WO2016123950A1 - 一种底板、底板组件以及底板安装系统 - Google Patents

一种底板、底板组件以及底板安装系统 Download PDF

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Publication number
WO2016123950A1
WO2016123950A1 PCT/CN2015/086680 CN2015086680W WO2016123950A1 WO 2016123950 A1 WO2016123950 A1 WO 2016123950A1 CN 2015086680 W CN2015086680 W CN 2015086680W WO 2016123950 A1 WO2016123950 A1 WO 2016123950A1
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Prior art keywords
bottom plate
fixing member
threaded hole
threaded
plate
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PCT/CN2015/086680
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English (en)
French (fr)
Inventor
熊燕飞
方文义
韦设成
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中兴通讯股份有限公司
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Publication of WO2016123950A1 publication Critical patent/WO2016123950A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/06Cable ducts or mountings specially adapted for exchange installations

Definitions

  • the present invention relates to the field of communications equipment, and in particular, to a backplane, a backplane assembly, and a backplane mounting system.
  • RRU radio remote unit
  • the power supply in the base station, the heat dissipation of the power supply heat sink is bonded to the RRU box bottom plate through the thermal adhesive, and the heat is dissipated through the RRU box.
  • the heat transfer adhesive has a strong adhesive force, which causes the RRU to be repaired. It is very difficult to disassemble the power supply.
  • One of the existing disassembly methods is to use a flat-blade screwdriver to find the power supply cooling base plate. The screwdriver often cannot find a suitable defect, and it is easy to damage the device on the power supply.
  • the other is the pre-design, in the RRU.
  • the bottom of the cabinet is slotted with the power supply. When the repair is carried out, it is extended to the bottom slot of the power supply through a special tool, and then the power is turned off.
  • the shortcomings of this method are obvious, occupying the extra space of the RRU, and the RRU miniaturization trend. Related information.
  • the power supply heat dissipation base plate 1 and the RRU case bottom plate 2 are bonded together by a thermal conductive adhesive, and further, through the screw 3, the power supply heat dissipation base plate 1 and the screw holes on the RRU case bottom plate 2 (not shown in the drawing)
  • the fixed power supply heat sink base plate 1 is connected to the RRU cabinet bottom plate 2.
  • a flat-blade screwdriver is used to find the power supply heat dissipation base plate 1 to separate and bond the power supply.
  • this method of disassembling the power supply is not safe, simple, and inefficient.
  • Embodiments of the present invention provide a bottom plate, a bottom plate assembly, and a bottom plate mounting system to at least solve the technical problem that the power supply cannot be safely, simply, and effectively removed during the RRU rework.
  • an embodiment of the present invention provides a bottom plate, a bottom surface of the bottom plate is bonded to an outer bottom plate, and the bottom plate is further provided with at least one first threaded hole;
  • the first threaded hole cooperates with the first first member having the threaded teeth to generate a top force on the outer bottom plate such that the bottom plate is separated from the outer bottom plate.
  • the bottom plate is further provided with at least one fixing member arranged to be fitted with the external fixing member; when the bottom plate is fixed, the fixing member and the external fixing member and the corresponding fixing member on the external bottom plate The base plate is fixed to the outer bottom plate in cooperation.
  • the fixing member on the bottom plate includes: a second threaded hole adapted to the second member with the threaded teeth; the second threaded hole and the threaded tooth when the bottom plate is fixed A second component, the corresponding third threaded hole on the outer second bottom plate cooperates to secure the bottom plate to the outer bottom plate.
  • the bottom plate is a power supply heat sink base in the base station.
  • an embodiment of the present invention further provides a bottom plate assembly, comprising: a first component with threaded teeth and a first bottom plate, the bottom surface of the first bottom plate being bonded to the outer second bottom plate, The first bottom plate is further provided with at least one first threaded hole;
  • the first threaded hole and the outer threaded tooth A component cooperates to generate a top force on the second bottom plate such that the first bottom plate is separated from the second bottom plate.
  • the bottom plate assembly further includes: at least one first fixing member; the first bottom plate further has a second fixing member adapted to the first fixing member; when the first bottom plate is fixed, the The first fixing member cooperates with the second fixing member and the third fixing member on the outer second bottom plate to fix the first bottom plate on the second bottom plate.
