WO2015120697A1 - 配电连接装置 - Google Patents

配电连接装置 Download PDF

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Publication number
WO2015120697A1
WO2015120697A1 PCT/CN2014/083301 CN2014083301W WO2015120697A1 WO 2015120697 A1 WO2015120697 A1 WO 2015120697A1 CN 2014083301 W CN2014083301 W CN 2014083301W WO 2015120697 A1 WO2015120697 A1 WO 2015120697A1
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WO
WIPO (PCT)
Prior art keywords
frame
busbar
connection
power distribution
tooth
Prior art date
Application number
PCT/CN2014/083301
Other languages
English (en)
French (fr)
Inventor
黄显良
张建业
齐福建
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to US14/580,913 priority Critical patent/US9306351B2/en
Publication of WO2015120697A1 publication Critical patent/WO2015120697A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R25/00Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits
    • H01R25/16Rails or bus-bars provided with a plurality of discrete connecting locations for counterparts
    • H01R25/161Details
    • H01R25/162Electrical connections between or with rails or bus-bars
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/015Boards, panels, desks; Parts thereof or accessories therefor
    • H02B1/04Mounting thereon of switches or of other devices in general, the switch or device having, or being without, casing
    • H02B1/056Mounting on plugboards

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a power distribution connection device. Background technique
  • the circuit breaker is usually connected to the circuit by connecting it to the busbar.
  • the busbar refers to the copper or aluminum row of the switch in the power supply system, the switch in the main circuit and the switch in each shunt circuit.
  • the surface is insulated, mainly for the wire.
  • connection between the circuit breaker and the busbar is connected by a fixed-form copper busbar.
  • the fixed-form copper busbar connection is not compatible with the installation of circuit breakers of different manufacturers and different sizes, and it cannot support the application field to quickly replace different manufacturers or Circuit breakers of different sizes. Summary of the invention
  • Embodiments of the present invention provide a power distribution connection device, which can realize flexible connection between a circuit breaker of any specification and a circuit in a simple, reliable, low-cost manner, and supports movement in one or more directions, and can flexibly change an open circuit.
  • the installation location of the device is suitable for applications that are quickly replaced in the field.
  • an embodiment of the present invention provides a power distribution connection device, wherein the device includes:
  • the busbar includes a first frame and a second frame, and one end of the first frame is in contact with one end of the second frame;
  • the fastener includes a fixing portion and a first connecting portion, and the fixing portion is sleeved on the first frame or the second frame and slides along the first frame or the second frame;
  • the connecting portion has a tooth pin mounting hole, and the first connecting portion and the fixing portion are on one side of the first frame or the second frame Connection
  • tooth pin one end of the tooth pin is inserted into the tooth pin mounting hole, the depth of the plug is adjustable; the side wall of the tooth pin and the first frame or the second frame The sidewalls are in contact with each other to form an electrical connection between the busbar and the toothed pin; the other end of the toothed pin is connected to an external circuit breaker for passing through the power distribution connection device
  • the circuit breaker is connected in series to an external circuit.
  • the device further includes a secondary bus, the secondary bus includes a third frame, and one end of the third frame is The opposite end of the one end of the first frame is connected to the opposite end of the one end of the second frame.
  • the device further includes a splicing component, where the splicing component includes two contact ends and a second connecting portion.
  • the two contact ends are located at opposite ends of the second connecting portion, and one end of the third frame is opposite to the one end of the first frame or the second frame
  • One end of the third frame is respectively connected to two sides of the second connecting portion for forming an electrical connection between the bus bar and the second bus bar through the second connecting portion, and the a connection point between the first frame and the third frame or the second frame and the third frame is respectively located between the two contact ends, and the bus bar and the second time are The connection between the busbars is fixed.
  • the number of the busbars is at least two, and the busbars are connected by the splicing component .
  • the second connecting portion is made of a conductive material.
  • the secondary busbar is made of a conductive material.
  • the fastener has a buckle at both ends thereof, Firmware and A fixed connection between the busbar or the secondary busbar.
  • the busbar is made of a conductive material.
  • the fastener is specifically a loose fastener.
