CN202564613U - battery connector - Google Patents

battery connector Download PDF

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Publication number
CN202564613U
CN202564613U CN2012201223696U CN201220122369U CN202564613U CN 202564613 U CN202564613 U CN 202564613U CN 2012201223696 U CN2012201223696 U CN 2012201223696U CN 201220122369 U CN201220122369 U CN 201220122369U CN 202564613 U CN202564613 U CN 202564613U
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probe
battery connector
housing
conductive
groove
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Chinese (zh)
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郭铭宗
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Abstract

一种电池连接器,包括一壳体,于该壳体内具有复数穿槽,该些穿槽贯穿壳体之的两端面,于各该穿槽内分别设有一弹性元件及一探针组件,其中该探针组件具有一片体,该片体一端具有一探针,其探针的尾端具有一抵掣端,用以抵掣该弹性元件,再于该穿槽内又设有一导电片,该导电片设于穿槽内且与该探针组件之片体的空间位置相重叠,并保持一适当间隔而不接触,又于该导电片上具有一向下弯折的导电端,该导电端用以与该片体相贴抵以完成与装置或设备端的导通状态。

Figure 201220122369

A battery connector includes a shell having a plurality of through slots therein, the through slots passing through both end surfaces of the shell, an elastic element and a probe assembly being respectively arranged in each of the through slots, wherein the probe assembly has a sheet body, one end of the sheet body having a probe, the tail end of the probe having a stop end for stopping the elastic element, and a conductive sheet being arranged in the through slot, the conductive sheet being arranged in the through slot and overlapping with the spatial position of the sheet body of the probe assembly, and maintaining an appropriate interval without contact, and a conductive end bent downwardly on the conductive sheet, the conductive end being used to abut against the sheet body to complete the conductive state with the device or equipment end.

Figure 201220122369

Description

电池连接器battery connector

技术领域 technical field

 本实用新型有关一种连接器构造,尤指一种用以连接电池的探针式电池连接器。 The utility model relates to a connector structure, especially a probe-type battery connector for connecting batteries.

背景技术 Background technique

电池连接器常见于目前的便携装置上,如移动电话,经由电池连接器与电池的电性导通,以提供便携装置必要的电源。 The battery connector is commonly found on current portable devices, such as mobile phones, and is electrically connected to the battery through the battery connector to provide the necessary power for the portable device.

常见的电池连接器多数是利用一种活动式探针来与电池进行压接导通,包括台湾地区公开第201117483号专利申请案所揭露的一种电池连接器就是此种类型;如图1所示,为该项现有技术的结构剖面示意参考图,其提供的解决方案是在铸膜成型后的绝缘性壳体6内具有用以安装探针60及螺旋弹簧61用的缸孔62,并于该缸孔62内的螺旋弹簧61朝着突出方向弹推的状态将探针60组装,而其后端部的突缘部63抵接在壳体6前面的缸孔62开口部内侧防止脱落,最后在壳体上6具有和突出于缸孔62内,且经常性压接在上述探针60的接触弹簧片64与连接端子部65形成一体地接触固定。 Most common battery connectors use a movable probe to conduct crimping with the battery, including a battery connector disclosed in Taiwan Patent Application No. 201117483; as shown in Figure 1 It is a schematic reference diagram of the structural section of this prior art, and the solution provided is to have a cylinder hole 62 for installing the probe 60 and the coil spring 61 in the insulating housing 6 formed by casting film, And assemble the probe 60 in the state where the coil spring 61 in the cylinder hole 62 bounces toward the protruding direction, and the flange portion 63 at the rear end abuts against the inner side of the opening of the cylinder hole 62 at the front of the housing 6 to prevent Finally, the housing 6 has and protrudes into the cylinder hole 62, and the contact spring piece 64 and the connection terminal part 65 are integrally contacted and fixed in constant crimping contact with the probe 60.

此种电池连接器的结构可解决以往加工成本较高的问题,在结构上也较容易获得低背化,且因为探针60与后段的连接端子部65经常性的接触,使不易产生瞬时中断电力导通等缺点,因此,该项现有技术的缺陷包括: The structure of this kind of battery connector can solve the problem of high processing cost in the past, and it is also easier to obtain a lower profile in structure, and because the probe 60 is in regular contact with the connecting terminal part 65 of the rear stage, it is difficult to produce instantaneous Disadvantages such as interruption of power conduction, therefore, the defects of this prior art include:

一、该螺旋弹簧61与连接端子部65相互接触形成导通回路,由于螺旋弹簧具一定的阻抗,易形成温升效应,且造成电池供电的负担而消耗电力,终将对所连接的装置或设备造成不良影响。 1. The helical spring 61 and the connecting terminal part 65 are in contact with each other to form a conduction loop. Since the helical spring has a certain impedance, it is easy to form a temperature rise effect, and cause the burden of the battery power supply and consume power, which will eventually affect the connected device or equipment adversely affected.

