CN104241990A - 同轴电缆连续性连接器 - Google Patents
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/38—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts
- H01R24/40—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/622—Screw-ring or screw-casing
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R2103/00—Two poles
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- H—ELECTRICITY
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- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R9/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
- H01R9/03—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections
- H01R9/05—Connectors arranged to contact a plurality of the conductors of a multiconductor cable, e.g. tapping connections for coaxial cables
- H01R9/0524—Connection to outer conductor by action of a clamping member, e.g. screw fastening means
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- Y10T29/49117—Conductor or circuit manufacturing
- Y10T29/49194—Assembling elongated conductors, e.g., splicing, etc.
- Y10T29/49195—Assembling elongated conductors, e.g., splicing, etc. with end-to-end orienting
Abstract
本发明提供一种同轴电缆连续性连接器,该连接器包括:连接器主体;可与连接器主体接合的柱,其中,该柱包括具有渐缩表面的法兰;螺母,其中,该螺母包括具有渐缩表面的内部唇缘,其中,当在装配同轴电缆连续性连接器时,螺母和柱相对于彼此可操作地轴向定位时,螺母的渐缩表面相对地对应于柱的渐缩表面;以及连续性部件,其设置在柱的渐缩表面和螺母的渐缩表面之间,且接触柱的渐缩表面和螺母的渐缩表面,使得在装配连续性连接器时,连续性部件经受相对的渐缩表面的接触力引起的力矩。
Description
相关申请的交叉引用
本申请要求2009年4月2日提交的名称为同轴电缆连续性连接器的美国临时专利申请No. 61/166,247的优先权。
本申请是申请号为CN201080024423.7、申请日为2010年4年1日的中国专利申请的分案申请。
技术领域
本发明涉及在同轴电缆通信应用中使用的F型连接器,且更具体地涉及使电磁干扰护罩从电缆连续延伸通过连接器的连接器结构。
背景技术
宽带通信已经成为日益流行的电磁信息交换的形式,且同轴电缆对于宽带通信的传输来说是普通的导线管。同轴电缆通常设计成使得传送通信信号的电磁场仅存在于电缆的内部同轴导体和外部共轴导体之间的空间中。这允许同轴电缆路线安装在金属物体附近,而没有在其它传统线路中发生的功率损失,且这保护通信信号不受外部电磁干扰的影响。用于同轴电缆的连接器通常连接到互补的接口端口上,以将同轴电缆电结合到各种电子装置和电缆通信设备上。通常通过绕着对应的外部带螺纹接口端口而可旋转操作连接器的内部带螺纹螺母来进行连接。将同轴电缆连接器的带螺纹连接完全上紧到接口端口上有助于确保连接器和对应的接口端口之间的接地连接。但是,通常连接器没有恰当地上紧或以别的方式安装到接口端口上,且没有出现连接器与接口端口的恰当的电匹配。此外,普通的连接器的结构可容许意图接地的损失和从电缆延伸通过连接器到达对应的同轴电缆接口端口的电磁屏蔽的间断性。因此,存在对用于确保同轴电缆、连接器结构和同轴电缆连接器接口端口之间的接地连续性的改进的连接器的需要。
发明内容
本发明的第一个方面提供了一种同轴电缆连续性连接器,包括:连接器主体;可与连接器主体接合的柱,其中,该柱包括具有渐缩表面的法兰;螺母,其中,该螺母包括具有渐缩表面的内部唇缘,其中,当在装配同轴电缆连续性连接器时,螺母和柱相对于彼此可操作地轴向定位时,螺母的渐缩表面相对地对应于柱的渐缩表面;以及连续性部件,其设置在柱的渐缩表面和螺母的渐缩表面之间,且接触柱的渐缩表面和螺母的渐缩表面,使得在装配连续性连接器时,连续性部件经受相对的渐缩表面的接触力引起的力矩。
本发明的第二个方面提供了一种同轴电缆连续性连接器,包括:连接器主体;可相对于连接器主体旋转的螺母,其中,该螺母包括具有渐缩表面的内部唇缘;可与连接器主体安全地接合的柱,其中,该柱包括具有渐缩表面的法兰,其中,当在装配同轴电缆连续性连接器时,柱和螺母相对于彼此可操作地轴向定位时,柱的渐缩表面相对地对应于螺母的渐缩表面;以及位于螺母和柱之间的连续的接地路径,设置在螺母的渐缩表面和柱的渐缩表面之间的连续性部件的设置有利于该接地路径在预载条件下连续地接触螺母和柱,其中,在装配连续性连接器时,连续性部件被存在于螺母和柱的相对的渐缩表面之间的力矩连续地压挤。