  • the power distribution connection device since the tooth pins can slide in different directions, and the length of the tooth pins can be changed, the power distribution connection device can flexibly change the installation position of the circuit breaker, and is suitable for rapid field replacement. application. DRAWINGS
  • Embodiment 1 is a power distribution connection device according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic diagram of a tooth pin in a power distribution connection device according to Embodiment 1 of the present invention
  • FIG. 3 is a schematic view showing the assembly of a fastener, a bus bar and a tooth pin in a power distribution connection device according to Embodiment 1 of the present invention; ;
  • FIG. 5 is a schematic diagram of application of a power distribution connection device in a communication system according to an embodiment of the present invention. Further details of the technical solution of the embodiment of the present invention will be further described below with reference to the accompanying drawings and embodiments. detailed description
  • FIG. 1 is a schematic diagram of a power distribution connection device according to an embodiment of the present invention. Where a is the main view and b is the left view. As shown, the power distribution connection includes: a busbar 1, a fastener 2, and a toothed pin 3.
  • the busbar 1 is made of copper, aluminum or other conductive material, and specifically includes a first frame 11 and a second frame
  • first frame 11 is in contact with one end of the second frame 12 to make the first frame 11 and the second frame
  • the body 12 is integrally connected at a certain angle.
  • first frame 11 and the second frame 12 are perpendicularly connected.
  • the first frame body 11 has a first hollow portion 13 in the middle
  • the second frame body 12 has a second hollow portion 14 in the middle.
  • the first hollow portion 13 and the second hollow portion 14 may be elongated strip holes as shown in the drawing, and may also be a plurality of circular holes of any spacing, or other shapes of holes;
  • the fastener 2 includes a fixing portion 21 and a first connecting portion 22; the fixing portion 21 is sleeved on the outside of the first frame 1 1 or the second frame 12 and slides along the first frame 11 or the second frame 12 Therefore, the fastener 2 is driven to slide along the first frame 11 or the second frame 12; the first connecting portion 22 is connected to the fixing portion 21 on one side of the first frame 11 or the second frame 12. And the first connecting portion 22 passes through the first hollow portion 13 or the second hollow portion 14 and extends to the other side of the first frame 11 or the second frame 12; the first connecting portion 22 has teeth Needle mounting hole 23;
  • the tooth pin 3, one end of the tooth pin 3 is inserted into the tooth pin mounting hole 23, and the insertion depth inserted into the tooth pin mounting hole 23 is adjustable, the side wall of the tooth pin 3 and the first frame 11 or the second frame
  • the side walls of the body 12 are in contact to form an electrical connection between the busbar 1 and the toothed pin 3.
  • the toothed needle 3 can be made of copper, aluminum or other electrically conductive material.
  • the tooth pin may be a "Y" type as shown in FIG. 2, or may be an "L” type or the like, so that one end is inserted into the tooth pin mounting hole 23 and the insertion depth can be flexibly changed.
  • the other end is connected to an external circuit breaker for connecting the circuit breaker to an external circuit through the power distribution connection device.
  • the fasteners 2 also have snaps 24 at both ends for a fixed connection between the fasteners 2 and the busbar 1 prior to loading of the needles.
  • the fastener 2 is a loose fastener
  • the fixing portion 21 is a nut
  • the first connecting portion 22 is a bolt having a pin mounting hole 23.
  • the assembly of the fastener 2, the busbar 1 and the toothed pin 3 is as shown in FIG.
  • the buckle 24 is fastened to the busbar 1 to fix the busbar 1 to the fixture 2.
  • the tooth needle 3 is inserted, as shown in Fig. 3b, the buckle 24 needs to be opened, and the tooth needle 3 is inserted.
  • the distance between the tooth pin mounting hole 23 to the first frame 11 or the second frame 12 can be changed, so that one side wall of the tooth pin 3 and the first frame 11 or the first The side walls of the two frames 12 are connected Touching, an electrical connection between the busbar 1 and the toothed pin 3 is formed, and the toothed pin 3 inserted into the toothed pin mounting hole 23 is pressed against the fixed fixed end 21 of the busbar 1 and the fixing member 2.
  • the first frame 11 and the second frame 12 of the busbar 1 can respectively engage a plurality of fasteners 2 and the tooth pins 3, thereby connecting a plurality of circuit breakers.