    二、这种内部维持常态导通的连接器设计,与对应的装置或设备连结后随即与该装置或设备的电路连通而没有保护作用;假设提供的电池规格与该装置或设备所需不符、却仍然被强迫载入电池的安装处,如果该电池供电的容量过高,恐将直接造成该装置或设备内部机组或电路的损害,是该种电池连接器设计未臻完善之处。 2. This kind of connector design that maintains normal conduction internally is connected to the corresponding device or equipment and then connected to the circuit of the device or equipment without protection; assuming that the battery specification provided does not match the requirements of the device or equipment, However, it is still forced to be loaded into the installation place of the battery. If the capacity of the battery power supply is too high, it may directly cause damage to the internal unit or circuit of the device or equipment, which is the imperfection of the design of this kind of battery connector.

发明内容 Contents of the invention

针对上述缺陷,本实用新型的主要目的在于提供一种电池连接器,将探针与导电片设计成为常开式状态,使该探针受电池压迫后才与导电片导通,以提升其连接的装置或设备的安全性。 In view of the above defects, the main purpose of this utility model is to provide a battery connector, the probe and the conductive sheet are designed to be in a normally open state, so that the probe is connected to the conductive sheet after being pressed by the battery, so as to improve its connection. device or equipment safety.

为达成上述目的,本实用新型的技术方案是这样实现的: For reaching above-mentioned purpose, the technical scheme of the present utility model is realized like this:

一种电池连接器,包括: A battery connector comprising:

一壳体,该壳体内具有复数贯穿两端面的穿槽; A casing, the casing has a plurality of slots penetrating through both ends;

复数弹性元件,容设于该些穿槽内; A plurality of elastic elements are accommodated in the through grooves;

复数探针组件,该探针组件具有一片体及一探针,该片体容设于该穿槽内,该探针具有一抵掣端,用以抵掣该弹性元件的一端; A plurality of probe assemblies, the probe assembly has a piece and a probe, the piece is accommodated in the through groove, the probe has a resisting end for resisting one end of the elastic element;

复数导电片,容设于该穿槽内,常态下位于该探针组件的片体的上方并保持一适当间隔不相互接触,于该导电片上具有一向下弯折的导电端,该导电端用以与该片体相贴抵以完成导通状态。 A plurality of conductive sheets are accommodated in the slot, normally located above the sheet body of the probe assembly and kept at an appropriate interval without contacting each other. There is a downwardly bent conductive end on the conductive sheet, and the conductive end is used for To complete the conduction state by adhering to the chip body.

较佳地,该导电片的一端具有一连接端子并外露于该壳体外。 Preferably, one end of the conductive sheet has a connection terminal and is exposed outside the housing.

较佳地,该壳体更连接一隔板,其为一种绝缘物质,抵掣该弹性元件的它端。 Preferably, the casing is further connected with a partition, which is an insulating material, and resists the other end of the elastic element.

较佳地,该隔板上具有复数沟槽用以容设该些连接端子。 Preferably, the separator has a plurality of grooves for accommodating the connecting terminals.

较佳地,该探针概呈U形。 Preferably, the probe is roughly U-shaped.

较佳地,该壳体两侧具有至少一焊片。 Preferably, the housing has at least one solder piece on both sides.

较佳地,该导电片的两侧具有至少一凸刺。 Preferably, both sides of the conductive sheet have at least one protrusion.

较佳地,该片体上具有一开槽提供该探针的抵掣端相抵。 Preferably, the sheet has a slot for the resisting end of the probe to abut against.

附图说明 Description of drawings

图1为现有技术中、台湾地区公开的第201117483号专利的主要结构图。 FIG. 1 is a main structural diagram of the patent No. 201117483 disclosed in Taiwan in the prior art.

图2为本实用新型的结构分解上视参考图。 Fig. 2 is a structural exploded upper view reference diagram of the utility model.

第3图为本实用新型的结构分解下视参考图。 Fig. 3 is a structural decomposition bottom view reference diagram of the present utility model.

第4图为本实用新型的组合完成图(一)。 Fig. 4 is the combination completion figure (1) of the present utility model.

第5图为本实用新型的组合完成图(二)。 Fig. 5 is the combination completion figure (two) of the present utility model.

第6图为本实用新型饿操作示意图(一)。 Fig. 6 is a schematic diagram of the hungry operation of the utility model (1).

第7图为本实用新型饿操作示意图(二)。 Fig. 7 is a schematic diagram of the operation of the utility model (two).