本发明的第三个方面提供了一种同轴电缆连续性连接器,包括:轴向地固定到连接器主体上的柱;螺母,在装配同轴电缆连续性连接器时,螺母可相对于柱和连接器主体同轴地旋转;以及用于在装配同轴电缆连接性连接器时,使连续的电接地路径在螺母和柱之间延伸的机构,其中,在装配同轴电缆连续性连接器时,该机构激活存在于螺母和柱的相对的表面之间的力矩。
本发明的第四个方面提供了一种用于使电接地路径从同轴电缆延伸通过同轴电缆连接器到达接口端口的方法,该方法包括:提供同轴电缆连续性连接器,其包括:连接器主体;可与连接器主体接合的柱,其中,该柱包括具有渐缩表面的法兰;螺母,其中,该螺母包括具有渐缩表面的内部唇缘,其中,当在装配同轴电缆连续性连接器时,螺母和柱相对于彼此可操作地轴向定位时,螺母的渐缩表面相对地对应于柱的渐缩表面;以及连续性部件,其设置在柱的渐缩表面和螺母的渐缩表面之间,且接触柱的渐缩表面和螺母的渐缩表面,使得在装配连续性连接器时,连续性部件经受相对的渐缩表面的接触力引起的力矩;装配同轴电缆连续性连接器;以电结合柱和同轴电缆的外部导体的方式将同轴电缆可操作地附连到同轴电缆连续性连接器上;以及将具有被附连的同轴电缆的装配好的连接器安装到接口端口上,以使电接地路径从同轴电缆延伸通过同轴电缆连续性连接器的柱和螺母到达接口端口。
根据结合附图得到的以下详细公开,将更加容易地理解和全面地认识本发明的构造和操作的前述和其它特征。
附图说明
图1描绘了根据本发明的同轴电缆连续性连接器的一个实施例的元件的一个实施例的分解透视图;
图2描绘了根据本发明的、在装配期间的连续性连接器的一个实施例的一部分的分解透视图;
图3描绘了根据本发明的、在装配期间的连续性连接器的一个实施例的一部分的侧视图;
图4描绘了根据本发明的装配好的连续性连接器的一个实施例的透视剖面图;
图5描绘了根据本发明的装配好的连续性连接器的一个实施例的一部分的透视剖面图;
图6描绘了根据本发明的完全上紧到接口端口上的连续性连接器的一个实施例的透视剖面图;
图7描绘了根据本发明的成完全上紧的构造的连续性连接器的一个实施例的透视剖面图;
图8描绘了根据本发明的具有被附连同轴电缆的连续性连接器的一个实施例的透视剖面图,该连接器在接口端口上处于完全上紧的位置上;以及
图9描绘了根据本发明的具有被附连同轴电缆的连续性连接器的一个实施例的透视剖面图,该连接器在接口端口上处于未完全上紧的位置上。
具体实施方式
虽然已经显示和详细描述了本发明的某些实施例,但是应当理解,可在不偏离权利要求书的范围的情况下作出各种改变和修改。本发明的范围无论如何不限于仅作为本发明的实施例的实例公开的组成构件的数量、构件的材料、构件的形状、构件的有关布置等。
作为详细描述的前言,应当注意,如在本说明书和权利要求书中所使用,单数形式“一个”、“一种”和“该”包括复数所指对象,除非上下文清楚地以别的方式规定。
参照附图,图1描绘了连续性连接器100的一个实施例。连续性连接器100可以可操作地固定到具有保护性外护套12、导电接地护罩14、内部电介质16和中心导体18的同轴电缆10上。可通过移除保护性外护套12且拉起导电接地护罩14以暴露内部电介质16的一部分来像图1中体现的那样准备同轴电缆10。所体现的同轴电缆10的进一步的准备可包括剥去电介质16,以暴露中心导体18的一部分。保护性外护套12意图保护同轴电缆10的各种构件不受由于暴露于污垢或湿气以及由于腐蚀造成的损害。此外,保护性外护套12可在某种程度上用来保护成包容式电缆设计的同轴电缆10的各种构件,包容式电缆设计保护电缆10不受与电缆安装期间的运动有关的损害。导电接地护罩14可由适于提供电接地连接的导电材料构成。可采用护罩14的各实施例来屏蔽不需要的噪声。例如,护罩14可包含环绕着电介质16的金属箔,或者在电介质16周围形成为连续的编织物的若干导线。可使用箔和/或编织线的组合,其中,导电护罩14可包含箔层,然后编织层,然后箔层。本领域技术人员将理解,可实现各种层组合,以便于导电接地护罩14实现电磁缓冲,从而帮助防止可中断宽带通信的环境噪声的进入。电介质16可由适于电绝缘的材料构成。应当注意,同轴电缆10的各种构件所包含的各种材料应当具有某种程度的弹性,从而允许电缆10根据传统的宽带通信标准、安装方法和/或设备来进行伸缩或弯曲。应当进一步认可,同轴电缆10、保护性外护套12、导电接地护罩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信标准和/或装置的大体认可的参数而变化。
进一步参照图1,连续性连接器100还可包括同轴电缆接口端口20。同轴电缆接口端口20包括足以进行充分的电接触的、用于接收同轴电缆中心导体18的一部分的导电插座。同轴电缆接口端口20可进一步包括带螺纹外表面23。另外,同轴电缆接口端口20可包括匹配边缘26(在图9中显示)。应当认可,同轴电缆接口端口20和/或端口20的导电插座的径向厚度和/或长度可基于对应于宽带通信标准和/或设备的大体认可的参数而变化。此外,可形成于同轴电缆接口端口20的带螺纹外表面23上的螺纹的斜度和高度可基于对应于宽带通信标准和/或设备的大体认可的参数而变化。另外,应当注意,接口端口20可由单种导电材料、多种导电材料制成,或者可用对应于端口20与同轴电缆连接器(例如诸如连续性连接器100)进行的可操作的电交互的导电材料和非导电材料两者构造成。但是,导电插座22应当由导电材料制成。另外,本领域普通技术人员将理解,接口端口20可由同轴电缆通信装置、电视、调制解调器、计算机端口、网络接收器或诸如信号分离器、线缆扩充器、电缆网络模块和/或类似物的其它通信修改装置的连接性接口构件体现。
