CN102138093A - 光纤设备中可独立平移的模块和光纤设备托盘 - Google Patents
光纤设备中可独立平移的模块和光纤设备托盘 Download PDFInfo
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- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/44—Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
- G02B6/4439—Auxiliary devices
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- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/44—Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
- G02B6/4439—Auxiliary devices
- G02B6/444—Systems or boxes with surplus lengths
- G02B6/4453—Cassettes
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- G—PHYSICS
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- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/24—Coupling light guides
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- G02B6/38—Mechanical coupling means having fibre to fibre mating means
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- G02B6/3897—Connectors fixed to housings, casing, frames or circuit boards
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- G—PHYSICS
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- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/44—Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
- G02B6/4439—Auxiliary devices
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- G—PHYSICS
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- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B6/00—Light guides; Structural details of arrangements comprising light guides and other optical elements, e.g. couplings
- G02B6/44—Mechanical structures for providing tensile strength and external protection for fibres, e.g. optical transmission cables
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Abstract
本发明公开了支持可独立平移光纤模块和/或包含一或多个光纤模块(104)的光纤设备托盘的光纤设备。在一些实施方式中,一或多个光纤模块布置在容纳于托盘导向系统中的多个可独立平移光纤设备托盘中。以此方式,每个光纤设备托盘可在所述导向系统内独立地平移。一或多个光纤模块还可布置于在所述光纤设备托盘中布置的一或多个模块导向器中,以允许每个光纤模块独立于同一光纤设备托盘中的其他光纤模块而平移。在其他实施方式中,多个光纤模块布置于在所述光纤设备中布置的模块导向(108)系统中,所述多个光纤模块独立于布置在所述模块导向系统内的其他光纤模块平移。
Description
相关申请
本申请主张2008年8月29日提交的标题为“High Density Data Center Hardware,Assemblies and Components”的美国临时专利申请第61/190,538号的优先权,其全文以引用的方式并入本文中。
本申请还主张2008年10月23日提交的标题为“High Density Data Center Hardware,Assemblies and Components”的美国临时专利申请第61/197,068号的优先权,其全文以引用的方式并入本文中。
本申请还主张2008年11月25日提交的标题为“Independently Translatable Modules and Fiber Optic Equipment Trays in Fiber Optic Equipment”的美国专利申请第12/323,415号的优先权,其全文以引用的方式并入本文中。
本申请涉及标题为“Rear-Installable Fiber Optic Modules and Equipment”的共同待决美国专利申请第12/323,423号,其全文以引用的方式并入本文中。