【主要元件符号说明】 [Description of main component symbols]

壳体1 Shell 1

焊片11                穿槽12 Welding lug 11 Grooving 12

弹性元件2              Elastic element 2

探针组件3              Probe assembly 3

片体31                开槽311 Body 31 Slotted 311

探针32                抵掣端321 Probe 32 Resisting end 321

导电片4 Conductive sheet 4

凸刺41                导电端42 Spike 41 Conductive terminal 42

连接端子43 Connection terminal 43

隔板5 Partition 5

沟槽51 Groove 51

电池100 battery 100

具体实施方式 Detailed ways

首请参阅图2及图3,分别为本实用新型的结构分解上视及下视参考图,如图所示,本实用新型的电池连接器包括一壳体1,该壳体1由绝缘材质所构成,如绝缘性合成树脂;壳体1的两侧边分别设有至少一焊片11(如图3所示),该些焊片11用以焊接固定该壳体1于外接的装置上;于壳体1上还包括有复数穿槽12,该些穿槽12贯穿壳体1的两端面,于各该穿槽12内分别设有一弹性元件2,于本实施例中该些弹性元件2为螺旋弹簧;另于该穿槽12内装设有一由导电材质所构成的探针组件3,其中该探针组件3具有一片体31,容设于各穿槽12内且位于该弹性元件2的上方,于该片体31上具有一开槽311,该片体31一端连接有一探针32,其露出于该壳体1的前端面外,该探针32概呈U形,用以抵触一外部电池的导电接点,另,探针32的尾端具有一抵掣端321,该抵掣端321略对应于该开槽311位置,用以抵掣所述的弹性元件2的一端。 First please refer to Figure 2 and Figure 3, which are respectively the structural decomposition top view and bottom view reference diagrams of the utility model, as shown in the figure, the battery connector of the utility model includes a housing 1, the housing 1 is made of insulating material Made of insulating synthetic resin; the two sides of the housing 1 are respectively provided with at least one solder piece 11 (as shown in Figure 3), and these soldering pieces 11 are used to weld and fix the housing 1 on the external device The casing 1 also includes a plurality of through grooves 12, these through grooves 12 run through both ends of the casing 1, and an elastic element 2 is respectively arranged in each of the through grooves 12, in this embodiment, these elastic elements 2 is a coil spring; in addition, a probe assembly 3 made of conductive material is installed in the slot 12, wherein the probe assembly 3 has a piece 31, which is accommodated in each slot 12 and is located on the elastic element 2 Above, there is a slot 311 on the sheet 31, a probe 32 is connected to one end of the sheet 31, which is exposed outside the front end of the housing 1, and the probe 32 is roughly U-shaped for conflicting A conductive contact of an external battery. In addition, the tail end of the probe 32 has a resisting end 321 . The resisting end 321 slightly corresponds to the position of the slot 311 and is used to resist one end of the elastic element 2 .

穿槽12内容设有一导电片4,该导电片4系设于穿槽12内、且位于该探针组件3之片体31的上方,并保持有一适当的间隔,该导电片4之两侧分别延伸至少一凸刺41,用以固定该导电片4于穿槽12内部的相对位置;又于该导电片4上具有一向下弯折之导电端42,该导电端42系用以与该片体31在接触时相贴抵才完成导通状态。导电片4之尾端则向外延伸出一连接端子43,系用以与外部装置或设备电性连接以与其内部的电路导通。最后,该壳体1之后端面系与一隔板5对应连接,其为一种绝缘物质,抵掣弹性元件2的它端,隔板5上系具有复数沟槽51,致使该导电片4之连接端子43自此露于壳体1之外;其组合完成即如第4及第5图所示。 The content of the slot 12 is provided with a conductive sheet 4, the conductive sheet 4 is located in the slot 12, and is located above the sheet body 31 of the probe assembly 3, and maintains an appropriate interval, the two sides of the conductive sheet 4 At least one protruding thorn 41 is respectively extended to fix the relative position of the conductive sheet 4 inside the through groove 12; and a downwardly bent conductive end 42 is provided on the conductive sheet 4, and the conductive end 42 is used for connecting with the conductive sheet 4. The conduction state is completed only when the sheets 31 are in contact with each other. A connecting terminal 43 extends outward from the tail end of the conductive sheet 4 , which is used to electrically connect with external devices or equipment to conduct with the internal circuit. Finally, the rear end of the housing 1 is connected to a partition 5 correspondingly, which is an insulating material that resists the other end of the elastic element 2. The partition 5 has a plurality of grooves 51, so that the conductive sheet 4 The connecting terminal 43 is exposed outside the housing 1 from here; the assembly is completed as shown in Fig. 4 and Fig. 5 .

