Abstract:
An electronic device is provided. The electronic device includes a foldable housing including, a hinge structure, a first housing structure including a first surface, a second surface, and a first side member, wherein the first side member encloses at least a portion of a space between the first surface and the second surface and includes a first conductive portion, a first non-conductive portion, and a second conductive portion, and a second housing structure including a third surface, a fourth surface, and a second side member, a printed circuit board, at least one wireless communication circuit including a first electrical path and a second electrical path, a first variable element including a first terminal, a second terminal, and a third terminal, and a second variable element including a fourth terminal, a fifth terminal, and a sixth terminal.
Abstract:
Aspects of the embodiments are directed to an edge card assembled using surface mount technology (SMT). The edge card can be assembled by providing a printed circuit board comprising a first set of SMT pads proximate an edge of the printed circuit board to receive metal contact fingers and a second set of SMT pads to receive SMT components; placing a metal contact finger onto each of the first set of SMT pads; placing one or more SMT components onto at least some of the second set of SMT pads; providing a solder paste to the printed circuit board; and heating the printed circuit board to reflow the solder paste to mechanically and electrically connect the SMT components and the metal contact finger to the printed circuit board. The edge card can include a thin printed circuit board substrate.
Abstract:
The invention discloses a circuit board output structure, which includes a power output section disposed on a circuit board and at least one metal connection stand electrically connected to the power output section. Each metal connection stand includes a first connection piece showing an included angle with respect to the circuit board. A plurality of connection holes for electrically connecting output wires are formed on the first connection piece. When it is required to change an output specification, the replacement can be more simple and convenient since the metal connection stand may be directly replaced without replacing the whole circuit board. Because the first connection piece has the included angle specified with respect to the circuit board, R angle and stress of the inserted output wires may be reduced to prevent the output wires from damage, detaching from the circuit board or having poor electrical contact after the assembly.
Abstract:
In examples of the present disclosure, a vented electrical terminal block may include a body that may be configured to support a plurality of electrical terminals In examples, the body may include a plurality of side walls that may extend from the body. The body may include a plurality of apertures extending through the body. A cavity may be defined by an underside of the body. The cavity may receive a cavity fluid. In examples, at least one side wall may include an opening for receiving a sealing fluid, and apertures may be configured to vent said cavity fluid from the cavity when sealing fluid is introduced into the cavity via the opening.
Abstract:
Provided is a matable electrical connection structure including a female connection member and a male connection member respectively including a plurality of first connection portions and a plurality of second connection portions, and a plurality of matable connection portions configured to detachably couple the female connection member and the male connection member, and respectively and electrically connect the plurality of first connection portions to the plurality of second connection portions, and the matable connection portions include inner conductive materials respectively and electrically connected to the plurality of first connection portions and provided on inner walls of a plurality of insertion holes formed in the female connection member, columns respectively and electrically connected to the plurality of second connection portions and configured to protrude from the male connection member to be inserted into the insertion hole, and elastic fins configured to extend outside the column to elastically contact the inner conductive material, and at least one of the female connection member and the male connection member is divided into a plurality of areas, and the plurality of matable connection portions are disposed to form a group in each of the areas.
Abstract:
Provided are a circuit assembly in which it is possible to eliminate or reduce a level difference between a mounting surface of a substrate and portions to which terminals that are electrically connected to a conductive member are connected, and that can be easily produced, and a method for manufacturing the same. A circuit assembly includes a substrate provided with openings and an electronic component mounted on one side of the substrate, a conductive member that is a plate-shaped member fixed to another side of the substrate, the conductive member constituting a conductive path, and a relay member that is fixed to a surface on the substrate side of the conductive member and made of an electrically conductive material, the relay member being accommodated in the openings formed in the substrate, at least one terminal of the electronic component being connected to the relay member.
Abstract:
A lighting device comprising a housing (102) with a driver electronics module (104) including driver circuitry for driving light sources and an electronics connector (106). The lighting device further comprising a circuit board (108) arranged in the housing, including a board connector (110). Furthermore lighting device comprises at least one light source (109) arranged on the circuit board and being in connection with the board connector, wherein the electronics connector and the board connector extend transverse to a planar extension of the circuit board. The board connector and the electronics connector are aligned so that they have an area of overlap, wherein the board connector and the electronics connector are biased against each other such that there is at least a line of contact which provides a galvanic connection, and wherein a heat induced electrical interconnection is provided along the line of contact. Such a connection is time- and cost efficient to assemble compared to a wire connection.
Abstract:
Provided is a noise reduction device including: a conductive bar of conductive material extending through a through hole in a metal housing to the outside; a magnetic material core of magnetic material disposed at a peripheral edge of the conductive bar; a substrate attached to the conductive bar so as to be adjacent to the magnetic material core; a capacitor mounted on the substrate and having a first terminal connected to the conductive bar and a second terminal connected to an inner wall of the through hole; and a blocking unit blocking an opening of the through hole so as to affix the conductive bar to the metal housing. The magnetic material core, the substrate, and the capacitor are disposed in the through hole blocked by the blocking unit; and the conductive bar has an outer end that functions as an output terminal.
Abstract:
An electronic device may include: a printed circuit board (PCB); a plurality of electronic components electrically connected to the PCB; and a connection member comprising a first portion fixed to one of the PCB and an electronic component and a second portion magnetically connected to the other one of the PCB and the electronic component. The second portion of the connection member may be moveably connected to the first portion.
Abstract:
An electrical connector adapted to receive a mating plug utilizes low-profile jack terminal contacts that can flex in their PCB-anchored base portions, which are substantially parallel to the PCB. Any bend in the distal connecting portion or in the intermediate transition portion of each terminal contact is gradual and forms an obtuse angle, thus minimizing stress concentrations. The contacts preferably are arranged in two oppositely facing and interdigitating rows of four contacts each. In one embodiment, the terminal contacts are anchored to the PCB by a contact cradle that constrains the base portion of each terminal contact at two spaced anchoring locations, allowing the base portion to flex therebetween. In another embodiment, the base portions of the terminal contacts are embedded in at least one elastomeric member, which is fitted to the PCB.