  • first fixing member includes: a second member with threaded teeth;
  • second fixing member includes: a second threaded hole adapted to the second member;
  • the second threaded hole cooperates with the second threaded second member and the corresponding third threaded hole on the outer second bottom plate to fix the bottom plate to the first bottom plate On the second floor.
  • the first bottom plate is a power supply heat dissipation base plate in the base station, and a bottom surface of the power supply heat dissipation base plate is bonded to the external second bottom plate.
  • an embodiment of the present invention further provides a bottom plate mounting system, comprising: a second bottom plate and the bottom plate assembly according to any one of the above items 1 to 3; An outer bottom plate of a bottom plate.
  • the first bottom plate is a power supply heat dissipation bottom plate in the base station
  • the second bottom plate is a RRU box bottom plate in the base station; the bottom surface of the power supply heat dissipation bottom plate is bonded to the RRU box bottom plate.
  • the embodiment of the present invention provides a bottom plate, a bottom plate assembly, and a bottom plate mounting system.
  • the bottom plate of the embodiment of the present invention specifically includes: a bottom surface of the bottom plate is bonded to the outer bottom plate, and the bottom plate is further provided with at least one first threaded hole;
  • the first threaded hole cooperates with the first component with the external threaded teeth to generate a top force on the outer bottom plate, so that the bottom plate Separating from the external bottom plate;
  • the bottom plate of the present invention can be applied as a power supply heat sink base in the RRU base station, and the RRU can be reworked by simply screwing the first threaded hole into the first threaded hole on the power supply heat sink base plate. Separating the power supply heat sink from the RRU box bottom plate, it can be seen that the application of the bottom plate of the present invention can safely, simply and effectively disassemble the power supply during RRU rework.
  • FIG. 1 is a schematic view showing the connection between a conventional power supply heat sink base plate and a RRU cabinet bottom plate;
  • FIG. 2 is a schematic structural diagram of a bottom plate mounting system according to Embodiment 1 of the present invention.
  • FIG. 3 is a schematic diagram of a separate power supply heat sink base plate and a RRU cabinet bottom plate according to Embodiment 1 of the present invention.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the embodiment provides a bottom plate, and the bottom surface of the bottom plate is bonded to the outer bottom plate (for example, through an adhesive such as thermal adhesive or glue) To bond the bottom plate and the outer bottom plate; the bottom plate is further provided with at least one first threaded hole;
  • the first threaded hole cooperates with the first first member having the threaded teeth to generate a top force on the outer bottom plate such that the bottom plate is separated from the outer bottom plate.
  • the first component with the threaded teeth is screwed into the first threaded hole, and after the first component contacts the outer bottom plate during the screwing process, The outer bottom plate generates a top force such that the bottom plate is separated from the outer bottom plate.
  • the number of the first threaded holes on the bottom plate may be one or more, and the specific number may be set according to actual needs.
  • the bottom plate of the embodiment may be a power supply heat dissipation substrate in the base station, and a top surface of the power dissipation heat dissipation substrate is fixedly connected to the power source.
  • the external backplane may be a RRU cabinet bottom plate in the base station.
  • the first component in this embodiment may be a screw that fits the first threaded bore, and of course other components with threaded teeth.
  • the bottom plate of the embodiment may further be provided with at least one fixing member adapted to the external fixing member;
  • the fixing member cooperates with the fixing member on the outer fixing member and the outer bottom plate to fix the bottom plate to the outer bottom plate.
  • the fixing member on the bottom plate comprises: a second threaded hole adapted to the second component with the threaded tooth; the second threaded hole and the threaded tooth when the bottom plate is fixed
  • a second component, the corresponding third threaded hole on the outer second bottom plate cooperates to secure the bottom plate to the outer bottom plate.
  • screwing the second member into the second threaded hole and the corresponding third threaded hole on the outer bottom plate to fix the bottom plate to the outer bottom plate on. That is, a second threaded hole is disposed on the bottom plate, and a third threaded hole is correspondingly disposed on the outer bottom plate.
