CN105119067A - 具有电连续性构件的同轴电缆连接器 - Google Patents
具有电连续性构件的同轴电缆连接器 Download PDFInfo
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Abstract
本发明涉及具有电连续性构件的同轴电缆连接器,具体地,提供了一种同轴电缆连接器,其包括:连接器主体;与连接器主体可接合的柱体,其中柱体包括凸缘;螺母,相对于柱体和连接器主体可轴向旋转,螺母具有第一端和相对的第二端,其中螺母包括内唇部,并且其中螺母的第二端部对应于螺母的一部分,该部分从螺母的第二端延伸至螺母唇部的面向螺母第一端的侧面上的最靠近螺母第二端的点处,螺母的第一端部对应于螺母的一部分,该部分从螺母的第一端延伸至唇部的面向螺母第一端的该同一侧面上的离螺母第二端最近的该相同点处;以及连续性构件,其置于螺母的第二端部内并接触柱体和螺母,以便连续性构件使接地电连续性延伸通过柱体和螺母。
Description
本申请是申请日为2009年5月22日且名称为“具有电连续性构件的同轴电缆连接器”的申请201010229211.4的分案申请。
相关申请的交叉引用
本申请要求2009年5月22日提交的,题为“具有电连续性构件(electricalcontinuitymember)的同轴电缆连接器”的美国临时专利申请No.61/180,835的权益。
技术领域
本发明涉及一种用于同轴电缆通讯应用的连接器,更具体地,涉及一种具有电连续性构件的同轴连接器,该电连续性构件使电磁干扰屏蔽的连续性从电缆延伸并通过连接器。
背景技术
宽带通讯已经成为电磁信息交换的越来越流行的形式,而同轴电缆是宽带通讯传输的通用渠道。通常,同轴电缆设计成使得携带通讯信号的电磁场仅仅在电缆的内外同轴导体之间的空间中存在。这允许同轴电缆接近金属物体安装而不会造成其他传输线中的功率损耗,并保护通讯信号免受外部电磁干扰。用于同轴电缆的连接器通常连接至互补的接口端口,从而将同轴电缆电结合至各种电子设备和电缆通讯装置。通常通过连接器的具有内螺纹的螺母围绕相应的外螺纹接口端口的可旋转操作来形成连接。完全紧固同轴电缆连接器到接口端口的螺纹连接有助于确保连接器和相应接口端口之间的接地连接。但是,通常连接器并未适当地紧固至或以其它方式安装至接口端口,因此不会发生连接器和接口端口的适当的电匹配。此外,普通连接器的典型组成元件和结构会容许发生接地失效和期望从电缆延伸通过连接器直到相应的同轴电缆接口端口的电磁屏蔽中断。因此,需要提供一种改进的连接器,其具有结构组成元件,这些结构组成元件用于确保同轴电缆、连接器及其各种可适用结构与同轴电缆连接器接口端口之间的接地连续性。
发明内容
本发明的第一方面提供一种同轴电缆连接器,其包括:连接器主体;与连接器主体可接合的柱体,其中柱体包括凸缘;螺母,相对于柱体和连接器主体可轴向旋转,螺母具有第一端和相对的第二端,其中螺母包括内唇部,并且其中螺母的第二端部对应于螺母的一部分,该部分从螺母的第二端延伸至螺母唇部的面向螺母第一端的侧面上离螺母第二端最近的点处,螺母的第一端部对应于螺母的一部分,该部分从螺母的第一端延伸至唇部的面向螺母第一端的该同一侧面上离螺母第二端最近的该相同点处;连续性构件,其置于螺母的第二端部内并接触柱体和螺母,以便连续性构件使接地电连续性延伸通过柱体和螺母。
本发明的第二方面提供一种同轴电缆连接器,其包括:连接器主体;与连接器主体可接合的柱体,其中柱体包括凸缘;螺母,相对于柱体和连接器主体可轴向旋转,螺母具有第一端和相对的第二端,其中螺母包括内唇部,并且其中螺母的第二端部起始于螺母内唇部的面向螺母第一端的一侧,并向后延伸至螺母的第二端;以及连续性构件,其仅置于螺母的第二端部的起始位置的后面并接触柱体和螺母,以便连续性构件使接地电连续性延伸通过柱体和螺母。
本发明的第三方面提供一种同轴电缆连接器,其包括:连接器主体;可操作地附连至连接器主体的柱体,柱体包括凸缘;相对于柱体和连接器主体可轴向旋转的螺母,螺母包括内唇部;以及轴向置于螺母内唇部的面向凸缘的表面后面的电连续性构件。
本发明的第四方面提供一种获得同轴电缆连接的电连续性的方法,该方法包括:提供同轴电缆连接器,其包括:连接器主体;可操作地附连于连接器主体的柱体,柱体具有凸缘;螺母,相对于柱体和连接器主体可轴向旋转,螺母具有内唇部;以及电连续性构件,其轴向置于螺母内唇部的面向凸缘的表面的后面;将同轴电缆牢固地附连至连接器,使得电缆的接地护套电接触柱体;使电连续性从柱体通过连续性构件延伸至螺母;以及将螺母紧固至导电接口端口,由此完成接地路径并在电缆连接中获得电连续性。
结合附图,由下述详细描述,将更容易理解和完全领悟本发明的构造和操作的前述特性和其他特性。
附图说明
图1示出了根据本发明的,具有电连续性构件实施例的同轴电缆连接器实施例的元件实施例的分解立体剖开图。
图2示出了根据本发明的,图1所示的电连续性构件实施例的立体图;
图3示出了根据本发明的,图1所示的电连续性构件实施例的变型的立体图,其没有凸缘切口;
图4示出了根据本发明的,图1所示的电连续性构件实施例的变型的立体图,其不具有凸缘切口或通槽;
图5示出了根据本发明的,组装的图1所示的具有电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图6示出了根据本发明的,具有电连续性构件和缩短螺母的、组装的同轴电缆连接器实施例的一部分的立体剖开图;
图7示出了根据本发明的,具有不接触连接器主体的电连续性构件的、组装的同轴电缆连接器实施例的一部分的立体剖开图;
图8示出了根据本发明的,电连续性构件的另一实施例的立体图;
图9示出了根据本发明的,组装的具有图8所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图10示出了根据本发明的,电连续性构件的又一实施例的立体图;
图11示出了根据本发明的,组装的具有图10所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图12示出了根据本发明的,电连续性构件的又一实施例的立体图;
图13示出了根据本发明的,组装的具有图12所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图14示出了根据本发明的,电连续性构件的又一实施例的立体图;
图15示出了根据本发明的,组装的具有图14所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图16示出了根据本发明的,电连续性构件的又一实施例的立体图;
图17示出了根据本发明的,组装的具有图16所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图18示出了根据本发明的,电连续性构件的又一实施例的立体图;
图19示出了根据本发明的,组装的具有图18所示电连续性构件的同轴电缆连接器实施例的一部分的立体剖开图;
图20示出了根据本发明的,具有电连续性构件和附连的同轴电缆的同轴电缆连接器实施例的立体剖开图,其中连接器匹配到接口端口;
图21示出了根据本发明的,具有电连续性构件另一实施例的同轴电缆连接器实施例的立体剖开图;
图22示出了根据本发明的,图21所示的电连续性构件实施例的立体图;
图23示出了根据本发明的,图21所示的同轴电缆连接器实施例的分解立体图;
图24示出了根据本发明的,具有图22所示的电连续性构件实施例的同轴电缆连接器的另一实施例的立体剖开图;
图25示出了根据本发明的,图24所示的同轴电缆连接器的实施例的分解立体图;
