CN101646987B - 缆线管理系统 - Google Patents

缆线管理系统 Download PDF

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CN101646987B
CN101646987B CN2008800102281A CN200880010228A CN101646987B CN 101646987 B CN101646987 B CN 101646987B CN 2008800102281 A CN2008800102281 A CN 2008800102281A CN 200880010228 A CN200880010228 A CN 200880010228A CN 101646987 B CN101646987 B CN 101646987B
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D·奎贾诺
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Hewlett Packard Development Co LP
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
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Abstract

本发明的实施例涉及缆线管理系统。在一个实施例中,缆线管理系统包括:壳体(102);从所述壳体(102)伸出的多个挡板(22),所述多个挡板(22)被设置为阻碍连接器(406)相对于端口(518)沿连接方向(515)的运动,并且沿进入方向(403)接收所述连接器(406),所述进入方向(403)大致横向于所述连接方向(515);和入口盖板(104),所述入口盖板(104)被设置为使得能够访问所述端口(518)和所述连接器(406)。

Description

缆线管理系统
技术领域
本发明涉及一种缆线管理系统。
背景技术
本领域中有些方案可能与后文中描述或本申请要求保护的本发明的各种方案相关,本节的目的就在于向读者介绍这些相关技术。相信这里的讨论有助于为读者提供背景信息,以便于读者对本发明的各种不同方案有更好的理解。因此必须明白的是,应当从上述角度理解这些陈述,而不应将其看作对现有技术的自认。
电子装置例如计算机通常由缆线系统与其他装置、电源等通信连接。缆线系统通常包括一个或多个通过装置上的端口与装置联接的缆线。例如,典型的计算机系统可包括具有单独端口和缆线的缆线系统,通过所述缆线系统接收电力、与网络通信并且连接任意数量的外围装置(例如打印机、显示器、调制解调器和外部存储装置)。当使用许多缆线时,缆线会变得纷乱且不好看。另外,在某些情形下,由于未被紧固或仅与端口松散地连接,缆线可能容易从装置上意外地脱离。进一步,缆线系统可能成为装置安全性方面的薄弱环节。例如,通过连接外部存储装置到计算机端口并且通过该端口向外部存储设备复制或移动数据,使得从计算机上非授权地复制有用数据变得容易。
发明内容
本发明涉及一种缆线管理系统,包括:壳体;从所述壳体延伸出的多个挡板,所述多个挡板被设置为阻碍连接器相对于端口沿连接方向的运动,并且沿进入方向接收所述连接器,所述进入方向大致横向于所述连接方向;和入口盖板,所述入口盖板被设置为使得能够访问所述端口和所述连接器。
优选地,所述多个挡板的每一个包括L形截面。
优选地,所述多个挡板的每一个包括正面部和导引部。
优选地,所述导引部从相邻的所述正面部的一端朝所述壳体的上端或下端延伸。
优选地,所述系统包括从所述壳体的上壁伸出的上突出部和从所述壳体的下壁伸出的下突出部,其中,所述上突出部和下突出部被设置为与连接件协作,以将所述壳体固定到电子装置。
优选地,所述多个挡板相对所述壳体的位置是可调的。
优选地,所述多个挡板的每一个包括连接特征,所述连接特征被设置为与所述壳体的匹配特征连接。
优选地,所述系统包括紧固件,所述紧固件被设置为将所述壳体固定到电子装置。
优选地,所述紧固件包括锁闭机构或安全螺钉,或者包括锁闭机构和安全螺钉两者。
优选地,所述壳体形成的腔体、所述多个挡板和所述入口盖板被设置为足够大,使得足以覆盖所述连接器;并且足够小,以阻碍所述连接器的运动。
附图说明
图1是根据本发明一个示例性实施例的连接到计算机的缆线管理系统的透视图。
图2是缆线管理系统的分解透视图,其中根据本发明的一个示例性实施例,将缆线管理系统的主壳体和盖板分开。
图3是根据本发明的一个示例性实施例,连接到计算机的缆线管理系统的透视图,所述缆线管理系统具有锁闭机构。
图4根据本发明的一个示例性实施例,作为计算机整体的一部分的缆线管理系统的透视图。
