3.
  • the first connecting member 1 When assembling, the first connecting member 1 is first connected to the first end of the intelligent module 4, and the second connecting member 2 is connected to the second end of the intelligent module 4 (as shown in FIG. 4 and FIG. 5); The piece 3 is inserted into the first connecting member 1, and the insertion position of the third connecting member 3 and the first connecting member 1 can be adjusted (as shown in FIG. 6), so as to be used for assembling different sizes of the melting plate body. .
  • the first connector 1 includes a first insertion plane 11 , a first buckle 11 b is disposed on the first insertion plane 11 , and a first connection component 12 is connected to the first insertion plane 11 .
  • a connecting member 12 has a receptacle 12a.
  • the second connecting member 2 includes a second insertion plane 21 and a first elastic clamping structure.
  • the second insertion plane 21 is provided with a second buckle 21b; the second insertion plane 21 is connected to the first elastic clamping structure.
  • the first resilient clamping structure includes a first clamping abutment surface 22, a first connection plane 23 and a first resilient surface 24.
  • the first clamping abutment surface 22 is connected and perpendicular to the second insertion plane 21; the first connection plane 23 is perpendicular to the first clamping abutment surface 22, and the first connection plane The first side of the first elastic surface 24 is connected to the first connecting plane 23, and the second side of the first elastic surface 24 is connected to the first clamping abutment surface 22 It abuts against the first clamping abutment surface 22.
  • the third connecting member 3 includes a bearing plane 31 and a second elastic clamping structure.
  • the second elastic clamping structure is connected to the bearing plane 31.
  • the second elastic clamping structure includes a second clamping abutment surface 32, a second connection plane 33 and a second elastic surface 34.
  • the second clamping abutment surface 32 is connected to the bearing plane 31 and perpendicular to each other, the second connection plane 33 is perpendicular to the second clamping abutment surface 32, and the second connection plane 33
  • the first side is connected to the second clamping abutment surface 32; the second side of the second elastic surface 34 is connected to the second connection plane 33, and the second side of the second elastic surface 34 is abutted On the second clamping abutment surface 32.
  • the first end of the smart module 4 is provided with a first mounting interface 41
  • the second end of the smart module 4 is provided with a second mounting interface 42
  • the first connecting member 1 and the first The mounting interface 41 is engaged
  • the second connecting member 2 is engaged with the second mounting interface 42.
  • the first mounting interface 41 has a first insertion slot 4a for inserting the first connector 1 and a first fastening slot 4b located in the first insertion slot 4a
  • the second mounting interface 42 has a second insertion slot 4c for inserting the second connector 2 and a second latching groove 4d located in the second insertion slot 4c.
  • the first insertion plane 11 of the first connector 1 is inserted into the first insertion slot 4a of the first mounting interface 41, and the first insertion plane 11 is inserted.
  • the first buckle 11b is fastened to the first fastening slot 4b of the first mounting interface 41, so that the first connecting component 1 is fixed on the intelligent module 4;
  • the second connecting member 2 is mounted to the smart module 4
  • the second insertion plane 21 of the second connecting member 2 and the second insertion slot 4c of the second mounting interface 42 are inserted into position, and the second insertion plane 21 is
  • the second buckle 21b is fastened to the second fastening slot 4d of the second mounting interface 42 so that the second connecting component 2 is fixed on the smart module 4, and the first connecting component 1, the second connecting component 2 and the intelligent module 4 are installed.
  • the state after it is in place is shown in Figure 5.
  • the first buckle 11b of the first connecting member 1 of the embodiment of the present invention is buckled into the first buckle slot 4b, and the second buckle 21b of the second connector member 2 cannot be directly pulled out after being buckled into the second buckle slot 4d. It can only be pulled out after being deformed by pressing, so that the first connecting member 1 and the second connecting member 2 are stably connected with the intelligent module 4, and are not easily separated.
  • the third connector 3 is attached to the first connector 1.