本申请还涉及标题为“Rear Slidable Extension in a Fiber Optic Equipment Tray”的共同待决美国专利申请第12/394,483号,其全文以引用的方式并入本文中。
背景
公开的领域
本公开案的技术涉及用于光纤设备的光纤模块。所述光纤模块可包含在光纤设备机架和/或托盘中。
技术背景
使用光纤的益处包括极宽的带宽和低噪音操作。由于这些优点,使得光纤越来越多地用于各种应用,包括(但不限于)宽带语音、视频和数据传输。正在开发采用光纤的光纤网络并且将其用于在私人网络和公共网络上将语音、视频和数据传输传送到用户。这些光纤网络通常包括分离的连接点,在这些连接点上必须对光纤进行链接以便提供从一个连接点到另一连接点的“活光纤”。就此而言,光纤设备位于数据分配中心或电话局中以支持互连。
光纤设备是基于应用需要来定制。光纤设备通常包括在装配于设备机架中的外壳内以使间隔最大。此类光纤设备的一种实例为光纤模块。设计了一种光纤模块来提供电缆到电缆光纤连接并且管理光纤电缆连接的极性。该光纤模块通常装配到机箱,随后将该机箱装配在设备机架或外壳内部。该机箱可以用托盘形式提供,该托盘可从类似抽屉的设备机架中延伸出。这允许技术人员接入布置于光纤模块中的光纤适配器和接入连接到光纤适配器的任何光纤电缆,而无需从设备机架上移除光纤模块。
由于增加的带宽需求和为获得增加的创收机会在数据中心中提供高连通性密度的需求,光纤网络正在迁移到较高电缆光纤数。多光纤电缆可用以提供较高电缆光纤数并且可用于光纤网络的长途接线。通常,较高密度连接使接入光学部件和连接更加困难。对于光纤模块同样如此,这是由于布置在光纤模块中处理较高连通性密度的光纤适配器的数目增加。增加的密度使得用手接入光学部件和连接器以及布线和组织跳接更加困难。即使具有光纤设备托盘拔出能力,也仍存在改良对光纤设备托盘中的光学部件的接入以及提供整齐的跳接布线和组织的需求。
详细描述的概述
在详细描述中公开的实施方式包括支持可独立平移光纤模块和/或含有一或多个光纤模块的光纤设备托盘的光纤设备和装置。在一些实施方式中,一或多个光纤模块被布置在多个可独立平移光纤设备托盘中。光纤设备托盘容纳于布置在光纤设备中的托盘导向系统中。以此方式,每个光纤设备托盘可在导向系统内独立地平移。当平移时,布置在每个光纤设备托盘中的一或多个光纤模块与其各自的光纤设备托盘一起平移。
一或多个模块导向器还可布置在每个光纤设备托盘中。光纤模块可布置在一或多个模块导向器中。光纤模块在模块导向器内平移。以此方式,布置在给定光纤设备托盘中的每个光纤模块可以独立于同一光纤设备托盘中的其他光纤模块而平移,以及每个光纤设备托盘可独立平移到在托盘导向系统内的其他光纤设备托盘。
在其他实施方式中,多个光纤模块被布置在光纤设备中的模块导向系统中,而不需要或不要求中间光纤设备托盘。每个光纤模块都独立于布置在模块导向系统内的其他光纤模块而平移。还可提供一或多个光纤设备托盘。光纤设备托盘可以包含邻近于光纤设备的前端的锁定特征结构,其在当一或多个光纤模块在导向系统内向前朝光纤设备的前端移动时可释放地保持光纤模块。以此方式,可拉动光纤设备托盘以将光纤模块从光纤设备向前平移。
本发明的附加特征和优点将阐述于随后的详细描述中,并且在某种程度上将容易根据该描述而对所属领域的技术人员显而易见或者通过实施如本文所述的包括随后的详细描述、权利要求书以及所附附图的本发明而认识到。
应理解,以上一般描述和以下详细描述均呈现本发明的实施方式,并且旨在提供用于理解本发明主张的性质和特点的概要或框架。包括附图以提供本发明的进一步理解,并且将其纳入本说明书并且构成本说明书的一部分。附图图示本发明的各个实施方式,并且与该描述一起用于阐释本发明的原理和操作。
附图简要说明
图1为具有支持根据一个实施方式的可后部安装光纤模块的示例性光纤设备的示例性光纤设备机架的正面透视图;
图2A为支持图1的可后部安装光纤模块的光纤设备的背面透视图;
图2B为布置于图1的光纤设备中的光纤设备托盘导向器的透视图;
图3为图1的光纤设备中的单独光纤设备托盘的正面透视图,其中无可后部安装光纤模块安装于在光纤设备托盘中布置的模块导向器内;
图4为可后部安装于图3的光纤设备托盘中的光纤模块的正面透视图;
图5为安装于图3的光纤设备托盘中的图4的可后部安装光纤模块的背面透视近视图;
图6为具有安装于模块导向器中的可后部安装光纤模块的图3的光纤设备托盘的正面透视图;
图7为具有安装于模块导向器中的可后部安装光纤模块的图3的光纤设备托盘的正面透视近视图;
图8为从光纤设备中延伸出的光纤设备托盘的正面透视图;
图9为经降低以获得正面接入支持于光纤设备托盘中的光纤模块的光纤设备托盘的光纤布线导向托盘的正面透视图;
图10为支持布置于模块导向器中的可后部安装光纤模块的另一示例性光纤设备的正面透视图;
图11为支持图10的可后部安装光纤模块的光纤设备的背面透视图;
图12为图10的光纤设备中的单独光纤设备托盘的正面透视图;
图13为在布置于图10的光纤设备中的模块导向器内安装的可后部安装光纤模块的背面透视图;
图14为布置于图10的光纤设备中的模块导向器内并且在向前拉动光纤模块时锁定到图12的光纤设备托盘中的可后部安装光纤模块的背面透视近视图;
图15为图14中光纤模块的背面透视图;
图16A为图15的光纤模块中正面锁定闩的透视近视图;
图16B为图15的光纤模块中背面锁的透视近视图;
图17为安装于模块导向器中的可后部安装光纤模块的背面透视近视图;
图18为用于将光纤模块锁定到光纤设备托盘并且将光纤设备托盘锁定到图10的光纤设备的机箱的锁定特征结构的透视图;
图19为具有布置于模块导向器中的可后部安装光纤模块的图10的光纤设备的正面透视图;
图20为具有布置于模块导向器中并且与光纤设备托盘互锁的可后部安装光纤模块的图10的光纤设备的侧截面图,其中一个光纤设备托盘向前延伸出;
图21为图20的光纤设备的正面透视图;
图22为支持可后部安装光纤模块的另一示例性光纤设备的正面透视图;