  • the positional adjustment of the circuit breaker in the Y direction can be achieved by changing the depth of the toothed pin 3 that is in contact with the circuit breaker in the toothed pin mounting hole 23 of the fastener 2; the first frame 11 is fastened by the fastener 2
  • the sliding can change the position of the circuit breaker in the X direction; by sliding the fastener 2 on the second frame 12, the position of the circuit breaker in the z direction can be changed.
  • the X direction is the horizontal direction
  • the Y direction is the vertical direction
  • the z direction is the front and rear direction.
  • the power distribution connection device provided by the embodiment of the invention can realize flexible connection between the circuit breaker of any specification and the circuit in a simple, reliable and low-cost manner, and supports movement in one or more directions, and can flexibly change the circuit breaker. Installation location, suitable for quick replacement in the field.
  • the present invention further provides a power distribution connecting device, as shown in FIG. 4, comprising: a busbar 1, a fastener 2, a tooth pin 3, a second bus bar 4, and a splice member 5. .
  • busbar 1, the fastener 2, and the toothed pin 3 are all described in the above embodiments, and are not described herein.
  • the secondary busbar 4 is made of copper, aluminum or other electrically conductive material, and includes a third frame 41 having a third hollow portion 42 in the middle thereof. One end of the third frame 41 is connected to the opposite end of the one end of the first frame 11 or to the opposite end of the one end of the second frame 12.
  • the splice member 5 includes two contact ends 51 and a second connecting portion 52, and the two contact ends 51 are connected by a second connecting portion 52.
  • the second connecting portion 52 is made of a conductive material, specifically copper, aluminum or other conductive material.
  • the surface of the splicing member is covered with an electrically conductive powder or an electrically conductive metal particle.
  • the two contact ends 51 may also be made of the same electrically conductive material or may be made of other materials.
  • the splicing member 5 can connect the secondary busbar 4 with the busbar 1.
  • One end of each of the four connecting portions 41 is connected to the two sides of the second connecting portion 52 for forming an electrical connection between the bus bar 1 and the second bus bar 4 through the second connecting portion 52; and the first frame 11 and the third frame
  • the body 41 or the connection points of the second frame 12 and the third frame 41 are respectively located between the two contact ends 51, so that the connection between the bus bar 1 and the secondary bus bar 4 is fixed by the splicing member 4.
  • the number of busbars 1 is at least two, and the busbars 1 are connected by a splicing member 5.
  • the first frame 11 of the busbar 1 can respectively engage a plurality of fasteners 2 and the tooth pins 3, and the third frame body 41 of the second bus bar 4 and the first frame
  • the two frames 12 can respectively engage the plurality of fasteners 2 and the tooth pins 3 to connect the plurality of circuit breakers.
  • the positional adjustment of the circuit breaker in the Y direction can be achieved by changing the depth of the toothed pin 3 that is in contact with the circuit breaker in the toothed pin mounting hole 23 of the fastener 2; And the sliding on the third frame 41 can change the position of the circuit breaker in the X direction; by sliding the fastener 2 on the second frame 12, the position of the circuit breaker in the Z direction can be changed.
  • the X direction is the horizontal direction
  • the Y direction is the vertical direction
  • the Z direction is the front and rear direction. See the figure in the figure for details.
  • the power distribution connection device provided by the embodiment of the invention can realize flexible connection between the circuit breaker of any specification and the circuit in a simple, reliable and low-cost manner, and supports movement in one or more directions, and can flexibly change the circuit breaker. Installation location, suitable for quick replacement in the field.
  • the splicing member 5 provided in the above embodiment may be used to connect at least two busbars 1 to each other, or to connect the plurality of secondary busbars 4 to each other, wherein the splicing members 5 may be connected to each other to adapt to different Applications.
  • the shape of the busbar 1 and the secondary busbar 4 is not limited to the shape given in the above embodiment of the present invention, and the shape characteristics thereof may be changed according to actual needs.
  • only the application of the splicing member 5 for horizontally connecting the busbar 1 and the secondary busbar 4 is given. In other specific applications, the structure of the splicing member 5 may be slightly changed to achieve other angle connections or Multi-end connected applications.
  • the power distribution connection device provided by the embodiment of the present invention can be applied to a communication system.
  • it can be as shown in Figure 5.
  • One end of the power distribution connection device 51 is connected to the -48V busbar of the power supply system 52 of the communication system, and the other end of the toothed pin 3 is inserted into the crimping frame (not shown) of the circuit breaker 53.
