CN101595606A - 面板安装连接器壳体 - Google Patents
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Abstract
一种用于电连接器组件的连接器(10)。所述连接器(10)包括具有第一配合端(24)和第二配合端(86)的导电体(12)。第一配合端配置用于耦接电连接器。第二配合端配置用于耦接电板组件。导电凸缘(62)从导电体延伸,与导电体电连通。凸缘延伸通过形成在导电件中的开口(72)并可拆卸地固定到导电件(12),用于维持该导电件和该导电体之间的电连通。
Description
技术领域
本发明总体上涉及用于电连接器的壳体,更特别地,涉及面板安装的电连接器。
背景技术
射频(RF)同轴线缆连接器组件已经用于许多汽车应用,例如全球定位系统(GPS)、汽车收音机、移动电话、气囊系统和多媒体装置。同轴线缆一般由外导体、内导体、绝缘体和夹套组成。线缆的外导体和内导体通常通过插孔和插头连接器与配合的同轴线缆电连接。这样的传统同轴线缆连接器在现有技术中是已知的,例如,在美国专利No.6,676,445和No.6,824,403中,其已经转让给本发明的受让人,并在此以参考的方式被明确引入。
为了标准化各种类型的连接器从而避免混乱,已经制定某些行业标准。这些标准之一称作FAKRA。FAKRA是德国标准协会(German Institute forStandardization)中的汽车标准委员会(Automotive Standards Committee),代表汽车领域中的国际标准权利。FAKRA标准基于键控和颜色编码提供了一种系统,用于合适的连接器连接。FAKRA连接器的键控和颜色识别特征一般是在由塑料或者非导电材料制成的外壳体上。在FAKRA连接器中,同样的插孔键只能连接到同样的插头键槽。连接器壳体的固定定位和锁定通过在插孔壳体上的FAKRA限定的锁定件和在插头壳体上的配合的锁定件而变得方便。
问题是需要一种被配置成耦接于配合的连接器的连接器,例如FAKRA连接器组件,其中壳体还可用于提供到底盘或者其它的面板件的接地通路。
发明内容
解决方案通过在此公开的连接器壳体提供,其包括具有第一配合端和第二配合端的导电体。第一配合端配置地以耦接电连接器组件。第二配合端配置地以耦接电板组件。一导电凸缘延伸过形成在导电件中的开口并可拆卸地固定到导电件,用于维持该导电件和导电体之间的电连通。
附图说明
现将参照附图通过例子描述本发明,其中:
图1是本发明的电连接器之间的实施例的顶部透视图;
图2是本发明的关于图1倒置的电连接器组件的实施例的透视图;
图3是本发明的电连接器组件的实施例的沿着图1的线3-3剖开的截面视图;
图4是本发明的固定到电气设备并安装在印刷电路板(PCB)上的电连接器组件的实施例的顶部透视图;
图5是本发明的固定到电气设备并安装在PCB上的电连接器组件的实施例的侧面立面图;
图6是本发明的耦接到配合的连接器组件的图4的电连接器和电气设备的实施例的顶部透视图;
图7是固定到图6的电气设备和PCB的耦接的电连接器的实施例的局部剖面侧面立面图;
图8是本发明的固定到电气设备并安装在PCB上的电连接器组件的实施例的侧面立面图。
具体实施方式
只要可能,在整个附图中,相同的标号表示相同或者类似的部分。
参照图1-5,根据本发明的电连接器10包括体或者壳体12和同轴插孔连接器,该插孔连接器是电连接器10的一部分并配置地以耦接到电连接器14(图6),例如配合的FAKRA电连接器14,该电连接器14包括同轴插头连接器(未示出)。电连接器10配置地以用作面板连接器(面板连接器组件),并且,如图4-7所示,固定到电气设备(未示出)的导电件72。此外,如图4-7所示,电连接器10还配置地以用于板组件76,例如印刷电路板(PCB)。如在下面进一步详细讨论的,电连接器10通过经由传导件72电连接电气设备的底盘到板组件76而消除了接地环路。也就是,连接器10建立与板组件76的接地通路和与导电件72的接地通路,从而在每个接地通路之间是连通的。
本发明应用到连接器系统的电接地电路中。也就是,电路总是连通到电气设备的接地点。该电接地实质上消除了杂散电磁干扰。
应当理解,术语面板连接器意在指配置地以固定到一部件例如结构体或者电气设备的面板件的电连接器,其中至少一个连接器突出通过或者邻接面板件,例如面板件72(参见图4),并与另一电连接器配合或者耦接。尽管面板连接器可以从电气设备内部延伸以与布置在电气设备或者结构体外部的电连接器配合或者耦接,两个电连接器都可以布置在电气设备或者结构体的内部或者外部。还应当理解的是,尽管在此所用的电连接器,例如插孔连接器16(图1和3)是电连接器10(图3)的一部分,术语连接器和连接器组件可以互换使用。如在下面进一步详细讨论的,电连接器10的体或者壳体12允许用于射频(RF)电气设备。如在此所用的,RF电气设备意在包括任何能够发射和/或接收RF信号的电气设备,或者能够通过RF信号操作的电气设备或者会受到RF信号的不利影响的电气设备。