  • the second component When the bottom plate is fixed, the second component is screwed into the second threaded hole on the bottom plate and the corresponding third on the outer bottom plate.
  • a threaded hole is provided to secure the bottom plate to the outer base plate.
  • the second component can be a screw.
  • the embodiment provides a backplane mounting system, including: a power supply heat sink 4, The RRU box bottom plate 5; the bottom surface of the power supply heat dissipation base plate 4 and the RRU box bottom plate 5 are bonded together by the thermal conductive adhesive, and the top surface of the power supply heat dissipation base plate 4 is fixed with a power supply; the four corners of the power supply heat dissipation plate 4 are respectively fixed and fixed.
  • the screw 6 is fitted with a fixed threaded hole (not shown), and the RRU box bottom plate 5 is also provided with four fixed threaded holes (not shown) respectively adapted to the fixing screws 6; After the power supply heat sink 4 is bonded to the RRU box bottom plate 5, the fixing screw 6 is screwed into the fixed threaded hole on the power supply heat sink 4 and the corresponding fixed screw hole on the RRU box bottom plate 5 to fix the power supply heat sink 4 On the RRU box bottom plate 5.
  • the number of fixed thread holes in the embodiment is not limited, and may be set according to actual conditions, for example, one, two, or three may be provided. , 5 or more fixed threaded holes.
  • the number of fixing screws 6 corresponds to the number of fixing screw holes
  • one fixing screw hole corresponds to one fixing screw 6.
  • At least one disassembly thread hole is required to be disposed on the power source heat dissipation base plate 4.
  • a disassembly thread hole is preferentially disposed, and in normal use, the disassembly screw hole is vacant.
  • the parts with threaded teeth are not installed; however, when the RRU is required to be removed from the power supply cooling plate 4, after the fixing screws 6 are removed, the removal screws 7 need to be screwed into the removal screw holes, and the screws 7 are removed as the removal screws 7 are screwed in.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the embodiment provides a bottom plate assembly, comprising: a first bottom plate and a first component with threaded teeth; the first bottom plate is the bottom plate of the first embodiment, that is, the bottom surface of the first bottom plate and the outer bottom plate Bonding, the first bottom plate is further provided with at least one first threaded hole;
  • the first threaded hole cooperates with the first first part with the threaded teeth to generate a top force on the second bottom plate, so that the first bottom plate and the second bottom plate Separation.
  • the first component with the threaded teeth is screwed into the first threaded hole, and after the first component contacts the outer bottom plate during the screwing process A top force is generated on the outer bottom plate such that the bottom plate is separated from the outer bottom plate.
  • the number of the first members may be equal to the number of the first threaded holes.
  • the first three parts with threaded teeth are respectively screwed into three A threaded hole separates the first bottom plate and the outer bottom plate.
  • the first component in this embodiment may be a screw.
  • the first bottom plate may be a power supply heat dissipation base plate in the base station, and the bottom surface of the power supply heat dissipation base plate is bonded to the external bottom plate, for example, by a glue such as a thermal conductive adhesive, and the external bottom plate may be a RRU case bottom plate;
  • a glue such as a thermal conductive adhesive
  • the external bottom plate may be a RRU case bottom plate
  • the bottom plate assembly of the embodiment further includes: at least one first fixing member; the first bottom plate further has a second fixing member adapted to the first fixing member When the first bottom plate is fixed, the first fixing member cooperates with the second fixing member on the second fixing member to fix the first bottom plate to the second bottom plate. on.
  • the number of the first fixing member, the second fixing member, and the third fixing member is equal.
  • the first fixing member comprises: a second member with threaded teeth;
  • the second fixing member comprises: a second threaded hole adapted to the second member;
  • the second threaded hole cooperates with the second threaded second member and the corresponding third threaded hole on the outer second bottom plate when the first bottom plate is fixed Fixing the bottom plate on the second bottom plate;
  • the second member is screwed into the second threaded hole and the corresponding third threaded hole on the outer second bottom plate to fix the first bottom plate to the outer bottom plate.
  • the second component may be a screw, and the specific structure of the bottom plate assembly at this time may refer to FIG. 2 or 3.