  • the circuit breaker 53 is connected to the communication device 54, whereby in the power supply system, a plurality of communication devices 54 and circuit breakers 53 are connected to the power supply system 52 via the power distribution connection device 51.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
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Abstract

本发明实施例涉及一种配电连接装置,包括:母排,包括第一框体和第二框体,所述第一框体的一端与所述第二框体的一端相接;紧固件,包括固定部和第一连接部,所述固定部套接于所述第一框体或第二框体外,沿所述第一框体或第二框体滑动;所述第一连接部上具有齿针安装孔,所述第一连接部与所述固定部在所述第一框体或第二框体的一侧相连接;齿针,所述齿针的一端插接在所述齿针安装孔内,所述插接的深度可调;所述齿针的侧壁与所述第一框体或所述第二框体的侧壁相接触,用以形成所述母排与所述齿针之间的电连接;所述齿针的另一端与外部的断路器相接,用以通过所述配电连接装置将所述断路器串接到外部电路。

Description

配电连接装置 技术领域
本发明涉及通信技术领域, 尤其涉及一种配电连接装置。 背景技术
通信系统中交、 直流配电往往比较复杂, 很多时候需要用到断路器。 断 路器通常是通过与母排连接, 将断路器串接到电路中。 其中母排就是指供电 系统中,电拒中总制开关与各分路电路中的开关的连接铜排或铝排, 表面有做 绝缘处理, 主要是做导线用。
目前断路器与母排之间连接多釆用固定成型铜排连接, 但是, 固定成型 的铜排连接对于不同厂家、 不同尺寸的断路器安装无法兼容, 并且也无法支 持应用现场快速更换不同厂家或不同尺寸的断路器。 发明内容
本发明实施例提供了一种配电连接装置, 能够简单、 可靠、 低成本的实 现任意规格断路器与电路之间的柔性连接, 并且支持在一个或多个方向上的 移动, 能够灵活改变断路器的安装位置, 适于现场快速更换的应用。
在第一方面, 本发明实施例提供了一种配电连接装置, 其特征在于, 所 述装置包括:
母排, 包括第一框体和第二框体, 所述第一框体的一端与所述第二框体 的一端相接;
紧固件, 包括固定部和第一连接部, 所述固定部套接于所述第一框体或 第二框体外, 沿所述第一框体或第二框体滑动; 所述第一连接部上具有齿针 安装孔, 所述第一连接部与所述固定部在所述第一框体或第二框体的一侧相 连接;
齿针, 所述齿针的一端插接在所述齿针安装孔内, 所述插接的深度可调; 所述齿针的侧壁与所述第一框体或所述第二框体的侧壁相接触, 用以形成所 述母排与所述齿针之间的电连接; 所述齿针的另一端与外部的断路器相接, 用以通过所述配电连接装置将所述断路器串接到外部电路。
结合第一方面, 在第一方面的第一种可能的实现方式中, 所述装置还包 括次母排, 所述次母排包括第三框体, 所述第三框体的一端与所述第一框体 的所述一端的对端或者与所述第二框体的所述一端的对端连接。
结合第一方面的第一种可能的实现方式, 在第一方面的第二种可能的实 现方式中, 所述装置还包括拼接件, 所述拼接件包括两个接触端和第二连接 部, 所述两个接触端位于所述第二连接部的相对应的两端, 所述第三框体的 一端与所述第一框体的所述一端的对端或者与所述第二框体的所述一端的对 端连接具体包括: 所述第一框体的另一端和所述第三框体的所述一端的对端、 或者所述第二框体的所述一端的对端与所述第三框体的一端分别 4氏接于所述 第二连接部的两侧, 用以通过所述第二连接部形成所述母排与次母排之间的 电连接, 并且所述第一框体和第三框体、 或者所述第二框体和第三框体的连 接点分别位于所述两个接触端之间, 通过所述拼接件对所述母排与所述次母 排之间的连接加以固定。
