Abstract:
The invention is a structure and method for creating areas of non-conducting or isolated conducting surfaces within an area of conducting surfaces such that the capacitance of said conducting surface is reduced relative to a proximate, essentially parallel, conducting surface.
Abstract:
Die Erfindung betrifft ein Folienelement (1) sowie ein Verfahren zum Herstellen eines solchen Folienelements. Das Folienelement (1) umfasst eine dielektrische Trägerschicht (10), die eine xy-Ebene (E) eines kartesischen Koordinatensystems mit einer x-Achse (61), einer y-Achse (62) und einer z-Achse (63) aufspannt, und mindestens eine auf der Trägerschicht (10) angeordnete, elektrisch leitfähige Schicht, in der in einem rahmenförmigen Bereich (5) des Folienelements (1) eine Leiterbahn (27) ausgeformt ist. Der rahmenförmige Bereich (5) ist gebildet durch die Fläche eines größeren, äußeren Rechtecks (80) mit jeweils parallel zur x- Achse (61) oder y-Achse (62) verlaufenden Seiten (81, 82, 83, 84), aus der die Fläche eines kleineren, inneren Rechtecks (90) mit gleicher Orientierung wie das äußere Rechteck (80) ausgespart ist. Der rahmenförmige Bereich (5) ist in zwei parallel zur x-Achse und zwei parallel zur y-Achse verlaufende Rahmenabschnitte (51, 52, 53, 54) unterteilt, welche jeweils von einer begrenzenden Seite (81, 82, 83, 84) des äußeren Rechtecks (80) und einer der begrenzenden Seite (81, 82, 83, 84) des äußeren Rechtecks (80) unmittelbar benachbarten und dazu parallelen Seite (91, 92, 93, 94) des inneren Rechtecks (90) begrenzt sind und die Leiterbahn in Leiterbahnabschnitte (71a bis 71d, 72a bis 72d, 73d) unterteilen. Eine mechanische Eigenschaft der Trägerschicht (10) ist entlang der x-Achse (61) und der y-Achse (62) unterschiedlich. Mindestens ein Leiterbahnabschnitt (71a bis 71d, 72a bis 72d, 73d) verläuft, parallel zu der z-Achse (63) gesehen, auf mehr als 50 % seiner Länge schräg zu der x-Achse (61) und der y-Achse (62).
Abstract:
An electronic device comprising at least one combination of a stretchable electronic structure having a first young modulus and a rigid or flexible electronic structure having a second young modulus higher than the first young modulus, the stretchable electronic structure and the rigid or flexible electronic structure being electrically connected to each other by a semi-transition structure having a third young modulus with a value in a range between the first and the second young modulus.
Abstract:
The present invention is directed to a crystal oscillator package comprising a current transporting structure comprising an inner conductor arrangement enclosed by an insulating material, a crystal oscillator configured to generate a signal at a predefined frequency mounted on the current transporting structure and a temperature preserving unit enclosing the crystal oscillator mounted on the current transporting structure. The inner conductor arrangement is arranged under the temperature preserving unit where the inner conductor arrangement is configured to carry a current for heating the insulating material and thereby the crystal oscillator to a temperature within a target temperature interval.
Abstract:
The present disclosure relates to a telecommunications jack including a housing having a port for receiving a plug. The jack also includes a plurality of contact springs adapted to make electrical contact with the plug when the plug is inserted into the port of the housing, and a plurality of wire termination contacts for terminating wires to the jack. The jack further includes a circuit board that electrically connects the contact springs to the wire termination contacts. The circuit board includes a crosstalk compensation arrangement for reducing crosstalk at the jack. The circuit board also includes arrangements that reduce return loss at the jack.
Abstract:
The present invention concerns a method for randomly patterning electrically conductive elements (6), the patterned electrically conductive elements produced thereby and their use for example as heating elements or antennas.
Abstract:
The present disclosure relates to a telecommunications jack including a housing having a port for receiving a plug. The jack also includes a plurality of contact springs adapted to make electrical contact with the plug when the plug is inserted into the port of the housing, and a plurality of wire termination contacts for terminating wires to the jack. The jack further includes a circuit board that electrically connects the contact springs to the wire termination contacts. The circuit board includes a multi-zone crosstalk compensation arrangement for reducing crosstalk at the jack.
Abstract:
The present disclosure relates to a telecommunications jack including a housing having a port for receiving a plug. The jack also includes a plurality of contact springs adapted to make electrical contact with the plug when the plug is inserted into the port of the housing, and a plurality of wire termination contacts for terminating wires to the jack. The jack further includes a circuit board that electrically connects the contact springs to the wire termination contacts. The circuit board includes a multi-zone crosstalk compensation arrangement for reducing crosstalk at the jack.