  • the bottom plate assembly of the embodiment is used in the RRU base station, that is, the first bottom plate is a power heat dissipation bottom plate, and the outer bottom plate is a RRU box bottom plate; the power supply heat dissipation plate can be easily and safely removed when the RRU is reworked.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • the embodiment provides a bottom plate mounting system, comprising: a second bottom plate and the bottom plate assembly of the second embodiment; the second bottom plate serves as an outer bottom plate of the first bottom plate.
  • the specific structure can refer to FIG. 2 or 3.
  • the first bottom plate is a power supply heat dissipation bottom plate in the base station
  • the second bottom plate is an RRU box bottom plate in the base station; and a bottom surface of the power supply heat dissipation bottom plate is bonded to the RRU box bottom plate.
  • the disclosed technical content can be implemented in other ways.
  • the device embodiments described above are only schematic.
  • the division of the unit may be a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or may be Integrate into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, unit or module, and may be electrical or otherwise.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, A variety of media that can store program code, such as a disk or an optical disk.
  • the bottom plate, the bottom plate assembly, and the bottom plate mounting system provided by the embodiments of the present invention have the following beneficial effects: the bottom plate of the present invention can be applied as a power supply heat dissipation base plate in the RRU base station, and the RRU is repaired only by using the thread. The first component of the tooth is screwed into the first threaded hole on the power supply heat sink to separate the power supply heat sink from the RRU cabinet bottom. It can be seen that the application of the bottom plate of the present invention can safely and simply and effectively disassemble the power supply during RRU rework.

Abstract

