Abstract:
Systems and methods provided may involve arranging a first differential pair and a second differential pair and adjusting spacing arrangements between the first differential pair and the second differential pair to minimize crosstalk.
Abstract:
Example coaxial connector assemblies are described. In one example, a coaxial connector assembly (10) may include first (12) and second (14) connectors that may be securely mated and unmated from each other. When mated, first and second connectors may collectively include a plurality of cable assemblies. Each cable assembly may include a coaxial cable including a center conductor that may be electrically coupled to a pin (20a) within a receptacle when the first and second connectors are mated. Ground contacts may separate neighboring pins and center conducts as well as shield structures to decrease interference between respective cable assemblies.
Abstract:
The present invention provides a communication jack for connecting to one of a first plug and a second plug. The jack includes a housing, plug interface contacts, and coupling circuitry. The plug interface contacts are at least partially within said housing and include a plurality of contact pairs having at least a first contact pair and a second contact pair. The coupling circuitry is configured for engaging said first contact pair and said second contact pair when said first plug is inserted into said housing. The coupling circuitry is configured for disengaging from said first contact pair and said second contact pair when said second plug is inserted into said housing.
Abstract:
Die Erfindung begrifft eine mehrlagige Leiterplatte (1) mit zumindest einer innerhalb der Leiterplatte angeordneten Metallisierungsschicht (5, 6). Die Leiterplatte (1) ist mit zumindest einem Steckverbinder über wenigstens einen Steckerstift (2) verbunden. Die Metallisierungsschicht (5, 6) weist umlaufend um eine Ausnehmung für den Steckerstift (2) und beabstandet von dieser eine eine Isolierzone (9) bildende Aussparung auf, wobei zwischen dem benachbart zu der Ausnehmung ausgebildeten Teil (6) der Metallisierungsschicht und dem um die Isolierzone (9) ausgebildeten Teil (5) der Metallisierungsschicht zumindest ein, die Isolierzone (9) überbrückender, in die Leiterplatte eingebetteter Kondensator (7, 8) angeordnet ist.
Abstract:
L'invention concerne un connecteur modulaire comportant : une coque externe (3) formant boîtier de connecteur, présentant un logement central (5) et comprenant deux parois latérales (11) présentant respectivement une première (11a) et une seconde (11b) extrémités longitudinales, un premier (13a) et un second (13b) blocs d'extrémité distincts des parois latérales (11), ledit premier bloc (13a) étant fixé aux premières extrémités (11a) des deux parois latérales (11), et ledit second bloc (13b) étant fixé aux secondes extrémités (11b) des deux parois latérales (11), et au moins un insert isolant (7) configuré pour être muni d'au moins un contact électrique, ledit au moins un insert (7) étant reçu dans le logement central (5) de ladite coque externe (3), et caractérisé en ce que ledit au moins un insert (7) et lesdites parois latérales (11) présentent des formes conjuguées en vis-à-vis, pour l'assemblage dudit au moins un insert (7) avec les deux parois latérales (11). L'invention concerne encore le procédé d'assemblage d'un tel connecteur modulaire.
Abstract:
In some embodiments a second differential signal pair is located near a first differential signal pair. The second differential signal pair switches polarity near a middle point of a routing length of the second differential signal pair. Other embodiments are described and claimed.
Abstract:
A gasket for use with an electromagnetic interference (EMI) shielding cage for a connector includes a conductive body having an opening configured to receive a first end of the EMI shielding cage near a gasket mating wall incorporated on the EMI shielding cage. The conductive body has a first face designed to face away from the gasket mating wall, a second face designed to face the gasket mating wall, an inner perimeter and an outer perimeter. A plurality of engagement tabs are disposed along the outer perimeter and extend away from the first face. A plurality of spring tabs are disposed along the inner perimeter and extend away from the second face. When the first end of the EMI shielding cage is inserted into the opening of the conductive body and an opening of an optional complementary faceplate with the engagement tabs facing the faceplate and the spring tabs facing the gasket mating wall of the EMI shielding cage, the engagement tabs and the spring tabs cooperatively maintain a predefined separation distance D1 between the gasket mating wall and the optional complementary faceplate.
Abstract:
The present invention relates to an electrical connector system. The electrical connector system comprises a first connector (20) to be mated to a corresponding counter connector (30) and it is further adapted to be connected to a signal circuit for activating an electrical power source upon switching. As a safety feature, the connector system further comprises a connector position assurance (CPA) member (10) assigned to the first connector (20), which is movable, whereby an end position is not reachable if the first connector is incorrectly mated to the counter connector. The CPA member is adapted to interact with the signal circuit if placed in said end position so that it activates of the electrical power source.
Abstract:
A connector is provided with a pair of terminals configured to provide a differential signal pair. A ground terminal is positioned on opposing sides of the differential pair. The body of the differential pair is configured so as to bring the differential pair closer together. In an embodiment, the % coupling on the differential pair is increase at least 10% more than a design where the four terminals are positioned at a constant pitch between the tail and the contact.