图5是连接到计算机的缆线管理系统的透视图,其中根据本发明的一个示例性实施例,所述缆线管理系统为开放结构,具有从缆线管理系统的开口穿过的多个缆线以及置于缆线管理系统内的多个缆线连接器。
图6是缆线管理系统的一部分的透视图,其根据本发明的一个示例性实施例,图解说明了将存储装置连接到缆线管理系统覆盖的端口时的阻碍。
图7是缆线管理系统的一部分的透视图,其中根据本发明的一个示例性实施例,设置了挡板。
具体实施方式
下文将描述本发明的一个或多个示例性实施例。为了力求简明地描述这些实施例,下述说明并未描述实际实施中的所有特征。应当意识到,如同任何工程项目或设计项目,在任何这种实际的具体实施的开发过程中,需作出大量与具体实施相关的决定,以达到开发者的特定目的,例如符合系统相关的和商业相关的限制,这些限制因具体实施应用的不同而不同。此外,应当明白,这种开发工作虽然可能复杂且耗时,但是对于受益于本公开的普通技术人员而言,是进行设计、制作、生产的常规工作。
本发明的实施例涉及缆线管理系统,所述缆线管理系统被设置为安装到电子装置(如计算机)或与电子装置成一整体。缆线管理系统可放置在电子装置紧接的端口(如输入/输出端口)上,以便管理通过缆线连接器与端口相连的缆线。举例而言,根据本实施例,缆线管理系统包括一个或多个挡板,导引缆线沿预定路线穿过缆线管理系统,便于有条理地布置缆线。这种缆线的组织方法可提高缆线系统的外观美感,并且便于授权用户对缆线进行调整(如添加、去除以及替换缆线连接器)。另外,缆线管理系统可阻碍缆线连接器移离端口,从而保护缆线和端口之间的连接。进一步,通过封锁端口的直接入口而无需移除或开放缆线管理系统的至少一个端口,缆线管理系统可提供防护以防止未授权用户访问该装置。
图1是根据本发明的一个示例性实施例,连接到计算机12的缆线管理系统10的透视图。在所示实施例中,计算机12被表示成瘦客户端(如主要通过服务器进行处理活动的相对小尺寸的计算机)。然而,在其他实施例中,计算机12可包括使用端口和/或缆线连接器的任意数量的电子装置。计算机12与缆线管理系统10相连,缆线管理系统10覆盖计算机12上的多个端口,所述端口被设置为接收缆线连接器。缆线管理系统10包括第一侧壁14、第二侧壁16、上壁18、下壁20、多个挡板22、上连接器突出部24和下连接器突出部26。侧壁14和16被放置为相互基本平行,上壁18、下壁20和多个挡板22沿与侧壁14和16基本垂直的方向在侧壁14和16之间延伸。换言之,第一侧壁14和第二侧壁16被布置为相互对立并与上壁18、下壁20和挡板22相连。应当注意的是所述基本平行的方向可包括实际平行的方向。
根据一些实施例,缆线管理系统10是两个主要零件或部件的组装体。举例而言,如图2所示,缆线管理系统10包括主壳体102和被设置为与主壳体102相连的入口盖板104。主壳体102包括单个组装件,所述组装件将第一侧壁14、上壁18、下壁20、多个挡板22、上连接器突出部24和下连接器突出部26集成为一个单元。入口盖板104包括第二侧壁16和连接特征106(如卡扣),所述连接特征106被设置为与主壳体102和/或计算机12上的相应连接特征108(如卡扣配合装置)协作,以将缆线管理系统10保持在一起。当入口盖板104与主壳体102相连处于关闭位置时,缆线管理系统可阻碍或防止对缆线管理系统10容纳物的未授权访问。当移开入口盖板104或缆线管理系统10处于开放结构时,用户可访问缆线管理系统10的容纳物,以重新整理缆线、访问装置端口等。在一些实施例中,缆线管理系统10包括保护机构,一旦使用所述保护机构即可防止未授权用户在没有钥匙或特定装置时拆解或打开缆线管理系统10(如移开入口盖板)。
在图1和图2所示的实施例中,上连接器突出部24和下连接器突出部26分别从上壁18和下壁20伸出,被用于将缆线管理系统10连接到计算机12。在其他的实施例中,连接器突出部24和26可从缆线管理系统10的不同部分(例如侧壁14和16)伸出。进一步,在一些实施例中,可包括单个连接器突出部而不是两个,或使用不同的连接机构。在图1所示的实施例中,连接器突出部24和26接收一对紧固件28,所述紧固件28穿过连接器突出部24中的孔并进入计算机12内的插座。紧固件28可包括螺钉、插头、销、闩锁等。进一步,紧固件28可以是防撬紧固件,例如安全螺钉或其他防止或阻碍未授权移动的连接特征。实际上,在一些实施例中,紧固件28可包括锁闭装置或可与锁闭装置协作。举例而言,在一些实施例中,如图3所示,突出部24和26的一个或全部可与锁闭机构202协作,以防止用户在没有可打开锁闭机构202的钥匙时,无困难地访问布置在缆线管理系统10内的装置端口和/或缆线连接器。在所示的实施例中,将锁闭机构202连接到下突出部26,通过锁孔槽206将柄204连接到上突出部24。然而,在其他实施例中,突出部24和26可分别与锁闭机构202连接。在一个实施例中,锁闭机构202可包括