仍然进一步参照图1,同轴电缆连接器100的实施例可进一步包括带螺纹螺母30、柱40、连接器主体50、紧固件部件60、连续性部件70(例如诸如由导电材料制成的环形垫圈),以及连接器主体、密封部件80,例如诸如主体O形圈。
连续性连接器100的实施例的带螺纹螺母30具有第一端31和相对的第二端32。带螺纹螺母30可包括内螺纹33,该内螺纹33从第一端31的边缘轴向地延伸足够的距离,以提供与标准的同轴电缆接口端口20(如图1、8和9所示)的外螺纹23的可操作地有效的螺纹接触。带螺纹螺母30包括位于螺母的第二端32附近的内部唇缘34,例如环形突起。内部唇缘34包括面向螺母30的第一端31的渐缩表面35。渐缩表面35形成非径向面,且可相对于连续性连接器100的中心轴线以非任何垂直角延伸。螺母的结构构造可相应地变化,以适应同轴电缆连接器100的不同的功能性。例如,螺母30的第一端31可包括内部结构和/或外部结构,例如凸纹凹槽、曲面、棘爪、槽口、开口、斜槽,或其它结构特征等,它们可有利于诸如不漏水的密封件的环境密封部件的可操作连结,当与接口端口20匹配时,环境密封部件可帮助防止环境污染物在螺母的第一端31处进入。此外,螺母30的第二端32可延伸较大的轴向距离,以径向地驻留在连接器主体50的范围中,尽管螺母30的延伸部分不需要接触连接器主体50。带螺纹螺母30可由导电材料制成,从而有利于通过螺母进行接地。因此,螺母30可构造成在连接器100(在图6、8和9中显示)推进到端口20上时,通过电接触接口端口20的导电表面来延伸电磁缓冲器。另外,带螺纹螺母30可由导电材料和非导电材料制成。例如,螺母30的外表面部分可由聚合物制成,而螺母30的剩余部分可由金属或其它导电材料构成。带螺纹螺母30可由金属或聚合物或将有利于刚性地形成的螺母主体的其它材料制成。带螺纹螺母30的制造可包括铸造、挤压、切割、压花、车削、开孔、钻削、注塑、吹塑或可提供构件的高效生产的其它制造方法。
仍然参照图1,连续性连接器100的实施例可包括柱40。柱40包括第一端41和相对的第二端42。此外,柱40包括位于柱40的第一端41处的法兰44,例如在外部延伸的环形突起。法兰44包括面向柱40的第二端42的渐缩表面45。渐缩表面45形成非径向面,且可相对于连续性连接器100的中心轴线以任何非垂直的角延伸。渐缩表面45的渐缩的角应当相对地对应于带螺纹螺母30的内部唇缘34的渐缩表面35的渐缩的角。另外,柱40的实施例可包括诸如唇缘或突起的表面特征74,该表面特征74可接合连接器主体50的一部分,以固定柱40相对于连接器主体50的轴向运动。另外,柱40可包括匹配边缘46。匹配边缘46可构造成与接口端口20的对应的匹配边缘26进行实体接触和电接触。柱40应当形成为使得包括电介质16和中心导体18(在图1、8和9中显示)的准备好的同轴电缆10的一部分可轴向地通入第二端42中,以及/或者穿过柱40的管状主体的一部分。此外,柱40应当尺寸设置成使得柱40可在电介质16的周围以及在保护性外护套12和导电接地护罩14的下面插入准备好的同轴电缆10的端部中。因此,在柱40的实施例可在拉起的导电接地护罩14下面插入准备好的同轴电缆10的端部中时,可实现与护罩14的实质上的实体接触和/或电接触,从而有利于通过柱40进行接地。柱40可由金属或将有利于刚性地形成的柱主体的其它导电材料制成。另外,柱可由导电材料和非导电材料两者的组合制成。例如,可将金属涂层或金属层施用到聚合物或其它非导电材料上。柱40的制造可包括铸造、挤压、切割、车削、钻削、注塑、喷涂、构件包胶模或可提供构件的高效生产的其它制造方法。
诸如连续性连接器100的同轴电缆连接器的实施例可包括连接器主体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50可包括在主体50的第一端51附近的柱安装部分57,柱安装部分57构造成与柱40的外表面的一部分匹配,且实现与该部分的抓紧,使得连接器主体50轴向地和径向地固定到柱40上。在装配连续性连接器的实施例时(如在图6-8中),连接器主体50可以以防止连接器主体50与螺母30接触的方式安装在柱40上。另外,连接器主体50可包括位于第一端51附近的外部环形凹部58。此外,连接器主体50可包括半刚性且顺从性的外表面55,其中,外表面55可构造成在第二端52由于紧固件部件60的操作而可变形地压靠在接收到的同轴电缆10上时,形成环形密封。连接器主体50可包括位于连接器主体50的第二端52附近的外部环形棘爪53。另外,连接器主体50可包括内表面特征59,例如形成于连接器主体50的第二端52的内表面附近且构造成增强插入的且接收到同轴电缆10的摩擦性限制和卡紧的环形锯齿。连接器主体50可由诸如塑料、聚合物、柔性金属或有利于半刚性且顺从性的外表面55的复合材料的材料制成。另外,连接器主体50可由导电材料或非导电材料或它们的组合制成。连接器主体50的制造可包括铸造、挤压、切割、车削、钻削、注塑、喷涂、吹模、构件包胶模或可提供构件的高效生产的其它制造方法。
进一步参照图1,连续性连接器100的实施例可包括紧固件部件60。紧固件部件60可具有第一端61和相对的第二端62。另外,紧固件部件60可包括内部环形突起63,该内部环形突起63位于紧固件部件60的第一端62附近,且构造成与连接器主体50(在图4和6中显示)的外表面55上的环形棘爪53匹配,且实现与该环形棘爪53的抓紧。此外,紧固件部件60可包括限定在第一端61和第二端62之间且轴向地贯穿紧固件部件60的中心通路65。中心通路65可包括斜表面66,该斜表面66可设置在具有第一直径的第一开口或内膛孔67和具有第二直径的第二开口或内膛孔68之间,第一开口或内膛孔67设置成紧邻紧固件部件60的第一端61,第二开口或内膛孔68设置成紧邻紧固件部件60的第二端62。当紧固件部件60被操作从而固定同轴电缆10时,斜表面66可起可变形地压挤连接器主体50的外表面55的作用。另外,紧固件部件60可包括设置成紧邻紧固件部件60的第二端62的外表面特征69。表面特征69可有利于在连接器100的操作期间卡紧紧固件部件60。虽然将表面特征69显示为环形棘爪,但是表面特征69可具有各种形状和大小,例如凸纹、凹口、突起、压花或其它摩擦或卡紧型布置。必要领域的技术人员应当认可,紧固件部件60可由诸如金属、硬塑料、聚合物、复合物等刚性材料制成。此外,可通过铸造、挤压、切割、车削、钻削、注塑、喷涂、吹模、构件包胶模或可提供构件的高效生产的其它制造方法来制造紧固件部件60。