结合第一方面的第二种可能的实现方式, 在第一方面的第三种可能的实 现方式中, 所述母排的数量为至少两个, 所述母排之间通过所述拼接件连接。
结合第一方面的第二种、 第三种可能的实现方式, 在第一方面的第四种 可能的实现方式中, 所述第二连接部为导电材料制成。
结合第一方面的第一种至第四种任一可能的实现方式, 在第一方面的第 五种可能的实现方式中, 所述次母排为导电材料制成。
结合第一方面至第一方面第五种任一可能的实现方式, 在第一方面的第 六种可能的实现方式中, 所述紧固件的两端还具有卡扣, 用于所述紧固件与 所述母排或所述次母排之间的固定连接。
结合第一方面或第一方面的第一种、 第二种、 第三种、 第四种、 第五种、 第六种可能的实现方式, 在第一方面的第七种可能的实现方式中, 所述母排 为导电材料制成。
结合第一方面或第一方面的第一种、 第二种、 第三种、 第四种、 第五种、 第六种、 第七种可能的实现方式, 在第一方面的第八种可能的实现方式中, 所述紧固件具体为松不脱紧固件。
本发明实施例提供的配电连接装置, 由于齿针可以在不同方向上滑动, 并且齿针的长短可以变化, 使得该配电连接装置能够灵活改变断路器的安装 位置, 适于现场快速更换的应用。 附图说明
图 1为本发明实施例一提供的一种配电连接装置;
图 2为本发明实施例一提供的配电连接装置中的一种齿针的示意图; 图 3为本发明实施例一提供的配电连接装置中紧固件、 母排及齿针的装 配示意图;
图 4为本发明实施例二提供的一种配电连接装置;
图 5为本发明实施例提供的配电连接装置在通信系统中的应用示意图。 下面通过附图和实施例, 对本发明实施例的技术方案 #支进一步的详细描 述。 具体实施方式
图 1 为本发明实施例提供的一种配电连接装置。 其中 a 图为主视图, b 图为左视图。 如图所示, 配电连接装置包括: 母排 1、 紧固件 2和齿针 3。
母排 1为铜、 铝或其他导电材料制成, 具体包括第一框体 11和第二框体
12。 第一框体 11的一端与第二框体 12的一端相接, 使第一框体 11与第二框 体 12呈一定角度一体连接, 在本发明的一个具体的例子中, 第一框体 11与 第二框体 12为垂直相接。 第一框体 11中间具有第一镂空部 1 3, 第二框体 12 中间具有第二镂空部 14。 第一镂空部 1 3和第二镂空部 14可以是如图中所示 的长条形状的孔, 还可以是任意间距的多个圓形孔, 或其他形状的孔;
紧固件 2, 包括固定部 21和第一连接部 22 ; 固定部 21套接于 11第一框 体 1 1或第二框体 12外, 沿第一框体 11或第二框体 12滑动, 从而带动紧固 件 2—起沿着第一框体 11或第二框体 12滑动; 第一连接部 22与固定部 21 在第一框体 11或第二框体 12的一侧相连接, 并且第一连接部 22由第一镂空 部 1 3或第二镂空部 14中穿过, 延伸至第一框体 11或第二框体 12的另一侧; 第一连接部 22上具有齿针安装孔 23;
齿针 3, 齿针 3的一端插接在齿针安装孔 23内, 并且插入齿针安装孔 23 内的插接深度可调, 齿针 3的侧壁与第一框体 11或第二框体 12的侧壁相接 触, 用以形成母排 1与齿针 3之间的电连接。 齿针 3具体可以由铜、 铝或其 他导电材料制成。 具体的, 齿针可以为如图 2所示的 "Y" 型, 还可以为 "L" 型等类似形状, 以便一端插入齿针安装孔 23内并可灵活改变插接深度, 齿针 3的另一端与外部的断路器相接,用以通过所述配电连接装置将所述断路器串 接到外部电路。
在本发明的一个实施例中, 紧固件 2的两端还具有卡扣 24, 用于在齿针 装入前, 紧固件 2与母排 1之间的固定连接。
在本发明的另一个实施例中, 紧固件 2为松不脱紧固件, 其固定部 21具 体为螺母, 第一连接部 22为带有齿针安装孔 23的螺栓。