本发明公开了一种底板、底板组件以及底板安装系统。本发明提供的底板具体包括:底板的底面与外部底板粘接,所述底板还设有至少一个第一螺纹孔;在需要拆卸所述底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述外部底板产生一个顶力,使得所述底板与所述外部底板分离;应用本发明提供的底板可以解决目前在RRU返修时不能安全、简单、有效地拆卸电源的技术问题。

Description

一种底板、底板组件以及底板安装系统 技术领域
本发明涉及通信设备技术领域,尤其涉及一种底板、底板组件以及底板安装系统。
背景技术
RRU(射频拉远单元)基站中电源,其散热通过导热胶将电源散热底板粘结到RRU箱体底板上,通过RRU箱体散热,然而导热胶固化后粘结力很大,导致RRU返修时要拆卸电源非常困难。现有拆卸方法中,一种是直接用一字螺丝刀找点撬电源散热底板,螺丝刀常常找不到合适的撬点,也容易撬坏电源上的器件;另一种是前期设计时,在RRU箱体边上底部与电源粘结处开槽,返修时通过特殊工具伸到电源底部开槽处,再撬起电源,该方法的缺点很明显,占用了RRU的额外空间,和RRU小型化趋势相悖。
如图1所示,电源散热底板1与RRU箱体底板2通过导热胶粘接在一起,另外,通过螺钉3、电源散热底板1和RRU箱体底板2上的螺纹孔(图中未示出)固定电源散热底板1与RRU箱体底板2的连接。在RRU返修需要拆卸电源时,即需要分离电源散热底板1与RRU箱体底板2时,一般在拆卸掉螺钉3后,采用一字螺丝刀找点撬电源散热底板1从而分离粘接在一起的电源散热底板1与RRU箱体底板2。然而,这种拆卸电源方法不安全、简单且低效。
可见,目前在RRU返修时不能安全、简单、有效地拆卸电源。
发明内容
本发明实施例提供了一种底板、底板组件以及底板安装系统,以至少解决目前在RRU返修时不能安全、简单、有效地拆卸电源的技术问题。
为解决上述技术问题,本发明实施例提供一种底板,所述底板的底面与外部底板粘接,所述底板还设有至少一个第一螺纹孔;
在需要拆卸所述底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述外部底板产生一个顶力,使得所述底板与所述外部底板分离。
进一步地,所述底板还设有至少一个设置为与外部固定件适配的固定件;在固定所述底板时,所述固定件与所述外部固定件、所述外部底板上对应的固定件配合将所述底板固定在所述外部底板上。
进一步地,所述底板上的固定件包括:与带有螺纹齿的第二部件适配的第二螺纹孔;在固定所述底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述外部底板上。
进一步地,所述底板为基站内的电源散热底板。
同样为了解决上述的技术问题,本发明实施例还提供了一种底板组件,包括:带有螺纹齿的第一部件和第一底板,所述第一底板的底面与外部第二底板粘接,所述第一底板还设有至少一个第一螺纹孔;
在需要拆卸所述第一底板时,所述第一螺纹孔与外部带有螺纹齿的第 一部件配合对所述第二底板产生一个顶力,使得所述第一底板与所述第二底板分离。
进一步地,所述底板组件还包括:至少一个第一固定件;所述第一底板还设有与所述第一固定件适配的第二固定件;在固定所述第一底板时,所述第一固定件与所述第二固定件、所述外部第二底板上的第三固定件配合将所述第一底板固定在所述第二底板上。
进一步地,所述第一固定件包括:带有螺纹齿的第二部件;所述的第二固定件包括:与所述第二部件适配的第二螺纹孔;
在固定所述第一底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述第二底板上。
进一步地,所述第一底板为基站内电源散热底板,所述电源散热底板的底面与所述外部第二底板粘接。
同样为了解决上述技术问题,本发明实施例还提供了一种底板安装系统,包括:第二底板和如上第一至三项任一项所述的底板组件;所述第二底板作为所述第一底板的外部底板。
进一步地,所述第一底板为基站内电源散热底板,所述第二底板为基站内RRU箱体底板;所述电源散热底板的底面与所述RRU箱体底板粘接。
本发明的有益效果是:
本发明实施例提供了一种底板、底板组件以及底板安装系统;本发明实施例提供的底板具体包括:底板的底面与外部底板粘接,所述底板还设有至少一个第一螺纹孔;在需要拆卸所述底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述外部底板产生一个顶力,使得所述底板 与所述外部底板分离;在RRU基站中可应用本发明的底板作为电源散热底板,在RRU返修,只需利用带有螺纹齿的第一部件拧入电源散热底板上的第一螺纹孔就可以将电源散热底板与RRU箱体底板分离,可见应用本发明的底板可以使得在RRU返修时安全、简单、有效地拆卸电源。
附图说明
图1为现有电源散热底板与RRU箱体底板的连接示意图;
图2为本发明实施例一提供的一种底板安装系统的结构示意图;
图3为本发明实施例一提供的分离电源散热底板和RRU箱体底板的示意图。
具体实施方式
下面通过具体实施方式结合附图对本发明作进一步详细说明。
实施例一:
考虑到目前在RRU返修时不能安全、简单、有效地拆卸电源的技术问题,本实施例提供了一种底板,所述底板的底面与外部底板粘接(例如通过导热胶或者胶水等粘合剂来粘接所述底板和外部底板);所述底板还设有至少一个第一螺纹孔;
在需要拆卸所述底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述外部底板产生一个顶力,使得所述底板与所述外部底板分离。
具体地,当用户需要拆卸所述底板时,将带有螺纹齿的第一部件拧入所述第一螺纹孔,在拧入的过程中所述第一部件接触到所述外部底板后对 所述外部底板产生一个顶力,使得所述底板与所述外部底板分离。
本实施例中底板上的第一螺纹孔的数量可以为一个或者多个,具体数量可以根据实际需求来设定。
优先地,本实施例的底板可以为基站内的电源散热底板,所述电源散热底板的顶面与电源固定连接。此时,外部底板可以为基站内RRU箱体底板。
优先地,本实施例中第一部件可以为与第一螺纹孔适配的螺钉,当然还可以为其他带有螺纹齿的部件。
在将底板与外部底板粘接在一起后,为了能够固定两个底板,即将底板固定在外部底板上,本实施例底板上还可以设有至少一个与外部固定件适配的固定件;在固定所述底板时,所述固定件与所述外部固定件、所述外部底板上的固定件配合将所述底板固定在所述外部底板上。
优先地,所述底板上的固定件包括:与带有螺纹齿的第二部件适配的第二螺纹孔;在固定所述底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述外部底板上。具体地,在将底板与外部底板粘接后,将所述第二部件拧入所述第二螺纹孔和所述外部底板上对应的第三螺纹孔,将所述底板固定在所述外部底板上。也就是说,在底板上设置第二螺纹孔、在外部底板上对应设置第三螺纹孔,在固定底板时,将第二部件拧入底板上的第二螺纹孔和外部底板上对应的第三螺纹孔,从而将底板固定在外部底板上,优先地,第二部件可以为螺钉。
如图2所示,本实施例提供一种底板安装系统,包括:电源散热板4、 RRU箱体底板5;电源散热底板4的底面与RRU箱体底板5通过导热胶粘接在一起,电源散热底板4的顶面固定电源;电源散热板4的四个角分别还设有与固定螺钉6适配的固定螺纹孔(图中未示出),在RRU箱体底板5上也同样设有四个分别与固定螺钉6适配的固定螺纹孔(图中未示出);在将电源散热板4与RRU箱体底板5粘接在一起后,将固定螺钉6拧入电源散热板4上的固定螺纹孔和RRU箱体底板5上对应的固定螺纹孔实现将电源散热板4固定在RRU箱体底板5上。虽然图2中只设置了4个固定螺纹孔,但应当理解的是,本实施例中的固定螺纹孔的数量不受限制,可以根据实际情况设置,例如可以设置1个、2个、3个、5个或者5个以上的固定螺纹孔。在本实施例中固定螺钉6的数量与固定螺纹孔的数量对应,一个固定螺纹孔对应一个固定螺钉6。
为能够实现安全简单且有效地拆卸电源散热底板4,在电源散热底板4上还需要设置至少一个拆卸螺纹孔,图2中优先设置一个拆卸螺纹孔,在正常使用中,该拆卸螺纹孔空置,不装带螺纹齿的部件;但是在RRU返修需要拆卸电源散热底板4时,在将固定螺钉6拆除后,需要将拆卸螺钉7拧入拆卸螺纹孔,随着拆卸螺钉7拧入,拆卸螺钉7逐渐顶到RRU箱体底板5顶面,继续向内拧,会对RRU箱体底板5产生一个顶力,进而用顶力使两块板分离开。如图3所示,在将固定螺钉6一端拧出RRU箱体底板5上的固定螺纹孔后,在电源散热板4上空置的螺纹孔内拧入拆卸螺钉7,使其逐渐顶到下层底板平整面,继续向内拧,用顶力使两块板分离开。
实施例二:
本实施例提供了一种底板组件,包括:第一底板和带有螺纹齿的第一部件;所述第一底板为实施例一所述的底板,即所述第一底板的底面与外部底板粘接,所述第一底板还设有至少一个第一螺纹孔;
在需要拆卸所述第一底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述第二底板产生一个顶力,使得所述第一底板与所述第二底板分离。
具体地,当用户需要拆卸所述第一底板时,将带有螺纹齿的第一部件拧入所述第一螺纹孔,在拧入的过程中所述第一部件接触到所述外部底板后对所述外部底板产生一个顶力,使得所述底板与所述外部底板分离。
在本实施例中第一部件的数量可以与第一螺纹孔的数量相等,例如第一底板上设有三个第一螺纹孔时,采用三个带螺纹齿的第一部件分别拧入三个第一螺纹孔分离第一底板和外部底板。优先地,本实施例中第一部件可以为螺钉。
本实施例中第一底板可以为基站内电源散热底板,所述电源散热底板的底面与所述外部底板粘接,例如通过导热胶等胶体粘接,外部底板可以为RRU箱体底板;此时底板组件具体结构可以参考图2或3。
为能够固定第一底板和外部底板的连接,本实施例的底板组件还包括:至少一个第一固定件;所述第一底板还设有与所述第一固定件适配的第二固定件;在固定所述第一底板时,所述第一固定件与所述第二固定件、所述外部第二底板上的第三固定件配合将所述第一底板固定在所述第二底板上。
本实施例中第一固定件、第二固定件、第三固定件的数量相等。
优先地,所述第一固定件包括:带有螺纹齿的第二部件;所述的第二固定件包括:与所述第二部件适配的第二螺纹孔;
