CN1101757A - 用于电池组的延伸高度的连接器 - Google Patents
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Abstract
用于电池组(2)的电气连接器(1),包括容纳电池
组单元电池(4)和延伸高度的电池组端子(5、6、7、8)
的绝缘外壳(3),可以通过外壳(3)的端面(19),也可
以通过外壳(3)的侧面(20)接触电池组端子,并且外
壳(3)适于以顶朝下方式与另一个配套的电气连接器
(24)配套连接。
Description
本发明涉及一种用于电池组的电气连接器,更具体地说,本发明涉及用于将可充电电池组连接到电子设备的电路板上的电气连接器,该电子设备依靠电池组提供电压。
电池组用于向用户和业务用途的便携式电子设备供电,例如摄象机、蜂房式电话和计算机。减轻电池组的重量就能如期望的那样减轻设备的重量。例如电池组目前占便携式计算机重量的30%。减小电池组的重量和尺寸会导致更频繁地更换电池组,或者更频繁地对耗尽的电池组进行再充电。
目前正研制新一代更小和更轻的电池组,该电池组在其内部有充电电路。充电电路是由电子控制的,能快速充电,并且当充电完成时能关闭。这种用于电池组的连接器通常包括电池组单元电池、用于单元电池的电气互连部件、电池组端子和容纳该端子的外壳。这种用于可充电电池组的连接器通常具有用于电池组放电的电气连接部件,以及单独的用于在电池组内部的充电电路的电气连接部件。通过与管座上导电端子相连的电池组端子,用于电池组的连接器能连接到安装在电路板上的管座型连接器上,并且还能与管座型连接器断开。理想的是提供一种用于电池组的连接器,既使当该连接器安装在相对于管座高度的不同高度上,它也将适于将电池组端子连接到管座上的导电端子上。用于电池组的连接器的另一个理想特征是,它既能将电池组顶朝下与管座连接,也能将电池组顶朝上与管座连接。
在用于电池组的连接器的一个实施例中,该连接器包括:容纳电池组单元电池的外壳,用于单元电池和电池组端子的电气互连部件,该电池组端子适于与另一个配套的电气连接器端子连接,该连接器的特征在于电池组端子允许沿端子的高度有一个配套连接的范围。既使当连接器安装在相对于管座高度的不同高度上,上述特征也适于将电池组端子与管座上的导电端子连接起来。
在用于电池组的连接器的另一个实施例中,该连接器包括:容纳电池组单元电池的外壳,用于单元电池和电池组端子的电气互连部件,该连接器的特征是适于在外壳取向为顶朝上或者顶朝下的情况下,将电池组端子与另一个配套的电气连接器端子连接起来。
在用于电池组的连接器的另一个实施例中,该连接器包括:容纳电池组单元电池的外壳,用于单元电池和电池组端子的电气互连部件,该连接器的特征是适于通过将电池组端子设置成偏移到连接器中轴线的一侧,提供楔固的组合。当外壳为不正确的顶侧朝下时,或者当配套电气连接器的构造是为了与具有不同的不相容的楔固组合配套连接时,该连接器的上述特征将阻止电池组端子与另一个配套电气连接器的端子连接。
本发明的每个实施例都各自彼此独立地存在于连接器中,该连接器包括电池组端子,容纳这些端子同时还容纳电池组单元电池的外壳,以及用于单元电池和充电控制电路的电气互连部件。
根据本发明,用于电池组的电气连接器包括:以电气串联方式与电池组的多个单元电池连接的多个导电电池组端子,容纳端子和单元电池的外壳,可以通过外壳端面上的凹口相接触的端子的接触表面,接触表面的高度沿上述端面延伸,并且沿上述高度提供了用于与另一个配套电气连接器的导电端子电气连接的多个连接点,凹口的高度沿上述端面延伸,并且沿上述高度提供用于在其中容纳另一个配套电气连接器的导电端子的多个位置。
下面将参照附图举例说明本发明的实施例,附图的图面说明如下:
图1是用于可充电电池组的连接器及另一个配套连接器的透视图。
图2是电池组连接器与另一个配套连接器配套连接时的局部剖视图。
图3是电池组多个单元电池的透视图。
图4示出了电池组单元电池与连接器导电端子的相互连接。
图5是另一个电池组的透视图。
图6是在去掉盖板部分的情况下,电池组部分的局部顶视图。
图7是如图5中所示电池组的局部纵剖视图。
图8是与图7相似的视图,图中示出了图5所示电池组的变型,并且还示出了电池组与另一个配套连接器的配套连接。
图9是如图5中所示电池组与另一个配套连接器配套连接的局部纵剖视图。
图10是如图5中所示电池组的另一种变型的透视图,该电池组具有与其相对侧面连通的开口。
