CN103281596A - 具有侧向滑动适配器阵列的适配器面板 - Google Patents
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Abstract
一种适配器面板设备,包含:a)具有前开口的机壳;b)相对于机壳滑动的抽屉;c)由抽屉承载的多个滑动框架件,所述滑动框架件相对于抽屉独立地滑动;以及d)由所述框架件承载的适配器阵列,所述适配器阵列按行排列,适配器阵列限定了向前开放的线缆连接位置;e)其中,适配器阵列与所述框架件相对于其它适配器阵列独立地在侧向上朝向机壳的前开口滑动以提供到达适配器阵列的向前开放的线缆连接位置的通路。
Description
本发明是申请日为2008年01月15日、申请号为200880005323.2的中国发明专利“具有侧向滑动适配器阵列的适配器面板”的分案申请。申请号为200880005323.2的所述中国发明专利是于2008年1月15日申请的PCT国际专利申请,对于除美国之外的所有指定国,其专利申请人为美国国营公司—ADC电信公司,而仅对于指定国美国来说,其专利申请人为美国公民Mark SMRHA,美国公民HutchCOBURN,和美国公民Chad SJODIN,并请求申请日为2007年1月19日的美国实用新型专利申请序列号No.11/655,760的优先权。
技术领域
本发明公开内容涉及在电信产业中使用的设备,及相关方法。更具体地,本发明公开内容涉及一种在电信产业中使用的终端面板,以及与该终端面板相关的方法。
背景技术
许多局域网和电信系统利用终端面板在电信仪器之间进行互连。对电信服务日益增长的需求促进了终端面板电路密度的增加。尽管在现有技术中已经取得了一定的进展,仍存在着对改进高密度终端面板及相关方法取得进一步进展的持续需求。需要进行改进的地方有,例如,增强与涉及终端面板的安装、维护、修理、升级和互连步骤相关的终端通路和对线缆的处理方法。
发明内容
本发明公开内容涉及一种适配器面板设备,其包括机壳和适配器面板。适配器限定出面板设备向后开放的线缆连接部和向前开放的线缆连接部。适配器被排成阵列,所述阵列相对于其他阵列独立地滑动以便到达向后开放和向前开放的线缆连接部。
各种期望的产品特征或方法实例将会一部分在随后的说明书中介绍到,而一部分是从说明书的介绍中显而易见的,或从对本公开内容的各个方面进行的实践中能够想到的。本公开内容的方面可能涉及单独的特征以及特征组合。应当理解到的是前述的概括说明和接下来的详细说明都仅是示例性的,并且不对所请求保护的发明有限定作用。
附图说明
图1是依照公开的原理,适配器面板设备一个实施方式的前透视图,画出了适配器面板设备的抽屉位于打开位置;
图2是图1适配器面板设备的前透视图,画出了抽屉位于关闭位置;
图3是图2适配器面板设备的前透视图,画出了设备的盖子是闭合的;
图4是图1适配器面板设备的后透视图;
图5是图4适配器面板设备的侧视图;
图6是图5适配器面板设备的俯视平面图;
图7以分隔方式表示了图1适配器面板设备的滑动框架件和适配器阵列的一个实施方式的顶透视图;
图8是图7滑动框架件和适配器阵列的侧视图;
图9是图7滑动框架件和适配器阵列的俯视平面图;
图10以分隔方式表示了图1适配器面板设备的引导件的一个实施方式的侧视图;
图11是图10引导件的底透视图;
图12是图10的引导件和图9的滑动框架件的一部分的俯视平面图;
图13是图2适配器面板设备的前透视图,画出了适配器阵列处于向前的位置上;
图14是图13适配器面板设备的侧视图;以及
图15是图14适配器面板设备的俯视平面图。
具体实施方式
现在要具体地参见本发明公开内容的示例性方面,这些内容在附图中画出了。在任何可能的地方,相同附图标记在所有附图中用于表示相同或相似的部分。
图1画出了依照公开的原理的配线架或适配器面板设备10。适配器面板设备10设计成使得线缆终端具有高密度的同时,还有利于在安装工艺中能够从后部到达线缆终端且在安装后工艺中能够从前部到达线缆终端。