  • the bearing plane 31 As shown in FIG. 6, after the bearing plane 31 is inserted into the insertion hole 12a of the first connecting member 12, the bearing plane 31 can freely slide between the two points a and b along the insertion hole 12a, thereby making the intelligent module of the embodiment of the present invention
  • the universal mounting structure assembled to the melted disc body has a dimensional adjustment function for assembling differently sized melted disc bodies.
  • the first end of the carrying plane 31 is connected to the second clamping abutment surface 32, and the second end has a baffle 31a to prevent the bearing plane 31 from being detached from the first connecting member 1 when sliding along the insertion hole 12a. .
  • the assembled smart module is assembled to the fused disc body 5.
  • the assembled intelligent module is assembled from the top to the bottom of the fusion-distributing disk body 5, and the first elastic clamping structure of the second connecting member 2 and the second elastic connecting structure 3 are used.
  • the elastic clamping structure clamps the side wall of the fusion matching disk body 5; during the installation process, the third connecting member 3 slides relative to the first connecting member 1 to adjust the insertion position, and has been adapted to the different sizes of the welding plate of the intelligent module. Physical installation.
  • the embodiment of the utility model can realize the assembly between the fusion splicing disc body and the intelligent module of different sizes, and has the advantages of simple structure and easy assembly.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Plasma & Fusion (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Connection Of Plates (AREA)
  • Mechanical Coupling Of Light Guides (AREA)

Abstract