紧固件 2、 母排 1及齿针 3的装配如图 3所示。 首先, 如图 3a,在齿针 3 插入紧固件 2之前, 卡扣 24扣合在母排 1上, 将母排 1固定在固定件 2上。 在插入齿针 3时, 如图 3b所示, 需要打开卡扣 24, 再插入齿针 3。 通过旋转 固定端 21 (螺母 )可以改变齿针安装孔 23到第一框体 11或第二框体 12之间 的距离, 从而使齿针 3的一侧侧壁与第一框体 11或第二框体 12的侧壁相接 触, 形成母排 1与齿针 3之间的电连接, 并将插入齿针安装孔 23内的齿针 3 与母排 1和固定件 2的旋转固定端 21—并压紧。
当齿针 3的另一端与外部的断路器(图中未示出)相接时, 就可以实现 通过本实施例的配电连接装置将断路器串接到相应的外部电路中。
在本发明实施例一提供的配电连接装置中,母排 1的第一框体 11和第二 框体 12可以分别卡接多个紧固件 2及齿针 3, 从而连接多个断路器。 通过改 变与断路器相接的齿针 3在紧固件 2的齿针安装孔 23内的深度, 可以实现断 路器在 Y方向上的位置调整; 通过紧固件 2在第一框体 11上的滑动, 可以改 变断路器在 X方向上的位置; 通过紧固件 2在第二框体 12上的滑动, 可以改 变断路器在 z方向上的位置。 其中 X方向为水平方向, Y方向为竖直方向, z 方向为前后方向, 具体参见图中标示所示。
本发明实施例提供的配电连接装置, 能够简单、 可靠、 低成本的实现任 意规格断路器与电路之间的柔性连接, 并且支持在一个或多个方向上的移动, 能够灵活改变断路器的安装位置, 适于现场快速更换的应用。
在上述实施例 1 的基础上, 本发明还提供了一种配电连接装置, 如图 4 所示, 包括: 母排 1、 紧固件 2、 齿针 3、 次母排 4和拼接件 5。
其中, 母排 1、 紧固件 2、 齿针 3均如上述实施例中的描述, 此处不再赘 述。
次母排 4为铜、 铝或其他导电材料制成, 包括第三框体 41, 所述第三框 体 41中间具有第三镂空部 42。第三框体的 41一端与第一框体 11的所述一端 的对端或者与第二框体 12的所述一端的对端连接。
拼接件 5包括两个接触端 51和第二连接部 52, 两个接触端 51通过第二 连接部 52相连。 其中, 第二连接部 52导电材料制成, 具体可以是铜、 铝或 者其他导电材料, 在本发明的一个实施例中, 拼接件表面覆盖有可导电的粉 末或者可导电的金属颗粒。 两个接触端 51也可以是由同样的导电材料, 或者 还可以是由其他材料制成。 拼接件 5可以将次母排 4与母排 1进行连接。
具体的,母排 1的第一框体 11的一端和次母排 4的第三框体 41的一端、 或者母排 1的第二框体 12的一端与次母排 4的第三框体 41的一端分别 4氐接 于第二连接部 52的两侧, 用以通过第二连接部 52形成母排 1与次母排 4之 间的电连接; 并且第一框体 11和第三框体 41、 或者第二框体 12和第三框体 41连接点分别位于两个接触端 51之间,从而通过拼接件 4固定母排 1与次母 排 4之间的连接。
在本发明的一个实施例中, 母排 1 的数量为至少两个, 母排 1之间通过 拼接件 5连接。
当齿针 3的另一端与外部的断路器(图中未示出)相接时, 就可以实现 通过本实施例的配电连接装置将断路器串接到外部电路。
在本发明实施例二提供的配电连接装置中,母排 1的第一框体 11可以分 别卡接多个紧固件 2及齿针 3,次母排 4的第三框体 41和第二框体 12可以分 别卡接多个紧固件 2及齿针 3, 从而连接多个断路器。 通过改变与断路器相接 的齿针 3在紧固件 2的齿针安装孔 23内的深度, 可以实现断路器在 Y方向上 的位置调整; 通过紧固件 2在第一框体 1 1及第三框体 41上的滑动, 可以改 变断路器在 X方向上的位置; 通过紧固件 2在第二框体 12上的滑动, 可以改 变断路器在 Z方向上的位置。 其中 X方向为水平方向, Y方向为竖直方向, Z 方向为前后方向, 具体参见图中标示所示。
本发明实施例提供的配电连接装置, 能够简单、 可靠、 低成本的实现任 意规格断路器与电路之间的柔性连接, 并且支持在一个或多个方向上的移动, 能够灵活改变断路器的安装位置, 适于现场快速更换的应用。
