Abstract:
An electrical socket (10) is provided which includes a faceplate with a pin receiving means for receiving pins of an electric plug. The pin receiving means (13, 14, 15) is shaped to receive a plurality of different types of electric plug. From one aspect, a voltage converter is provided that allows the electrical socket to operate at the correct voltage depending on the plug that is received. From another aspect, a mechanism is provided for an earthing connection to be made when an earthed electrical plug is received by the pin receiving means.
Abstract:
An electrical socket arrangement comprises a housing (1) including a face plate (2) and a socket assembly (6), the socket assembly including a casing (12) with a plurality of faces (5) and a at least one electrical socket (7a), wherein at least a first socket is located on a first face of the socket assembly and at least one further device (7b) is located on a second face of the socket assembly, the socket assembly being rotatably mounted in the housing such that the socket assembly can be rotated to sequentially to present successive faces, together with any socket located thereon, to an aperture in the face plate, through which aperture an appropriate plug can be connected The electrical socket arrangement further includes an actuator mechanism for permitting the socket assembly (6) to rotate, which actuator mechanism is operable through an aperture (4) in the face plate (2). The invention enables an electrical socket and one further device to be accessed through a single aperture in a face plate. The at least one further device may comprise a second socket, having a different configuration to the first socket and wherein an appropriate plug can be connected through said first aperture to a corresponding socket type. This permits a plurality of socket types to be accessed through a single face plate.
Abstract:
Bei einer Anordnung zum Durchführen eines Kabels durch eine Gehäusewand mit Mitteln zum Festlegen des Kabels an der Gehäusewand, wobei in der Gehäusewand eine dem Durchmesser des Kabels entsprechende Bohrung ausgebildet ist, ist vorgesehen, dass die Bohrung (14) mit einer Einführsenkung (23) versehen ist, und dass innerhalb der Bohrung (14) eine spiralig umlaufende Rippe (26) ausgebildet ist.
Abstract:
A snap in locking cable connector (16) is composed of two mating pieces that snap together and provide a connector for armored or metal clad electrical conductors. One piece includes a die cast member (18) including a smooth outer cylindrical section having an inner diameter that may accommodate a spring steel adaptor (14) with flanges to hold the spring steel adaptor (14) in place. The spring steel adaptor (14) is used in conjuction with an electrical junction box to fix the location of the locking cable connector with respect to the junction box. Another piece includes a spring steel locking ring (20) provided to receive an armored cable and lock into the die cast member (18). The spring steel locking (20) ring has tangs allowing unidirectional insertion into the die cast member (18) and restricting withdrawal motion from the die cast member (18). The spring steel locking ring (20) also includes oppositely directed tangs to permit reception of the armored cable in one direction and restrict its movement in the reverse direction.
Abstract:
An electrical receptacle adapted to be recessed into a work surface, having a concealed compartment containing electrical ports for connection to a remote power supply and communications devices and an exposed compartment for connecting electrical cables to the ports. The ports are mounted on a partition plate isolating the exposed compartment from the concealed compartment, which is disposed at an oblique angle relative to the work surface to facilitate the connection and detachment of electrical cables and reduce clutter in the work space.
Abstract:
A low profile information outlet (1), suitable for mounting to a wall or floor, provides for connections to multiple connector styles and media types while maintaining appropriate minimum bend radii. A connectorized fiber optic cable (30) enters the housing (3) via cable entrance (7) and plugs into fiber optic receptacle (13). Fiber optic receptacle (13) snaps into a flange retention member (9). Connectorized copper cable (33) plugs into a recessed connector well (14) at an angle. The receptacles (13, 25) and exterior connectors (45, 48) are protected by the low profile housing (3) and the mounting surface (29). All cables (31, 33) exit the housing (3) parallel to the mounting surface (29) to dress along the wall or floor.
Abstract:
A module for distributing optical fibers from a trunk cable includes: an enclosure having bottom, top and side walls; a first fiber optic connector mounted on the bottom wall; a second fiber optic connector mounted on the top wall; a plurality of third connectors mounted to the side wall; a first set of optical fibers routed between the first and second optical connectors; and a second set of optical fibers routed between the first optical connector and the plurality of third connectors.
Abstract:
En este documento se describe de manera detallada y concisa un dispositivo que permite llevar a cabo operaciones de indicación y/o control en instalaciones, dada su configuración, ser encastrado en paredes y tener frontales independientes e intercambiables estando estos dotados de inteligencia y elementos de captación de datos que permiten su óptimo funcionamiento mediante interacción con el usuario. El dispositivo aquí descrito presenta una serie de capacidades de comunicación tanto con los elementos o módulos que lo componen como con otros dispositivos similares, para trabajar de manera colectiva e interactuar entre ellos a través de un único dispositivo.
Abstract translation:
本文详细描述和简洁的装置,它允许执行操作指示&COLLISION NY /或控制设施,鉴于其建筑N,被嵌入在墙壁和具有独立前 并且可互换的是具有智能和数据捕获元素的元素,通过与用户的交互可以实现最佳操作。 这里的设备 描述了与构成它的元件或模块以及与其他类似设备一起呈现的一系列通信能力,以通过单个设备共同工作并彼此交互。 p >
Abstract:
An enclosure for breaking out a trunk cable includes: a base having a generally flat surface adapted for mounting to a mounting surface; a shell having a front and two side walls extending from opposite sides of the front and two opposed end walls, the side walls of the shell mounted to the base to form a cavity; a plurality of connectors mounted to each of the side walls; and a trunk cable routed into the cavity through one of the end walls, the trunk cable comprising a plurality of power conductors and/or a plurality of optical fibers. The power conductors and the optical fibers are connected with respective ones of the plurality of connectors.