Abstract:
An implantable connector for connecting an electronics package and a neural interface is described. The connection between the electronics package and the neural interface is made by way of a set of compressible contacts (e.g., springs) that physical contact a set of corresponding exposed bond pads. The compressible contacts are held in compression with the exposed bond pads using a mechanical coupler. The compressible contacts are physically separated and electrically isolated from each other by way of a compressible gasket. The compressible gasket is also held in compression using the mechanical coupler.
Abstract:
Embodiments of the present disclosure provide techniques for a co-planar connection between a PCB and another PCB, in accordance with some embodiments. In one embodiment, a PCB may include a plurality of electric traces disposed on the PCB, and a plurality of cutouts disposed along an edge of the PCB, to interface with mating cutouts of another PCB in a co-planar connection. The electric traces may extend into respective cutouts. Adjacent cutouts of the plurality of cutouts may be placed at a distance from each other to produce a retention force in response to the interface with the mating cutouts of the other PCB, to retain the PCB in the co-planar connection with the other PCB. The electric traces may be disposed such as to form electrical connections with respective traces disposed on the mating cutouts, to provide electrical contact between the PCBs. Other embodiments may be described and/or claimed.
Abstract:
An LED screen display unit and production method therefor. The LED screen display unit comprises a circuit board (1), a driving IC (2) and LEDs (3); a first face of said circuit board (1) is provided with a contact pad matrix (41); the driving IC (2) is arranged on the circuit board (1) and is in electrical connection with contact pads (4) of said contact pad matrix (41); the pins (31) of the LEDs (3) are soldered to contact pads (4) of the contact pad matrix (41). The present display unit can ensure a higher permeability rate for LED display screens produced having high pixel density.
Abstract:
A looping bridge is disclosed for looping a number of electric signals through from a first electric module having a number of first electric terminals to a second electric module having a number of second electric terminals, said looping bridge comprising: a comb-shaped interconnect structure having a number of first comb teeth and a number of second comb teeth wherein the first comb teeth can be inserted into the first electric terminals and the second comb teeth can be inserted into the second electric terminals, and wherein the first comb teeth are electroconductively connected to the second comb teeth the comb-shaped interconnect structure being a comb-shaped circuit board.
Abstract:
A lighting device for a moving body includes a substrate that has a base body having connection sections on a side surface and a wiring pattern provided on at least one main surface of the base body. The moving body further includes a light emitting element that is electrically connected to the wiring pattern, and an adhesive section that is provided between the base body and a body section. The connection sections are at least one of groove sections, concave sections, and convex sections, while the adhesive section covers at least a part of the plurality of connection sections.
Abstract:
An illustrative inventory of vehicle accessory control components includes a plurality of first circuit boards and a plurality of second circuit boards. The first circuit boards each have a substrate with a plurality of circuit elements supported on the substrate. The first circuit board substrates have an overall perimeter shape including an outer edge profile and a plurality of first deviations from the outer edge profile. The second circuit boards each have a substrate with a plurality of circuit elements supported on them. The second circuit board substrates have the overall perimeter shape including the same outer edge profile as the first circuit board substrates. The second circuit board substrates include a plurality of second deviations from the outer edge profile. At least one portion of the second deviations is different than the first deviations of the first circuit boards.
Abstract:
In one embodiment, provided is a connector comprising: a body; a first protrusion formed on a first surface of the body; a first groove formed on the first surface of the body to be adjacent to the first protrusion, and of which the shape includes the inverse of the first protrusion; a first terminal of which at least a portion is arranged to correspond to the first protrusion; and a second terminal of which at least a portion is arranged to correspond to the first groove.
Abstract:
An illustrative inventory of vehicle accessory control components includes a plurality of first circuit boards and a plurality of second circuit boards. The first circuit boards each have a substrate with a plurality of circuit elements supported on the substrate. The first circuit board substrates have an overall perimeter shape including an outer edge profile and a plurality of first deviations from the outer edge profile. The second circuit boards each have a substrate with a plurality of circuit elements supported on them. The second circuit board substrates have the overall perimeter shape including the same outer edge profile as the first circuit board substrates. The second circuit board substrates include a plurality of second deviations from the outer edge profile. At least one portion of the second deviations is different than the first deviations of the first circuit boards.
Abstract:
Printed circuit boards for communications connectors are provided that include a dielectric substrate formed of a first insulative material having a first dielectric constant. First and second pairs of input terminals and first and second pairs of output terminals are provided on the dielectric substrate. A first differential transmission line electrically connect the first pair of input terminals to the first pair of output terminals, and a second differential transmission line electrically connect the second pair of input terminals to the second pair of output terminals. The dielectric substrate includes an opening that is positioned between the conductive paths of the first differential transmission line, the opening containing a second insulative material having a second dielectric constant.
Abstract:
An electronic device includes a circuit board, a connector and a noise suppression assembly. The circuit board includes a substrate having a surface layer. The connector is disposed on the circuit board and has at least one electrical pin. The noise suppression assembly includes a wiring area located on the surface layer and adjacent to the connector and a conductive cover member. The wiring area includes at least one electrical contact, a transmission circuit and at least one ground contact, the electrical contact is used for being in electrical contact with the electrical pin of the connector. The transmission circuit is electrically connected to the electrical contact. The ground contact is located around the wiring area. The conductive cover member has a cover plate and at least one lateral plate. The lateral plate is connected to the cover plate for forming a shielded space.