图26示出了根据本发明的,电连续性构件的又一实施例的立体图;
图27示出了根据本发明的,电连续性构件的另一实施例的立体图;
图28示出了根据本发明的,图27所示的电连续性构件实施例的立体图,但其包括不带通槽的完全环形的柱体接触部;
图29示出了根据本发明的,可操作地具有图27或28所示的电连续性构件实施例中任一个的同轴电缆连接器的另一实施例的立体剖开图;
图30示出了根据本发明的,图29所示的同轴电缆连接器实施例的立体剖开图,其中电缆附连至连接器;
图31示出了根据本发明的,图29所示的同轴电缆连接器实施例的侧视截面图;
图32示出了根据本发明的,图29所示的同轴电缆连接器实施例的立体剖开图,其中电缆附连至连接器;
图33示出了根据本发明的,电连续性构件的又一实施例的立体图;
图34示出了根据本发明的,图33所示的电连续性构件实施例的侧视图;
图35示出了根据本发明的,图33所示的电连续性构件实施例的立体图,其中螺母接触部是弯曲的;
图36示出了根据本发明的,图33所示的电连续性构件实施例的侧视图,其中螺母接触部是弯曲的;
图37示出了根据本发明的,具有图33所示的电连续性构件实施例的同轴电缆连接器的又一实施例的一部分的立体剖开图;
图38示出了根据本发明的,具有图33所示的电连续性构件实施例的图37所示的同轴电缆连接器的又一实施例的一部分的剖开侧视图;
图39示出了根据本发明的,具有电连续性构件实施例的同轴电缆连接器实施例的元件的又一实施例的分解立体剖开图;
图40示出了根据本发明的,图39所示的同轴电缆连接器另一实施例的侧视立体剖开图;
图41示出了根据本发明的,图39所示的同轴电缆连接器另一实施例的一部分的放大的侧视立体剖开图;
图42示出了根据本发明的,在螺母第一端部和螺母第二端部之间位置处的,图39所示的同轴电缆连接器另一实施例的前视截面图;
图43示出了根据本发明的,电连续性构件的又一实施例的前视立体图;
图44示出了根据本发明的,图43所示的电连续性构件实施例的另一前视立体图;
图45示出了根据本发明的,图43所示的电连续性构件实施例的前视图;
图46示出了根据本发明的,图43所示的电连续性构件实施例的侧视图;
图47示出了根据本发明的,图43所示的电连续性构件实施例的后视立体图;
图48示出了根据本发明的,具有图43所示又一电连续性构件实施例的同轴电缆连接器的又一实施例的分解立体剖开图;
图49示出了根据本发明的,具有图43所示又一电连续性构件实施例的图48所示的同轴电缆连接器的又一实施例的立体剖开图;
图50示出了根据本发明的,具有图43所示又一电连续性构件实施例的图48所示的同轴电缆连接器的又一实施例的一部分的放大立体剖开图;
图51示出了根据本发明的,图43所示电连续性构件实施例的立体图,但其不具有螺母接触凸片;
图52示出了根据本发明的,图51所示电连续性构件实施例的侧视图;和
图53示出了根据本发明的,具有图51所示电连续性构件实施例的同轴电缆连接器实施例的一部分的立体剖开图。
具体实施方式
尽管详细示出和描述了本发明的特定实施例,但应当理解,在不脱离所附权利要求的范围的情况下,可作出各种改变和修改。本发明的范围决不限于组成部件的数目、材料、形状、相对布置等,而这些仅作为本发明的实施例的示例公开。
作为具体实施方式的前序,应当注意,如在说明书和所附权利要求书中所用的,单数形式“一个(a)”、“一个(an)”和“该(the)”包括复数指代,除非上下文中另有明确指示。
参照附图,图1示出了同轴电缆连接器的一种实施例100,其包括电连续性构件的一种实施例70。同轴电缆连接器100可以可操作地附接到或以其它方式功能地附连到同轴电缆10,其中同轴电缆10包括防护外套12、导电接地屏蔽件14、内部电介质16和中心导体18。可通过如下方式将同轴电缆10准备成如图1中实施的那样:移除防护外套12,将导电接地屏蔽件14向后拉,从而露出内部电介质16的一部分。所实施的同轴电缆10的进一步准备工作可包括:剥除电介质16以露出中心导体18的一部分。防护外套12用于保护同轴电缆10的各个部件免受损坏,所述损坏可由暴露于污垢或湿气所造成以及由侵蚀所造成。此外,防护外套12可在某种程度上用于在内含电缆式设计(containedcabledesign)中使同轴电缆10的各种部件固定,从而保护电缆10以免在电缆安装过程中受到与移动相关的损坏。导电接地屏蔽件14可由适于提供电气接地连接的导电材料构成,例如亚铜编织材料、铝箔、薄金属元件、或其他类似结构。可以采用屏蔽件14的各种实施例来屏蔽不期望的噪音。例如,屏蔽件14可以包括围绕电介质16缠绕的金属箔,或者在围绕电介质16的连续编织物中形成的若干导电绞线。可以采用箔和/或编织绞线的组合,其中导电屏蔽件14可以依次包括箔层、编织层以及箔层。本领域技术人员可以理解,可以实施多种的层组合,以使导电接地屏蔽件14实现电磁缓冲,从而有助于防止可能干扰宽带通讯的环境噪音侵入。电介质16可由适于电绝缘的材料构成,例如塑料泡沫材料、纸材料、橡胶状聚合物,或其他功能性绝缘材料。应当注意的是,构成同轴电缆10的所有各种部件的各种材料应当具有某种程度的弹性,从而允许电缆10根据传统的宽带通讯标准、安装方法和/或设备进行挠曲或弯曲。还应当认识到,同轴电缆10、防护外套12、导电接地屏蔽件14、内部电介质16和/或中心导体18的径向厚度可基于对应于宽带通讯标准和/或设备的普遍认可的参数而改变。
进一步参照图1,连接器100还可包括同轴电缆接口端口20。同轴电缆接口端口20包括用于接收同轴电缆中心导体18的足以形成充分电接触的一部分的导电插孔。同轴电缆接口端口20还可包括螺纹外表面23。应当认识到,同轴电缆接口端口20和/或端口20的导电插孔的径向厚度和/或长度可以基于对应于宽带通讯标准和/或设备的普遍认可的参数而改变。此外,可形成于同轴电缆接口端口20的螺纹外表面23上的螺纹的螺距和高度也可基于对应于宽带通讯标准和/或设备的普遍认可的参数而改变。另外,应当注意到,接口端口20可由单种导电材料、多种导电材料形成,或由对应于端口20与连接器100的可操作的电接口的导电材料和非导电材料构成。但是,端口20的插孔应当由导电材料形成,例如金属,比如黄铜、紫铜或铝。此外,本领域技术人员还应当理解,接口端口20可具体体现为同轴电缆通讯设备、电视、调制解调器、计算机端口、网络接收器,或其他通讯改动设备(例如信号分配器、电缆线路延长器、电缆网络模块和/或类似物)的连接接口部件。
依然参照图1,同轴电缆连接器的实施例100还可包括螺纹螺母30、柱体40、连接器主体50、紧固件60、由导电材料制成的连续性构件70、以及连接器主体密封件80(例如,构造为围绕连接器主体50的一部分配合的主体O形环)。