壳体12优选地由导电材料制成。在一个实施例中,壳体12由金属例如模铸金属制成。但是,在另一实施例中,壳体12可由不导电的但是包括形成在壳体12上的导电涂层的材料制成。导电涂层可以通过喷溅施加,或者将壳体12浸渍在导电溶液中,或者通过其它适当的施加方法。应当理解,壳体12还可由非导电材料和/或导电涂层的组合形成。总之,壳体12可以由导电的和/或非导电的材料与导电的和/或非导电涂层的任何适当组合形成,只要与连接器10、14(图6)和板组件76(图6)之一或者二者相关联的RF干扰电接地到导电件72(图4)。换句话说,在导电件72(图4)和连接器10之间以及在连接器10、14之间和/或在导电件72(图4)和每个连接器10、14之间必须存在导电通路。
参照图1-5,壳体12包括外环形壳18,其具有用于接收配合的电连接器的配合端24,该环形壳18延伸到具有导体出口端86(见例如图4-5)的基座28,其在下面进一步详细讨论。应当理解,尽管壳体12示出为直角连接器,壳体12可以是直式连接器或者具有适于与配合的连接器连接的任何其他角度。环形对准部分20形成在外环形壳18内部,环形对准部分20具有纵向形成在其中的孔48。从壳体12径向向外在配合端24和基座28之间纵向延伸的是一键22,或者例如多个键22,如所示的,一对键22,其插入到连接器14(图6)的对应键槽(未示出)中以提供在连接器10、14之间的键配合。在一个实施例中,连接器14是FAKRA连接器。同样从壳体12径向向外在配合端24和基座28之间延伸的是保持器26,其在当连接器10、14结合在一起时与形成在连接器14(图6)的锁定件88(图6)中的开口90接合(图6)。该接合维持连接器10、14之间的固定连接。
在一个实施例中,如所示,与从壳体12的外环形壳18径向向外延伸的键22大致对准的是对应臂56,其从基座28径向向外延伸。每个臂56包括从基座径向向外延伸的第一部分58,在一个实施例中,臂56关于保持器26对称。如所示,每个第一部分58延伸到彼此大致平行的第二部分60,第二部分60大致纵向延伸通过外环形壳18的配合端24,尽管其它构型也是可能的。为了提供增强的强度和结构刚度给臂56,横向件64设置成邻近每一臂56的第一和第二部分58、60之间的接合处。与基座28相对的第二部分60的末端向着彼此延伸,从而形成具有开口66的凸缘62。当电连接器10如图4所示地安装时,凸缘62导向通过形成在导电件72中的开口74并邻接接触导电件72。导电件72和凸缘62之间的该邻接接触建立机械和电接触,如在下面进一步详细讨论的。
除了建立与导电件72的邻接接触之外,电连接器10包括接地柱32和从基座28的导体出口端86延伸的中心接触36,其安装在板组件76的对应开口内,如在下面进一步详细讨论的。为了固定凸缘62与导电件72邻接,也就是电接触,紧固件78,例如螺丝,被导向通过凸缘62的开口66并促动通过形成在导电件72中的对准开口以将凸缘62拖拉为与导电件72邻接接触。在导电件72和凸缘62之间提供足够的邻接接触实质上消除了通过经由导电件72将电气设备的底盘电连接到板组件76的接地环路。换句话说,连接器10建立与板组件76以及与导电件72二者的接地通路,从而在每个接地通路中连通。这样,电连接器10的壳体12允许保护信号接触免遭不期望的外界噪声电压。
在一替代实施例中,如图7所示,槽92形成在凸缘62和与凸缘62纵向对准的支撑部分82之间。大致与形成在凸缘62中的开口66对准的孔84限定位于支撑部分82中的一端开口的中空部分或者腔室。也就是,孔84与开口66连通,但不是完全贯穿支撑部分82。连接器10通过将凸缘62导向通过开口74然后向上导向凸缘62以使得槽92接收在凸缘62和支撑部分82之间而被固定。换句话说,槽92的相对表面邻近导电件72的相对表面96、98。一旦连接器10开始固定,紧固件78就导向通过开口66、槽92然后进入孔84中,如在图7的局部剖视图中所述的。紧固件78然后在一个方向促动以将紧固件78拉到孔84内直到紧固件78的头部邻接接触面对电气设备的外部的凸缘62的表面96,从而固定连接器10与导电件72邻接接触。借助于变为大致封闭空间的孔84,一旦紧固件78被插入到孔84中,与将凸缘62固定到导电件72有关的碎屑,例如,支撑部分82的削屑,被防止抵达电气设备的内部。换句话说,碎屑,例如当紧固件78促动时通过紧固件78移除的支撑部分82的削屑,基本限定在孔84内部,从而基本防止碎屑抵达电气设备的内部。
现参照图3,同轴插孔连接器16,其安装到电连接器10中,将被更详细地描述。同轴插孔连接器16包括具有环形部分59的绝缘体54,其由壳体12的环形对准部分20接收。绝缘体54固定在环形部分59内部延伸的销52。环形部分59包括孔48,其大致纵向延伸通过壳体12,也就是,与向着基座28(参见图1)的末端94的配合端24相邻。如所示,在导体出口端86中的通道50大致与孔48相横向并与之连通。在孔48和通道50的接合处,销52进一步横向延伸到末端38,该末端38延伸通过通道50并从导体出口端86向外延伸。销52在配合连接器14(图6-7)和板组件76之间电传送RF信号。末端38可以是锥形的以更容易允许与板组件76中的对应开口(未示出)配合接触。在一个实施例中,与末端38相邻的是通过锥形开口42分隔开的一对腿40,该锥形开口42提供在腿40和板组件76的相应开口之间的改善的邻接接触。腿和开口的该组合通常称作“针眼”。