本公开的适配器面板设备10大体包括具有内部14的机壳12。内部14是由顶壁16、底壁18、后壁20和侧壁22,24限定而成。适配器面板设备10还包括滑动抽屉34,它在打开位置(图1)和关闭位置(图2)之间滑动。前盖26附接在滑动抽屉34上。当抽屉34处于关闭位置时,前盖26在关闭时(图3)将机壳12的内部14封闭起来,而在打开时(图2)就能提供到达内部14的通路。
现在参见图1和2,适配器面板设备10包括骨架结构30(图1),所述骨架结构附接或安装在抽屉34上。适配器面板32安装在骨架结构30上。正如此后将详细介绍到地,抽屉34设计成从机壳12向外滑动,主要是为了安装的目的。那就是说,在适配器面板设备的安装或组装过程中,抽屉34可滑动到打开位置,但是在所述设备10的操作使用过程中,所述抽屉位于关闭位置(图2)。在操作使用过程中,骨架结构30和适配器面板32位于机壳12的内部14内,抽屉34处于关闭位置(图2)。使用者不用将抽屉34向前滑动就能从机壳12的前部开口28接近适配器面板32。
再参见图1,适配器面板32包括正面面板42,其限定了许多开口44(仅画出一个)。适配器46安装在开口44内。在画出的实施方式中,适配器是LC型适配器;然而,其他类型的适配器,如SC,ST,FC和MPO型适配器也可依照公开的原理使用。进一步说,在画出的实施方式中,适配器46可分块或成组编制;每个适配器块58包括八个适配器46(四个适配器对)。适配器块也可由其他数量的适配器编成,如四个适配器(两个适配器对);正面面板42中的开口的尺寸对应地设定成接纳四个适配器的块。可选地,可使用单个适配器,其利用尺寸能够容纳单个适配器的开口安装。
正面面板42的开口44按行排列;每行安装好的适配器块58限定一适配器阵列48。行的意思是开口44大体水平对齐排列起来,与之相反的是按列或竖直对齐排列;相应地,适配器阵列48大体上是水平适配器阵列。
现在参见图1和4,适配器块58的每个适配器46包括前连接端50(图1)和后连接端52(图4)。安装到开口44中时,适配器46的前连接端50朝向机壳12的前开口28放置,而适配器46的后连接端52朝向机壳12的后壁20放置。适配器46的前连接端50限定了正面面板42向前开放的线缆连接位置54(图2)。适配器46的后连接端52限定了正面面板42向后开放的线缆连接位置56(图4)。
“开放的线缆连接位置”的意思是指位于机壳12中开放区域的位置,与之相反的是封闭在壳体或模块内的连接位置,壳体或模块又被安装在机壳内。那就是说,适配器面板32是未封闭适配器46的面板,所述未封闭适配器相对于正面面板42上的其他适配器46是未封闭的。尽管适配器面板本身封闭在机壳12内,多个适配器46和每个适配器阵列48并未与其他适配器46或其他适配器阵列48分开封闭。
现在参见图1,5和6,正面面板42的适配器阵列48设计成相对于其他适配器阵列独立地侧向滑动。特别地,正面面板42由大量分离的面板部60限定而成。在画出的实施方式中,每个分离的面板部限定一行开口,未封闭适配器46的块58安装在所述开口中,也就是说,每个面板部60含有一个适配器阵列48。在其他实施方式中,面板部可包括,例如,两行接纳四适配器块的开口;本面板部实施方式含有两个适配器阵列。
画出的适配器面板设备10的正面面板42包括六个面板部60—两并排放置的面板部60,和三个堆叠很高的面板部(看图1)。每个面板部60含有六个具有八适配器46的块58,总共有288个向前连接位置和向后连接位置。每个分离的面板部60设计成可选择地向前、侧向(A)上滑动,所述滑动独立于其它面板部。向前、侧向(A)是指在前开口28和后壁20之间延伸的方向,与之相反的是例如横贯机壳12底壁18的方向。
