Abstract:
A fiber optic telecommunications frame is provided including rotatable panels having front and rear termination locations, the panels positioned on left and right sides of the frame. The frame includes vertical access for the rear cables, and rear cable guides disposed within the frame. The frame further includes left and right vertical cable guides for patch cables. The frame further includes cable storage spools for the patch cables positioned adjacent to the left and right panels of the frame. The frame includes a horizontal passage linking the left and right panels and the cable guides. A lower portion of the frame defines splice tray holders and a central passage from the splice tray holders to the rear sides of the left and right panels. From a front of each panel, access to a rear of the panel is provided by the hinged panels.
Abstract:
L'installation de l'invention concerne la connexion d'appareils déplaçables tels qu'ordinateurs. Elle est caractérisée en ce que chaque châssis (31) porte plusieurs modules individuels (32) qui sont amovibles indépendamment les uns des autres et qui comprennent chacun:
. sur leur face arrière (5) au moins une prise (13-16) pour au moins un connecteur (17-18) relié soit au réseau extérieur (6), en vue d'alimenter un module individuel (32) déterminé et constituant une "ressource", soit au réseau intérieur (7 a- 7 b ), en vue du raccordement d'un connecteur et constituant une "destination", . sur leur face avant (4) des prises (12) pour des connecteurs (20) destinés à relier entre elles deux desdites prises (12) de la face avant (4), dont l'une est située sur un module (32) de ressource et l'autre sur un module (32) de destination.
Abstract:
A terminal block having a housing, a connector panel (16) rotatably mounted between the side walls (11, 12) of the housing between first and second positions, a latch mechanism (21, 62; 34, 36') for releasably retaining the panel in its first or second position and a front door (25) pivotally secured to the housing.
Abstract:
The invention relates to a telecommunications termination panel (210) with a housing including a front opening and a rear opening. Pivotably mounted within the housing is a tray (136) within the front opening, pivoting about a vertical axis located adjacent a first side of the housing. A cable path is defined along a bottom of the housing. A movable plate (238) is positioned adjacent the first side and is movable between a first position defining an upper limit of the cable path when the tray is closed and a second position allowing access to the cable path when the tray is open. The movement of the plate between the first and second positions is actuated via the actuator (232) by the movement of the tray. Pivotably mounted within the housing is a tray within the front opening, pivoting about a vertical axis located adjacent a first side of the housing. The tray is pivotable between an open and a closed position. The tray includes a cover (212) which can be moved between an operational and an access position when the tray is in the open position. With the cover in the operational position, the tray is prevented from moving from the open to the closed position.
Abstract:
A DXS jack module having removable jacks is disclosed. The jack module includes a jack mount for holding the jacks. The jack module also includes a front facing cross-connect array and a front facing IN/OUT array. A circuit board is electrically connected to the arrays. The circuit board includes portions positioned directly behind the cross-connect array the IN/OUT array. A chassis for holding jack modules is also disclosed. The chassis includes a front door having a double hinge configuration.
Abstract:
A fiber optic telecommunications frame is provided including panels having front and rear termination locations, the panels positioned on left and right sides of the frame. The frame includes vertical access for the rear cables. The frame further includes left and right vertical cable guides for the front patch cables. The frame further includes cable storage spools for the patch cables. The frame includes a horizontal passage linking the left and right panels and the cable guides. A lower portion of the frame defines splice tray holders and a central passage from the splice tray holders to the rear sides of the left and right panels. From a front of each panel, access to a rear of the panel is provided by the hinged panels. Alternatively, the panels can form connector modules with front termination locations and rear connection locations for connecting to the rear cables. The modules can house couples, such as splitters, combiners, and wave division multiplexers.
Abstract:
An enclosure apparatus comprises a single receptacle comprising a patch member connected to electrical equipment in a remote location and at least one communication device. The communication device may comprise a microprocessor for processing data received from the electrical equipment in the remote location. The enclosure apparatus isoften used in connection with building automation equipment.