Abstract:
A paddle card construction disclosed for use in connecting electronic devices together. The paddle card takes the form of a circuit board that has a plurality of conductive contact pads arranged thereon in pairs. The contact pads of each pair are spaced apart from each other to provide a pair of points to which cable wire free ends may be terminated, such as by soldering. The spacing of the pads apart from each other in effect reduces to amount of capacitance in the cable wire termination area on the circuit board, thereby reducing the impedance and insertion loss in that area at high frequencies. The contact pads of each pair may be further interconnected together by a thin, conductive trace that extends lengthwise between the contact pads.
Abstract:
A connection structure for connecting a differential signal transmission cable to a circuit board. A differential signal transmission cable includes an outer conductor provided around a pair of signal line conductors via an insulator. Parts of the signal line conductors are exposed from a tip of the differential signal transmission cable. A circuit board is provided with a pair of signal pads and a ground pad. A shield-connecting terminal includes a main body which is crimp-connected to the outer conductor and a solder-connecting pin which is solder-connected to the ground pad. The exposed parts of the signal line conductors are solder-connected to the signal pads, respectively, and the outer conductor is solder-connected to the ground pad via the solder-connecting pin of the shield-connecting terminal.
Abstract:
The present invention aims at providing a lighting device configured to suppress uneven brightness, and a display device or a television receiver which includes the lighting device. The lighting device of the present invention includes a plurality of LEDs 16, an LED board 17S, a chassis 14, a connecting component 60, and a reflection sheet 21. The LEDs 16 are mounted on the LED board 175. Both of the LED boards 17S and 17C are attached to the chassis 14. The connecting component 60 electrically connect the LED boards 17S and 17C to each other. The reflection sheet 21 is overlaid on light source mounted surfaces 17A. In the lighting device, the connecting component 60 is arranged on a connecting component attached surface 17B of the LED board 17S. The connecting component attached surface 17B is opposite to the surface on which the reflection sheet 21 is overlaid.
Abstract:
A motor control unit includes two circuit boards accommodated in a board housing, and a connection holder placed on an outer face of the board housing. The connection holder includes external connection terminals and connection pins. Each one of the circuit boards is provided with multiple through-holes for receiving the connection pins, each of which is formed of an external connection pin and an internal connection pin. The connection holder and the circuit boards are placed such that the connection pins penetrate the through-holes of the circuit boards respectively.
Abstract:
An electrical connector assembly including a printed circuit board that has base and cover layers of dielectric material and first and second ground planes of conductive material. The base and cover layers are stacked relative to each other and located between the first and second ground planes. The base layer has a conductor-receiving portion that extends beyond the cover layer. The circuit board also includes signal traces that are exposed to an open space that exists above the conductor-receiving portion. The connector assembly also includes a compression component that is configured to be positioned in the open space to press wire-terminating ends of signal conductors onto the signal traces at the conductor-receiving portion.
Abstract:
The present disclosure is directed to an apparatus configured for providing a plurality of exit routes to a single type of cable. The apparatus includes a board configured to have a notch. The notch is dimensioned to have a first predetermined distance from a lowest edge of the notch to a pin A1 location on the board and a second predetermined distance from an edge of the board to the pin A1 location. The apparatus also includes a plurality of connectors configured for receiving a cable of the plurality of the single type of cable. Each cable is inserted into a respective connector, and each cable exits the board through the notch. The cable may exit the board through a plurality of routes without requiring changes to the dimension of the board or placement of the connectors.
Abstract:
A cable-organizing circuit board includes a board body and a protruding hanger arm. The board body has a circuit-layout section and a non-circuit-layout section that are connected to each other. The protruding hanger arm is disposed at the non-circuit-layout section of the board body, and is adapted to be permit a segment of the transmission cable to pass thereunder. The segment of the transmission cable is disposed beneath a bottom surface of the protruding hanger arm, and remaining segments of the transmission cable are disposed above a top surface of the board body opposite to the bottom surface of the protruding hanger arm when the segment of the transmission cable passes under the protruding hanger arm.
Abstract:
An electrical connector assembly is provided with an insulating housing, a PCB, and an FFC. The insulating housing includes a plurality of terminals and two side extensions The FFC and the terminals are electrically connected together by the PCB. A plurality of contacts of the PCB are provided on a top surface of the PCB. A space is defined by the extensions and two rearward inclined members on both sides of the insulating housing respectively with each rearward inclined member joining the insulating housing and the extension. The PCB is disposed in the space.
Abstract:
A printed circuit board (PCB) includes a first dielectric layer and a differential cable structure embedded in the dielectric layer. The differential cable structure includes a first inner conductor, a second inner conductor, a dielectric surrounding portions of the first inner conductor and portions of the second inner conductor, and a ground shield surrounding the dielectric.
Abstract:
A connector and a connector assembly are provided by the invention. The connector includes a main body formed by a printed circuit board and a plurality of cables. The printed circuit board has a surface conductive trace layer, an inner insulation layer, a ground layer and a surface insulation layer. The surface conductive trace layer has a conductive trace pattern comprising a plurality of contacting-end pattern portions and a plurality of bonding pad portions. The inner insulation layer is located on the surface conductive trace layer. The ground layer is located on the inner insulation layer. The surface insulation layer overlays the ground layer and exposes out a part of the ground layer. The cables are electrically connected to the bonding pad portions of the conductive trace patterns.