参见图7-9,适配器面板32的每个分离面板部60附接至滑动框架件62。滑动框架件62包括一对细长导轨部件64。在画出的实施方式中,细长导轨部件64包括从面板部60向前延伸的向前导轨部分84,和从面板部60向后延伸的向后导轨部分86。滑动框架件62可包括横撑88,以保持导轨部件64的构造关系。
成对的细长导轨部件64布置成与安装在设备10的骨架结构30(图1)上的成对引导件66(在图10-12中画出一个)接合并在所述成对引导件内滑动。导轨部件64和引导件66包括止挡装置68,所述止挡装置68将面板部60的滑动限制在向后位置(看图5中的顶面板部60)和向前位置(看图5中的底面板部60)之间。
参见图9-12,止挡装置68(图12)由位于成对引导件中每个引导件66上的至少一个突起70(图10和11),以及形成在导轨部件64中的第一和第二匣盒或棘爪72,74(图9)限定而成。在画出的实施方式中,两个突起70(上下突起)设置在每个引导件66上。对应地,上下棘爪72,74(看图8)形成于导轨部件64的向后导轨部分86中。尽管画出的实施方式描述的是棘爪72,74形成在导轨部件64中,而突起70位于引导件66上,能够想到棘爪可形成在引导件66中而突起与此对应地位于导轨部件64上。
仍参见图9-12,当面板部60处于向后位置时,引导件66的突起70安坐在导轨部件64的第一棘爪72内,从而将面板部60保持在向后位置上。引导件66是柔性结构,使得当面板部60被拉向前时,突起70移开并沿导轨部件64的顶部和底部表面76,77(图8)滑动。参见图12,当面板部60到达向前位置时,突起70安坐于导轨部件64的第二棘爪74内。该止挡装置68在面板部60已经到达预定的向前位置的时候会提示使用者,同理,在到达向后位置时也会提示。
再参见图5,通常,在面板部60从向后位置到向前位置向前移动了侧向距离D的时候止挡装置68会产生提示。在一个实施方式中,侧向距离D是从向后位置向前不超过约4.0英寸。在画出的实施方式中,侧向距离D约为1.7英寸。对使用者的这种提示能够阻止使用者移动面板部60超过与面板部60互连的线缆所允许的距离。
特别地,如前所述,现有的面板设备10设计成使得抽屉34仅在安装过程中滑动,而在安装后或操作使用过程中相反。参见图4,在安装过程中,线缆36,如光纤线缆,走线穿过后部开口38进入机壳12中,并端接于正面面板42向后开放的连接位置56(也就是适配器46的后连接器端52)。
光纤线缆36具有预定长度,能够绕线缆存储线轴或构造(例如,看图1中的78,80)走线。然而,线缆的预定长度不具备足以在操作过程中适应抽屉34运动的松弛度,并且设备10不具有能够吸收或处理这种线缆松弛带来的额外运动的装置,如滑动半径限制器(slidingradius limiter)。
在现有的面板设备10中,线缆的预定长度大体上仅适于面板部60进行有限的滑动。那就是说,为了安装或为了维修需要接近适配器面板32后面的区域,抽屉34能滑出,但是在操作使用适配器面板设备10的过程中,抽屉34不会为接近适配器面板32而滑动。对适配器面板32的操作使用和接近可通过面板部60相对于抽屉34滑动的滑动实现。
一般来说,面板部60的侧向滑动提供了到达由适配器阵列48限定的开放线缆连接位置(如54,56)的通路。在以下两种主要情况下,到达正面面板42的开放线缆连接位置(如54,56)是很重要的:第一种情况是安装过程中(如,在初次安装或组装过程中,或在面板32向后连接位置56的线缆终端的修理、替换、或升级过程中);第二种情况是安装后操作使用设备10的过程中。
返回参见图1和4,在安装过程中,抽屉34拉出到打开位置。如前所述,技术员将光纤线缆36走线穿过机壳12的后部开口38并端接于适配器面板32向后开放的连接位置56上。为了能更好地到达限定出向后连接位置56的适配器46的向后连接端52,适配器阵列48之一被定位于向后位置(如顶部阵列),而其余的适配器阵列(如位于顶部阵列下面的阵列(看图5和6))被定位于向前位置。在这种结构中,技术员能更好地接近处于向后位置的一个面板部60向后开放的连接位置56。一旦完成了线缆与特定适配器阵列48的端接,该适配器阵列可向前滑动,而线缆将端接的下一个阵列向后滑动。