同轴电缆连接器的实施例100中的螺纹螺母30具有第一前端31和相对的第二后端32。螺纹螺母30可包括从第一前端31的边缘轴向延伸一段距离的内螺纹33,该距离足以提供与标准同轴电缆接口端口20的外螺纹23之间的可操作的有效螺纹接触(如图20示例性示出)。螺纹螺母30包括邻近螺母的第二后端32的内唇部34,例如环状突起。内唇部34包括面向螺母30第一前端31的表面35。唇部34的前向表面35可以是面向螺母30的第一前端31的锥形表面或侧面。螺母30的结构上的构造可以根据不同的连接器设计参数而改变,从而适应同轴电缆连接器100的不同功能。例如,螺母30的第一前端31可包括内部和/或外部结构,例如脊、槽、曲面、卡槽(detent)、缝、开口、斜面、或其他结构特征等,这些结构可使环境密封构件(例如防水密封件或其他可附连的组成元件)能够方便地可操作地结合,从而当与接口端口20相匹配时,有助于防止环境污染物(例如潮气、油和污垢)在螺母30的第一前端31处侵入。此外,螺母30的第二后端32可延伸相当大的轴向距离,从而位于连接器主体50的一部分的径向范围内,或以其它方式部分地围绕连接器主体50的一部分,但螺母30的该延伸部分无需接触连接器主体50。本领域技术人员应该理解,螺母不必具有螺纹。此外,螺母可以包括联接件,其常用于连接RCA型,或BNC型连接器,或其他具有标准联接件接口的常用同轴电缆连接器。螺纹螺母30可由导电材料构成,例如紫铜、黄铜、铝,或其他金属或金属合金,从而便于通过螺母30接地。因此,螺母30可构造为当连接器100前移至端口20上时,通过电接触接口端口20的导电表面而延伸电磁缓冲。此外,螺纹螺母30可由导电和非导电材料共同形成。例如螺母30的外表面可由聚合物构成,而螺母30的其他部分可由金属或其他导电材料构成。螺纹螺母30可由金属或聚合物或其他能利于刚性地形成的螺母主体的材料构成。螺纹螺母30的制造可包括铸造、挤压、切割、压花、车削、攻丝、钻孔、注塑、吹塑、以及它们的组合,或其他可提供部件的高效生产的制造方法。当可操作地装配于连接器100内时,螺母30的前向表面35面向柱体40的凸缘44,从而允许螺母相对于连接器100的其他组成元件(例如柱体40和连接器主体50)旋转。
依然参照图1,连接器的实施例100可包括柱体40。柱体40包括第一前端41和相对的第二后端42。此外,柱体40可包括位于柱体40第一端41处的凸缘44,例如向外延伸的环形突起。凸缘44包括后向表面45,在可操作地装配于同轴电缆连接器100中时,后向表面45面向螺母30的前向表面35,从而允许螺母相对于连接器100的其他组成元件(例如柱体40和连接器主体50)旋转。凸缘44的后向表面45可以是面向柱体40的第二后端42的锥形表面。此外,柱体的实施例40可包括表面特征47,例如可与连接器主体50的一部分相接合从而固定柱体40相对于连接器主体50的轴向移动的唇部或突起。但是,柱体不必包括这样的表面特征47,而同轴电缆连接器100可依赖于压配合力和摩擦配合力和/或其他具有能帮助把柱体40在轴向和旋转方向上相对于连接器主体50保持在固定位置上的特征和几何形状的部件结构。邻近或靠近连接器主体相对于柱体40被固定的部位的位置可包括表面特征43,例如脊、槽、突起、或压花,该表面特征可强化柱体40相对于连接器主体50的牢固地连接和定位。此外,柱体40的接触连续性构件实施例70的那部分的直径可不同于螺母30的接触连接器主体50的那部分的直径。这样的直径变化可便于进行组装程序。例如,具有较大或较小直径的各种部件可容易地压配合或以其他方式彼此牢固地连接。此外,柱体40可包括匹配边缘46,其可构造为与接口端口20的相应匹配边缘26物理接触和电接触(如图20中的示例方式所示)。柱体40应当构造成使得已经准备好的同轴电缆10的包括电介质16和中心导体18的那部分(在图1和20中示出的示例)可以轴向穿入柱体40的第二端42和/或穿过柱体40的管状主体的一部分。此外,柱体40应当具有这样的尺寸或大小,使得柱体40能够插入已准备好的同轴电缆10的一端,围绕电介质16并在防护外套12和导电接地屏蔽件14之下。因此,在柱体实施例40能够插入已准备好的同轴电缆10的一端并在拉向后的导电接地屏蔽件14之下的情况下,基本上可以实现与屏蔽件14的物理接触和/或电接触,由此便于通过柱体40接地。柱体40应当是导电的,并可由金属或其他便于刚性地形成柱体主体的导电材料制成。此外,柱体可由导电材料和非导电材料的组合形成。例如,金属涂层或金属层可以应用于其他非导电材料的聚合物上。柱体40的制造可包括铸造、挤压、切割、车削、钻孔、压花、注塑、喷涂、吹塑、部件二次模塑(overmolding)、它们的组合,或其他可提供部件的高效生产的制造方法。
同轴电缆连接器的实施例,例如连接器100,可包括连接器主体50。连接器主体50可包括第一端51和相对的第二端52。此外,连接器主体可包括邻近或靠近主体50的第一端51的柱体安装部57,柱体安装部57构造为相对于柱体40的外表面的一部分牢固地定位主体50,使得连接器主体50以这样的方式相对于柱体40轴向固定,所述方式防止这两个部件在平行于连接器100的轴线的方向上相对于彼此移动。柱体安装部57的内表面可包括接合特征54,其便于通过在组装到连接器100内后物理接合连续性构件70来固定连续性构件70相对于连接器主体50和/或柱体40的位置。接合特征54可简单地为直径不同于柱体安装部57其他部分之直径的环形卡槽或脊。但是也可包括其他特征,例如槽、脊、突起、缝、孔、键槽、凸块、凸瘤、凹坑、顶部、缘、或其他类似结构性特征,从而便于或可能辅助电连续性构件的实施例70相对于连接器主体50的位置固定。然而,当同轴电缆连接器100的各个部件可操作地装配好,或者以其他方式物理上对准或连接在一起时,连续性构件的实施例70还可仅通过由相应的公差所产生的压配合力和摩擦配合力来相对于连接器主体50停留在固定位置。此外,连接器主体50可包括邻近或靠近连接器主体50的第一端51的外部环形凹部58。此外,连接器主体50可包括半刚性、但顺应的(compliant)外表面55,其中外表面55可构造为,当第二端52通过紧固件60的操作可变形地压靠在所接收的同轴电缆10上时,形成环形密封。连接器主体50可包括邻近或靠近连接器主体50的第二端52的外部环形卡槽53。另外,连接器主体50可包括内表面特征59,例如靠近或邻近连接器主体50的第二端52的内表面形成的、且构造为通过与电缆的齿状相互作用来增强对于所插入和接收的同轴电缆10的摩擦约束和抓紧的环形锯齿。连接器主体50可由诸如塑料、聚合物、可弯曲金属或便于形成半刚性但顺应的外表面55的复合材料构成。此外,连接器主体50可由导电材料或不导电材料或其组合形成。连接器主体50的制造可包括铸造、挤压、切割、车削、钻孔、压花、注塑、喷涂、吹塑、部件二次模塑、它们的组合,或其他可提供部件的高效生产的制造方法。
进一步参照图1,同轴电缆连接器的实施例100可包括紧固件60。紧固件60可具有第一端61和相对的第二端62。此外,紧固件60可包括邻近紧固件60的第一端61的内部环形突起63(见图20),其构造为与连接器主体50(作为示例仍然在图20中示出)的外表面55上的环形卡槽53相匹配并彼此抓紧。此外,紧固件60可包括限定在第一端61和第二端62之间并轴向延伸通过紧固件60的中心通路65。中心通路65可包括斜面66,其可位于邻近紧固件60的第一端61并具有第一直径的第一开口或内部孔67和邻近紧固件60的第二端62并具有第二直径的第二开口或内部孔68之间。当操作紧固件60固定同轴电缆10时,斜面66可起作用而可变形地压缩连接器主体50的外表面55。例如,当紧固件被压入连接器主体上的紧致固定位置时,变窄的几何形状将压紧电缆。此外,紧固件60可包括邻近或靠近紧固件60的第二端62的外表面特征69。表面特征69可便于在操作连接器100期间抓紧紧固件60。尽管表面特征69示为环形卡槽,但它可具有各种形状和尺寸,例如脊、凹口、突起、压花、或其他摩擦或夹紧型布置结构。紧固件60的第一端61可延伸一轴向距离,使得当紧固件60被压入同轴电缆100上的密封位置时,紧固件60接触或基本上非常接近螺母30。本领域技术人员应当认识到,紧固件60可由刚性材料制成,例如金属、硬塑料、聚合物、复合材料等、和/或它们的组合。此外,紧固件60可通过铸造、挤压、切割、车削、钻孔、压花、注塑、喷涂、吹塑、部件二次模塑、它们的组合、或其他可提供高效零件生产的制造方法来制造。