图23为支持图22的可后部安装光纤模块的光纤设备的背面透视图;
图24A为支持图22的光纤设备中的可后部安装光纤模块的模块导向器的正面视图;
图24B为图24A中所示的模块导向器的透视图;
图25为在提供于图22的光纤设备中的模块导向器内布置的光纤模块的正面透视图;
图26A和图26B为具有安装于所有模块导向器中的光纤模块并且具有锁定特征结构以防止向前拉动光纤模块超出光纤设备前端的图22的光纤设备的正面视图;
图27为由布置于图22的光纤设备中的模块导向器支持的光纤模块的顶视图;
图28为支持可后部安装光纤模块的另一示例性光纤设备的正面透视图;
图29为支持图28的可后部安装光纤模块的光纤设备的背面透视图;
图30为提供于图22的光纤设备中的光纤模块的正面透视图;
图31为支持图28的可后部安装光纤模块的光纤设备的另一背面透视图;
图32为支持图28的可后部安装光纤模块的光纤设备的另一正面透视图,其中光纤布线托盘延伸出并向下倾斜以提供对某些光纤模块的接入;
图33为支持图28的可后部安装光纤模块的光纤设备的另一正面透视图,其中光纤布线托盘延伸出并向下倾斜;
图34为支持可后部安装光纤模块的另一示例性光纤设备的正面透视图;和
图35为支持可后部安装光纤模块的另一示例性光纤设备另一正面透视图。
优选实施方式的具体描述
现在详细参考本发明的优选实施方式,在附图中图示了优选实施方式的实例,其中所示为本发明的一些而不是所有实施方式。实际上,本发明可体现为许多不同形式并且不应认为是限于本文所阐述的实施方式;相反,提供这些实施方式以便本公开案满足适用的法律要求。只要有可能,相同元件符号将用于指代相同部件或部分。
详细描述中公开的实施方式包括支持可独立平移光纤模块和/或含有一或多个光纤模块的光纤设备托盘的光纤设备和装置。在一些实施方式中,一或多个光纤模块被布置在多个可独立平移光纤设备托盘中。光纤设备托盘容纳于布置在光纤设备中的托盘导向系统中。以此方式,每个光纤设备托盘可在导向系统内独立地平移。当平移时,布置在每个光纤设备托盘中的一或多个光纤模块与其各自的光纤设备托盘一起平移。
一或多个模块导向器还可布置在每个光纤设备托盘中。光纤模块可布置在一或多个模块导向器中。光纤模块在模块导向器内平移。以此方式,布置在给定光纤设备托盘中的每个光纤模块可以独立于同一光纤设备托盘中的其他光纤模块而平移,以及每个光纤设备可独立平移到在托盘导向系统内的其他光纤设备托盘。
就此而言,图1图示示例性光纤设备10。在数据分配中心或电话局提供光纤设备10以支持电缆到电缆光纤连接并且管理多个光纤电缆连接。如下文将更详细描述,光纤设备10具有各自支持一或多个可后部安装光纤模块的一或多个光纤设备托盘。光纤模块可以是光纤适配器模块或任何其他类型的光纤模块或光纤装置,包括支持光纤连接的那些光纤模块或光纤装置。光纤模块和光纤设备托盘均为可后部安装的,这意味着其均可以从光纤设备10的后部安装。此外,光纤设备托盘和其中支持的光纤模块均可独立地在机箱周围平移以便安装、接入和/或移除。
就此而言并且如图1中所示,光纤设备10包括光纤设备机箱12(“机箱12”)。机箱12被图示为安装于光纤设备机架14中。光纤设备机架14含有两个垂直轨道16A、16B,所述两个垂直轨道16A、16B垂直延伸并且包括用于促进将光纤设备10附接在光纤设备机架14内部的一系列孔18。光纤设备10以层架形式由光纤设备机架14附接和支持,所述层架在垂直轨道16A、16B内层叠于彼此之上。如图所示,光纤设备10附接到垂直轨道16A、16B。光纤设备机架14可支持1U大小的层架,其中“U”高度上等于标准1.75英寸。如随后本申请中将更详细论述的,光纤设备10包括多个可延伸的光纤设备托盘20,所述多个可延伸的光纤设备托盘20各自承载一或多个可后部安装光纤模块22。在该实例中,光纤设备10提供144根光纤的密度,尽管其并不限于该密度。此外,如在下文还将更详细描述,每个光纤设备托盘20均为可独立地平移并且是可接入的,以便接入其中支持的光纤模块。
图2A图示图1中图示的光纤设备10的背面透视图。在机箱12中提供光纤设备10,机箱12界定前端24、后部26、第一端28和第二端30。机箱12的第一端28布置于机箱12的第二端30的相对侧上。提供呈导轨系统32形式的导向系统以支持可后部安装光纤模块22。导轨系统32包含两个托盘导轨32A、32B,托盘导轨32A、32B分别在第一端28和第二端30上附接到机箱12。托盘导轨32A、32B经设置以支持一或多个光纤设备托盘,所述一或多个光纤设备托盘支持光纤模块22,光纤模块22将图示于图3中并且下文有所描述。托盘导轨32A、32B允许其中安装的每个光纤设备托盘20在机箱12周围平移。在该实例中,机箱12支持各自层叠于彼此之上的三个(3)光纤设备托盘20。托盘盖34布置在顶部光纤设备托盘20之上,顶部光纤设备托盘20布置于机箱12中并且在托盘导轨32A、32B内。如本申请中随后将论述,每个光纤设备托盘20含有附接到其上的光纤布线托盘36以支持连接到光纤模块22的光纤的布线。光纤布线托盘36可以根据需要来延伸和降低以获得从光纤设备10的前端24对光纤模块22的接入。
图2B更详细图示托盘导轨32A、32B。如其中所图示,托盘导轨32A、32B形成一系列通道38A-38C,其中每个通道38A-38C经设置以容纳光纤设备托盘20。托盘导轨32A、32B允许将多个光纤托盘20排列成列格式。托盘导轨32A、32B包含端部40,端部40终止通道38A-38C并且使光纤设备托盘20不能延伸出。该端部40布置在使得其邻近光纤设备10的后部26的方向上。托盘导轨32A、32B还含有入口部42,通过该入口部42可以将光纤设备托盘20插入通道38A-38C中。注意,入口部42并未封堵通道38A-38C,以使得光纤设备托盘20可以向后朝机箱12的后部26延伸超出入口部42。以此方式,托盘导轨32A、32B支持从后部26将光纤设备托盘20后部安装到机箱12中。
