Abstract:
In an example embodiment, a circuit interconnect includes a first printed circuit board (PCB), a second PCB, a spacer, and an electrically conductive solder joint. The first PCB includes a first electrically conductive pad. The second PCB includes a second electrically conductive pad. The spacer is configured to position the first PCB relative to the second PCB such that a space remains between the first PCB and the second PCB after the first electrically conductive pad and the second electrically conductive pad are conductively connected in a soldering process. The electrically conductive solder joint conductively connects the first electrically conductive pad and the second electrically conductive pad.
Abstract:
In a display device (100), a row of protruding electrodes (115) and a row of protruding electrodes (116) are formed on the connecting surface of a terminal section (112), the row of the protruding electrodes (116) is disposed between the row of the protruding electrodes (115) and a display section (111), one end of a flexible printed board (150) is connected to the row of the protruding electrodes (115), one end of a flexible printed board (160) is connected to the row of the protruding electrodes (116), the row of the protruding electrodes (115) is adjacent to the row of the protruding electrodes (116), and the one end of the flexible printed board (150) and the one end of the flexible printed board (160) are opposed to each other.
Abstract:
A flexible flat cable connecting structure and a flexible flat cable connecting method are provided so that a connector can be connected by pitch conversion without complicating the structure of the connector and metal molds for forming mold parts become unnecessary. A flexible flat cable connecting structure for connecting a flexible flat cable (13) in which a plurality of rectangular conductors (11) are provided in parallel and a plurality of connector terminals arranged at an array pitch different from that of the rectangular conductors comprises an intermediate cable arranging member (17) one end of which is coupled to the connector terminals and in which a plurality of branch conductors (19) are provided in parallel which are set to have mutually different longitudinal dimensions according to the array pitch. The intermediate cable arranging member (17) is laid on the flexible flat cable (13) so that the intermediate cable arranging member (17) and the flexible flat cable (13) are in the same plane and form an angle. The other ends (21) of the branch conductors (19) of the intermediate cable arranging member (17) are connected to the respective rectangular conductors (11).
Abstract:
In a display device (100), a row of protruding electrodes (115) and a row of protruding electrodes (116) are formed on the connecting surface of a terminal section (112), the row of the protruding electrodes (116) is disposed between the row of the protruding electrodes (115) and a display section (111), one end of a flexible printed board (150) is connected to the row of the protruding electrodes (115), one end of a flexible printed board (160) is connected to the row of the protruding electrodes (116), the row of the protruding electrodes (115) is adjacent to the row of the protruding electrodes (116), and the one end of the flexible printed board (150) and the one end of the flexible printed board (160) are opposed to each other.
Abstract:
A patch panel (100) for use with infrastructure management systems that utilizes a plurality of cables interconnected to end-user devices and work area outlets, and integrated circuits to monitor the status of these end-user devices and outlets includes a pair of circuit boards. A plurality of connective jacks (31) are mounted on the first (36) of the two circuit boards, and are interconnected to other network devices. Wires from the jacks extend to and connect with network devices and the first circuit board has a plurality of first integrated circuits (45) mounted thereon which monitor the status of the network devices connected to the jacks. The second circuit board (49) is spaced apart from the first circuit board and it includes a plurality of second integrated circuits (52) that convey the status information obtained from the network work area outlets on the network to network devices, such as switches and scanners of the network (104).
Abstract:
A device (100) having an external contact electrical connection (155) for providing an electrical interface to the device includes a housing member (222) having apertures (235, 335), and a flexible film substrate (270) having an electrically conductive pattern (275). Portions of the electrically conductive pattern defines contact areas (255, 355) for presenting the electrical interface of the device (100). These contact areas (255, 355) are rigidly positioned adjacent to the interior surface (324) of the housing (222) about the apertures (235, 335) such that the contact areas (255) are externally exposed through the apertures (235, 335).
Abstract:
Apparatus, including a flexible insulating substrate, having a first side and a second side, rolled about an axis parallel to the substrate. The apparatus also includes a first conducting spiral that is right-handed relative to a normal to the substrate, and a second conducting spiral that is left-handed relative to the normal, formed on the first side of the substrate. The first conducting spiral has a first initial termination and a first final termination, the second conducting spiral has a second initial termination and a second final termination, the spirals have a displacement therebetween, with a preset magnitude so that when the substrate is rolled about the axis the first initial termination aligns with the second initial termination. The apparatus also has a via penetrating the substrate from the first side to the second side so as to interconnect the first initial termination and the second initial termination.
Abstract:
Il est proposé un circuit imprimé flexible (10) comprenant au moins un élément à braser possédant une face à braser, accessible depuis une première face du circuit imprimé flexible, et une face à chauffer, accessible depuis une deuxième face (210) du circuit imprimé flexible. Un tel circuit imprimé flexible comprend une partie principale (103), comprenant le au moins un élément à braser, et au moins une partie rabattable (100), s'étendant à partir de la partie principale et configurée pour passer : - d'un état non rabattu, dans lequel la au moins une partie rabattable ne recouvre pas la face à chauffer du au moins un élément à braser ; - à un état rabattu, dans lequel la au moins une partie rabattable recouvre la face à chauffer du au moins un élément à braser.
Abstract:
A flexible circuit assembly can include a base layer (244), a plurality of circuit traces (350) and an insulative layer (362). The plurality of circuit traces can each be coupled to a pair of circuit pads, and the circuit traces can be formed on an upper side of the base layer. The insulative layer can be formed over the circuit traces to isolate the circuit traces from an external environment. The base layer, plurality of circuit traces and insulative layer can form a flexible circuit sheet (232). The base layer and the insulative layer can include material properties and a thickness configured to facilitate the flexible circuit sheet being flexible such that the flexible circuit sheet is adapted to conform to a non-planar surface of the medical device (100).
Abstract:
An electronic device is protected from unauthorized access by use of a security wrap having a security screen (26) connected to an alarm circuit (17) of the electronic device. The security screen (26) has a pair of screen terminals (48) interconnected by a conductor (46). The conductor (46) is formed on a substrate (22). The substrate (22) is arranged such that attempts to remove the security wrap will result in the substrate (22) being torn and the conductor (46) being damaged or broken whereby the resistance of the conductive path formed by the conductor (46) changes to indicate an alarm condition.