将同轴电缆连接器100紧固至所接收的同轴电缆10的方式(例如作为示例在图20中示出)也可类似于将电缆紧固于普通CMP型连接器的方式,其中CMP型连接器具有可插入压缩套筒,其被推入连接器主体50中以挤压和固定电缆10。同轴电缆连接器100包括具有第一端51和第二端52的外连接器主体50。主体50至少部分地围绕管状内部柱体40。管状内部柱体40具有包括凸缘44的第一端41和构造为与同轴电缆10相匹配并与电缆10的外部导电接地屏蔽件或护套14的一部分相接触的第二端42。连接器主体50相对于管状柱体40的邻近或靠近管状柱体40第一端41的那部分固定并且与内部柱体40协作,或者功能地定位成与内部柱体40成径向隔开关系从而限定具有后开口的环形腔。管状锁定压紧件可通过后开口轴向地突入到环形腔中。管状锁定压紧件可以可滑动地联接到或以其它方式可移动地附接到连接器主体50,从而压入到连接器主体内并保持电缆10,并且管状锁定压紧件可在第一打开位置(向管状内部柱体40为接触接地屏蔽件14而朝准备好的电缆10一端中的插入提供空间)和将电缆10压紧地固定在连接器100的腔内的第二夹紧位置之间沿轴向或大体在连接器100的轴线方向上移动或运动,因为压缩套筒被挤压成与连接器主体50内的电缆10进行约束性接触。位于内部柱体40前端的联接件或螺母30用于将连接器100附连至接口端口。在具有可插入压缩套筒的CMP型连接器中,螺母30的结构性构造和功能性操作可与如图1-20所示的连接器100的类似部件的结构和功能类似,其中附图标记有类似的表示。
现在转到图2-4,描述了电连续性构件70的实施例变型。连续性构件70是导电的。连续性构件可具有第一端71和轴向相对的第二端72。连续性构件的实施例70包括柱体接触部77。当可操作地装配好同轴电缆连接器100时,柱体接触部77和柱体40物理接触且电接触,并有助于让电接地连续性延伸通过柱体40。如图2-4所示,柱体接触部77包括大体为圆柱状的主体,其具有与柱体40的一部分的外部尺寸相对应的内部尺寸。连续性构件70还可包括一个固定件75或多个固定件,例如凸片75a-c,其可有助于将连续性构件70相对于柱体40和/或连接器主体50物理地固定就位。固定件75可具有弹性,这样,能够对可操作地毗连的同轴电缆连接器100的部件(例如柱体40)施加类似弹簧力。连续性构件70的实施例包括螺母接触部74。当可操作地组装好同轴电缆连接器100或以使连接器100可工作的方式将连接器100装配在一起时,螺母接触部74和螺母30物理接触且电接触,从而有助于便于电接地连续性延伸通过螺母30。螺母接触部74可包括能与连续性构件70的各种实施例相关联的凸缘状元件。此外,如图2-3所示,连续性构件70的各种实施例可包括通槽73。通槽73贯穿整个连续性构件70延伸。此外,如图2所示,连续性构件70的各种实施例可包括位于连续性构件70的凸缘状螺母接触部74上的凸缘切口76。连续性构件70由导电材料形成。此外,连续性构件70的实施例可具有弹性,其中弹性可以通过连续性构件70的结构性构造和连续性构件70的材料成分来实现。
可以通过任何能够形成可工作部件的可操作工艺来形成、成形、制作或以其它方式制造连续性构件70的实施例,其中用以制造连续性构件的制造工艺可取决于连续性构件的结构性构造而改变。例如,具有通槽73的连续性构件70可由一片材料形成,可将该片材料进行冲压然后弯曲成可操作的形状,其允许连续性构件70按照拟定的方式工作。冲压能够适应连续性构件70的各种可操作特征。例如,在冲压工艺中可以切割固定件75,诸如凸片75a-c。此外,凸缘切口76也可在冲压工艺中形成。本领域技术人员应当理解,可以通过冲压或其他制造和成形手段在连续性构件70上形成各种其他表面特征。因此,可以设想,可提供连续性构件70的特征来机械地互锁或交插或以其他方式可操作地物理地接合螺母30的实施例的相应互补特征、柱体40的实施例的相应互补特征、和/或连接器主体50的实施例的相应互补特征。凸缘切口76可使弯曲变得容易,该弯曲对于形成凸缘状螺母接触件74可能是必要的。但是,如图3所示,连续性构件70的实施例不必具有凸缘切口76。此外,如图4所示,连续性构件70的实施例也不必具有通槽73。这些实施例可通过其它制造方法来形成。本领域技术人员应当理解,连续性构件70的实施例的制造可包括铸造、挤压、切割、压花、车削、模压、攻丝、钻孔、弯曲、轧制、成形、部件二次模塑、它们的组合、或其他可提供高效部件生产的制造方法。
继续参照附图,图5-7描述了根据本发明的组装的具有电连续性构件70的同轴电缆连接器的实施例100的一部分的立体剖开图。具体地,图6示出了具有缩短的螺母30a的同轴电缆连接器实施例100,其中螺母30a的第二后端32a不像图5中螺母30的第二后端32延伸得那么远。图7示出了包括电连续性构件70的同轴电缆连接器实施例100,电连续性构件70不接触连接器主体50,因为连接器主体50具有内部卡槽56,其在组装后确保连续性构件70和连接器主体50之间形成物理间隙。在组装过程中可使连续性构件70位于柱体40的外表面周围,同时将柱体40相对于螺母30轴向地插入就位。连续性构件70的内径应当足以允许其前移柱体40的相当长度直到其接触到柱体40的邻近柱体40第一端41的凸缘44的那部分。
连续性构件70应当构造和定位成使得当组装好同轴电缆连接器100时,连续性构件70位于螺母30的第二端部37的后面,其中第二端部37起始于螺母唇部34的面向螺母30的第一端31的侧面35,并向后延伸到螺母30的第二端32。连续性构件70在连接器100内相对于螺母第二端部37的位置轴向设置在螺母30的内唇部34的面向柱体40的凸缘44的表面35之后。螺母30的第二端部37从螺母30的第二后端32延伸至螺母30的轴向位置,该轴向位置对应于内唇部34的面向螺母30的第一前端31的前向侧面35的、也离螺母30的第二端32最近的点。因此,螺母30的第一端部38从螺母30的第一端31延伸至唇部34的面向螺母30的第一前端31的前向侧面35的、离螺母30的第二端32最近的该相同点。方便起见,图5中示出的虚线39,描述了限定螺母30各实施例的第一端部38和第二端部37的界线的相对径向垂直平面和轴向点。这样,连续性构件70并不位于螺母30的唇部34与柱体40的凸缘44的相对互补面35和45之间。相反,连续性构件70在靠后的位置上接触螺母30,而不是在螺母30的唇部34的面向柱体40的凸缘44的侧面35上,在仅仅与螺母30的第二端部37有关并在第二端部37内的位置上。
进一步参照图5-7,主体密封件80,例如O形环,可邻近螺母30的第二端部37定位在螺母30的内唇部34的前面,这样密封件80可压缩地安置在或被挤压在螺母30和连接器主体50之间。主体密封件80可紧靠地配合在主体50的一部分上,该部分对应于邻近主体50的第一端51的环形凹部58。但是,本领域技术人员应当理解,可以采用密封件80的其它对应于螺母30和主体50的其他结构性构造的位置,从而可操作地针对环境污染物的侵入提供物理密封和屏障。例如,主体密封件的实施例80可构造并与同轴电缆连接器100可操作地装配,从而防止螺母30与连接器主体50间的接触。