将连续性连接器100紧固到接收到同轴电缆10(例如在图1、8和9中显示)可使用的方式也可类似于将电缆紧固到共用的CMP型连接器上的方式。连续性连接器100包括具有第一端51和第二端52的外部连接器主体50。主体50至少部分地包围管状内柱40。管状内柱40具有第一端41,该第一端41包括构造成与同轴电缆10匹配且接触电缆10的外部导电接地护罩或鞘套14的一部分的法兰44和第二端42。连接器主体50相对于管状柱40的在管状柱40的第一端41附近的部分固定,且与内柱40以径向隔开的关系协作来限定具有后部开口的环形室。管状锁紧压挤部件可通过环形室的后部开口轴向地突入环形室中。管状锁紧压挤部件可以可滑动地联接到连接器主体50上,或者以别的方式可动地固定到连接器主体50上,且管状锁紧压挤部件可在第一打开位置(允许管状内柱40插入准备好的电缆10端部中,以接触接地护罩14)和第二夹紧位置(将电缆10可压挤地固定在连接器100的室内)之间轴向地移置。在内柱40的前端处的联接器或螺母30用来将连续性连接器100附连到接口端口上。在CMP型连续性连接器100中,螺母30的结构构造和功能操作可类似于图1-9中描述的且具有类似地指示的参考标号的连续性连接器100的类似的构件的结构和功能性。另外,本领域技术人员应当理解,可将诸如压接法、旋紧式压挤或其它连接结构和/或过程的其它机构结合在连续性连接器100的可操作的设计中。
现在转到图2-4,显示了在装配期间和装配好的连续性连接器100的实施例。连续性部件70可在装配期间设置在柱40的外表面周围,同时柱40相对于螺母30轴向地插入就位。连续性部件70应当具有足够的内径,以允许其沿着柱主体40的整个长度移动,直到其接触到法兰44(如图3中所描绘)的渐缩表面45为止。诸如O形圈的主体密封部件80可在螺母的内部唇缘34的前面位于螺母的第二端中,使得密封部件80可以以可压挤的方式搁靠在螺母30和连接器主体50之间。主体密封部件80可主体50的对应于在主体50的第一端51的附近的环形凹部58的部分上贴切地配合。但是,本领域技术人员应当理解,可采用对应于螺母30和主体50的其它结构构造的密封部件的其它位置,以可操作地对环境污染物的进入提供实体密封和障碍。螺母30可与连接器主体50隔开,且可以不实体接触和电接触连接器主体50。此外,主体密封部件80可用来以某种方式防止螺母30和连接器主体50之间的实体接触和电接触。
如图4所示,当装配好时,连续性连接器100的实施例可具有轴向地、径向地和/或旋转地固定的构件。例如,主体50可获得与柱40的部分的实体干涉配合,从而将那两个构件固定在一起。柱40的法兰44和螺母30的内部唇缘34可起限制那两个构件相对于彼此的轴向运动的作用。此外,在装配好时位于柱40上的主体50的构造还可限制螺母30的轴向运动。但是,装配好的构造不应当阻止螺母30相对于其它连续性连接器100构件的旋转运动。另外,当装配好时,连续性部件100的实施例具有紧固件部件60,紧固件部件60可以以这样的方式构造:紧固件部件60固定到主体50的一部分上,使得紧固件部件60可相对于主体50具有一些可滑动的轴向自由,从而容许紧固件部件60可操作地压挤到连接器主体50上,且附连同轴电缆10。紧固件部件60可以可操作地、可滑动地固定到连接器主体50上。值得注意的是,在装配连续性连接器100的实施例时,连续性部件70设置在螺母30的内部唇缘的渐缩表面35和柱的法兰44的渐缩表面45之间,使得连续性部件70连续地实体接触和电接触螺母30和柱40两者。
在连续性连接器100的装配期间(如在图2-3中),连续性部件70可在柱40的第一端41附近安装在柱40上。然后,连续性部件70安装在其上的柱40可轴向地穿过螺母30(始于螺母30的第一端31处)、密封部件80和连接器主体50(始于连接器主体50的第一端51处)中的各个,直到可应用的构件相对于彼此轴向地固定为止(如图4-5所示)。一旦装配好,连续性部件就设置在螺母30的内部唇缘34的渐缩表面35和柱40的法兰44的对应地相对的渐缩表面45之间,且接触渐缩表面35和渐缩表面45两者,使得连续性部件70处于预载条件,其中,连续性部件70经历了螺母30的唇缘34的渐缩表面35和柱40的法兰44的渐缩表面45两者施加到其上的恒定的压挤力。因而,当连续性连接器100的实施例处于装配好的状态时,存在连续性部件70的预载条件,从而使得连续性部件70经受沿轴向方向的恒定的力矩,该力矩是由螺母30和柱40的相对的渐缩表面35和45的接触力引起的。连续性部件70的涉及螺母30和柱40的相对的渐缩表面35和45之间恒定的力矩和连续的运动性接触的预载条件有利于柱40和螺母30之间的电接地路径。另外,在螺母30绕着柱40进行可操作的旋转式同轴运动的期间,存在相对的渐缩表面35和45之间的连续性部件70的预载连续接触条件。此外,如果相对于位置可操作地轴向地固定的螺母30扭动或者相对于柱40以别的方式经历了一定量的轴向运动(在螺母30的旋转期间或者由于连续性连接器100的一些其它可操作运动所引起),在渐缩表面35和45之间的连续性部件70的装配好的预载压挤式弹性条件就有助于确保螺母30和柱40之间的恒定的实体接触和电接触。因此,即使存在旋转运动或轴向运动或者在螺母30和柱40、由于相对的渐缩表面35和45所施加的产生的力矩而存在于预载压挤式条件中的连续性部件70之间发生的其它扭动,仍保持螺母30和柱40之间的电连续性。因为连续性部件70经受了由于在装配连续性连接器100时,螺母和柱的相对的渐缩表面35和45的接触力引起的力矩,所以连续性部件70阻碍了柱40和螺母30之间的轴向扭动运动。