图3图示未布置于机箱12中或未包含在托盘导轨32A、32B内的单独光纤设备托盘20以用于进一步论述和说明。如其中所图示,光纤设备托盘20包含主托盘部44和与其附接的光纤布线托盘36。光纤布线托盘36经由铰链机构附接到主托盘部44,所述铰链机构呈布置于主托盘部44的各端48A、48B上的铰链46A、46B的形式。主托盘部44含有多个模块导向器,这些模块导向器呈支持光纤模块22的模块导轨50的形式。更具体地说,光纤模块22含有轨道(图4中的元件52A、52B),所述轨道联接到布置于模块导轨50内的托盘通道54。如果至少一个中间模块导轨50布置于光纤设备托盘20中,那么以排列成行的方式布置光纤模块22。在每个模块导轨50中提供多个托盘通道54允许多个光纤模块22以排列成列的方式层叠于彼此之上。光纤模块22可以朝向机箱12的前端24或机箱12的后部26在光纤设备托盘20中的模块导轨50内移动。光纤设备托盘20还可以在托盘导轨32A、32B周围移动。以此方式,光纤设备托盘20可以在托盘导轨32A、32B周围彼此独立地平移,并且在给定光纤设备托盘20内的光纤模块22中的每一个均可以在其相应模块导轨50内独立地平移。
图3中应注意,光纤设备托盘20包含五个(5)模块导轨50,这意味着光纤设备托盘20可以支持四个(4)单独的光纤模块22。可以在图3的光纤设备托盘20中安装四个(4)光纤模块22,或根据需要或根据安装要求所需安装少于四个光纤模块22。同样如图3所示并且如图4中更详细图示,模块导轨50经配置以使得托盘通道54在模块导轨50的后端56上打开。这允许光纤模块22可从机箱12的后部26后部安装到光纤设备托盘20中。更具体地说,光纤设备托盘20布置于机箱12中,以使得模块导轨50的后端56朝向机箱12的后部26定向。因此,如在下文将更详细论述,光纤模块22可以插入模块导轨50的后端56中并且在模块导轨50内向前推送,直到光纤模块22到达各模块导轨50的前端58为止。可以提供图3中未图示但随后本申请下文中描述的锁定特征结构,以防止光纤模块22延伸出模块导轨50的前端58,除非啮合一个释放结构。以此方式,光纤模块22可以从机箱12的后部安装,但同样也可以从机箱12的前端24延伸和移除。
同样如图3中所图示,光纤布线托盘36由金属薄板或其他材料形成,该金属薄板或其他材料在光纤布线托盘36的前端60上以U形弯曲于其自身之上。以此方式,从安装于光纤设备托盘20中的光纤模块22(尤其从布置于光纤设备托盘20中的模块导轨50)延伸的光纤可以在光纤布线托盘36中含有的凸缘段23下方布线,并且可经布置到将被布线连接到其他光纤设备的光纤设备托盘20的任一端48A、48B。
图4图示支持于图1-图3中的光纤设备托盘20内的光纤模块22的实例。如其中所图示,光纤模块22包含布置于光纤模块22的前端66上的若干光纤适配器64。在该实例中,光纤适配器64接受双联LC光纤连接器68。然而,可以在光纤模块22中提供任何需要的光纤连接类型。光纤电缆(未图示)从光纤连接器68延伸以建立与其他设备的光纤连接。另一光纤适配器70布置于光纤模块22的后端72上。在该实例中,光纤适配器70为装备用于建立与至多十二(12)根光纤的连接的MTP光纤适配器。光纤模块22还可管理在布置于光纤模块22的前端66上的光纤连接器68和光纤适配器64与布置于光纤模块22的后端72上的光纤适配器70之间的极性。
模块轨道52A、52B布置于光纤模块22的各侧74A、74B上。如图3中所图示,模块轨道52A、52B经设置以插入在光纤设备托盘20中的模块导轨50的托盘通道54内。以此方式,当需要在光纤设备托盘20中安装光纤模块22时,光纤模块22的前端66可以从机箱12的后部26插入。更具体地说,光纤模块22的前端66在模块导轨50的后端56处插入模块导轨50的托盘通道54中。以此方式,光纤模块22在光纤设备托盘20和机箱12中可后部安装。随后,可以在托盘通道54内向前推送光纤模块22,直到光纤模块22到达模块导轨50的前端58为止。以此方式,技术人员可以对布置于光纤模块22的后端72上的光纤适配器70安装光纤连接,并且可以随后将光纤模块22从机箱12的后部26安装到光纤设备托盘20中。
就此而言,图5图示安装于光纤设备托盘20和其中布置的模块导轨50中的光纤模块22的背面透视图。如其中所图示,当从机箱12的后部26将光纤模块22安装于模块导轨50的托盘通道54中时,光纤模块22的模块轨道52A、52B在托盘通道54内朝向前端24移动。光纤模块22可以朝向前端24移动,直到光纤模块22到达布置于前端24中的终止或锁定特征结构为止,如本申请中随后将描述。呈锁定闩78和突起80(图4)形式的锁定特征结构啮合布置于托盘通道54中的互补突起,以使得锁定光纤模块22。锁定闩78向内偏置,以使得光纤模块22虽然可以安装于托盘导轨32中,但却不可向后朝机箱12的后部26拉动,直到锁定闩78脱离以防止突起80与模块导轨50啮合为止。通过向内朝光纤模块22推送锁定闩78来使其脱离以从托盘通道54上释放突起80。
如果需要从光纤设备托盘20移除光纤模块22,那么可以从机箱12的后部26或者从机箱12的前端24移除光纤模块22。为了从机箱12的后部26移除光纤模块22,一旦锁定闩78向内脱离,则可以拉动布置于光纤模块22的后端72中的拉环76。锁定闩78控制从模块轨道52A向外延伸的突起80的位置,以使得当光纤模块22沿模块导轨50的某个部分延伸时,突起80防止光纤模块22向后沿托盘通道54朝机箱12的后部26移动。
图6图示图3的光纤设备托盘20;然而,其中安装有可后部安装光纤模块22。光纤模块22安装于布置在光纤设备托盘轨道82A、82B中的模块导轨50内。这些光纤设备托盘轨道82A、82B经设置以布置于附接到如图2A中图示的机箱12的模块导轨32A、32B中,以使得光纤设备托盘20可相对于机箱12平移。