参见图1、3、5、6和10,用于图2和4中电池组2的电气连接器1包括容纳电池组2的多个单元电池4的绝缘外壳3,以及一排4个电池组端子5、6、7和8。在图9所示的连接器中,附加的触头5与4个端子5、6、7和8组合。第一组端子包括电池组2的正极端子5和负极端子8。端子5和8位于5、6、7和8这一排端子的相对两端。第二组端子相应地包括数据端子6和充电端子7。数据端子6用于将电子数据连接到电子充电控制电路上,该电路图中未示出。充电端子7用于连接热敏电阻控制的充电变换器,该充电变换器图中未示出。
参见图1和2,安放一组单元电池4在外壳3之中。每个单元电池4都具有公知的干电池结构。单元电池4能够由图中未示出的热敏电阻控制充电变换器进行再充电。每个单元电池4提供1.5伏电压,并且含有在一端的正极电池端子9和在另一端的负极电池端子10。
下面参见图1和4说明在外壳内部,单元电池4与端子5、6、7和8的相互连接。如图4所示,一组单元电池4在电气上是串联连接的。图4中表示的金属条11使得单元电池4在电气上相互串联连接。金属条11通过例如软焊或焊接接合,以便连接相应的单元电池4。金属条11还采用类似方式将相应的正极和负极连接到两个端子5和8,从而将端子5和8连接到单元电池上,用于电池组放电。
如图4中所示,另一个金属条12将数据端子6连到正极端子5上。另一个金属条13将充电端子7互连到负极端子8上。金属条11还以与单元电池4电气上串联的方式接合和互连一个或多个热敏电阻14。每个热敏电阻14都构成用于对单元电池4再充电的电子控制充电电路的一部分。图中未示出的附加电子电路容纳在外壳3内部的单元电池4之间的空间内。
参见图1、5、7、8和10,外壳3是两件的结构,具有一个基座15和一个盖板16,它们由合适的塑料材料铸模制备。基座15和盖板16通过熔合或粘接剂连接在一起。用金属条制备电池组端子5、6、7和8。每个端子5、6、7、8都从外壳3的内部,经由基座15,朝外壳3的外面延伸。在如图2中所示的外壳3中,每个端子5、6、7、8的一端17都嵌入外壳3的基座15中。通过注模法将端子5、6、7、8嵌入外壳3的基座15中。对于图7和8中所示的外壳,每个端子5、6、7和8的尾端17都嵌入基座15的凹槽中。
参见图2、6、7和8,每个电池组端子5、6、7、8的可接触部分都面向外壳3的端面19,并且也取向为面向外壳3的底侧20。既能通过外壳3的端面19,也能通过外壳3的侧面20接触每个可接触部分18。参见图1、5、8和10,外壳3的端面19与侧面20沿基座15于交线21处相交。在端面19与侧面20的交线21处,外壳3的端面19和侧面20开有凹口,用于接触电池组端子5、6、7、8的可接触部分18。更具体地说,在交线21上有一系列凹口22。电池组端子5、6、7、8的可接触部分18在其相应的凹口22之中,并且从外壳3的外部表面凹进去。交线21在电池组端子5、6、7、8之间形成图1所示的凸棱23,该凸棱23将电池组端子5、6、7、8的可接触部分18彼此分开。电池组端子5、6、7、8的可接触部分18从凸棱23的外部表面凹进去。因此当携带电池组4时,外壳的端面19和侧面20用于防止意外地触及电池组端子5、6、7和8。
参见图1、8和9,外壳3的端面19和侧面20两个面都适于与另一个配套的电气连接器24配套地接合。图1中连接器1和24进一步的详细说明在1993年3月23日申请的序号为08/035817号美国专利申请中公开了。
图1中的凹口接合器25被分成两个部分,位于一排电池组端子5、6、7、8的相对两端。接合器25的两个部分在外壳3端面19上相应凹口26的内部。凹口26具有不同的宽度,并且间隔已知的距离,以便将该外壳3与另一个具有不同凹口间隔或尺寸的不相容的外壳3区分开。
在图5和10的每个附图中都示出了另外的连接器1,其中将凹口22、凸棱23和凹口26设置在连接器1中轴线的一侧。图5中所示连接器1采用这种方式,将电池组端子5、6、7和8设置在连接器1中轴线的一侧。上述特征提供了楔固的组合,当外壳3是不正确地顶朝下放置时,或者当配套的电气连接器24用于配套连接的结构具有不同的不相容的楔固组合时,该特征将阻止电池组端子5、6、7和8与另一个配套电气连接器的端子连接。
参见图1、8和9,配套的电气连接器24包括整体的,即一体的绝缘支座块体27,以及导电触头28,在图1中有两对触头28,在图9中还有一个附加触头28。支座块体27包括:用于安装在电路板(图中未示出)上的底座29,从底座29延伸的侧壁30,以及相对于侧壁30朝外延伸,并且相对于29朝上延伸的凸端挡块31。用固定器(图中未示出)穿过固定器安放孔,将底座29安装到电路板上,其中一个固定器安放孔在图1中用32标出,它们位于底座29延伸越过侧壁30的部分。