续请参阅图6及图7,为本实用新型的操作示意的连续图式,如图6所示,本实用新型的电池连接器焊接于一外部装置或设备端饿电路板上,该电池连接器的探针32尚未与电池100接触时,该探针组件3饿片体31与导电片4保持一段距离而未接触的状态;当电池100载入于外部装置或设备端后,其接点接触并压掣该探针32同时带动抵掣端321压缩该弹性元件2,致使探针组件3往穿槽12内部移动,同时该探针组件3的片体31恰移动到导电片4的导电端42位置,致使该导电端42与片体31相连接以形成电性导通,如图7所示,电池100经由该片体31与导电片4所形成的通路,即可将其电力传送至该连接端子43所连接的外部电路上;反之,该电池100若被移除,弹性元件2利用其回复形状的弹力将探针组件3推回原位,使该片体31与导电片4的导电端42脱离并形成开路状态,该电池连接器的探针32便不会因误触外物而直接与装置或设备端的电路导通。 Continue referring to Fig. 6 and Fig. 7, it is the continuation diagram of the operation diagram of the present utility model, as shown in Fig. 6, the battery connector of the present utility model is welded on the circuit board of an external device or equipment end, the battery connection When the probe 32 of the device has not been in contact with the battery 100, the probe assembly 3 and the conductive sheet 4 are kept at a distance without contact; And press the probe 32 and drive the resisting end 321 to compress the elastic element 2 at the same time, so that the probe assembly 3 moves to the inside of the slot 12, and at the same time, the sheet body 31 of the probe assembly 3 just moves to the conductive end of the conductive sheet 4 42 position, so that the conductive terminal 42 is connected to the sheet body 31 to form electrical conduction. As shown in FIG. 7, the battery 100 can transmit its power to the On the external circuit that this connecting terminal 43 is connected; Conversely, if this battery 100 is removed, elastic element 2 utilizes the elastic force of its recovery shape to push probe assembly 3 back to its original position, so that the contact between sheet body 31 and conductive sheet 4 When the conductive end 42 is separated and forms an open circuit state, the probe 32 of the battery connector will not directly conduct with the circuit of the device or equipment end due to accidental contact with foreign objects.

以上所述的实施方式,仅是为本实用新型的较佳实施实例,自当不能用此限定本实用新型的实施范围;举凡若依本实用新型申请专利范围及说明书内容所作的其它等效变化或修饰,应仍为本实用新型的保护范围所含盖。 The above-described implementation mode is only a preferred implementation example of the present utility model, and should not be used to limit the scope of implementation of the present utility model; if any other equivalent changes are made according to the scope of patent application for the utility model and the contents of the description Or modification, should still be included in the scope of protection of the utility model.

Claims (8)

1. battery connector comprises:
One housing has the groove of wearing that plural number runs through both ends of the surface in this housing;
The plural number flexible member is located in those and wears in the groove;
The plural number probe assembly, this probe assembly has a lamellar body and a probe, and this lamellar body is located in this and wears in the groove, and this probe has one and supports the end of pulling, in order to support an end of this flexible member of pulling;
The complex conduction sheet; Being located in this wears in the groove; Be positioned under the normality this probe assembly lamellar body the top and keep an appropriate intervals not to be in contact with one another, on this conducting strip, have the downward conducting end of bending, this conducting end is supported with the completion conducting state in order to paste mutually with this lamellar body.
2. battery connector as claimed in claim 1 is characterized in that, an end of this conducting strip has a splicing ear and exposes to outside this housing.
3. battery connector as claimed in claim 2 is characterized in that this housing more connects a dividing plate, and it is a kind of megohmite insulant, supports its end of this flexible member of pulling.
4. battery connector as claimed in claim 3 is characterized in that, has plural groove on this dividing plate in order to be installed with those splicing ears.
5. battery connector as claimed in claim 1 is characterized in that this probe generally takes the shape of the letter U.
6. battery connector as claimed in claim 1 is characterized in that, these housing both sides have at least one weld tabs.
7. battery connector as claimed in claim 1 is characterized in that, the both sides of this conducting strip have at least one protruding thorn.
8. battery connector as claimed in claim 1 is characterized in that, having a fluting on this lamellar body provides offseting to the end of pulling of this probe.
CN2012201223696U 2012-03-28 2012-03-28 battery connector Expired - Fee Related CN202564613U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012201223696U CN202564613U (en) 2012-03-28 2012-03-28 battery connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
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Publications (1)

Publication Number Publication Date
CN202564613U true CN202564613U (en) 2012-11-28

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104716467A (en) * 2013-12-16 2015-06-17 洪当岳 Connecting terminal
CN106654640A (en) * 2017-01-18 2017-05-10 上海与德信息技术有限公司 Battery connector and mobile terminal

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104716467A (en) * 2013-12-16 2015-06-17 洪当岳 Connecting terminal
CN106654640A (en) * 2017-01-18 2017-05-10 上海与德信息技术有限公司 Battery connector and mobile terminal
CN106654640B (en) * 2017-01-18 2019-05-03 上海与德信息技术有限公司 Battery connector and mobile terminal

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121128

Termination date: 20150328

EXPY Termination of patent right or utility model