Abstract:
L'invention concerne un bloc multi-appareillages (1) destiné à être monté sur une paroi de montage (1000), comportant un boîtier (100) présentant une face arrière (101) dont émergent des moyens de connexion (200) enfichables, et une face avant (102) donnant accès aux parties fonctionnelles d'au moins deux appareillages électriques (300), ledit bloc multi-appareillages présentant,en saillie de ladite face arrière du boîtier, un élément d'appui (400) dont une extrémité libre (401) est adaptée à être adossée à la paroi de montage. Selon l'invention, ladite extrémité libre de l'élément appui est déplaçable en translation par rapport à ladite face arrière du boîtier de sorte que la longueur dudit élément d'appui faisant saillie de ladite face arrière est ajustable.
Abstract:
L'invention concerne un dispositif d'évacuation de liquide (2) à partir de la surface supérieure (3) d'un plan de travail, par exemple de table ou de bureau, comportant un plateau (1) formant le plan de travail et un bloc de connexion (5) intégré dans une ouverture pratiquée dans le plateau (1), ledit bloc (5) comprenant au moins un moyen de connexion à un réseau véhiculant un signal électrique. Ce dispositif est caractérisé en ce que le bloc (5) est relié au plan de travail au moyen d'un cadre (4) doté d'une fente périphérique (6) entourant le ou les moyens de connexion, la fente (6) étant reliée à au moins un passage d'évacuation du liquide traversant le plateau (1) ·
Abstract:
Example implementations relate to mounting extension bars on power distribution units. For example, a power distribution unit (PDU) includes a front surface, side surfaces and a back surface. The front surface includes a plurality of receptacles to couple a power cord of a power extension bar to the PDU. The side surfaces and the back surface include mounting buttons removably attachable to the PDU. The mounting buttons are to receive a mounting bracket to mount the extension bar to the PDU.
Abstract:
L'invention concerne un ensemble d'appareillages électriques à rapporter dans une paroi murale (1), comportant : - deux modules (100, 200) distincts qui comprennent chacun un socle logeant des bornes électriques, l'un des socles étant équipé de moyens de fixation dans une boîte électrique (10), l'autre des socles étant équipé de moyens de fixation (230) dans une cavité (3) pratiquée dans la paroi (1), et - une barrette de connexion (300) qui comprend un socle logeant des conducteurs électriques adaptés à connecter les bornes électriques de l'un des modules avec les bornes électriques de l'autre module. Selon l'invention, une partie au moins du socle de la barrette de connexion vient de formation avec une partie au moins du socle de l'un des deux modules.
Abstract:
An electrical power outlet strip is provided. The electrical power outlet strip comprises a longitudinal extending housing including a base housing portion and a plurality of covers for attachment to said base housing portion along the longitudinal direction; and a plurality of electrical wires placed inside the housing. Each cover has same dimensional measurements and may be a sealing cover or a socket cover.A sealing cover has no hole for receiving an external plug. Whereas a socket cover provides plug holes for receiving an external plug. The electrical power outlet strip may have all sealing covers, all socket covers, or a combination of sealing covers and socket covers.
Abstract:
A seal board (14) includes a circuit board (22) with vias (30), conductor pins (24), and solder joints (26). The solder joints (26) connect and seal each conductor pin (24) to a single via (30), such that each conductor pin (24) extends through the via (30) and extends from a first side of the circuit board (22) and a second side of the circuit board (22). The seal board (14) is mounted to cover an opening (18A) in a bulkhead (18) that separates a first compartment (such as a terminal block compartment (16)) from a second compartment (such as an electronics or feature board compartment (20)). The seal board (14) provides electrical paths between the compartments (16,20) while protecting components within one of the compartments from the surrounding environment.
Abstract:
An improved patch panel assembly includes a frame and faceplate that mate with a housing, and the housing defines a plurality of individual communication ports. The housing is mounted to the patch panel frame and includes jack openings that accommodate data jacks and circuit board openings that accommodate mating blades of circuit boards. The two sets of openings are separated on the housing by an intervening spacing and interposer terminal sets are provided to electrically interconnect the jacks with circuits on the circuit boards. The patch panel housings may be formed in discrete groupings so that, if desired, the patch panels may have ports that are grouped together by bandwidth, storage capability and the like. Inasmuch as the housings are mounted to the patch panel frames, the jacks and the circuit boards can be easily and individually replaced, repaired or upgraded with similar components without requiring disassembly of the patch panel.
Abstract:
A ganged electrical receptacle unit with locking feature includes a plurality of receptacles and a lock housing. The electrical receptacles are ganged together. The lock housing extends from a front of the receptacles and includes a pair of opposed side supports, a pair of torsion bars, each extending between the opposed side supports, a lock tab extending from each torsion bar toward the receptacle, and a release tab extending from each torsion bar away from the receptacle. A plug may be inserted into the lock housing causing temporary deflection of the lock tabs until the plug is seated in, and electrically connected with, the receptacle, at which point the lock tabs return to their undeflected positions and retain the plug in the receptacle. The release tabs may be depressed to release the lock tabs from the plug, thereby permitting the withdrawal of the plug from the lock housing.
Abstract:
A connector assembly can be provided. A receptacle includes terminals that can be positioned in a card slot on a 0.60 mm pitch (or greater). A biasing element can be provided in the card slot to engage a mating paddle card. The receptacle can be configured to allow air to flow from a front face to a rear face, the air passing through a middle wall. A plug assembly can be provided that includes a conductive body and is configured to generate some amount of heat. The body can include a surface that has cooling grooves. The cooling grooves allow air flow over the plug assembly so that the plug assembly can be cooled directly.