参照图1-3,接地柱32向外延伸远离基座28的导体出口端86。任选地,一个或多个接地柱32包括径向向外延伸的鳍状部34。如果用于接收柱32的板组件76内的对应开口(未示出)尺寸合适,那么当鳍状部34被利用时,不必使用焊接以将柱32固定到板组件76。接地柱32提供在壳体12和板组件76之间的电接地。与接地柱32的每个相邻的是平衡件44,如在基座28的边角处所示,其均一地设置导体出口端86和板组件76之间的空间。肋68从基座28向着配合端24纵向延伸,终止于也称作板平衡件的平衡件70。如图5所示,平衡件70,其与每个平衡件44基本一致,提供防倾倒部件,因为电连接器10的重心可以落在基座平衡件44的腿支点之外。
参照图6和7,连接器10与配合连接器14例如FAKRA连接器耦接。导电件72是电气设备的一部分,并且,在一个实施例中,导电件72是用于电气设备的外壳的一部分。导电件72用于建立连接器10、14的直接或者间接的电接地,如在下面进一步详细讨论的。在一个实施例中,连接器10的凸缘62固定到面对电气设备的外部的表面96。连接器10的配合端24导向通过导电件72的开口74直到凸缘62邻接表面96。一旦邻接接触实现,紧固件78被导向通过连接器10的凸缘62的开口66,并被促动以凸缘62固定成牢固地邻近接触于导电件72的表面96。
为了实现连接器10和14之间的安装或者组装,连接器14的配合端80与连接器10的配合端24配合接合。如图7所示,其包括连接器14的罩100的局部剖视图,一旦保持器26接收在锁定件88的开口90中,连接器10和14固定在一起。回过来参照图4,本领域技术人员将认识到,由于壳体12和导电件72是导电的,如上所述,存在至少一个建立在导电件72和连接器10之间的导电通路,其足以电接地连接器10和导电件72。换句话说,通过导电件72的任何表面例如表面96、98和/或沿着开口74的周边的任何边缘以及邻接导电件72的任何表面的壳体12的任何表面之间的邻接接触,导电通路可建立在导电件72和壳体12之间。应当理解,凸缘62可以配置地以邻接任何一个表面96或者98,如图5和8分别所示,图5对应凸缘62布置在电气设备的外部,图8对应凸缘62布置在电气设备内部。
至少一个导电通路建立在连接器14和导电件72之间和/或连接器14和连接器10之间。也就是,在一个实施例中,可能的是,连接器10的壳体12并不提供连接器14之间的足够的导电通路,只要连接器10配置地以保证在连接器14和导电件72之间提供足够的导电通路,其足以使连接器14电接地于导电件72。
总之,回过来参照图4,壳体12可以由导电材料以及导电和/或非导电涂层的任何适当组合制成,只要与连接器10、14之一或二者有关的RF干扰接地到导电件72。换句话说,在导电件72和连接器10之间,在一个实施例中,在导电件72和连接器10、14之间,必须有导电通路或者电连通,如前所述。
尽管已经参照优选实施例描述本发明,但是,本领域技术人员应当理解,在不背离本发明的范围的情况下,可以作出各种变化,也可对其中的元件进行等效替换。此外,可以根据本发明的教导作出许多修改以适应特定情形或者材料,而不背离其实质范围。因此,目的在于,本发明并不限于在此被公开为认为是实施本发明的最佳模式的特定实施例,而是本发明将包括落在权利要求范围内的所有实施方式。
Claims (10)
1.一种用于电连接器组件的连接器(10)包括具有第一配合端(24)和第二配合端(86)的导电体(12),所述第一配合端配置用于耦接电连接器,所述第二配合端配置用于耦接电板组件,其特征在于:从所述导电体延伸的导电凸缘(62)电连通于该导电体,所述凸缘延伸过形成在导电件(72)中的开口(74),并可拆卸地固定到所述导电件,用于维持在所述导电件和所述导电体之间的电连通。
2.如权利要求1所述的连接器(10),还包括臂(56),该臂(56)具有从所述导电体延伸的第一部分(58)和与所述第一部分相连并沿着所述导电体延伸的第二部分(60),其中所述凸缘(62)从所述臂的所述第二部分的末端延伸。
3.如权利要求1所述的连接器(10),其中,所述导电体(12)由金属制成。
4.如权利要求1所述的连接器(10),其中,所述导电体(12)由模铸金属制成。
5.如权利要求1所述的连接器(10),其中,导电涂层形成在所述导电体上。
6.如权利要求1所述的连接器(10),其中,所述导电件(72)是电气设备的一部分。
7.如权利要求1所述的连接器(10),其中,所述导电件(72)是电气设备外壳的一部分。
8.如权利要求7所述的连接器(10),其中,所述凸缘(62)布置在所述电气设备的内部。
9.如权利要求7所述的连接器(10),其中,所述凸缘(62)布置在所述电气设备的外部。
10.如权利要求1所述的连接器(10),其中,所述凸缘(62)包括用于防止与将所述凸缘固定到所述导电件有关的碎屑抵达电气设备的内部的中空部分(84)。