图7更详细地图示图6中的光纤设备托盘20的正面透视图。如其中所图示,在机箱12的托盘导轨32A、32B内布置了三个(3)光纤设备托盘20。如其中所图示,以定位铰链47的形式提供铰链46A、46B,所述铰链46A、46B铰接地将光纤布线托盘36附接到光纤设备托盘20。定位铰链47经设置以与模块导轨50啮合,以使得当啮合定位铰链47时,光纤模块22不可向前延伸。如果需要接入光纤模块22,那么可向前拉动附接到光纤布线托盘36的拉片25,以使光纤设备托盘20从机箱12的前端24向前延伸,如图8中所图示。此后,光纤布线托盘36可向下倾斜,如图9中所图示。当光纤设备托盘20和其光纤布线托盘36向下倾斜时,在光纤设备托盘20的各侧上的定位铰链47与用于特定光纤设备托盘20的模块导轨50脱离,以使得可从机箱12的前端24移除由光纤设备托盘20支持的光纤模块22。同样,通过允许光纤布线托盘36向下倾斜,可获得对光纤模块适配器70和光纤连接器68的畅通无阻的接入以便建立或断开光纤连接。
还可以在光纤设备中的模块导向系统内布置多个光纤模块,而不需要或不要求有中间光纤设备托盘。以此方式,光纤模块中的每一个独立于布置于模块导向系统内的其他光纤模块而平移。就此而言,图10图示光纤设备100的另一个实施方式。光纤设备100包括模块导向系统,所述模块导向系统布置于支持可后部安装光纤模块的机箱102中。如本申请中随后将描述,光纤设备100提供用于可后部安装光纤模块的替代性导向系统。在图10中,光纤模块104被支持在布置于光纤设备100的机箱102中的模块导轨106内。这与图1-图9中的光纤设备10相反,其中光纤模块布置于附接到机箱的中间光纤设备托盘中。以此方式并且如图10中所图示,光纤设备100允许光纤模块104插入布置于机箱102内的模块导轨106中并且在模块导轨106周围独立地平移。
转向图10,在光纤设备100中安装多个可后部安装的光纤模块104。光纤模块104通过多个模块导轨106来支持。与图1的光纤设备10不同,模块导轨106直接附接到机箱102。再提供光纤设备托盘108以支持光纤模块104从光纤设备100向前平移。如本申请中随后将描述,当从机箱102的后部110将光纤模块104安装到模块导轨106中时。随后,可在模块导轨106内将光纤模块104向前移动到机箱102的前端112。随后,光纤模块104将与闩(未图示)啮合,所述闩随后将使光纤模块104附接到光纤设备托盘108。以此方式,当从机箱102向前拉动光纤设备托盘108时,由于光纤模块104与光纤设备托盘108之间互锁,所以光纤模块104也将与光纤设备托盘108一起向外移动,但仍受到模块导轨106支持。因此,在图10中的光纤设备100内,光纤设备托盘108可相对于机箱102独立地移动;然而,光纤模块104不可在如提供于图1的光纤设备10中的光纤设备托盘108内独立地移动。
机箱102还包含第一端114和第二端116,其中第二端116布置于第一端114的相对侧上。多个模块导轨106布置于在第一端114与第二端116之间的机箱102内。需要最少两个(2)模块导轨106以支持至少一个(1)光纤模块104。然而,如图10中所图示,每层提供五个(5)模块导轨106以支持四个(4)光纤模块104。如本申请中稍后将更详细描述,模块导轨106可包含多个通道118以支持多于一层或多于一个平面的光纤模块104。在图10中的光纤设备100的实例中,提供了三(3)层光纤模块104;因此,在每个模块导轨106中提供了三个(3)通道118。光纤设备托盘108各自含有布线托盘120,可拉动布线托盘120以便从机箱102移除光纤设备托盘108。
图11图示布置于机箱102内的模块导轨106的背面透视图和如何从机箱102的后部110安装光纤模块104。此外,图11图示如何也通过模块导轨106支持光纤设备托盘108和光纤模块104在被向前拉动时如何附接到光纤设备托盘108。如图11中所图示,提供了模块导轨106,其中可从后部110将光纤模块104插入到通道118中。随后,可朝机箱102的前端112将光纤模块104与模块导轨106一起向前推送。模块导轨106还含有布置于与通道118大体上正交的平面中的一系列托盘导向器122以容纳光纤设备托盘108,但任何方向均为可能。
如图12中所图示,光纤设备托盘108包含一系列细长部124。细长部124经设置以沿通道118的纵轴插入布置于模块导轨106内部的托盘导向器122中。因此,如图13和图14中所图示,当自始至终沿模块导轨106将光纤模块104向前拉动到光纤设备托盘108的前部126时,呈前模块闩128形式的锁定特征结构与邻近机箱102的前端112布置的锁销特征结构130互锁。锁销特征结构130被固定到光纤设备托盘108。以此方式,光纤模块104与光纤设备托盘108变成互锁,以使得当光纤设备托盘108在机箱102的第一端114上向前平移时,光纤模块104与光纤设备托盘108一起向前行进。细长部124和与光纤设备托盘108互锁的光纤模块104一起在托盘导向器122周围平移,即使光纤模块104仍由模块导轨106支持也为如此。图15图示光纤模块104和尤其有关前模块闩128的更多细节。
如图15中所图示,光纤模块104包含多个光纤适配器132,所述多个光纤适配器132经设置以将光纤连接器134支持在光纤模块104的前端136上。光纤适配器138布置于光纤模块104的后端140上。在图15的光纤模块104的该实例中,光纤适配器132为双联LC光纤适配器,并且布置于光纤模块104的后端140中的光纤适配器138为MTP光纤适配器,但任何光纤连接类型均为可能。在光纤连接器134与连接到MTP光纤适配器138的MTP光纤连接器142之间建立光纤连接。在光纤模块104内部提供建立光纤适配器132、138之间连接的光纤。