每个触头28都由金属条构成,并且包括与悬空端35邻接的基片部分34,悬空端35形成一个用于插接到电路板(图中未示出)上的导电端子。
参见图2,每个触头28都形成从基片部分34延伸的部分36。每个触头28的基片部分34都与支座块体27的底座29紧密接触。每个触头28的部分36都从支座块体27的底座29,朝支座块体27的敞口顶面37和支座块体27的敞口侧面38延伸。通过支座块体27的敞口顶面37和敞口侧面38接触触头28,以便与相应的端子5、6、7、8配套接合。支座块体27具有一个敞口顶面37,以便与具有变化高度的端面19的外壳3配套连接。
端挡块31位于一排触头28的相对两端,并且具有结合部件。在图1中挡块31为钩状,用于与外壳3中凹进去的接合器25接合。端挡块31的尺寸及其之间的间隔适于与外壳3上的接合器25匹配。在图1和9的每个附图中,挡块31都至少稍微高于触头28,用于防止意外碰撞触头28。挡块31具有不同的宽度,用于插入外壳3端面19上的不同宽度的凹口26。挡块31不能与具有不同尺寸和间隔的接合器25接合,例如一个不同的不相容的外壳3。对于不能与配套连接器24接合的电池组连接器1,外壳3允许将挡块31沿凹口26拔出来。为了将电池组连接器1与配套连接器24配套连接,可以采用相反的过程,即沿挡块31插入外壳3,使接合器25与挡块31接合在一起。
当外壳3的端面19与配套连接器24的侧壁30搭接时,以及当外壳3的底侧20盖住并安置在配套连接器24的底座29上时,外壳3与配套连接器24配套地连接。
下面参照图5至10说明连接器1和配套连接器24的其他实施例。图7和8中的配套连接器24与图1中的连接器24相似,其中相同的参考号指示构造中的相似部分。图6和7的配套连接器24制备时在构造上具有以下区别。安装在支座块体27上的导电触头28是金属刀片式的,它具有呈杆状的悬空端35,用于安装到电路板41上。刀片具有朝向支座块体27的敞口顶面37的顶边42,以及朝向支座块体27的敞口侧面38的侧边43。在边42与边43相交的角上,刀片具有斜面边44。挡块31具有不同的宽度,适于配套地容纳在变型的外壳3的不同宽度的凹口26之中,如图5至8中所公开的。
凹口22通过外壳3的端面19与底侧20的交线21延伸,端子5、6、7和8的可接触部分18安置在凹口22之中。图5和6的外壳3中缺了接合器25。
图6、7、8和9公开了端子5、6、7和8的其他结构。端子5、6、7和8中的每个端子都具有整体的结构,由金属坯料冲压成形,具有中心脊条45和从脊条45沿相反方向延伸的凸条46、47。每个端子5、6、7和8都包括一个两面的有弹性的插座48。插座48的每侧49都从脊条45延伸出来。每侧49都有接触表面51,用于与刀片状的导电触头28的一侧接合。插座48的两侧49都向外弯曲,从而形成具有向外弯曲开口侧面49的插座48。外壳3的端面19和底侧20都可以接触这些开口侧面49,以便容纳和连接在图6和7中的配套连接器24的刀片的相对两侧上的触头28,该触头从外壳3的端面19或从外壳3的开口底侧20进入外壳的凹口22。当侧壁30搭接端面19,以及当底侧20盖住配套连接器24的底座29时,就实现了配套连接。
凸条46、47横跨相应的凹口22,并且容纳在凹槽52中,该凹槽52位于基座15与盖板16相接处的基座15上。当将盖板16加到基座15上时,盖板16盖住凸条45、46,并且将它们在凹槽52处中固定住。凹槽52中的凸条45、46提供阻碍端子5、6、7和8移动的横向支撑,并将插座48保持在凹口26的中心。
图5和10所示的极性特征在于将电池组端子5、6、7和8偏移到所述端面19的中心的一侧。当外壳3顶朝下时,该极性特征将防止在端子5、6、7和8与配套连接器24的触头28之间不希望有的对准或配套连接。具有不同宽度的挡块31也能防止这种不应出现的对准或配套连接。
可以将外壳3特意地设计成适于顶朝下配套连接。如图5和10中每个附图所示,外壳3的端面19具有在底侧20的外表面与盖板16的相对顶侧53之间限定的高度。每个接触表面51的高度都大于上述端面19高度的一半。因此,每个接触表面51都具有沿端面19延伸的延伸高度,并且沿该高度提供多个连接点,用于与导电触头28进行电气连接。该特征另外又允许外壳3顶朝下与配套连接器24配套或连接。为了允许顶朝下配套连接,可以通过宽挡块31与窄挡块31的互换,改变配套的连接器24。挡块31具有不同的宽度,用于插入外壳3端面19上的不同宽度的凹口26中。为了提供极性,并且为了允许外壳3仅在顶朝下位置进行连接,就需要在配套连接器24上交换宽和窄的挡块31的位置。