进一步参照图,图5描绘了装配好的连续性连接器100的一个实施例的一部分的放大的透视图剖面图。连续性连接器100的结构的一个优点在于,对应的渐缩表面35和45比在表面35和45仅垂直地/径向地定向的情况下具有更大的用于实体交互和电交互的表面积,。另一个优点在于,渐缩表面35和45起产生力矩以在设置在其间的连续性部件70上产生预载力的作用。预载力是有益的,因为它们使连续性部件70与螺母30和柱40两者进行响应性电接触和实体接触,从而确保连接器100构件之间的接地连续性。连续的接地路径位于螺母30的柱40之间。设置在螺母30的渐缩表面35和柱40的渐缩表面45之间的连续性部件70的设置有利于接地路径在预载条件下连续地接触螺母30和柱40。在连续性部件70处于预载条件时,连续性部件70被在装配连续性连接器100时存在于螺母30和柱40的相对的渐缩表面35和45之间的产生的力矩连续地压挤。已知的同轴电缆连接器100可包括位于螺母和柱之间的导电器件。但是,在可操作地装配这种已知的连接器时,导电器件在渐缩表面之间不处于预载或者以别的方式受压挤的条件。由于与已知连接器有关,从装配的观点来看,电连续性不是连续的,因为仅当通过将已知连接器附连到接口端口20上而引出压挤力时,柱和螺母之间的导电器件才经历压挤力,且起使连续的导电性在柱和螺母之间延伸的作用。
同轴电缆连续性部件100的实施例包括用于使连续的电接地路径在螺母30和柱40之间延伸的机构。该机构包括在装配同轴电缆连续性连接器100时,将处于预载条件的连续性部件70安全地定位在螺母30和柱40之间。在装配同轴电缆连续性连接器100时,该机构激活存在于螺母30和柱40的相对的表面35和45之间的力矩,因为相对的表面在不同的径向位置上压挤连续性部件,从而在连续性部件70上产生轴向弯曲力。由于连续性部件70抵抗力矩,所以连续性部件70保持与螺母30和柱40的连续接触,即使是在螺母30绕着柱40进行旋转运动的期间,或者在螺母30和柱40之间轴向扭动期间。
连续性部件70的一个实施例是简单的环形垫圈,如图中所描绘。但是,本领域技术人员应当理解,连续性部件70可包括锁垫圈(包括扣环锁垫圈(或“螺旋弹簧垫圈”))、外齿垫圈、内齿垫圈。构想了任何类型的锁垫圈,包括埋头孔和联合的内垫圈/外垫圈。而且,构想了具有适当的弹性的连续性部件70的任何材料,包括金属和导电塑料。连续性部件70大体拱形地成形成以便在管状柱40周围延伸至少约225度的弧,且可延伸整个360度。这个拱形地成形的连续性部件70也可为大体圆形的断环或C形部件的形式。在一个实施例中,连续性部件70可大体为圆形,且可包括自其向外延伸以接合螺母30的渐缩表面35的多个凸出部。在另一个实施例中,连续性部件70可大体为圆形,且可包括自其向内延伸以接合管状柱40的多个凸出部。在装配之后,当与螺母30和柱40的对应地相对的渐缩表面35和45接触而施加了力时,连续性部件70就相对于连续性连接器100的纵向轴线有弹性,且受压挤,以及经受渐缩表面35和渐缩表面45之间的产生的力矩,以在管状柱40的法兰44(通过其渐缩表面45)和联接器螺母30的内部唇缘34(通过其渐缩表面35)之间保持可旋转的滑动电接触。
在装配连续性连接器100时,连续性部件70接触管状柱40和联接螺母30两者,以在管状柱40和联接螺母30之间提供导电路径,但是不限制联接螺母30相对于管状柱40的旋转。连续性部件70的由于与相对的渐缩表面35和45接触而产生的力矩所造成的弹簧作用起形成从联接螺母30到管状柱40的连续的接地路径的作用,同时允许联接螺母30旋转,而没有对由于连接器100附连到接口端口20上引起的压挤力的任何需要。螺母30和柱40的对应地相对的渐缩表面35和45的另一个好处在于,非轴向垂直结构有利于连续性部件70开始进行实体接触和电接触,当在装配连续性连接器100时,连续性部件70设置在螺母30和柱40之间时,连续性部件70获得预载的电接地条件。
现在转到图6-8,描绘了在完全上紧的位置上的连续性连接器100的实施例。如图所描绘,连续性部件70已经完全压挤在螺母30和柱40的对应的渐缩表面35和45之间。就包括简单的环形垫圈的连续性部件70而言,由于连续性部件70是作为具有沿轴向垂直定向径向地延伸的环形环件的平的部件开始的,所以当部件70弯曲成略微圆锥形形状(如图5中部分地描绘)或以别的方式弯曲成非径向定向时,渐缩表面35和45就起弹簧偏置(或预载)的作用。使用平垫圈连续性部件70是有益的,因为其允许使用已经存在的构件,这降低了实现连续性连接器实施例100的生产和装配的改进的成本。对应地相对的渐缩表面35和45的另外的好处是增强的湿气密封和在完全上紧时抵抗松脱的提高的阻力。
继续参照附图,图9描绘了具有被附连同轴电缆的连续性连接器的一个实施例的透视剖面图,该连接器在接口端口上不处于完全上紧的位置上。如图所描绘,连接器100仅部分地安装在接口端口20上。但是,虽然处于此部分安装的状态,但是连续性部件70在电缆10的匹配端口20和外部导电护罩(接地14)之间保持了电接地路径。除了别的之外,接地路径是由于连续性部件70的连续的实体接触和电接触而引起的,当连续性连接器10处于可操作地装配好的状态时,连续性部件70被螺母30和柱40的相对的渐缩表面35和45之间的力矩产生的力压挤。接地路径从接口端口20延伸到螺母30且通过螺母30,延伸到连续性部件70且通过连续性部件70,延伸到柱40且通过柱40到达导电接地护罩14。这个连续的接地路径提供了连续性连接器100的可操作的功能性,即使是在连接器100没有完全上紧到接口端口20上时。