在固定所述第一底板时,在固定所述第一底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述第二底板上;
具体地,将所述第二部件拧入所述第二螺纹孔和所述外部第二底板上对应的第三螺纹孔,从而将所述第一底板固定在所述外部底板上。优先地,第二部件可以为螺钉,此时的底板组件的具体结构可以参考图2或3。
在RRU基站内采用本实施例中底板组件,即第一底板为电源散热底板、外部底板为RRU箱体底板;可以使得在RRU返修时,简单安全且有效地拆卸电源散热板。
实施例三:
本实施例提供了一种底板安装系统,包括:第二底板和实施例二所述的底板组件;所述第二底板作为所述第一底板的外部底板。具体结构可以参考图2或3。
优先地,所述第一底板为基站内电源散热底板,所述第二底板为基站内RRU箱体底板;所述电源散热底板的底面与所述RRU箱体底板粘接。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
在本发明的上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
在本申请所提供的几个实施例中,应该理解到,所揭露的技术内容, 可通过其它的方式实现。其中,以上所描述的装置实施例仅仅是示意性的,例如所述单元的划分,可以为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,单元或模块的间接耦合或通信连接,可以是电性或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可为个人计算机、服务器或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、 磁碟或者光盘等各种可以存储程序代码的介质。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。
工业实用性
如上所述,本发明实施例提供的一种底板、底板组件以及底板安装系统具有以下有益效果:在RRU基站中可应用本发明的底板作为电源散热底板,在RRU返修,只需利用带有螺纹齿的第一部件拧入电源散热底板上的第一螺纹孔就可以将电源散热底板与RRU箱体底板分离,可见应用本发明的底板可以使得在RRU返修时安全、简单、有效地拆卸电源。

Claims (10)

  1. 一种底板,所述底板的底面与外部底板粘接,所述底板还设有至少一个第一螺纹孔;
    在需要拆卸所述底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述外部底板产生一个顶力,使得所述底板与所述外部底板分离。
  2. 如权利要求1所述的底板,其中,所述底板还设有至少一个设置为与外部固定件适配的固定件;在固定所述底板时,所述固定件与所述外部固定件、所述外部底板上对应的固定件配合将所述底板固定在所述外部底板上。
  3. 如权利要求2所述的底板,其中,所述底板上的固定件包括:与带有螺纹齿的第二部件适配的第二螺纹孔;在固定所述底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述外部底板上。
  4. 如权利要求1-3任一项所述的底板,其中,所述底板为基站内的电源散热底板。
  5. 一种底板组件,包括:带有螺纹齿的第一部件和第一底板,所述第一底板的底面与外部第二底板粘接,所述第一底板还设有至少一个第一螺纹孔;
    在需要拆卸所述第一底板时,所述第一螺纹孔与外部带有螺纹齿的第一部件配合对所述第二底板产生一个顶力,使得所述第一底板与所述第二底板分离。
  6. 如权利要求5所述的底板组件,其中,所述底板组件还包括:至少一个第一固定件;所述第一底板还设有与所述第一固定件适配的第二固定件;在固定所述第一底板时,所述第一固定件与所述第二固定件、所 述外部第二底板上的第三固定件配合将所述第一底板固定在所述第二底板上。
  7. 如权利要求6所述底板组件,其中,所述第一固定件包括:带有螺纹齿的第二部件;所述的第二固定件包括:与所述第二部件适配的第二螺纹孔;
    在固定所述第一底板时,所述第二螺纹孔与所述带有螺纹齿的第二部件、所述外部第二底板上对应的第三螺纹孔配合将所述底板固定在所述第二底板上。
  8. 如权利要求5-7任一项所述的底板组件,其中,所述第一底板为基站内电源散热底板,所述电源散热底板的底面与所述外部第二底板粘接。
  9. 一种底板安装系统,包括:第二底板和如权利要求5-7任一项所述的底板组件,所述第二底板作为所述第一底板的外部底板。
  10. 如权利要求9所述的底板安装系统,其中,所述第一底板为基站内电源散热底板,所述第二底板为基站内射频拉远单元RRU箱体底板;所述电源散热底板的底面与所述射频拉远单元RRU箱体底板粘接。
PCT/CN2015/086680 2015-02-05 2015-08-11 一种底板、底板组件以及底板安装系统 WO2016123950A1 (zh)

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