本申请公开了一种将智能模块装配到熔配盘体的通用安装结构,包括第一连接件、第二连接件和第三连接件,其中:所述第一连接件设置为与所述智能模块的第一端连接,所述第二连接件设置为与所述智能模块的第二端连接;所述第三连接件插接到所述第一连接件上且可调节插接位置;所述第二连接件具有第一弹性夹紧结构;所述第三连接件具有第二弹性夹紧结构,所述第一弹性夹紧结构和第二弹性夹紧结构用于配合夹接所述熔配盘体。

Description

一种将智能模块装配到熔配盘体的通用安装结构 技术领域
本申请涉及光纤通信设备技术领域,例如涉及一种将智能模块装配到熔配盘体的通用安装结构。
背景技术
传统光纤熔配盘体使用纸质标签对光纤端口状态进行标注,端口的可维护性很差,造成端口资源严重浪费。为增加光纤资源的利用率,设备厂商提出智能光分配网络(optical distribution network,ODN)的概念,即在原光纤熔配盘体的基础上增加智能模块,使用电子标签对光纤端口资源进行电子化管理。同时要求智能模块的安装、布线及维护不得影响原有业务的正常工作。由于在用的ODN熔配盘体大部分是多年前布置完成的,当时并没有行业标准约束,不同品牌的熔配盘体在尺寸规格及产品造型上表现的较为杂乱,所以缺少一种更有效的智能模块安装结构。
实用新型内容
本申请提供一种将智能模块装配到熔配盘体的通用安装结构,可以实现不同尺寸熔配盘体与智能模块之间的装配,结构简单,装配容易。
本申请提供的将智能模块装配到熔配盘体的通用安装结构,包括第一连接件、第二连接件和第三连接件,其中:
所述第一连接件设置为与所述智能模块的第一端连接,所述第二连接件设置为与所述智能模块的第二端连接;所述第三连接件插接到所述第一连接件上且可调节插接位置;
所述第二连接件具有第一弹性夹紧结构;所述第三连接件具有第二弹性夹紧结构,所述第一弹性夹紧结构和第二弹性夹紧结构用于配合夹接所述熔配盘体。
可选的,所述智能模块的第一端设置有第一安装接口,所述智能模块的第二端设置有第二安装接口,所述第一连接件与所述第一安装接口卡接,所述第二连接件与所述第二安装接口卡接。
可选的,所述第一安装接口具有用于所述第一连接件插装的第一插装槽以及位于所述第一插装槽内的第一扣槽,所述第二安装接口具有用于第二连接件 插装的第二插装槽以及位于所述第二插装槽内的第二扣槽
可选的,所述第一连接件包括第一插装平面和第一连接部件,
所述第一插装平面用于插装入所述第一插装槽内,所述第一插装平面上设有第一卡扣,所述第一卡扣用于扣接入所述第一扣槽内;
所述第一连接部件用于连接所述第一插装平面,并且所述第一连接部件具有插孔。
可选的,所述第二连接件,还包括第二插装平面,
所述第二插装平面用于插装入所述第二插装槽内,且所述第二插装平面上设有第二卡扣,所述第二卡扣用于扣接入所述第二扣槽内;
并且所述第二插装平面与所述第一弹性夹紧结构连接。
可选的,所述第一弹性夹紧结构包括第一夹紧抵靠面、第一连接平面和第一弹性面,
所述第一夹紧抵靠面连接并垂直于所述第二插装平面;
所述第一连接平面垂直于所述第一夹紧抵靠面,且所述第一连接平面的第一边与所述第一夹紧抵靠面连接;
所述第一弹性面的第一边连接所述第一连接平面,且所述第一弹性面的第二边抵靠在所述第一夹紧抵靠面上。
可选的,所述第三连接件,还包括承载平面,
所述承载平面用于插入所述第一连接部件的插孔,所述承载平面可沿所述插孔水平滑动;
并且,所述承载平面与所述第二弹性夹紧结构连接。
可选的,所述第二弹性夹紧结构,包括第二夹紧抵靠面、第二连接平面和第二弹性面,
所述第二夹紧抵靠面与所述承载平面连接并相互垂直;
所述第二连接平面垂直于所述第二夹紧抵靠面,且所述第二连接平面的第一边与所述第二夹紧抵靠面连接;
所述第二弹性面的第一边连接所述第二连接平面,且所述第二弹性面的第二边抵靠在所述第二夹紧抵靠面上。
可选的,所述承载平面的第一端与所述第二夹紧抵靠面连接,第二端具有挡板。
本申请可以实现使用一套安装零件完成智能模块与不同尺寸规格熔配盘体之间的组装,不需要针对不同品牌熔配盘体分别定制不同的安装结构及其零件,节约成本;并且本申请使得不同尺寸熔配盘体与智能模块之间的装配过程简单,不需要借助其他辅助工具实现轻松装配,操作容易,使ODN智能升级的工程安装更为便捷。
附图说明
图1是本实用新型实施例的第一连接件的结构示意图;
图2是本实用新型实施例的第二连接件的结构示意图;
图3是本实用新型实施例的第三连接件的结构示意图;
图4是第一连接件、第二连接件与智能模块间的安装示意图;
图5是第一连接件、第二连接件与智能模块安装到位后的示意图;
图6是第三连接件与第一连接件的安装示意图;