虽然已经结合上文概述的具体实施例对本发明进行了描述,显然,许多备选方案、修改和变化对本领域技术人员将是显而易见的。因此,以上阐述的本发明的优选实施例意图为说明性的而非限制性的。可在不偏离所附权利要求限定的本发明的精神和范围的情况下作出各种改变。权利要求书提供了本发明的覆盖范围,且该范围不应局限于本文提供的具体实施例。
Claims (46)
1.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可与所述连接器主体接合的柱,其中,所述柱包括具有渐缩表面的法兰,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸;
螺母,其中所述螺母包括具有渐缩表面的内部唇缘,所述螺母的内部唇缘的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述螺母和所述柱相对于彼此可操作地轴向定位时,所述螺母的内部唇缘的所述渐缩表面相对地对应于所述柱的法兰的渐缩表面;以及
相对于同轴电缆连续性连接器的纵向轴线为弹性的环形连续性部件,其中连续性部件设置在所述柱的法兰的所述渐缩表面和所述螺母的内部唇缘的所述渐缩表面之间,且接触所述柱的法兰的所述渐缩表面和所述螺母的内部唇缘的所述渐缩表面,使得在装配所述连续性连接器时,所述连续性部件经受相对的渐缩表面的接触力引起的力矩。
2.根据权利要求1所述的连接器,其特征在于,在装配所述连接器时,随着所述连续性部件经受所述相对的渐缩表面的所述接触力引起的所述力矩,所述连续性部件在所述柱和所述螺母之间保持连续的实体接触和电接触。
3.根据权利要求1所述的连接器,其特征在于,所述连续性部件是平垫圈。
4.根据权利要求3所述的连接器,其特征在于,在装配所述连接器时,随着所述平垫圈经受所述相对的渐缩表面的接触力引起的力矩,所述平垫圈弯曲成略微圆锥形形状。
5.根据权利要求1所述的连接器,其特征在于,在装配所述连接器时,随着所述连续性部件经受所述相对的渐缩表面的所述接触力引起的力矩,所述连续性部件阻碍所述柱和所述螺母之间的轴向扭动。
6.根据权利要求1所述的连接器,其特征在于,所述螺母与所述连接器主体是隔开的,且不接触所述连接器主体。
7.根据权利要求1所述的连接器,其特征在于,还包括设置在所述螺母和所述连接器主体之间的主体密封部件,其中所述主体密封部件是O形圈。
8.根据权利要求1所述的连接器,其特征在于,还包括可滑动地固定到所述连接器主体上的紧固件部件,其中,所述紧固件部件包括内部斜表面,当所述紧固件部件被操作从而将同轴电缆固定到所述同轴电缆连续性连接器上时,所述内部斜表面起可变形地压挤所述连接器主体的所述外表面的作用。
9.根据权利要求1所述的连接器,其特征在于,所述环形连续性部件是扣环锁垫圈。
10.根据权利要求1所述的连接器,其特征在于,所述环形连续性部件是断环C形部件。
11.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可相对于所述连接器主体旋转的螺母,其中,所述螺母包括具有渐缩表面的内部唇缘,所述螺母的内部唇缘的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸;
可与所述连接器主体牢固接合的柱,其中,所述柱包括具有渐缩表面的法兰,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述柱和所述螺母相对于彼此可操作地轴向定位时,所述柱的所述渐缩表面相对地对应于所述螺母的所述渐缩表面;以及
位于所述螺母和所述柱之间的连续的接地路径,通过在所述螺母的内部唇缘的所述渐缩表面和所述柱的法兰的所述渐缩表面之间设置环形连续性部件利于所述接地路径在预载条件下持续接触所述螺母和所述柱,其中,在装配所述连续性连接器时,所述连续性部件被存在于所述螺母的内部唇缘和所述柱的法兰的相对的渐缩表面之间产生的力矩持续压挤。
12.根据权利要求11所述的连接器,其特征在于,所述连续性部件是平垫圈。
13.根据权利要求12所述的连接器,其特征在于,在装配所述连接器时,随着所述平垫圈经受相对的渐缩表面的所述接触力引起的所述力矩,所述平垫圈弯曲成略微圆锥形形状。
14.根据权利要求11所述的连接器,其特征在于,在装配所述连接器时,随着所述连续性部件经受所述相对的渐缩表面的所述接触力引起的所述力矩,所述连续性部件阻碍所述柱和所述螺母之间的轴向扭动。
15.根据权利要求11所述的连接器,其特征在于,还包括设置在所述螺母和所述连接器主体之间的主体密封部件,其中所述主体密封部件是O形圈。
16.根据权利要求11所述的连接器,其特征在于,还包括可滑动地固定到所述连接器主体上的紧固件部件,其中,所述紧固件部件包括内部斜表面,当所述紧固件部件被操作从而将同轴电缆固定到所述同轴电缆连续性连接器上时,所述内部斜表面起可变形地压挤所述连接器主体的所述外表面的作用。
17.一种使电接地路径从同轴电缆延伸通过同轴电缆连接器到达接口端口的方法,所述方法包括:
提供同轴电缆连续性连接器,该连接器包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可与所述连接器主体接合的柱,其中,所述柱包括具有渐缩表面的法兰,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸;
螺母,其中所述螺母包括具有渐缩表面的内部唇缘,所述螺母的内部唇缘的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述螺母和所述柱相对于彼此可操作地轴向定位时,所述螺母的内部唇缘的所述渐缩表面相对地对应于所述柱的法兰的渐缩表面;以及