在图10所示的另一种形状的外壳3中,凹口22和相邻凹口22之间的凸棱23通过盖板16和基座15延伸。在侧面53朝下的情况下,根据配套连接器24上宽和窄挡块31的位置,这种外壳3能够采用底侧20朝下或顶朝下的方式与侧面53连接。
Claims (10)
1、一种用于电池组(2)的电气连接器,包括与电池组(2)的多个单元电池(4)电气上串联连接的多个导电电池组端子(5、6、7、8),容纳端子(5、6、7、8)和单元电池(4)的外壳(3),其特征在于:
通过外壳(3)的一个端面(19)上的凹口(22)可以接触端子(5、6、7、8)的接触表面(51),每个所述接触表面(51)和所述凹口(22)沿所述端面都具有一定高度,并且沿所述高度具有多个接触点,用于容纳配套的电气连接器(24)的导电触头(28),以便与其进行电气连接。
2、如权利要求1所述的用于电池组(2)的电气连接器,其特征在于:每个端子(5、6、7、8)上的相对刀片构成电气插座,用于与另一个配套的电气连接器(24)的导电触头(28)进行电气连接,并且接触表面(51)沿相应的刀片延伸。
3、如权利要求2所述的用于电池组(2)的电气连接器,其特征在于:脊条(45)连接每个端子(5、6、7、8)上相对的刀片,并且外壳中的凹槽(52)容纳相应的脊条(45)。
4、如权利要求3所述的用于电池组(2)的电气连接器,其特征在于:接触表面(51)沿相应的刀片延伸。
5、如权利要求4所述的用于电池组(2)的电气连接器,其特征在于:端子(5、6、7、8)上的横向支撑横跨相应的凹口(22)。
6、如权利要求1所述的用于电池组(2)的电气连接器,其特征在于:所述端面(19)具有在外壳(3)相对两侧的外部表面之间限定的高度,每个接触表面(51)的高度大于所述端面(19)高度的一半。
7、如权利要求6所述的用于电池组(2)的电气连接器,其特征在于:凹口(22)延伸通过两个外部表面。
8、如权利要求1所述的用于电池组(2)的电气连接器,其特征在于:端面(19)上的凹口(26)与电池组(2)的相对侧面连通,并且凹口(26)具有不同宽度,用于与配套的电气连接器(24)上不同宽度的相应挡块(31)配套连接。
9、如权利要求7所述的用于电池组(2)的电气连接器,其特征在于:沿凹口(22)设置接触表面(51),使外壳(3)能顶朝下安装。
10、如权利要求1所述的用于电池组(2)的电气连接器,其特征在于:电池组端子(5、6、7、8)彼此间隔设置,并且偏离所述端面(19)的中心。
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- 1994-08-04 JP JP6202778A patent/JP3061097B2/ja not_active Expired - Fee Related
- 1994-08-09 DE DE4428192A patent/DE4428192B4/de not_active Expired - Fee Related
- 1994-08-09 CN CN94109019A patent/CN1076521C/zh not_active Expired - Fee Related
- 1994-08-10 KR KR1019940019689A patent/KR950007198A/ko not_active Application Discontinuation
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Also Published As
Publication number | Publication date |
---|---|
DE4428192B4 (de) | 2007-11-08 |
DE4428192A1 (de) | 1995-02-16 |
US5470255A (en) | 1995-11-28 |
GB2280995A (en) | 1995-02-15 |
GB2280995B (en) | 1998-03-18 |
JP3061097B2 (ja) | 2000-07-10 |
CN1076521C (zh) | 2001-12-19 |
GB9415776D0 (en) | 1994-09-28 |
KR950007198A (ko) | 1995-03-21 |
JPH0794232A (ja) | 1995-04-07 |
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