图7是本实用新型实施例将智能模块与熔配盘体组装在一起的示意图;
图8是智能模块与熔配盘体安装到位后的示意图。
附图标记说明:1-第一连接件;11-第一插装平面;11b-第一卡扣;12-第一连接部件;12a-插孔;2-第二连接件;21-第二插装平面;21b-第二卡扣;22-第一夹紧抵靠面;23-第一连接平面;24-第一弹性面;3-第三连接件;31-承载平面;31a-挡板;32-第二夹紧抵靠面;33-第二连接平面;34-第二弹性面;4-智能模块;41-第一安装接口;42-第二安装接口;4a-第一插装槽;4b-第一扣槽;4c-第二插装槽;4d-第二扣槽;5-熔配盘体。
实施方式
如图1至3所示,本实用新型实施例提供一种将智能模块装配到熔配盘体的通用安装结构,包括:第一连接件1、第二连接件2和第三连接件3。
装配时,先将第一连接件1连接在智能模块4的第一端,第二连接件2连接在智能模块4的第二端(如图4和图5所示);再将第三连接件3插装到第一连接件1上,且第三连接件3与第一连接件1的插接位置可调节(如图6所示),以便于用于装配不同尺寸的熔配盘体。
下面结合附图对本实用新型实施例进行详细说明。
如图1所示,第一连接件1包括:第一插装平面11,第一插装平面11上设有第一卡扣11b;连接第一插装平面11的第一连接部件12,第一连接部件12具有插孔12a。
如图2所示,第二连接件2包括:第二插装平面21和第一弹性夹紧结构。
第二插装平面21上设有第二卡扣21b;第二插装平面21与第一弹性夹紧结构连接。
第一弹性夹紧结构包括:第一夹紧抵靠面22,第一连接平面23以及第一弹性面24。
所述第一夹紧抵靠面22连接并垂直于所述第二插装平面21;所述第一连接平面23垂直于所述第一夹紧抵靠面22,且所述第一连接平面23的第一边与所述第一夹紧抵靠面22连接;所述第一弹性面24的第一边连接所述第一连接平面23,且所述第一弹性面24的第二边抵靠在所述第一夹紧抵靠面22上。
如图3所示,第三连接件3包括:承载平面31和第二弹性夹紧结构。第二弹性夹紧结构与承载平面31连接。
其中,第二弹性夹紧结构包括:第二夹紧抵靠面32,第二连接平面33以及第二弹性面34。
所述第二夹紧抵靠面32与所述承载平面31连接并相互垂直,所述第二连接平面33垂直于所述第二夹紧抵靠面32,且所述第二连接平面33的第一边与所述第二夹紧抵靠面32连接;所述第二弹性面34的第二边连接所述第二连接平面33,且所述第二弹性面34的第二边抵靠在所述第二夹紧抵靠面32上。
如图4所示,智能模块4的第一端设置有第一安装接口41,所述智能模块4的第二端设置有第二安装接口42,所述第一连接件1与所述第一安装接口41卡接,所述第二连接件2与所述第二安装接口42卡接。
所述第一安装接口41具有用于所述第一连接件1插装的第一插装槽4a以及位于所述第一插装槽4a内的第一扣槽4b,所述第二安装接口42具有用于第二连接件2插装的第二插装槽4c以及位于所述第二插装槽4c内的第二扣槽4d。
将第一连接件1安装到智能模块4时,第一连接件1的第一插装平面11与第一安装接口41的第一插装槽4a对插到位后,第一插装平面11上的第一卡扣11b扣接入第一安装接口41的第一扣槽4b,从而使第一连接件1固定在智能模块4上;将 第二连接件2安装到智能模块4时,第二连接件2的第二插装平面21与第二安装接口42的第二插装槽4c对插到位后,第二插装平面21上的第二卡扣21b扣接入第二安装接口42的第二扣槽4d,从而使第二连接件2固定在智能模块4上,第一连接件1、第二连接件2与智能模块4安装到位后的状态如图5所示。
本实用新型实施例的第一连接件1的第一卡扣11b在扣入第一扣槽4b,第二连接件2的第二卡扣21b在扣入第二扣槽4d以后,无法直接拔出,只能通过按压使其变形后才可拔出,使得第一连接件1、第二连接件2与智能模块4稳定连接,不会轻易分离。
在将第一连接件1和第二连接件2安装到智能模块4后,将第三连接件3连接到第一连接件1上。如图6所示,承载平面31插入第一连接部件12的插孔12a后,承载平面31可沿插孔12a在a、b两点间自由滑动,从而使得本实用新型实施例的将智能模块装配到熔配盘体的通用安装结构具有尺寸调节功能,用于装配不同尺寸的熔配盘体。如图3所示,承载平面31的第一端与第二夹紧抵靠面32连接,第二端具有挡板31a,防止承载平面31沿插孔12a自由滑动时与第一连接件1脱离。
