Abstract:
[Problem] A coaxial cable grounding structure using no solder exhibits a secure grounding function and a secure cable holding function in keeping with the reduction in the diameter of the cable core wire and the reduced interval between adjacent cables. [Solving Means] A coaxial cable grounding structure (10) comprises a conductive first member (12) and a conductive second member (14). The first member includes first bulges (28) in contact with outer conductors (20) of the exposed length (24) of a first group of coaxial cables (16), and the second member includes second openings (32) for receiving the first bulges and the cable exposed length supported by the first bulges. Further, the second member includes second bulges (34) in contact with the outer conductors of the exposed length of a second group of coaxial cables. The first member includes second bulges and first openings for receiving the cable exposed length supported by the second bulges. The exposed length of each coaxial cable is fixedly held by the friction force while being appropriately bent along the first and second bulges between the first bulges and the second openings one the one hand and between the first openings and the second bulges on the other hand.
Abstract:
Electrical connector for electrically contacting a conductive line (120) embedded in a foil cable (102), wherein the electrical connector comprises an insulating housing, which at least partially encloses the foil cable (102), and at least one contact element (116) for electrically contacting the conductive line (120), wherein the insulating housing comprises a contact housing (114), in which the at least one contact element (116) is received, and a foil holder (126), which is separated therefrom, which may be mechanically fixed to the foil cable (102) and is joined to the contact housing (114) such that the contact element (116) abuts the conductive line (120) in a contact region (118).
Abstract:
The invention provides a connecting arrangement comprising at least first and second housings, in which at least one conductor of a first cable can be electrically connected to at least one conductor of a second cable fed via a cable receiver. At least one piercing element is electrically connected to the second cable and configured to be inserted transversely into the conductor of the first cable. To improve the connecting arrangement to the extent that, in an optimally simple manner, it is less susceptible to failure, is easier to handle and easier to assemble, the cable receiver is constructed as an integral unit with the second housing and the piercing element. The invention also relates to a method with which a connecting arrangement can be produced.
Abstract:
The invention concerns a sensor (1), in particular a biosensor, comprising an electrically or electronically insulating support (2), including at least one active surface (20), a plurality of electrically or electronically conductive electrodes (31, 32), arranged on the active surface (2a) of the support in a predetermined operative arrangement, exposed, that is said electrodes can be jointly placed in contact with a common external medium, for example a liquid medium; a plurality of electric terminals (4) respectively corresponding to said electrodes (4), arranged on the active surface (2a, 2b) of the support, exposed, that is said terminals can be electrically or electronically connected outside, independently of one another; a plurality of electrically or electronically conductive strips (5), extending along one (2a) and/or the other (2d) of the support surfaces, connecting the plurality of electrodes (31, 32) respectively to the plurality of terminals (4); an electrically or electronically insulating material layer (6), coating one (2a) and/or the other (2b) of the support surfaces, covering at least part of said strip conductors and exposing both the electrodes (31, 32) and the terminals (5). The invention is characterized in that, in combination, the plurality of electrodes (4) is arranged in an end zone (1a) opposite another end zone wherein electric terminals (5) are assembled together and the support (2) comprises at least one flexible zone (1c), located between the two end zones.
Abstract:
L'invention concerne un contact de raccordement électrique pour circuit souple comportant une borne de raccordement à un contact complémentaire et une plaquette de connexion par percement du circuit souple, munie d'une couronne de dents de percement faisant saillie sur une face de la plaquette pour percer le circuit souple et être sertie sur ledit circuit souple, caractérisé en ce que la plaquette de connexion comporte une bande de conduction électrique percée d'un orifice, et en ce que la couronne de dents de percement traverse cet orifice. L'invention concerne aussi un procédé de fabrication d'une telle plaquette de connexion.