参见图4,为了能进一步接近向后开放的连接位置56,机壳12的顶壁16包括可卸除通路面板92。参见图2,每个面板92在方向B上从机壳12的顶壁16向外滑动。在图2中画出了面板92与顶壁16接合。特别地,每个面板92由与形成在顶壁16顶壁部分100中的褶边或卷边98相接合的柔性凸片94锁定就位。柔性凸片94由形成于面板92中的槽96限定。褶边或卷边98是通过将顶壁16的一部分弯折或滚卷在自身上而形成,不过构造可以是附加在顶壁上的,这是形成褶边的一种备选方式。
为了将面板92之一滑出,柔性凸片94向下弯折超出形成于顶壁部分100中的褶边或卷边98。面板随后沿图2中所示的方向滑出并被卸除,从而限定出与机壳12前开口28相邻的顶壁开口104(看图15)。顶壁开口104提供到达向后开放连接位置56的进一步的通路。为了再把面板92安装上,面板92相对于顶壁开口104放置,柔性凸片94向下折曲,随后面板92滑回就位。如图15所示,保持法兰102在顶壁开口104处形成于顶壁16中。保持法兰102在附接到机壳12的顶壁16时支撑面板92。
典型地,向后开放的连接位置56除了修理或升级之外,仅在安装过程中可以到达。但是,可在更规律的基础上到达向前开放连接位置54以便在电信仪器之间进行互连。这种使用是指操作性使用或安装后的使用,主要涉及在适配器46的前连接端50处维护或建立线缆终端。
现在参见图13-15,画出了操作使用中的适配器面板设备10。在操作使用过程中,通过机壳12的前开口28接近适配器面板32,抽屉34位于关闭位置。
如前所述,通过后开口38进入机壳12内部的线缆36端接于适配器面板32的开放的后连接位置56。参见图13,跳线线缆或拼接线缆40也端接于适配器面板32;特别地,端接于面板32的向前开放连接位置54。拼接线缆40在适配器面板设备10和其他电信仪器(未画出)之间提供互连。拼接线缆40从前开口28走线通过机壳12的侧开口90(图3)到达电信系统的电路布线构造(如通道,未画出)。
由于适配器46的高密度布置,适配器面板32的每个面板部60向前滑动使相关的适配器阵列48从其他阵列上分离开。通过将面板部60和相关适配器阵列48分离地向前放置,技术员可更容易抓取拼接线缆40的特定连接器,和/或更容易将拼接线缆与向前放置阵列的特定适配器46端接。另外,并如前所述,顶壁16的通路面板92(图13)可被卸除(如图15中所示),从而提供到达面板部向前开放的连接位置54更进一步的通路。
再次参见图13,导轨部件64的向前导轨部分84可用作将面板部60向前拉的手柄。可选地,使用者可通过抓取附加在滑动框架件62导轨部件64上的保持环82将面板部60向前滑。在画出的实施方式中,保持环82附加于滑动框架件62的外部导轨部件64的端部,以保护修补线缆40不超过最大弯曲半径。
尽管本公开内容是有关在光纤领域内使用的内容,本公开的面板设备还可适用于其他领域。例如,在一些领域中,会用到的是铜缆而非光纤线缆;并且相应地各种类型的电线终端或电线连接器可配备在线路的正面面板上。在其他具有混合线缆的领域中,或是在同时具有光纤和铜缆两种类型的应用中,设备的正面面板还可配备成光纤和铜缆连接器和/或适配器的组合。
大体上说,本公开的适配器面板设备10提供了一种高密度的适配器面板设备,同时其有利于到达否则就拥挤在一起的前后连接位置。由于本发明设备的通路设计,用在架子或机柜上的空间量降到最少;或者,可选地,就使得空间上有限制的系统能够进行扩张和升级,这是因为在不牺牲连接位置有效通路的同时提供了更密集压缩的界限位置。
上述具体说明提供了对本发明的完整介绍。由于许多本发明的实施方式可以在不脱离本发明的精神和范围下完成,本发明的特定方面是存在于其后所附的权利要求中。
Claims (25)