光纤模块104还分别在光纤模块104的第一侧面146和第二侧面148上含有两个(2)模块轨道144A、144B。模块轨道144A、144B经设置以插入模块导轨106的通道118中,以使得光纤模块104可在模块导轨106内平移。就此而言,由于在后部110中模块导轨106内的通道118打开,如图11中图示,所以光纤模块104可后部安装到光纤设备100中。随后,可在通道118内向前平移光纤模块104,直到前模块闩128到达锁销特征结构130为止。前模块闩128向内偏置,以使得当其到达锁销特征结构130时,前模块闩128向内弯曲并且被固持于锁销特征结构130中。一旦前模块闩128被固持于锁销特征结构130中,则光纤模块104不可独立于光纤设备托盘108向后朝后部110或朝前端112拉动,除非前模块闩128从锁销特征结构130上释放。以此方式,前模块闩128可释放地固持光纤模块104。
图16A更详细图示用于光纤模块104的前模块闩128。图16B图示呈后模块锁150形式的锁定特征结构,所述锁定特征结构可提供于光纤模块104的后端140中以将光纤模块104锁定于模块导轨106内。以此方式,光纤模块104不可朝光纤设备100的后部110移除,除非如图所示通过向右方推动后模块锁按钮152来对后模块锁150解锁。当如图所示向右方移动后模块锁按钮152时,闩154从模块导轨106的通道118脱离,以使得可从后部110移除光纤模块104。通过拉动附接到光纤模块104的后端140的拉环156(如图15所示),可从后部110移除光纤模块104。
图17和图18图示锁销特征结构130和光纤设备托盘108如何互锁到机箱102中。如其中所图示,光纤设备托盘108含有固定到托架160的向上延伸的翼片158,其中托架160附接到机箱102。托架160含有一系列孔162,这些孔162经调试以由柱塞166容纳凸缘164。每个光纤设备托盘108含有穿过向上延伸的翼片158布置的柱塞166,所述翼片158经调试以与孔162啮合。当需要将光纤设备托盘108锁定到机箱102时,柱塞166啮合于孔162中。如图17和图18所图示,因为提供了三个(3)光纤设备托盘108,所以在托架160中提供三个(3)孔162。每个孔162经设计以由特定光纤设备托盘108固持向上延伸的翼片158。图17图示布置于机箱102的第二端116上的托架160。虽然未图示,但托架160也布置于机箱102的第一端114上,如图10中所图示。当需要从机箱102上释放光纤设备托盘108(诸如)以为了接入而向前拉动其时,拉动柱塞166并且使其从托架160中的相应孔162脱离。以此方式,每个光纤设备托盘108能够自由向外朝前端112独立地平移,其中在模块导轨106内的托盘导向器122周围向前移动细长部124。
图19图示光纤设备100和光纤模块104的正面透视图,光纤模块104经由与锁销特征结构130啮合的前模块闩128锁定到光纤设备托盘108中。如其中所图示,光纤设备托盘108中的每一个经由与托架160啮合的其柱塞166固定到机箱102。为了使光纤设备托盘108从机箱102上脱离,拉动柱塞166以使柱塞166从托架160中的孔162中脱离。以此方式,朝前端112施加的拉力将向前平移光纤设备托盘108。这图示于图20和图21中。图20为图21的透视图中所示的具有延伸的中间光纤设备托盘108的光纤设备100的侧截面图。如其中所图示,中间光纤设备托盘108从机箱102延伸。用于中间光纤设备托盘108的柱塞166从托架160上和其中的孔162中脱离。
图22图示也提供用于可后部安装光纤模块的光纤设备200的又一个实例。如图10-图21中的光纤设备100,支持在图22的光纤设备200中的每个光纤模块被支持在布置于机箱中的模块轨道内。光纤模块也可在模块轨道内独立地平移。
如图22中所图示,提供了光纤设备200,其包括经设置以固持一或多个光纤模块204的机箱202。光纤模块204被支持于呈模块导轨206形式的导向系统上,模块导轨206布置于类似于图10-图21中的光纤设备100的机箱202内并且附接到机箱202。模块导轨206附接到机箱202。仅需要在机箱202的第一端208和机箱202的第二端210上提供两个模块导轨206,以使得光纤模块204可安装于机箱202的后部212中并且沿模块导轨206向机箱202的前端214移动。
如本申请中将进一步详细描述,模块导轨206含有一或多个通道216(图示于图24A和图24B中),这些通道216经调试以容纳布置于光纤模块204的各侧面上的轨道(图25中的元件215)。通道216在后部212中打开,以使得光纤模块204的轨道可插入机箱202的后部212内的模块导轨206中,并且在模块导轨206内向前移动,直到光纤模块204到达机箱202的前端214为止。这进一步图示于图23中。如其中所图示,光纤模块204被图示为部分地插入到模块导轨206中。模块轨道215A、215B经布置于光纤模块204的各侧面上,以使得模块轨道215A、215B与模块导轨206中的通道216紧密配合,以便光纤模块204可从后部212滑动到机箱202的前端214。
图24A和图24B图示有关模块导轨206的更多细节,模块导轨206布置于图22和图23的光纤设备200中。如其中所图示,公开了模块导轨206,其提供于第一端208与第二端210之间。对于这种类型的模块导轨206,在模块导轨206的第一侧面218上布置通道216。还在模块导轨206的第二侧面224上提供通道220。以此方式,模块导轨206可在各侧面上支持光纤模块204的轨道。如果由光纤设备200支持在给定平面中的多于一个的光纤模块204,那么将图24A图示的模块导轨206提供为中间模块导轨。在此情况下,至少一个中间模块导轨206具备布置于各侧面218、224上的通道216、220。如图24A中所图示,模块导轨206附接到机箱202,以使得当光纤模块204的模块轨道215A、215B布置于通道216、220内时,由机箱202支持光纤模块204。同样,如下文将参照图26A和图26B更详细描述,模块导轨206还含有一系列内部孔219,这些内部孔219将附接的模块锁或终止器支持到机箱202。模块锁或终止器防止光纤模块204平移出机箱202的前端214。