Figure GSB00000870857300051
锁,该种锁可从位于加利福尼亚州Redwood Shores的Kensington TechnologyGroup得到。
在一些实施例中,可使用不同的连接特征以取代连接器突出部24和26或者作为连接器突出部24和26的补充。举例而言,缆线管理系统10可包括连接特征,所述连接特征可滑入计算机12的沟槽或连接特征内并且/或者与计算机12的沟槽或连接特征互锁,或者缆线管理系统10的一部分可直接粘接到计算机12。实际上,在一些实施例中,缆线管理系统10的一部分可与计算机12成一整体,如图4所示。举例而言,缆线管理系统10的第一侧壁14、上壁18、下壁20和多个挡板22可被集成为从计算机12的底架28直接伸出的单个单元(如主壳体102)。第二侧壁16可用作盖板(如入口盖板104),所述盖板被设置为与从计算机12伸出的主壳体102可拆卸连接。换言之,第二侧壁16可被设置为与缆线管理系统的其他特征连接,以形成保护罩(即缆线管理系统10);与缆线管理系统的其他特征分开,使得可访问缆线管理系统10的容纳物。
根据本实施例,用户可移开缆线管理系统10的盖板104,通过相对侧壁14和16和/或上壁18和下壁20布置挡板22,对缆线402进行布线,使其穿过形成于缆线管理系统10内的开口404。换言之,如图5所示,当缆线管理系统处于开放结构时,缆线402可沿进入方向403插入缆线管理系统10内。图5是缆线管理系统10的透视图,其中所述缆线管理系统10的盖板104已被移开,各种缆线402被布线在挡板22上,而且相关联的缆线连接器406被置于在缆线管理系统10内限定的腔体408中。在所示实施例中,侧壁14和16的深度(即侧壁14和16上从离开计算机12的最远点到紧邻计算机12的点的长度)和挡板22的放置与缆线管理系统10内的缆线402的尺寸和排列有关。同样地,侧壁14和16的深度和挡板22的放置与计算机12上的缆线连接器406的位置有关。举例而言,在所示实施例中,缆线管理系统10足够深,在连接到计算机12时足以容纳连接器406;同时足够浅,通过挡板22将连接器406和/或相应的缆线402偏压向计算机12,足以阻碍将连接器406从计算机12上断开。在提供安全连接之外,这种将缆线管理系统10的尺寸限制在足够容纳连接器406的大小可节省空间。因而,缆线管理系统10可用于小型电子装置,如瘦客户端。
如图6所示,挡板22包括正面部502和导引部504,所述正面部502和导引部504被相互安排成使得每个挡板22都具有L形截面。正面部502和导引部504形成的角506可根据各种应用而变化。举例而言,正面部502的侧面508可基本平行于侧壁14和16的长度510。顺着导引部504的最接近计算机12的第一侧面512到导引部504的邻近正面部502的第二侧面514,导引部504可向上或向下倾斜。导引部504相对侧壁14和16和/或正面部502的角506可用于使缆线402成一定方向和/或限制对缆线管理系统10形成的腔体408的容纳物的访问。举例而言,导引部504可导引缆线402向下直到离开缆线管理系统10,以增强外观美感并且通过将缆线402互相偏压以及与挡板22偏压以防止缆线402运动。在另一个例子中,导引部504可被放置成一定角度,使得连接器或存储装置无法连接到计算机12。
缆线管理系统10可阻碍连接器相对计算机12沿连接方向515的插入或移动。在图6所示实施例中,存储装置516(如闪存)被导引而无法与布置在缆线管理系统10的腔体408内的许多计算机端口518(如USB端口)的其中一个相连接。实际上,当通过缆线管理系统10内的挡板22形成的开口404插入存储装置516时,导引部504促使存储装置516远离相应端口518的位置。进一步,正面部502防止直接进入。缆线管理系统的这些特征可在缆线管理系统12被紧固(如关闭、密封和/或锁闭)时,防止未授权用户通过端口518访问计算机12存储的信息,但可访问在缆线管理系统10被保护前用户放置好的缆线402。在一些实施例中,角506可作调整,使用户适应各种的缆线布置等。举例而言,通过重新放置正面部502或导引部504,授权用户可改变角506。在所示实施例中,正面部502与导引部504是一个整体。然而,在一些实施例中,正面部502与导引部504是分离的块。
如上所述,挡板22可被安排为阻碍缆线402和缆线连接器406,以阻碍缆线从计算机12的运动或断开。在一些实施例中,如图7所示,挡板22的位置可调整。相应地,沿缆线管理系统10,用户可简单地按需布置挡板22于各种位置,以适应计算机系统内缆线402和端口518的特定布置。举例而言,在图7所示实施例中,挡板22包括连接特征602(如突出部),以便于通过布置于侧壁14和16的任何连接特征(如插座)连接到侧壁14和16。