1.一种适配器面板设备,包含:
a)具有前开口的机壳;
b)相对于机壳滑动的抽屉;
c)由抽屉承载的多个滑动框架件,所述滑动框架件相对于抽屉独立地滑动;以及
d)由所述框架件承载的适配器阵列,所述适配器阵列按行排列,适配器阵列限定了向前开放的线缆连接位置;
e)其中,适配器阵列与所述框架件相对于其它适配器阵列独立地在侧向上朝向机壳的前开口滑动以提供到达适配器阵列的向前开放的线缆连接位置的通路。
2.如权利要求1所述的设备,其中至少一些适配器阵列由相对于彼此竖直布置的框架件承载。
3.如权利要求1所述的设备,其中所述适配器阵列包括至少两个并排的阵列。
4.如权利要求3所述的设备,其中所述至少两个并排的阵列由两个并排的框架件承载。
5.如权利要求1所述的设备,其中所述适配器阵列包括向后开放的线缆连接位置。
6.如权利要求1所述的设备,其中每个适配器阵列在侧向上滑动的距离不超过约4.0英寸。
7.如权利要求6所述的设备,其中每个适配器阵列在侧向上滑动的距离不超过约1.7英寸。
8.如权利要求1所述的设备,进一步包括安装至抽屉的骨架结构,骨架结构包括引导件,每个框架件可滑动地安装至一对引导件。
9.如权利要求8所述的设备,其中所述骨架结构被安装至抽屉的底部表面。
10.如权利要求8所述的设备,其中所述滑动框架件每个具有在骨架结构的引导件内滑动的细长导轨部件。
11.如权利要求10所述的设备,进一步包括止挡装置,所述止挡装置将框架件的侧向滑动限制在向后位置和向前位置之间。
12.如权利要求11所述的设备,其中所述止挡装置包括形成在引导件和导轨部件两者之一上的突起以及形成在引导件和导轨部件两者中的另一个上的棘爪。
13.如权利要求12所述的设备,其中突起形成在骨架结构的引导件上,棘爪形成在滑动框架件的导轨部件上。
14.如权利要求1所述的设备,其中所述框架件限定了位于适配器阵列前面的手柄,所述手柄可被够及并在其上被拉动以将适配器阵列朝向前开口滑动。
15.一种适配器面板设备,包含:
a)限定了机壳内部的机壳,机壳具有前开口;
b)相对于机壳滑动的抽屉;
c)安装至抽屉的正面面板组件,所述正面面板组件限定了多行适配器,每行适配器相对于其它行适配器独立地在侧向上朝向机壳的前开口滑动,每行适配器还相对于抽屉独立地滑动;以及
d)前盖,其位置靠近所述前开口,在前盖关闭时,前盖将正面面板组件的多行适配器封闭在机壳内部。
16.如权利要求15所述的设备,其中每行适配器在侧向上滑动的距离不超过约4.0英寸。
17.如权利要求15所述的设备,其中所述正面面板组件进一步包括安装至抽屉的骨架结构,骨架结构包括引导件,所述多行适配器可滑动地安装至多对引导件。
18.如权利要求17所述的设备,其中所述骨架结构被安装至抽屉的底部表面。
19.如权利要求17所述的设备,其中多行适配器被安装至滑动框架件,所述滑动框架件具有在骨架结构的引导件内滑动的细长导轨部件。
20.如权利要求19所述的设备,进一步包括止挡装置,所述止挡装置将框架件的侧向滑动限制在向后位置和向前位置之间。
21.如权利要求20所述的设备,其中所述止挡装置包括形成在引导件和导轨部件两者之一上的突起以及形成在引导件和导轨部件两者中的另一个上的棘爪。
22.如权利要求21所述的设备,其中突起形成在骨架结构的引导件上,棘爪形成在滑动框架件的导轨部件上。
23.如权利要求15所述的设备,其中所述多行适配器限定了向前开放的线缆连接位置,并且每行适配器相对于其它行适配器独立地在侧向上朝向前开口滑动以提供到达向前开放的线缆连接位置的通路。
24.如权利要求15所述的设备,其中所述多行适配器由未封闭的适配器限定。
25.如权利要求15所述的设备,其中每行适配器包括至少两个并排布置的适配器阵列,行中的每个适配器阵列相对于所述行中的其它适配器阵列独立地在侧向上滑动。
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