Abstract:
Ein Verteiler (1) für Folienleiter (2-5) mit einer ersten, in einer Ausnehmung (8) einer Teilschale (6) angeordneten Sammelschiene (9) für einen ersten Signalpfad (CAN-low) und einer zweiten, in einer Ausnehmung (8) einer Teilschale (7) angeordneten zweiten Sammelschiene (10) für eine zweiten Signalpfad (CAN-high), wobei jede Sammelschiene (9, 10) über ein Überbrückungselement (11-14, 23, 25, 26) mit mehreren an elektrische Komponenten angekoppelte Folienleiter (2-5) verbindbar ist, die Verbindung zwischen einer Sammelschiene (9, 10) und einer elektrischen Komponente durch Verlagern des Überbrückungselements (11-14, 23, 25, 26) trennbar ist und die beiden Teilschalen (6, 7) beim zusammengesetzten Verteiler (1) an einer Schnittstelle (15) aneinander stossen, wobei die Folienleiter (2-5) eines Signalpfads (CAN-low, CAN-high) durch einen oder mehrere Kanäle (16) in einer Teilschale (6, 7) geführt sind und am Ende des oder der Kanäle (16) abgewinkelt sind, so dass der abgewinkelte Teil (17) der Folienleiter (2-5) beim zusammengesetzten Verteiler (1) im Bereich der Schnittstelle (15) zwischen den Teilschalen (6, 7) angeordnet ist.
Abstract:
Ein Steckverbinder mit einer Mehrzahl an Kontaktelementen (200), die jeweils einen Steckbereich (210) und einen Anschlussbereich (220, 221, 222, 223, 224) aufweisen, und mit einem die Kontaktelemente 8200) aufnehmenden Gehäuse (300), ermöglicht auf vergleichsweise einfache und kostengünstige Weise eine verlässliche Kontaktierung einer unterschiedlich ausgebildete Kontakstellen (110) aufweisenden elektrischen Leitung (100). Grund hierfür ist, dass das Gehäuse (300) aus mehreren Gehäusesegmenten (310) zusammengesetzt ist, in denen jeweils ein Kontaktelement (200) angeordnet ist, und dass der Steckbereich (210) eines Kontaktelements (200) mit einer bestimmten Anzahl an Kontaktabschnitten (215) versehen ist, wobei die Anzahl der Kontaktabschnitte (215) auf die Breite einer in dem jeweiligen Gehäusesegment (311, 312, 313, 314) zu kontaktierenden Kontaktstelle (111, 112, 113, 114) der elektrischen Leitung (100) abstimmbar ist.
Abstract:
A connector is provided for electrically interconnecting the conductors of a flat flexible circuit to a plurality of discrete terminal pins. The connector includes a dielectric housing having a front mating face and a rear terminating face. A plurality of terminal pin-receiving passages are provided in the mating face. A flat circuit-receiving receptacle is provided in the terminating face in communication with the passages. A circuit carrier is insertable into the receptacle of the housing and includes an attachment portion for attaching the flat flexible circuit pin receiving passages. Insertion of the pins in the passages causes the pins to engage the conductors of the circuit.
Abstract:
A method for assembling an impedance controlled connector using conventional connector shells and inserts and corresponding connector pins (64) and sockets (62). Controlled impedance cables (50) are prepared and physically arranged for termination in a conventional connector shell in a configuration which enhances the impedance control characteristic of the assembled connector. Assembly of the connector is effected using conventional materials and tools.
Abstract:
The invention relates to a plug-in connecting system for flexible conductor films with film-insulated conductors, comprising a plug-in unit and a counter plug-in element, each of which is provided in a conductor film end area and which can be inserted into each other in order to electrically contact the film-insulated conductors. The invention is characterised in that the plug-in unit and the counter plug-in unit each have a base body and a top which can be brought into intimate, solid contact with the base body with a fixing mechanism, and in that at least one penetration structure is provided between the base body and the top, respectively. A film-insulated conductor of the end area of the conductor film can be inserted into said penetration structure before the top is brought into contact with the base body and the penetration structure at least partially penetrates the film-insulated conductor in order to fix and electrically contact the top and base body by exclusively pressing the top against the base body, respectively.