如图5-7,装配后,同轴电缆连接器的实施例100可具有轴向固定的部件。例如,主体50可以相对于连续性构件70和柱体40的一些部分获得物理配合,由此将这些部件在轴向和旋转方向上固定在一起。这样的配合可以通过压配合力和/或摩擦配合力实现,和/或这样的配合可以通过在轴向和/或旋转构造中物理地相互干涉的结构而变得容易。位于柱体40、连接器主体50、和/或连续性构件70中任意一个上的带键特征或互锁结构,也可帮助将这些部件相对于彼此保持。例如,连接器主体50可包括接合特征54,例如可接合固定件75(例如凸片75a-c)的内部脊,从而形成一种构造,其中一旦组装,物理结构之间会彼此干涉以防止相对于彼此的轴向运动。此外,可采用相同的固定结构75、或其他结构来帮助便于防止各部件部分相对于彼此的旋转运动。此外,一旦唇部34接触凸缘44,柱体40的凸缘44和螺母30的内唇部34将起作用以限制这两个部件相对于彼此的朝向彼此的轴向运动。但是,组装后的构造不应该防止螺母30相对于同轴电缆连接器100的其他部件的旋转运动。此外,组装后,紧固件60可固定于主体50的一部分上,使得紧固件60可相对于主体50具有一定的轴向滑动自由,由此允许可操作地附连同轴电缆10。特别地,当组装好同轴电缆连接器的实施例100时,连续性构件70置于螺母30的第二端部37,使得连续性构件70与螺母30和柱体40这两者均物理接触且电接触,由此在这些部件之间延伸接地连续性。
继续参照附图,图8-19示出了各种连续性构件实施例170-670,并示出了组装后这些实施例如何固定在同轴电缆连接器的实施例100之内。如图所示,连续性构件在形状和功能上可变化。但是,所有连续性构件均至少具有导电部分,并均置于它们所被装配进的每个同轴电缆连接器实施例100的螺母30的内唇部34的前向表面35的后面和螺母30的第二端部37的起始位置的后面。例如,连续性构件实施例170可包括多个凸缘切口176a-c。连续性构件实施例270包括螺母接触部274,其构造为径向位于螺母30和柱体40之间并在螺母30第二端部37的起始位置后面,由此在螺母内唇部34的前向表面35的后面。连续性构件实施例370的形状有点像礼帽,其中螺母接触部374接触螺母30的径向位于螺母30和连接器主体50之间的那部分。连续性构件实施例470主要径向地位于螺母30的唇部34的最内部分和柱体40之间,并在螺母30的第二端部37之内。特别地,具有连续性构件470的同轴电缆连接器100的螺母30不接触该同一同轴电缆连接器100的连接器主体50。连续性构件实施例570包括柱体接触部577,其中组装时仅仅连续性构件570的径向内缘接触柱体40。连续性构件实施例670包括柱体接触部,其径向位于螺母30的唇部34和柱体40之间,并在螺母30第二端部37的起始位置后面。
现在转到图20,示出了位于接口端口20的匹配位置上的同轴电缆连接器的实施例100。如图所示,同轴电缆连接器100完全紧靠在接口端口20上,使得接口端口20的匹配边缘26接触同轴电缆连接器100的柱体40的匹配边缘46。如此完全紧靠的构造提供了同轴电缆连接器100的最优接地性能。但是,即使当同轴连接器100仅仅部分地安装于接口端口20上时,连续性构件70也维持匹配端口20和电缆10的外部导电屏蔽件(接地14)之间的电接地路径。接地路径从接口端口20延伸至螺母30、连续性构件70、柱体40、以及导电接地屏蔽件14。这样,该连续的接地路径提供了同轴电缆连接器100的可操作功能,从而允许其即使在连接器100并未完全紧靠时也能够以拟定的方式工作。
继续参照附图,图21-23示出了根据本发明的,具有电连续性构件另一实施例770的同轴电缆连接器的实施例100的剖开分解立体图。如图所示,连续性构件770并不位于螺母30的第一端部38内。相反,连续性构件770的接触螺母30和柱体40的那些部分,例如螺母接触部774和柱体接触部777,位于螺母30的第二端部37的起始位置(起始于前向表面35)后面,这类似于连续性构件的其他所有实施例。连续性构件770包括大直径部778,当组装好同轴电缆连接器100时,该大直径部接收连接器主体50的一部分。实质上,连续性构件770具有套筒状构造并可被压配合到连接器主体50的被接收部分上。当组装好同轴电缆连接器100时,连续性构件770位于螺母30和连接器主体50之间,使得螺母30和连接器主体50之间并不接触。紧固件60a可包括轴向延伸的第一端61。紧固件60的第一端61可延伸一轴向距离,使得当紧固件60a被压入同轴电缆100上的密封位置时(未示出,但是本领域技术人员可容易地理解),紧固件60a接触或以其它方式大体邻近或非常接近螺母30。螺母30和与连续性构件770的在中间位置或夹心位置联接的紧固件60之间的这种触碰或紧密接触关系,可便于增强防止RF和/或其他环境污染物由螺母30的第二端32或接近螺母30第二端32的位置侵入同轴电缆连接器100。如图所示,连续性构件770和相关联的连接器主体50可被压配合到柱体40上,使得连续性构件770的柱体接触部777和连接器主体50的柱体安装部57在轴向和旋转方向上固定于柱体40。连续性构件770的螺母接触部774示出为延伸成弹性地接合螺母30的弹性构件,例如柔性指。螺母接触部774的这种弹性可便于当螺母30在同轴电缆连接器100的工作期间运动时强化与螺母30之间的接触,因为螺母接触部774可挠曲并保持与螺母30的恒定物理接触和电接触,由此确保接地路径的连续性延伸通过螺母30。
进一步参照附图,图24-25示出了具有连续性构件770的同轴电缆连接器100的另一实施例的立体图。如图所示,柱体40可包括表面特征47,例如从连接器主体接合部49延伸的唇部,其中连接器主体接合部49的直径小于连续性构件接合部48的直径。表面特征唇部47,连同直径可变化的连续性构件接合部48和连接器主体接合部49,可通过允许具有各种结构性构造和材料特性的各部件部分移入径向和轴向上相对于彼此的固定位置,而便于有效地组装连接器100。
进一步参照附图,图26示出了根据本发明的电连续性构件870的又一实施例的立体图。连续性构件870可在结构上与连续性构件770相类似,类似之处在于它也是套筒状的并当组装好同轴电缆连接器100时,它沿连接器主体50的一部分延伸并位于螺母30和连接器主体50之间。但是,连续性构件870包括位于连续性构件870第一端871的完整的凸缘状螺母接触部874。凸缘状螺母接触部874可具有弹性并且包括若干非常类似于连续性构件770的指状螺母接触部774的特性的功能特性。因此,连续性构件870可有效地使电连续性延伸通过螺母30。
依然参照附图,特别是附图27-32,示出了电连续性构件的另一实施例970的各种视图,其被示出为包含在同轴电缆连接器的又一实施例900中。电连续性构件970具有第一端971和第二端972。电连续性构件970的第一端971可包括一个或多个柔性部979。例如,连续性构件970可包括多个柔性部979,每个柔性部979等距离地布置,使得在立体图中连续性构件970看上去有点像雏菊。但是,本领域技术人员应当理解,连续性构件970可仅仅需要一个柔性部979以及相关联的螺母接触部974来实现连接器900的电连续性。每个柔性部979可与连续性构件970的螺母接触部974相关联。螺母接触部974构造为与螺母930的表面相接合,其中被螺母接触部974接合的螺母930的表面位于螺母930的前向表面935和螺母930的第二端部937的起始位置的后面。柱体接触部977,可以物理接触且电接触柱体940。电连续性构件970可有选择地包括通槽973,该通槽973可使制造构件970的各种工艺(例如上面类似方式中所描述的那些)变得容易。此外,具有通槽973的连续性构件970也可与跟不包括通槽的相应电连续性构件970不同的组装工艺和/或操作性能相关联。
工作时,当螺母930相对于同轴电缆连接器900的其余部件(例如柱体940、连接器主体950和紧固件960)旋转地围绕轴线而可操作地运动时,电连续性构件970应当和柱体940及螺母930均保持电接触。这样,当连接器900与同轴电缆10紧固在一起时,连续的电屏蔽可从电缆10的外部接地护套14延伸通过柱体940和电连续性构件970直至螺母或联接件930,其中联接件930最后可紧固至接口端口(例如参见图1示出的端口20),由此形成了由电缆10至端口20的接地路径。密封件980可以可操作地置于螺母930、柱体940和连接器主体950之间,以便防止环境污染物进入连接器900,并进一步保持正确的部件定位,以及在将电缆10附连至连接器900时防止环境噪音侵入正通过电缆10传送的信号中。特别地,同轴电缆连接器900的各种实施例的设计包括基本的部件构造,其中螺母930并不(甚至是不能)接触主体950。