Claims (10)

1.一种缆线管理系统,包括:
壳体(102);
从所述壳体(102)延伸出的多个挡板(22),所述多个挡板(22)被设置为阻碍连接器(406)相对于端口(518)沿连接方向(515)的运动,并且沿进入方向(403)接收所述连接器(406),所述进入方向(403)横向于所述连接方向(515);和
入口盖板(104),所述入口盖板(104)被设置为使得能够访问所述端口(518)和所述连接器(406)。
2.如权利要求1所述的系统,其特征在于,所述多个挡板(22)的每一个包括L形截面。
3.如权利要求1所述的系统,其特征在于,所述多个挡板(22)的每一个包括正面部(502)和导引部(504)。
4.如权利要求3所述的系统,其特征在于,所述导引部(504)从相邻的所述正面部(502)的一端朝所述壳体(102)的上端或下端延伸。
5.如权利要求1所述的系统,包括从所述壳体(102)的上壁伸出的上突出部(24)和从所述壳体(102)的下壁伸出的下突出部(26),其中,所述上突出部(24)和下突出部(26)被设置为与连接件(202,204)协作,以将所述壳体(102)固定到电子装置(12)。
6.如权利要求1所述的系统,其特征在于,所述多个挡板(22)相对所述壳体(102)的位置是可调的。
7.如权利要求6所述的系统,其特征在于,所述多个挡板(22)的每一个包括连接特征(602),所述连接特征(602)被设置为与所述壳体(102)的匹配特征(604)连接。
8.如权利要求1所述的系统,其特征在于,包括紧固件(202),所述紧固件(202)被设置为将所述壳体固定到电子装置(12)。
9.如权利要求8所述的系统,其特征在于,所述紧固件(202)包括锁闭机构或安全螺钉,或者包括锁闭机构和安全螺钉两者。
10.如权利要求1所述的系统,其特征在于,所述壳体(102)形成的腔体(404)、所述多个挡板(22)和所述入口盖板(104)被设置为足够大,使得足以覆盖所述连接器(406);并且足够小,以阻碍所述连接器(406)的运动。
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