相对于同轴电缆连续性连接器的纵向轴线为弹性的环形连续性部件,其中连续性部件设置在所述柱的所述渐缩表面和所述螺母的所述渐缩表面之间,且接触所述柱的法兰的所述渐缩表面和所述螺母的内部唇缘的所述渐缩表面,使得在装配所述连续性连接器时,所述连续性部件经受相对的渐缩表面的接触力引起的力矩;
其中,在装配所述连接器时,随着所述连续性部件经受所述相对的渐缩表面的接触力引起的所述力矩,所述连续性部件在所述柱和所述螺母之间保持连续的实体接触和电接触;
装配所述同轴电缆连续性连接器;
以电结合所述柱和所述同轴电缆的外部导体的方式将同轴电缆可操作地附连到所述同轴电缆连续性连接器上;以及
将具有所述被附连的同轴电缆的装配好的连接器安装到接口端口上,以使电接地路径从所述同轴电缆延伸通过所述同轴电缆连续性连接器的所述柱和所述螺母到达所述接口端口。
18.根据权利要求17所述的方法,其特征在于,所述连续性部件是平垫圈。
19.根据权利要求18所述的使电接地路径从同轴电缆延伸通过同轴电缆连接器到达接口端口的方法,其特征在于,在装配所述连接器时,随着所述平垫圈经受所述相对的渐缩表面的所述接触力引起的所述力矩,所述平垫圈弯曲成略微圆锥形形状。
20.根据权利要求17所述的使电接地路径从同轴电缆延伸通过同轴电缆连接器到达接口端口的方法,其特征在于,所述螺母与所述连接器主体是隔开的,并且不接触所述连接器主体。
21.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可与所述连接器主体接合的柱,所述柱的端部构造成插入在同轴电缆的导电护罩下,其中,所述柱包括法兰和渐缩表面,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸;
螺母,其中所述螺母包括内部唇缘,所述螺母的内部唇缘径向向内地延伸到所述螺母的一般开口中,其中在装配所述同轴电缆连续性连接器时,所述螺母的内部唇缘定位成靠近所述柱的渐缩表面;以及
C形连续性部件,在装配所述连续性连接器时所述C形连续性部件接触所述柱的渐缩表面和所述螺母的内部唇缘。
22.根据权利要求21所述的连接器,其特征在于,在装配所述连接器时,所述连续性部件在所述柱和所述螺母之间保持连续的实体接触。
23.根据权利要求21所述的连接器,其特征在于,在所述连续性部件匹配到接口端口上时,所述C形连续性部件径向地扩张。
24.根据权利要求23所述的连接器,其特征在于,所述C形连续性部件的径向扩张在所述连续性部件被所述螺母的内部唇缘轴向推进的同时发生。
25.根据权利要求21所述的连接器,其特征在于,所述连续性部件是扣环锁垫圈。
26.根据权利要求21所述的连接器,其特征在于,所述连续性部件是外齿垫圈。
27.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可相对于所述连接器主体旋转的螺母,其中,所述螺母包括内部唇缘;
可与所述连接器主体牢固接合的柱,所述柱的端部构造成插入在同轴电缆的导电护罩下,其中,所述柱包括渐缩表面,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述柱的渐缩表面轴向地定位成靠近所述螺母的内部唇缘;以及
位于所述螺母和所述柱之间的连续的接地路径,通过在所述柱的法兰的所述渐缩表面和所述螺母的内部唇缘的表面之间设置连续性部件利于所述接地路径持续接触所述螺母和所述柱,其中在所述连续性部件匹配到接口端口上时,所述连续性部件绕所述柱的渐缩表面扩张。
28.根据权利要求27所述的连接器,其特征在于,所述连续性部件是C形的。
29.根据权利要求27所述的连接器,其特征在于,在所述连续性部件匹配到所述接口端口上时,所述连续性部件径向地扩张。
30.根据权利要求29所述的连接器,其特征在于,所述连续性部件的径向扩张在所述连续性部件被所述螺母的内部唇缘的所述表面轴向推进的同时发生。
31.根据权利要求27所述的连接器,其特征在于,所述连续性部件是拱形地成形的。
32.根据权利要求27所述的连接器,其特征在于,所述连续性部件是扣环锁垫圈。
33.根据权利要求27所述的连接器,其特征在于,所述连续性部件是外齿垫圈。
34.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可相对于所述连接器主体旋转的螺母,其中,所述螺母包括内部唇缘;
可与所述连接器主体牢固接合的柱,所述柱的端部构造成插入在同轴电缆的导电护罩下,其中,所述柱包括渐缩表面,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述柱的渐缩表面轴向地定位成靠近所述螺母的内部唇缘;以及
拱形地成形的连续性部件,其定位在所述柱的渐缩表面和所述螺母的内部唇缘的表面之间以连续地接触所述螺母的内部唇缘的所述表面和所述柱,其中所述连续性连接器匹配到接口端口上时,所述拱形地成形的连续性部件绕所述柱的渐缩表面扩张。
35.根据权利要求34所述的连续性连接器,其特征在于,拱形地成形的连续性部件被成形为绕所述柱的渐缩表面延伸至少225度的弧。
36.根据权利要求34所述的连接器,其特征在于,在所述连续性部件匹配到所述接口端口上时,所述连续性部件径向地扩张。
37.根据权利要求36所述的连接器,其特征在于,所述连续性部件的径向扩张在所述连续性部件被所述螺母的内部唇缘的所述表面轴向推进的同时发生。
38.根据权利要求34所述的连接器,其特征在于,所述连续性部件是扣环锁垫圈。
39.根据权利要求34所述的连接器,其特征在于,所述连续性部件是外齿垫圈。
40.一种使电接地路径从同轴电缆延伸通过同轴电缆连接器到达接口端口的方法,所述方法包括:
提供同轴电缆连续性连接器,该连接器包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可相对于所述连接器主体旋转的螺母,其中,所述螺母包括内部唇缘;