应用上述实施例中提供的拼接件 5, 还可将至少两个母排 1之间互相连 接, 或者将多个次母排 4之间互相连接, 其中可以通过拼接件 5进行连接, 以适应不同的应用。 母排 1与次母排 4的形状并不限于本发明上述实施例中 给出的形状, 还可以根据实际需要设计改变其外形特征。 此外, 在上述实施例中仅给出拼接件 5用于水平连接母排 1和次母排 4 的应用, 在其他具体的应用中, 还可以稍稍改变拼接件 5 的结构, 实现其他 角度连接或者多端连接的应用。
本发明实施例提供的配电连接装置可以应用于通信系统中。 在一个具体 的例子中, 可以如图 5所示。 配电连接装置 51的一端连接通信系统的供电系 统 52的 -48V母排, 另一端的齿针 3插入断路器 53的压线框(图中未示出 ) 内。 断路器 53连接通信设备 54, 由此实现在供电系统中, 多个通信设备 54 和断路器 53通过配电连接装置 51接入到供电系统 52中。
以上所述的具体实施方式, 对本发明的目的、 技术方案和有益效果进行 了进一步详细说明, 所应理解的是, 以上所述仅为本发明的具体实施方式而 已, 并不用于限定本发明的保护范围, 凡在本发明的精神和原则之内, 所做 的任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围之内。

Claims

权 利 要 求 书
1、 一种配电连接装置, 其特征在于, 所述装置包括:
母排, 包括第一框体和第二框体, 所述第一框体的一端与所述第二框体 的一端相接;
紧固件, 包括固定部和第一连接部, 所述固定部套接于所述第一框体或 第二框体外, 沿所述第一框体或第二框体滑动; 所述第一连接部上具有齿针 安装孔, 所述第一连接部与所述固定部在所述第一框体或第二框体的一侧相 连接;
齿针, 所述齿针的一端插接在所述齿针安装孔内, 所述插接的深度可调; 所述齿针的侧壁与所述第一框体或所述第二框体的侧壁相接触, 用以形成所 述母排与所述齿针之间的电连接; 所述齿针的另一端与外部的断路器相接, 用以通过所述配电连接装置将所述断路器串接到外部电路。
2、 根据权利要求 1所述的装置, 其特征在于, 所述装置还包括次母排, 所述次母排包括第三框体, 所述第三框体的一端与所述第一框体的所述一端 的对端或者与所述第二框体的所述一端的对端连接。
3、 根据权利要求 2所述的装置, 其特征在于, 所述装置还包括拼接件, 所述拼接件包括两个接触端和第二连接部, 所述两个接触端位于所述第二连 接部的相对应的两端, 所述第三框体的一端与所述第一框体的所述一端的对 端或者与所述第二框体的所述一端的对端连接具体包括: 所述第一框体的另 一端和所述第三框体的所述一端的对端、 或者所述第二框体的所述一端的对 端与所述第三框体的一端分别抵接于所述第二连接部的两侧, 用以通过所述 第二连接部形成所述母排与次母排之间的电连接, 并且所述第一框体和第三 框体、 或者所述第二框体和第三框体的连接点分别位于所述两个接触端之间, 通过所述拼接件对所述母排与所述次母排之间的连接加以固定。
4、 根据权利要求 3所述的装置, 其特征在于, 所述母排的数量为至少两 个, 所述母排之间通过所述拼接件连接。
5、 根据权利要求 3或 4所述的装置, 其特征在于, 所述第二连接部由导 电材料制成。
6、 根据权利要求 2至 5所述的装置, 其特征在于, 所述次母排由导电材 料制成。
7、 根据权利要求 1至 6所述的装置, 其特征在于, 所述紧固件的两端还 具有卡扣, 用于所述紧固件与所述母排或所述次母排之间的固定连接。
8、 根据权利要求 1至 7所述的装置, 其特征在于, 所述母排为导电材料 制成。
9、 根据权利要求 1至 8所述的装置, 其特征在于, 所述紧固件具体为松 不脱紧固件。
PCT/CN2014/083301 2014-02-14 2014-07-30 配电连接装置 WO2015120697A1 (zh)

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