Abstract:
A telecommunications rack system comprising: a telecommunications rack defing a storage area at a bottom thereof where a plurality of bend radius lnmters are located; a splice fnaiue mounted to the telco mnicatio-s rack above the storage area, the splice frame being slideabie relative to the telcomniations rack between a forward nosinion and a rearward Position the splice frame defining a plurality of zones that are each configured to receive a purality of splice cassettes, at least one of the zones having a different orientation than the other zones, the splice frame also induding lancing sections adjacent the zoaes -.i securing cables entering the splice cassettes. 9( 0C) 9c eL
Abstract:
Un terminal de acceso para fibra que comprende:un cable (276) de fibra óptica para distribución con un primer extremo y un segundo extremo, incluyendo elcable de fibra óptica para distribución una pluralidad de fibras ópticas;una caja (500) en un segundo extremo del cable (276) de fibra óptica para distribución, incluyendo la caja:una carcasa (502);una cubierta (505) montada en la carcasa (502), definiendo la carcasa y la cubierta un interior (503),un extremo superior (510) y un extremo inferior (512), definiendo el extremo inferior (512) unaabertura (528) de entrada del cable,una junta (522) que proporciona un sellado ambiental entre la carcasa (502) y la cubierta (505);caracterizado por que la caja incluye, además:conexiones (508) de fibra óptica reforzadas que se extienden a través de las aberturas (506) en lacarcasa (502), incluyendo las conexiones (508) de fibra óptica reforzadas adaptadores (588) defibra óptica, cada uno de los adaptadores de fibra óptica tiene un primer extremo dentro delinterior (503) y un segundo extremo fuera del interior, recibiendo el primer extremo losconectores de fibra óptica de las fibras ópticas (276) dispuestas en el interior de la caja (500); yuna lengüeta (514) colocada en posición central en el extremo superior de la caja (500), definiendo lalengüeta una abertura (516);en donde la carcasa (502) incluye una pluralidad de protuberancias (504) de montaje que tienen superficies(533) de montaje que están dispuestas en ángulo hacia el extremo inferior (512), definiendo lasprotuberancias (504) de montaje aberturas (506).
Abstract:
There is disclosed a terminal assembly comprising: an enclosure defining an interior volume; a plurality of optical fibers within the interior volume of the enclosure; the enclosure including a cable connection region at which the enclosure defines a plurality of 5 adapter mounting openings; a plurality of fiber optic adapters mounted at the adapter mounting openings, each of the fiber optic adapters including a first end accessible from within the interior volume of the enclosure and a second end accessible from outside the enclosure; a cable management insert positioned within the interior volume of the enclosure for managing the optical fibers within the interior volume of the enclosure; the cable 10 management insert including a first side and an opposite second side, the first side defining a plurality of fiber routing and storage paths for managing the optical fibers within the interior volume of the enclosure; and the cable management insert defining a plurality of insert openings that extend through the cable management insert from the first side of the cable management insert to the second side of the cable management insert, the insert openings 15 corresponding in position to at least some of the fiber optic adapters.
Abstract:
La invencion es concerniente con un panel (210) de terminacion de telecomunicaciones con un alojamiento que incluye un orificio frontal y un orificio posterior. Montada pivotadamente dentro del alojamiento se encuentra una bandeja (136) dentro del orificio frontal, que pivotea alrededor de un eje vertical localizado adyacente a un primer lado del alojamiento. Una trayectoria de cable es definida a lo largo del fondo del alojamiento. Una placa movible (238) es posicionada adyacente al primer lado y es movible entre una primera posicion que define un limite superior de la trayectoria del cable cuando la bandeja esta cerrada y una segunda posicion que permite acceso a la trayectoria del cable cuando la bandeja esta abierta. El movimiento de la placa entre la primera y segundas posiciones es accionado mediante el accionador (232) mediante el movimiento de la bandeja. Montada pivotadamente dentro del alojamiento se encuentra una bandeja dentro del orifico frontal, que pivotea alrededor de un eje vertical localizado adyacente a un primer lado del alojamiento. La bandeja es pivotable entre una posicion abierta y una posicion cerrada. La bandeja incluye una cubierta (212) la cual puede ser movida entre una posicion operacional y una posicion de acceso cuando la bandeja esta en la posicion abierta. Con la cubierta en la posicion operacional, se impide que la bandeja se mueva desde la posicion abierta a la posicion cerrada.
Abstract:
A fiber access terminal for mounting to the end of a fiber distribution cable and configured to be extended through a buried conduit. The fiber distribution cable may include a plurality of optical fibers and enters a housing of the terminal through a base. The terminal also includes a plurality of fiber optic connectors or adapters extending through the housing mounted with an angle toward the base end of the terminal. The terminal includes a cover and the housing defining an interior and the interior includes a cable slack storage arrangement providing bend radius protection for the optical fiber cables within the interior. The top end of the enclosure is provided with a tab defining an opening.
Abstract:
A telecommunications cabinet comprising a top, a floor, a pair of opposing sides, a front wall and a rear wall defining an interior, the front includin g an access door for accessing the interior. Within the interior are mounted a cable management structure, an adapter panel with an adapter configured to optical connector two optical fiber cables terminated with fiber optic connectors, and a fiber optic connector holder (110) mounted in openings of the adapter panel. The connector holder has an opening (116) configured to receive a fiber optic connector (200) with a dust cap (204), the opening accessible from a front side of the adapter panel. A fiber optic connector including a ferrule with a polished end face holding an end of an optical fiber with a dust cap placed about the ferrule and polished end face is inserted within the opening of a fiber optic connector holder. And a fiber optic connector is inserted within the rear side of one of the adapters.
Abstract:
A telecommunications cable spool for storing, paying-out, and reeling-in a telecommunications cable includes a spool, an axis of rotation, and a rotatable cable guide mounted about the axis. The spool defines a wrapping area that receives a plurality of wraps of the cable and defines a circumference. The axis passes through the spool within the circumference. The guide defines a rotating cable guide path with a first end adjacent the wrapping area and a second end positioned near the axis. The first end of the path is oriented at least partially tangential to the circumference, and the second end of the path is oriented at least partially aligned with the axis. The cable is routed along a cable route that extends between first and second ends with a storage portion between the ends of the route. The route includes a transitional portion along the guide path between the storage portion and the second end of the route. A portion of the transitional portion is routed through a center of the storage portion. A deployed portion of the cable is paid-out from the second end of the cable route.
Abstract:
A fiber optic telecommunications device includes a frame and a fiber optic module including a rack mount portion, a center portion, and a main housing portion. The rack mount portion is stationarily coupled to the frame, the center portion is slidably coupled to the rack mount portion along a sliding direction, and the main housing portion is slidably coupled to the center portion along the sliding direction. The main housing portion of the fiber optic module includes fiber optic connection locations for connecting cables to be routed through the frame. The center portion of the fiber optic module includes a radius limiter for guiding cables between the main housing portion and the frame, the center portion also including a latch for unlatching the center portion for slidable movement. Slidable movement of the center portion with respect to the rack mount portion moves the main housing portion with respect to the frame along the sliding direction.