Abstract:
The present invention refers to an innovative line of multiple function sockets by integrating a reduced dimensions radio television mechanism which incorporates a coaxial cable quick fixing system that allows an easy installation on the radio television mechanism, thus avoiding the tightening of screws and the use of tools. Besides this characteristic, the conception of the entry location of the coaxial cable allows it to be applied only with the core bared, being the fundamental contact with the mesh assured upon the insertion of the coaxial cable by a spike (16) in the interior of the entry lock cylinder (14) in the radio television mechanism. As for the assembly of the mechanism, this also integrates innovative solutions for the assembly of the frame of the radio television mechanism is achieved by the tightening of screws (11) which guarantee not only the correct accommodation of the components in its interior but also the contact of the printed circuit board (PCB) (7) with the entry contact plating (8) and the frame (10), thus avoiding welding points as it happens with the other existing systems.
Abstract:
[Object] To provide a connector enabling high quality signal transmission while maintaining compatibility with the current HDMI connector, in a new HDMI interface using pins assigned to a shield, as a data pair. [Solution] Each of signal electrode pins 252, 152 is arrayed near a shell (grounding conductor) 253, 153 so as to couple with the shell, and differential signals are transmitted with single end. A ground plane 254, 154 is disposed between multiple signal electrode pins of a first stage and the plurality of signal electrode pins of a second stage within a dielectric 251, 151. Also, connection conductors 255, 155 electrically connecting the ground plane and the grounding conductor are disposed between each of the signal electrode pins of each of the stages within the dielectric 251, 151. With a pair of signal electrode pins transmitting differential signals, crosstalk from other signal electrode pins can be reduced, and high quality signal transmission is enabled.
Abstract:
The element (1) for connecting a reticular shielding coaxial cable (4') for taps, plugs and the like, between an input terminal (2) and an output terminal (3) thereof exhibits a coaxial transmission line (4) that develops in continuity with the coaxial cable (4').
Abstract:
A telecommunications apparatus (10) for use with a plug (34-1) having at least first (308), second (308) and third (310) pins. The telecommunications apparatus (10) includes a plug connector (36-1) for receiving the plug (34-1). The plug connector (36-1) includes at least first (302), second (302) and third (305) electrical contacts for electrically contacting the first (308), second (308) and third (310) pins, respectively, when the plug (34-1) is inserted in the plug connector (36-1). The plug connector (36-1) also includes an electrical bypass pathway (304) that: i) electrically connects the first and second electrical contacts (302) when the plug (34-1) is fully removed from the plug connector (36-1) such that a signal can enter the plug connector (36-1) through the first contact (302), pass through the by-pass pathway (304) to the second contact (302), and exit the plug connector (36-1) through the second contact (302); and ii) does not electrically connect the first and second electrical contacts (302) when the plug (34-1) is fully inserted within the plug connector (36-1) such that a signal can enter the plug connector (36-1) through the first contact (302), pass through the plug to the second contact (302), and exit the plug connector (36-1) through the second contact (302).
Abstract:
A telecommunications apparatus (10) for use with a plug (34-1) having at least first (308), second (308) and third (310) pins. The telecommunications apparatus (10) includes a plug connector (36-1) for receiving the plug (34-1). The plug connector (36-1) includes at least first (302), second (302) and third (305) electrical contacts for electrically contacting the first (308), second (308) and third (310) pins, respectively, when the plug (34-1) is inserted in the plug connector (36-1). The plug connector (36-1) also includes an electrical bypass pathway (304) that: i) electrically connects the first and second electrical contacts (302) when the plug (34-1) is fully removed from the plug connector (36-1) such that a signal can enter the plug connector (36-1) through the first contact (302), pass through the by-pass pathway (304) to the second contact (302), and exit the plug connector (36-1) through the second contact (302); and ii) does not electrically connect the first and second electrical contacts (302) when the plug (34-1) is fully inserted within the plug connector (36-1) such that a signal can enter the plug connector (36-1) through the first contact (302), pass through the plug to the second contact (302), and exit the plug connector (36-1) through the second contact (302).
Abstract:
The invention relates to a broadcast data receiver of the type used to receive data from a remote location, process the same and generate audio, video and/or auxiliary data. The receivers typically include a UART internally which is required to be provided with external connection means. Conventionally an additional connection means is provided which adds to the expense of the receiver. The current invention allows connection with the UART via a SCART connection socket which is already required for other data transfers for the operation of the receiver and therefore overcomes the need for the additional connection means to be provided.
Abstract:
This screened connection in the field of television aeriel systems, extended to amplified trigger boxes, dividers, attenuators, shunts, centralized systems, distribution sockets attenuated or not, cables with coaxial reticular screening, having the characteristic of establishing the electrical contact between the typical coaxial net mesh screen and the final clutch element by slipping a truncated cone in electro-conducting material, pierced axially to create a sharp edge, between the sheath around the central conductor and the aforementioned coaxial net mesh; thereby distancing said mesh concentrically from the central conductor and putting it under pressure from a female truncated cone which presses on the typical insulating sheath around the coaxial net mesh, exerting this pressure by means of screws on a sliding block which contains the aforementioned female truncated cone.
Abstract:
An adapter plate for attaching a module to a wall outlet terminating a coaxial cable, the wall outlet comprising a first and a second RF connector; the adapter plate comprising a plug substantially orthogonal to a surface of the plate, the plug being designed to fit into the first RF connector of a first type of wall outlet; and a hole for insertion of a RF connector of the module, the hole locating at a distance from the plug such that when the plug is inserted into said first RF connector, the hole is co-locatable with the second RF connector of the first type of wall outlet.
Abstract:
Un but de la présente invention est de fournir un adaptateur permettant de connecter à un réseau de communication un appareil hôte sans modifier sa configuration au niveau matériel en utilisant un connecteur initialement prévu pour l'insertion d'une carte optionnelle. L'adaptateur comprend un corps de carte ayant une première extrémité, munie de contacts, destinée à l'insertion dans une fente de carte aménagée sur l'appareil hôte et une seconde extrémité, opposée à la première extrémité, solidaire à un boîtier destiné à être relié au réseau de communication. L'adaptateur comporte des contacts qui s'étendent selon une première rangée sur une face le long du bord de la première extrémité du corps de carte et selon une seconde rangée sur l'autre face le long du bord du corps de carte de sorte que les deux rangées sont placées l'une en regard de l'autre avec les contacts d'une rangée disposés en symétrie miroir par rapport aux contacts de l'autre rangée. Le contour du corps de carte est symétrique par rapport à un axe de symétrie perpendiculaire aux extrémités du corps de carte, de manière à assurer une insertion dans un sens quelconque du corps de carte dans la fente de l'appareil hôte.