继续参照附图,图33-38示出了电连续性构件的又一实施例1070。根据本发明,可操作地包括电连续性构件1070,从而帮助便于实现具有多个组成部件(例如,联接螺母1030、内部柱体1040、连接器主体1050、密封件1080、以及其他类似部件)的同轴电缆连接器实施例1000中的电连续性,其中在此出于描述的目的,这些组成部件在结构上类似于上文前述的其他同轴电缆连接器实施例的相应结构(附图标记以相似的方式标注)。电连续性构件1070包括第一端1071和相对的第二端1072,并包括至少一个与螺母接触部1074相关联的柔性部1079。螺母接触部1074可包括螺母接触凸片1078。如图所示,电连续性构件的实施例1070可包括多个与相应的螺母接触部1074a-b相关联的柔性部1079a-b。螺母接触部1074a-b可包括各自相应的螺母接触凸片1078a-b。所述多个柔性部1079a-b、螺母接触部1074a-b、以及螺母接触凸片1078a-b中的每一个均定位成关于电连续性构件1070的中心轴线相对地径向对称。柱体接触部1077可形成为具有一轴向长度,以便当其组装在同轴电缆连接器实施例1000中时,便于在轴向长度方向上接合柱体1040。柔性部1079a-b可以是以类似八卦的方式围绕电连续性构件1070延伸的假同轴地弯曲的臂构件。每个柔性部1079a-b可相对于连续性构件1070的其余部分独立地弯曲和挠曲。例如,如图35和36所示,连续性构件的柔性部1079a-b在朝向连续性构件1070的第一端1071方向上向上弯曲。本领域技术人员应当理解,连续性构件1070可仅需要一个柔性部1079来有效地获得连接器1000的电连续性。
当可操作地组装在同轴电缆连接器的实施例1000中时,电连续性构件实施例1070利用柔性部1079a-b的弯曲构造,使得与连续性构件1070的螺母接触部1074a-b相关联的螺母接触凸片1078a-b物理接触和电接触螺母1030的表面,其中螺母1030的被接触表面位于螺母1030的内唇部1034的前向表面1035的后面,和螺母1030的第二端部1037的起始位置(在表面1035处)的后面。方便起见,虚线1039(例如类似于图5中的虚线39)示出了限定螺母实施例1030的第一端部1038和第二端部1037的界线的轴向点和相对径向垂直平面。这样,连续性构件1070不位于螺母1030的唇部1034和柱体1040的凸缘1044的相对互补面之间。相反,电连续性构件1070在靠后的位置上接触螺母1030,而不是在螺母1030的唇部1034的面向柱体1040的凸缘1044的前向侧面上,在仅仅与螺母1030的第二端部1037有关的位置上。
依然参照附图,图39-42示出了根据本发明的具有电连续性构件实施例1170的同轴电缆连接器的另一实施例1100的各种视图。电连续性构件的各实施例,例如实施例1170,或任意其他实施例70、170、270、370、470、570、670、770、870、970、1070、1270以及其他类似实施例,可利用能增强导电能力的材料。例如,虽然连续性构件实施例由导电材料构成是很重要的,但应当理解,连续性构件可以可选择地由合金构成,例如调配成具有很好弹性和导电性的亚铜合金。此外,也可以设计连接器1100的组成部件的尺寸或部件几何形状以及将各种组成部件在同轴电缆连接器实施例1100中组装在一起的方式,来提高电连续性构件实施例的性能。可以构造同轴电缆连接器实施例的各种组成部件的部件几何形状,来使同轴电缆连接器工作期间存在于部件上的应力最小化,但是依然保持足够的接触力,同时使得接触摩擦最小化,然而依然支持电连续性同轴电缆连接器实施例的匹配组成部件的宽范围的制造公差。
电连续性构件的实施例1170可包括简单的连续带,当组装在同轴电缆连接器实施例1100之内时,其环绕柱体1140的一部分,并转而由螺母1130的第二端部1137围绕。带状连续性构件1170位于螺母第二端部1137的后面,其中第二端部1137起始于螺母1130的唇部1134的面向螺母1130第一端1131的侧面1135处,并向后延伸至螺母第二端1132。电连续性构件1170的简单带状实施例足够薄使得它占据螺母1130的第二端部1137和柱体1140之间的环形空间,但不会导致柱体1140和螺母1130在彼此相对旋转地运动时结合在一起。相对于连接器主体1150,螺母1130可自由旋转,并具有一定的滑动轴向运动的自由。由于并非完美的圆形(例如,参见图42,其中示出了连续性构件1170的微椭圆形形状),电连续性构件1170的带状实施例可接触螺母1130和柱体1140这两者。这种非圆形构造可使得接触点之间的横梁长度最大化,从而大大减小了螺母1130、柱体1140和电连续性构件1170之间的接触应力。由于基于部件的结构关系保持了小的法向力,因此摩擦也可大大减小;并且没有能够刮在螺母1130或柱体1140上的边缘或其他增大摩擦的表面。相反,电连续性构件1170在螺母1130和柱体1140的组成元件之间仅仅包括平滑的切线状接触。此外,如果发生了椭圆形带状连续性构件1170的永久变形,也不会显著地减小电接触的功效,因为如果在组装或操作期间,从一侧将连续性构件1170推开,那么其将仅仅更充分地接触连接器1100的相对侧和相应的连接器1100部件。同样地,如果万一螺母1130和柱体1140的与带状连续性构件1170相互作用的两个相关部件表面具有大小在给定公差之间变动的不同直径(螺母1130的径向靠内表面的直径以及柱体1140的径向靠外表面的直径),或者如果带状连续性构件1170自身的厚度变化,那么带状连续性构件1170可简单地采用差不多圆形的形状来适应这样的变化并依然与螺母1130以及柱体1140接触。根据本发明的目的和所提供的信息,通过使用带状连续性构件1170获得的各种优点,在结构上和功能上可行的情况下,也可以通过在此描述的电连续性构件的其他实施例来获得。
依然参照附图,注意,图43-53描述了另一同轴电缆连接器1200的不同视图,连接器1200包括电连续性构件1270的各种实施例。广义上说,电连续性构件1270物理上有些类似于具有中心圆形开口圆盘并且至少一个部分从该圆盘的平面上柔性地凸起;例如,连续性构件1270的至少一个凸起的柔性部1279在图46和52的侧视图中可明显地识别出,其在朝向连续性构件1270第一端1271的方向在圆盘的大体平面之上弯成拱形。电连续性构件1270可包括两个对称地径向相对的柔性凸起部1279a-b,其物理地和/或功能地与螺母接触部1274a-b相关联,其中螺母接触部1274a-b可各自分别包括螺母接触凸片1278a-b。柔性凸起部1279a-b从电连续性构件1270的大体上更加是圆盘状的部分向外拱出,因此当可操作地组装以在同轴电缆连接器1200内获得电连续性时,柔性凸起部(也与螺母接触部1274a-b相关联)与螺母1230的导电表面进行弹性和可靠的物理接触和电接触。被螺母接触部1274接触的螺母1230的表面位于螺母1230的第二端部1237之内。
电连续性构件1270可有选择地具有螺母接触凸片1278a-b,其中凸片1278a-b可强化构件1270的与螺母1230的表面进行可靠的可操作的接触的能力。如图所示,凸片1278a-b包括从螺母接触部延伸的简单的球状圆形突起。但是,通过包含螺母接触凸片1278a-b所获得的优势,也可以采用其他形状和几何设计来实现。凸片1278a-b的相对侧可对应于圆形卡槽或凹坑1278a1-b1。这种相对地构造的特征1278a1-b1可以是普通制造工艺的结果,例如在可能用于制造螺母接触凸片1278的压制或冲压工艺期间金属材料的自然弯曲。