在第三连接件3连接到第一连接件1上以后,将组装完成的智能模块装配到熔配盘体5上。如图7和图8所示,将组装完成的智能模块自上而下装配到熔配盘体5上,利用第二连接件2的第一弹性夹紧结构和第三连接件3的第二弹性夹紧结构夹紧熔配盘体5的侧壁;安装的过程中,第三连接件3会相对第一连接件1滑动来调整插装位置,已适应智能模块在不同尺寸的熔配盘体上的安装。
尽管上述对本实用新型实施例做了详细说明,但本实用新型实施例不限于此。
工业实用性
本实用新型实施例可以实现不同尺寸熔配盘体与智能模块之间的装配,结构简单,装配容易。
Figure PCTCN2016078611-appb-000001
Figure PCTCN2016078611-appb-000002

Claims (9)

  1. 一种将智能模块装配到熔配盘体的通用安装结构,包括第一连接件、第二连接件和第三连接件,其中:
    所述第一连接件设置为与所述智能模块的第一端连接,所述第二连接件设置为与所述智能模块的第二端连接;所述第三连接件插接到所述第一连接件上且可调节插接位置;
    所述第二连接件具有第一弹性夹紧结构;所述第三连接件具有第二弹性夹紧结构,所述第一弹性夹紧结构和第二弹性夹紧结构用于配合夹接所述熔配盘体。
  2. 如权利要求1所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述智能模块的第一端设置有第一安装接口,所述智能模块的第二端设置有第二安装接口,所述第一连接件与所述第一安装接口卡接,所述第二连接件与所述第二安装接口卡接。
  3. 如权利要求2所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第一安装接口具有用于所述第一连接件插装的第一插装槽以及位于所述第一插装槽内的第一扣槽,所述第二安装接口具有用于第二连接件插装的第二插装槽以及位于所述第二插装槽内的第二扣槽。
  4. 如权利要求3所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第一连接件包括第一插装平面和第一连接部件,
    所述第一插装平面用于插装入所述第一插装槽内,所述第一插装平面上设有第一卡扣,所述第一卡扣用于扣接入所述第一扣槽内;
    所述第一连接部件用于连接所述第一插装平面,并且所述第一连接部件具有插孔。
  5. 如权利要求4所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第二连接件,还包括第二插装平面,
    所述第二插装平面用于插装入所述第二插装槽内,且所述第二插装平面上设有第二卡扣,所述第二卡扣用于扣接入所述第二扣槽内;
    并且所述第二插装平面与所述第一弹性夹紧结构连接。
  6. 如权利要求5所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第一弹性夹紧结构包括第一夹紧抵靠面、第一连接平面和第一弹性面,
    所述第一夹紧抵靠面连接并垂直于所述第二插装平面;
    所述第一连接平面垂直于所述第一夹紧抵靠面,且所述第一连接平面的第一边与所述第一夹紧抵靠面连接;
    所述第一弹性面的第一边连接所述第一连接平面,且所述第一弹性面的第二边抵靠在所述第一夹紧抵靠面上。
  7. 如权利要求4所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第三连接件,还包括承载平面,
    所述承载平面用于插入所述第一连接部件的插孔,所述承载平面可沿所述插孔水平滑动;
    并且,所述承载平面与所述第二弹性夹紧结构连接。
  8. 如权利要求7所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述第二弹性夹紧结构,包括第二夹紧抵靠面、第二连接平面和第二弹性面,
    所述第二夹紧抵靠面与所述承载平面连接并相互垂直;
    所述第二连接平面垂直于所述第二夹紧抵靠面,且所述第二连接平面的第一边与所述第二夹紧抵靠面连接;
    所述第二弹性面的第一边连接所述第二连接平面,且所述第二弹性面的第二边抵靠在所述第二夹紧抵靠面上。
  9. 如权利要求8所述的将智能模块装配到熔配盘体的通用安装结构,其中,所述承载平面的第一端与所述第二夹紧抵靠面连接,第二端具有挡板。
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