图25图示可后部安装光纤模块204,可后部安装光纤模块204经调试以由光纤设备200的模块导轨206支持。如其中所图示,模块轨道215A、215B分别地布置于光纤模块204的侧面226、228上。这些模块轨道215A、215B可插入模块导轨206中以将光纤模块204插入到光纤设备200中。因为模块导轨206中的通道220在机箱202的后部212中打开,所以光纤模块204为可后部安装的,这意味着光纤模块204可从机箱202的后部212安装。光纤模块204含有布置于光纤模块204的前端232上的一系列光纤适配器230。光学连接到光纤适配器230的一或多个光纤适配器230布置于光纤模块204的后端234上。以此方式,连接到光纤适配器230的连接器化光纤电缆(未图示)建立与安装于光纤模块204的后端234内的光纤适配器230中的光纤电缆(未图示)的光纤连接。
图26A图示光纤设备200的前视图,其中光纤模块204如先前描述安装于模块导轨206中。为了防止光纤模块204延伸出机箱202的第一端208,将终止或锁定特征结构236布置于中间模块导轨206上的光纤模块204的各行之间。图26B更详细图示终止或锁定特征结构236,其中图示了正面和背面透视图。终止或锁定特征结构236含有一系列孔238,这些孔238与如图24B中先前图示的布置于模块导轨206中的孔219对准。紧固件(未图示)可插入孔238中以将终止或锁定特征结构236紧固到模块导轨206。终止特征结构236包含位于终止或锁定特征结构236的各侧面上的相对的扩张部240,终止或锁定特征结构236包含平台242,光纤模块204的前端232紧靠平台242以防止光纤模块204从机箱202的第一端208向前延伸。
图27图示光纤设备200的顶视图,其中光纤模块204安装于两个模块导轨206之间。如其中所图示,光纤模块204向前延伸到机箱202的前端214,其中光纤模块204的前端232紧靠位于终止或锁定特征结构236中的平台242,以防止光纤模块204延伸出光纤设备200的前端214。
图28图示经设置以允许和支持可后部安装光纤模块的光纤设备的又一个实施方式。如图28中所图示,光纤设备300包含支持一或多个光纤模块304的机箱302。光纤模块304由附接到机箱302的呈模块导轨306形式的导向系统支持,以使得光纤模块304中的每一个可在模块导轨306周围平移。更具体地说,光纤模块304可从机箱302的后部308后部安装到模块导轨306中,并且在模块导轨306内向前延伸到机箱302的前端310。
图29图示图28中图示的光纤设备300的背面透视图,示出其中安装的一系列可后部安装光纤模块304。应注意的是,可提供支持光纤模块304的多于一个平面或行的模块导轨306。在此类情沉下,将在模块导轨306中提供多个通道以支持光纤模块304的多于一个行。
图30更详细图示在图28和图29中图示的光纤模块304。如其中所图示,光纤模块304包含布置于光纤模块304的各侧面314、316上的模块轨道312A、312B。模块轨道312A、312B经调试以容纳到模块导轨306的通道中以支持光纤模块304。每个光纤模块304可以在模块导轨306周围独立地移动。未提供中间光纤设备托盘。光纤模块304包含布置于光纤模块304的前端320上的一系列光纤适配器318。一系列光纤连接器322可连接到光纤适配器318以建立光纤连接。光纤适配器324布置于光纤模块304的后端326中,以使得连接到光纤适配器324的光纤连接器322将建立与连接到光纤连接器322的光纤的光学连接。光纤模块304还含有布置于光纤适配器324的各侧面上的一系列拉环328A、328B,拉环328A、328B可协助从光纤设备300的后部308移除光纤模块304。
为了从光纤设备300的后部308安装光纤模块304,如图31中所图示,向外拉动机箱302的后部308的铰链部330A、330B以使得技术人员可以接近模块导轨306。此后,光纤模块304和其模块轨道312A、312B被插入模块导轨306中的通道中,如图31中所图示。随后,在模块导轨306内向前推动光纤模块304,直到光纤模块304到达机箱302的前端310为止。一旦根据需要安装了光纤模块304,则关闭铰链部330A、330B。
为了接入光纤模块304的光纤连接器322,可向前拉动模块导向器托盘332(其经由铰链铰接地附接到模块导轨306)并且使其向下倾斜,如图32中所图示。每个光纤模块304具有其自身的模块导向器托盘332,以使得每个光纤模块304可单独地接入并且可在模块导轨306周围独立地移动。模块导向器托盘332可包含一系列光纤布线导向器336,光纤布线导向器336支持对连接到光纤模块304的光纤适配器318的连接器化光纤电缆(未图示)的布线。图33图示有关模块导向器托盘332更多细节的侧面透视图。向前拉动模块导向器托盘332并且经由铰链334使其可铰接地向下倾斜以接入光纤模块304的光纤适配器318。模块导向器托盘332可包含U形凸缘338以允许光纤在其中经布线到托盘的左侧或右侧以到达机箱302的侧面340、342。此外,可提供手柄344并且使其附接到模块导向器托盘332以允许拉动和推动以便于平移光纤模块304。
图34和图35图示光纤设备400的又一个实施方式。在此实施方式中,提供模块导向系统以允许光纤模块402在机箱404周围沿Z轴方向向外彼此独立地平移。如本文中说明,提供了两个(2)光纤模块402。每个光纤模块402包含布置于光纤模块402的前端408中的一系列光纤适配器406。模块导轨410布置于光纤设备400中以用于每个光纤模块402。如图34和图35中所图示,提供扩张至机箱404的整个宽度的两个光纤模块402。因此,在光纤设备400中不需要或不提供中间模块导轨410。在机箱404的第一端412和第二端414上仅布置两个(2)模块导轨410,但如果光纤设备400设计用于在单个层或单个平面内支持多个光纤模块,那么可提供中间模块导轨。每个光纤模块402包含模块轨道416,模块轨道416经设置以布置于模块导轨410的通道420内。以此方式,光纤模块402可后部安装,并且可沿其专用模块轨道416彼此独立移动,所以可朝光纤设备400和机箱404的前端422拉出光纤模块402。这图示于图34和图35中,其中将底部光纤模块402沿其模块轨道416向前拉动以提供接入。在完成任何需要的接入之后,可将底部光纤模块402沿其模块轨道216向后推动到机箱404中,以使得光纤模块402的前端422将被布置于机箱404的前端408内。