如图所示,电连续性构件的实施例1270包括在长度方向上朝向连续性构件1270的第二端1272轴向延伸的圆筒部,该圆筒部包括柱体接触部1277,而柱体接触部1277构造为在轴向长度方向接触柱体1240。本领域技术人员应当理解,柱体接触部1277可以采用其他的几何构造,只要当组装在同轴电缆连接器1200内时,提供的电连续性构件1270能与柱体1240进行可靠的物理接触和电接触。
连续性构件1270应当构造和定位成使得组装好同轴电缆连接器1200时,连续性构件1270位于螺母1230的第二端部1237的起始位置后面,其中第二端部1237起始于螺母1230的唇部1234的面向螺母1230的第一端1231的侧面1235处,并向后延伸至螺母1230的第二端1232。连续性构件1270在相对于螺母1230的第二端部1237的位置上接触螺母1230。螺母1230的第二端部1237从螺母1230的第二端1232延伸至螺母1230的轴向位置,该轴向位置对应于内唇部1234的面向螺母1230第一前端1231的前向侧面1235的、也离螺母1230的第二后端1232最近的点。因此,螺母1230的第一端部1238从螺母1230的第一端1231延伸至唇部1234的面向螺母1230的第一端1231的侧面的、离螺母1230的第二端1232最近的该相同点。方便起见,虚线1239(见图49-50和图53),描述了限定螺母1230的实施例的第一端部1238和第二端部1237的界线的轴向点以及相对径向垂直平面。这样,连续性构件1270并不位于螺母1230的唇部1234与柱体40的凸缘1244的相对互补面1235和1245之间。相反,连续性构件1270在仅仅与螺母1230的第二端部1237有关的靠后位置上接触螺母1230,而不是在螺母1230的唇部1234的面向柱体1240的凸缘1244的侧面上接触螺母1230。
连接器1200可包括同轴电缆连接器1200的各种其他的组成部件。例如,连接器主体1250可包括内部卡槽1256,该卡槽1256定位成当电连续性构件1270位于柱体1240、主体1250和螺母1230之间时,其有助于提供电连续性构件1270可操作的定位。此外,连接器主体1250可包括邻近主体1250第一端1251的柱体安装部1257,柱体安装部1257构造为相对于柱体1240的外表面的一部分1247牢固地定位主体1250,使得连接器主体1250相对于柱体1240轴向固定。特别地,螺母1230在相对于电连续性构件1270和柱体1240定位时,不与主体接触。主体密封件1280可邻近螺母1230的第二端部定位并紧贴地围绕在连接器1250周围,以便在其间的空间中形成密封。
参照附图1-53,描述了获得同轴电缆连接的电连续性的方法。第一步包括提供同轴电缆连接器100/900/1000/1100/1200,该连接器可操作以获得电连续性。所提供的同轴电缆连接器100/900/1000/1100/1200包括连接器主体50/950/1050/1150/1250和可操作地附连至连接器主体50/950/1050/1150/1250的柱体40/940/1040/1140/1240,柱体40/940/1040/1140/1240具有凸缘44/944/1044/1144/1244。同轴电缆连接器100/900/1000/1100/1200还包括相对于柱体40/940/1040/1140/1240和连接器主体50/950/1050/1150/1250可轴向旋转的螺母30/930/1030/1130/1230,螺母30/930/1030/1130/1230包括内唇部34/934/1034/1134/1234。此外,所提供的同轴电缆连接器包括电连续性构件70/170/270/370/470/570/670/770/870/970/1070/1170/1270,其轴向置于螺母30/930/1030/1130/1230的内唇部34/934/1034/1134/1234的面向柱体40/940/1040/1140/1240的凸缘44/944/1044/1144/1244的表面35/935/1035/1135/1235的后面。进一步的方法步骤包括将同轴电缆10牢固连接至连接器100/900/1000/1100/1200,使得电缆的接地护套或屏蔽件14电接触柱体40/940/1040/1140/1240。此外,方法包括将电连续性从柱体40/940/1040/1140/1240延伸通过连续性构件70/170/270/370/470/570/670/770/870/970/1070/1170/1270直至螺母30/930/1030/1130/1230。最后的方法步骤包括将螺母30/930/1030/1130/1230紧固至导电接口端口20,从而完成接地路径并在电缆连接中获得电连续性,甚至当螺母30/930/1030/1130/1230不完全紧固至端口20上时也能获得电连续性,这是因为仅仅需要在端口上拧入螺母的一些螺纹来使电连续性延伸通过螺母30/930/1030/1130/1230,并经由连续性构件70/170/270/370/470/570/670/770/870/970/1070/1170/1270和柱体40/940/1040/1140/1240的电界面直至电缆屏蔽件14。
尽管已经结合上述特定实施例来描述了本发明,但显然地,多种改变、修正和变化对于本领域技术人员将是显而易见的。因此,上述本发明的优选实施例意在例示,而不在于限定。在不脱离如所附权利要求所限定的本发明精神和范围的情况下,可以做出多种变化。权利要求提供了本发明的覆盖范围并且不应当限于本文所提供的特定实例。
Claims (23)
1.一种同轴电缆连接器,其特征在于,所述同轴电缆连接器包括:
连接器主体;
附连于连接器主体的柱体,柱体具有凸缘;
螺母,其能相对于柱体和连接器主体轴向旋转,螺母包括内唇部;
电连续性构件,其设置在螺母的内唇部的面向凸缘的表面的轴向后面,以便连续性构件的至少一部分包围连接器主体的一部分,从而在螺母和连接器主体的该部分之间形成电接地连续性路径。
2.一种同轴电缆连接器,其特征在于,所述同轴电缆连接器包括:
连接器主体;
附连于连接器主体的柱体,柱体具有凸缘;
螺母,其能相对于柱体和连接器主体轴向旋转,螺母包括内唇部;
用于将电接地连续性延伸通过柱体和螺母的装置,该装置设置在螺母的内唇部的面向凸缘的表面的轴向后面。
3.如权利要求1所述的同轴电缆连接器,其特征在于,连续性构件的接触螺母的部分是柔性的。
4.如权利要求3所述的同轴电缆连接器,其特征在于,存在多个接触螺母的柔性部。
5.如权利要求4所述的同轴电缆连接器,其特征在于,连续性构件大体为圆盘状,并且其中,柔性螺母接触部由电连续性构件的大体上更加是圆盘状的部分向外拱出。
6.如权利要求5所述的同轴电缆连接器,其特征在于,连续性构件的螺母接触部每个均包括接触螺母的凸片。
7.如权利要求6所述的同轴电缆连接器,其特征在于,连续性构件的螺母接触部为柔性指。
8.如权利要求7所述的同轴电缆连接器,其特征在于,连续性构件包括多个柔性指。
9.如权利要求1所述的同轴电缆连接器,其特征在于,电连续性构件不接触连接器主体。
10.如权利要求1所述的同轴电缆连接器,其特征在于还包括位于螺母和连接器主体之间的密封环,用于防止不期望的环境污染物侵入。