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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US11/671,641 | 2007-02-06 | ||
US11/671,641 US7326063B1 (en) | 2007-02-06 | 2007-02-06 | Panel mount connector housing |
PCT/US2008/001421 WO2008097492A2 (en) | 2007-02-06 | 2008-02-01 | Panel mount connector housing |
Publications (1)
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CN101595606A true CN101595606A (zh) | 2009-12-02 |
Family
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Application Number | Title | Priority Date | Filing Date |
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CNA200880003459XA Pending CN101595606A (zh) | 2007-02-06 | 2008-02-01 | 面板安装连接器壳体 |
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US (1) | US7326063B1 (zh) |
EP (1) | EP2122785A2 (zh) |
JP (1) | JP2010518577A (zh) |
KR (1) | KR20090110847A (zh) |
CN (1) | CN101595606A (zh) |
BR (1) | BRPI0806875A2 (zh) |
CA (1) | CA2675559A1 (zh) |
MX (1) | MX2009008423A (zh) |
WO (1) | WO2008097492A2 (zh) |
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-
2008
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- 2008-02-01 BR BRPI0806875-5A patent/BRPI0806875A2/pt not_active IP Right Cessation
- 2008-02-01 CN CNA200880003459XA patent/CN101595606A/zh active Pending
- 2008-02-01 WO PCT/US2008/001421 patent/WO2008097492A2/en active Application Filing
- 2008-02-01 MX MX2009008423A patent/MX2009008423A/es active IP Right Grant
- 2008-02-01 EP EP08725110A patent/EP2122785A2/en not_active Withdrawn
- 2008-02-01 KR KR1020097016378A patent/KR20090110847A/ko not_active Application Discontinuation
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Also Published As
Publication number | Publication date |
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BRPI0806875A2 (pt) | 2014-04-29 |
CA2675559A1 (en) | 2008-08-14 |
WO2008097492A3 (en) | 2009-04-30 |
US7326063B1 (en) | 2008-02-05 |
EP2122785A2 (en) | 2009-11-25 |
KR20090110847A (ko) | 2009-10-22 |
WO2008097492A2 (en) | 2008-08-14 |
JP2010518577A (ja) | 2010-05-27 |
MX2009008423A (es) | 2009-10-29 |
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