通过上述描述和相关附图中呈现的教示的益处,本文阐述的本发明的许多修改和其他实施方式对本发明所属领域技术人员来说将可以想到。这些修改包括(但不限于)光纤模块的数量或类型、光纤设备托盘的使用、光纤连接类型、光纤适配器的数量、密度等。
因此,应了解,本发明不限于所公开的特定实施方式并且这些修改和其他实施方式旨在包括在所附权利要求书的范围内。本发明旨在涵盖本发明的修改和变化,只要这些修改和变化在所附权利要求书和其等效物的范围内。虽然本文中使用了特定术语,但其仅用于一般性和描述性意义而非为了限制。
Claims (22)
1.一种光纤装置,其包含:
机箱;和
导向系统,其布置在所述机箱内并且容纳多个光纤设备托盘,每个光纤设备托盘可在所述机箱周围独立地平移;
其中所述多个光纤设备托盘中的每一个光纤设备托盘容纳至少一个光纤模块。
2.根据权利要求2所述的光纤装置,其中所述导向系统包含多个托盘导向器,每个托盘导向器容纳所述多个光纤设备托盘之中的一个光纤设备托盘。
3.根据权利要求1所述的光纤装置,其中所述导向系统包含多个托盘导轨,每个托盘导轨容纳布置在所述多个光纤设备托盘之中的一个光纤设备托盘上的至少一个托盘轨道。
4.根据权利要求1所述的光纤装置,其进一步包含多个托盘锁定特征结构,每个托盘锁定特征结构经布置邻近于所述机箱的前端,其中所述多个托盘锁定特征结构中的每一个托盘锁定特征结构经设置以可释放地保持所述多个光纤设备托盘之中的一个光纤设备托盘。
5.根据权利要求1所述的光纤装置,其进一步包含多个光纤布线托盘,每个光纤布线托盘布置在所述多个光纤设备托盘之中的一个光纤设备托盘中。
6.根据权利要求5所述的光纤装置,其中所述多个光纤布线托盘中的每一个光纤布线托盘经由铰链机构铰接地附接到所述多个光纤设备托盘之中的一个光纤设备托盘。
7.根据权利要求6所述的光纤装置,其中所述铰链机构使所述多个光纤布线托盘可释放地倾斜以在被释放时在所述多个光纤设备托盘之中的一个光纤设备托盘周围倾斜。
8.根据权利要求5所述的光纤装置,其进一步包含多个光纤布线导向器,所述多个光纤布线导向器布置在所述多个光纤布线托盘中的每一个光纤布线托盘中。
9.根据权利要求1所述的光纤装置,其进一步包含至少一个模块导向器,所述至少一个模块导向器布置在所述多个光纤设备托盘中的每一个光纤设备托盘中,其中所述至少一个模块导向器容纳至少一个光纤模块。
10.根据权利要求9所述的光纤装置,其中所述至少一个模块导向器包含:
第一模块导向器,其布置在所述多个光纤设备托盘中的一个光纤设备托盘的第一端上;
第二模块导向器,其布置在与所述第一端相对的所述光纤设备托盘的第二端上;和
至少一个中间模块导向器,其布置在所述第一模块导向器与所述第二模块导向器之间的所述光纤设备托盘中。
11.根据权利要求9所述的光纤装置,其中所述至少一个模块导向器包含多个模块导轨,所述多个模块导轨经设置以在所述多个光纤设备托盘的每一个光纤设备托盘中容纳多个光纤模块。
12.根据权利要求11所述的光纤装置,其中所述多个光纤模块中的每一个光纤模块可在所述多个光纤设备托盘之中的一个光纤设备托盘内独立地平移。
13.根据权利要求9所述的光纤装置,其中所述至少一个模块导向器包含至少一个模块导轨,所述至少一个模块导轨经设置以容纳布置在光纤模块中的至少一个模块轨道。
14.一种光纤装置,其包含:
机箱;和
导向系统,其布置在所述机箱内并且容纳多个光纤模块,每个光纤模块可在所述机箱周围独立地平移。
15.根据权利要求14所述的光纤装置,其中所述导向系统包含多个模块导向器,每个模块导向器经设置以容纳所述多个光纤模块之中的至少一个光纤模块。
16.根据权利要求15所述的光纤装置,其中所述多个模块导向器被排列成布置在所述机箱中的一或多列模块导向器。
17.根据权利要求15所述的光纤装置,其中所述多个模块导向器被排列成布置在所述机箱中的一或多行模块导向器。
18.根据权利要求15所述的光纤装置,其中所述多个模块导向器各自包含:
第一模块导向器,其布置在所述机箱的第一端上;
第二模块导向器,其布置在与所述第一端相对的所述机箱的第二端上;和
至少一个中间模块导向器,其布置在所述第一模块导向器与所述第二模块导向器之间的所述机箱中。
19.根据权利要求15所述的光纤装置,其中所述多个模块导向器包含多个模块导轨,每个模块导轨经设置以容纳光纤模块的至少一个模块轨道。
20.根据权利要求15所述的光纤装置,其中所述多个模块导向器中的每一个模块导向器进一步包含至少一个光纤设备托盘导向器,所述至少一个光纤设备托盘导向器容纳至少一个光纤设备托盘。
21.根据权利要求20所述的光纤装置,其进一步包含至少一个模块锁定特征结构,所述至少一个模块锁定特征结构经布置邻近于所述至少一个光纤设备托盘的前端,并且经设置以当所述光纤模块经布置邻近于所述至少一个光纤设备托盘的所述前端时,将所述多个光纤模块之中的一个光纤模块与所述至少一个光纤设备托盘互锁。
22.根据权利要求21所述的光纤装置,其中所述至少一个模块锁定特征结构包含锁销特征结构,所述锁销特征结构附接到所述至少一个光纤设备托盘并且经设置以与布置在所述光纤模块中的模块闩互锁。
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CN201710014255.7A CN106873103B (zh) | 2008-08-29 | 2009-08-07 | 光纤设备中可独立平移的模块和光纤设备托盘 |
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