11.如权利要求1所述的同轴电缆连接器,其特征在于还包括紧固件,该紧固件包括具有内部斜面的中心通路,当紧固件被压入连接器主体上的紧固位置上时,所述斜面可变形地压缩连接器主体的外表面。
12.如权利要求1所述的同轴电缆连接器,其特征在于还包括可插入压缩套筒,该可插入压缩套筒被推入连接器主体中以挤压和固定其中的同轴电缆。
13.如权利要求13所述的同轴电缆连接器,其特征在于,连续性构件组装在同轴电缆连接器中的位置防止连接器主体接触螺母。
14.如权利要求1所述的同轴电缆连接器,其特征在于,在连接器操作期间所有时间,包括在连接器未完全拧紧到接口部分上时以及在螺母未与柱体接触时,电连续性构件都保持与连接器主体的外表面连续且不间断的接触,从而保持螺母和连接器之间的电连续性。
15.如权利要求1所述的同轴电缆连接器,其特征在于,电连续性构件是椭圆形带。
16.如权利要求1所述的同轴电缆连接器,其特征在于,螺母具有螺纹。
17.如权利要求1所述的连接器,其特征在于,连续性包括在连接器操作期间所有时间都延伸通过联接器和主体的连续且不间断的电接地路径,甚至在连接器未完全拧紧到接口端口上时也是如此以及甚至在联接器未与主体接触时也是如此。
18.如权利要求1所述的连接器,其特征在于,连续性构件的包围并接触连接器主体的环状主体表面的部分也位于螺母的最后表面的轴向后面。
19.如权利要求18所述的连接器,其特征在于,连续性构件的包围并接触连接器主体的环状主体表面且位于联接器的最后表面的轴向后面的部分不与柱体接触。
20.如权利要求1所述的连接器,其特征在于,连续性构件在连接器操作期间所有时间且在连接器安装到接口端口上时与螺母和主体两者均保持电接触,且甚至在连接器尚未安装到接口端口上时也保持与主体接触。
21.一种同轴电缆连接器,包括:
连接器主体;
柱体,具有位于连接器主体内的至少一部分,其中,柱体包括凸缘;
能相对于柱体和连接器主体轴向旋转的联接器,所述联接器具有:配置成联接到接口端口的第一端和相对的第二端;内唇部,所述内唇部具有面向联接器的第一端的第一表面和面向联接器的第二端的第二表面;以及面向内的环状联接器表面,在内唇部的第二表面的轴向后面延伸且具有内直径;以及
设置在联接器的内唇部的第二表面的轴向后面的连续性构件,其中,所述连续性构件与联接器持续物理和电接触;
其中,连续性构件的至少一部分:
在连接器主体的环状外主体表面上的位置围绕连接器主体的环状外主体表面延伸且与连接器主体的环状外主体表面接触,连接器主体的环状外主体表面具有的外直径大于面向内的环状联接器表面的内直径且不由面向内的环状联接器表面环绕,以及
在联接器和连接器主体之间位于联接器的最后面的端表面的轴向后面,以及
其中,连续性构件的围绕连接器主体的环状外主体表面延伸且与连接器主体的环状外主体表面接触并且位于联接器的最后面的端表面的轴向后面的所述至少一部分不与柱体接触,
其中,连续性构件延伸联接器和连接器主体之间的电连续性。
22.一种同轴电缆连接器,包括:
连接器主体;
柱体,具有位于连接器主体内的至少一部分,其中,柱体包括凸缘;
能相对于柱体和连接器主体轴向旋转的联接器,所述联接器具有:配置成联接到接口端口的第一端和相对的第二端;内唇部,所述内唇部具有面向联接器的第一端的第一表面和面向联接器的第二端的第二表面;以及面向内的环状联接器表面,在内唇部的第二表面的轴向后面延伸且具有内直径;以及
设置在联接器的内唇部的第二表面的轴向后面的连续性构件,其中,所述连续性构件与联接器持续物理和电接触;
其中,连续性构件的至少一部分:
在连接器主体的环状外主体表面上的位置围绕连接器主体的环状外主体表面延伸且与连接器主体的环状外主体表面接触,连接器主体的环状外主体表面具有的外直径大于面向内的环状联接器表面的内直径且不由面向内的环状联接器表面环绕,以及
在联接器和连接器主体之间位于联接器的最后面的端表面的轴向后面,以及
其中,连续性构件的围绕连接器主体的环状外主体表面延伸且与连接器主体的环状外主体表面接触并且位于联接器的最后面的端表面的轴向后面的所述至少一部分不与柱体接触,
其中,连续性构件延伸联接器和连接器主体之间的电连续性,
其中,连续性构件在联接器的面向后的接触部分处与联接器持续地物理和电接触。
23.一种同轴电缆连接器,包括:
连接器主体;
柱体,具有凸缘和位于连接器主体内的部分;
联接器,所述联接器具有:配置成联接到接口端口的第一端;第二端;内唇部,所述内唇部具有面向联接器的第一端的第一表面和面向联接器的第二端的第二表面;以及面向内的环状联接器表面,在内唇部的第一表面的轴向后面延伸且具有内直径;以及
连续性构件,配置成设置在联接器的内唇部的第二表面的轴向后面,且形成通过联接器和通过连接器主体的连续性路径;
其中,连续性构件的至少一部分在连接器主体的环状外主体表面上的位置围绕连接器主体的环状外主体表面延伸且保持与连接器主体的环状外主体表面电接触,连接器主体的环状外主体表面具有的外直径大于面向内的环状联接器表面的内直径且不由面向内的环状联接器表面环绕,且其中,连接器主体的环状外主体表面上的位置是面向外表面;
其中,连续性构件的至少一部分配置成设置在联接器和连接器主体之间位于联接器的最后面的端表面的轴向后面,其中,联接器的最后面的端表面和连接器主体的环状外主体表面上的位置不是相对的平行表面;
其中,连续性构件的围绕连接器主体的环状外主体表面延伸且与连接器主体的环状外主体表面接触并且位于联接器的最后面的端表面的轴向后面的所述至少一部分不与柱体接触;以及
其中,连续性构件不与连接器主体的最前面的端表面接触。
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| US12/633,792 US8287320B2 (en) | 2009-05-22 | 2009-12-08 | Coaxial cable connector having electrical continuity member |
| CN201010229211.4A CN101944688B (zh) | 2009-05-22 | 2010-05-21 | 具有电连续性构件的同轴电缆连接器 |
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| CN201010229211.4A Active CN101944688B (zh) | 2009-05-22 | 2010-05-21 | 具有电连续性构件的同轴电缆连接器 |
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| CN110277684A (zh) * | 2018-03-15 | 2019-09-24 | 泰科电子(上海)有限公司 | 连接器 |
| CN110277684B (zh) * | 2018-03-15 | 2021-03-09 | 泰科电子(上海)有限公司 | 连接器 |
| CN112868138A (zh) * | 2018-07-17 | 2021-05-28 | Ppc宽带股份有限公司 | 同轴线缆连接器 |
| CN112868138B (zh) * | 2018-07-17 | 2023-07-18 | Ppc宽带股份有限公司 | 同轴线缆连接器 |
| CN112038840A (zh) * | 2019-06-04 | 2020-12-04 | 泰连公司 | 屏蔽件接地电连接器 |
| CN112038840B (zh) * | 2019-06-04 | 2024-05-28 | 泰连公司 | 屏蔽件接地电连接器 |
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