可与所述连接器主体牢固接合的柱,所述柱的端部构造成插入在同轴电缆的导电护罩下,其中,所述柱包括渐缩表面,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述柱的渐缩表面轴向地定位成靠近所述螺母的内部唇缘;以及
拱形地成形的连续性部件,其定位在所述柱的渐缩表面和所述螺母的内部唇缘的表面之间以连续地接触所述螺母的内部唇缘的所述表面和所述柱,其中所述连续性连接器匹配到接口端口上时,所述拱形地成形的连续性部件绕所述柱的渐缩表面扩张;以及
装配所述同轴电缆连续性连接器。
41.根据权利要求40所述的方法,其特征在于,所述连续性部件是C形的。
42.根据权利要求40所述的方法,其特征在于,在所述连续性部件匹配到所述接口端口上时,所述连续性部件径向地扩张。
43.根据权利要求42所述的方法,其特征在于,所述连续性部件的径向扩张在所述连续性部件被所述螺母的内部唇缘的所述表面轴向推进的同时发生。
44.根据权利要求40所述的方法,其特征在于,所述连续性部件是扣环锁垫圈。
45.根据权利要求40所述的方法,其特征在于,所述连续性部件是外齿垫圈。
46.一种同轴电缆连续性连接器,包括:
连接器主体,其具有第一端和轴向地相反的第二端,其中,连接器主体的第一端和第二端的相反轴向位置相对于同轴电缆连续性连接器的中心纵轴线存在;
可相对于所述连接器主体旋转的螺母,其中,所述螺母包括内部唇缘;
可与所述连接器主体牢固接合的柱,所述柱具有第一端和第二端,所述第一端具有法兰,所述第二端构造成插入在同轴电缆的导电护罩下,其中,所述柱包括渐缩表面,所述柱的渐缩表面形成非径向面,所述非径向面以相对于所述同轴电缆连续性连接器的中心纵向轴线非垂直的角度延伸,其中,当在装配所述同轴电缆连续性连接器时,所述柱的渐缩表面轴向地定位成靠近所述螺母的内部唇缘;以及
拱形地成形的连续性部件,其定位在所述柱的渐缩表面和所述螺母的内部唇缘的表面之间以连续地接触所述螺母的内部唇缘的所述表面和所述柱,其中当所述拱形地成形的连续性部件在所述连续性连接器匹配到接口端口上时朝向所述柱的第一端轴向地移动时,所述拱形地成形的连续性部件绕所述柱的渐缩表面径向地扩张。
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US61/166247 | 2009-04-02 | ||
US12/472,368 US7824216B2 (en) | 2009-04-02 | 2009-05-26 | Coaxial cable continuity connector |
US12/472368 | 2009-05-26 | ||
CN201080024423.7A CN102460853B (zh) | 2009-04-02 | 2010-04-01 | 同轴电缆连续性连接器 |
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CN201080024423.7A Expired - Fee Related CN102460853B (zh) | 2009-04-02 | 2010-04-01 | 同轴电缆连续性连接器 |
CN201410346263.8A Expired - Fee Related CN104241990B (zh) | 2009-04-02 | 2010-04-01 | 同轴电缆连续性连接器 |
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Also Published As
Publication number | Publication date |
---|---|
CA2757498C (en) | 2014-01-28 |
WO2010114980A3 (en) | 2011-01-13 |
EP2415123A4 (en) | 2013-12-11 |
DK2415123T3 (en) | 2017-03-27 |
CN104241990B (zh) | 2017-01-11 |
BRPI1006560A2 (pt) | 2020-09-15 |
WO2010114977A2 (en) | 2010-10-07 |
WO2010114977A3 (en) | 2011-01-13 |
US8506326B2 (en) | 2013-08-13 |
US20110021072A1 (en) | 2011-01-27 |
CA2757498A1 (en) | 2010-10-07 |
CN102460853B (zh) | 2014-08-20 |
TW201041238A (en) | 2010-11-16 |
EP2415123A2 (en) | 2012-02-08 |
EP2415123B1 (en) | 2016-12-14 |
EP3157104A1 (en) | 2017-04-19 |
EP2465169A2 (en) | 2012-06-20 |
CN102460853A (zh) | 2012-05-16 |
WO2010114980A2 (en) | 2010-10-07 |
CN102687210A (zh) | 2012-09-19 |
US8313345B2 (en) | 2012-11-20 |
US7824216B2 (en) | 2010-11-02 |
US20100255719A1 (en) | 2010-10-07 |
US20130045627A1 (en) | 2013-02-21 |
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