Abstract:
A printed circuit board assembly and method of assembly is provided for a printed circuit board having a top and bottom surface with at least one edge portion having a rounded surface extending front the top surface to a point below the top surface and at least one electrical contact pad located on the top surface and extending over the edge portion rounded surface to a point below the top surface.
Abstract:
A lighting device includes a printed circuit board, a plurality of electrical connection units, and a plurality of illuminant units. The printed circuit board has a layer of insulation and a layer of circuit. The insulation layer forms a plurality of holes corresponding to a plurality of electrically conductive zones of the circuit layer. The electrical connection units are connected to the electrically conductive zones through the holes. The illuminant units are set in electrical connection with the electrical connection units. The electrical connection units are fixedly mounted to the circuit layer and electrical power is supplied through the electrically conductive zones to the illuminant units. The electrical connection units are arranged in an array on the printed circuit board.
Abstract:
A semiconductor laser device according to the present invention includes: at least one laser chip that emits a laser beam; a plurality of lead pins that are electrically connected to the laser chip and that supply current to get the laser beam emitted; and a stem that holds the laser chip and the lead pins thereon. The lead pins have mutually different lengths and the longest one of the lead pins is electrically connected to the stem.
Abstract:
A fixing structure for a circuit board includes at least one board mounting hole in the circuit board, the board mounting hole having a guide hole and an insertion hole, and at least one board mounting member inserted through the board mounting hole, the board mounting member having a main body, a cover, and an insertion portion therebetween, wherein the insertion portion has a cross-sectional area smaller than either of the main body or the cover and is capable of fitting in the insertion hole of the board mounting hole.
Abstract:
The invention provides a printed circuit board capable of preventing an electronic component from tilting or uplifting without adopting special structures in an existing electronic component. The printed circuit board has an engagement portion and terminal holes and for mounting an electronic component, comprising narrowed portions and having substantially the same width as the mounting leg portions and connecting terminals of the electronic component, and guidance portions having a width wider than the narrowed portion, wherein the mounting leg portions and connecting terminals are inserted to the guidance portion, and the electronic component is moved via sliding motion, by which the mounting leg portions and the connecting terminals are supported tightly in the narrowed portion. Thus, it becomes possible to prevent the displacement or tilt of the electronic component.
Abstract:
A method of manufacturing a power module is implemented which allows easy electrical connections between a control board and relay terminals. The diameter of through holes in the control board tapers down from a side of penetration of the relay terminals in a direction of the penetration, and respective one ends of the relay terminals have a smaller diameter than the other portions of the relay terminals. The diameter of the through holes on the side of penetration of the relay terminals is made sufficiently greater than the diameter of the one ends of the relay terminals, so that the relay terminals can easily penetrate the through holes. Further, even if the relay terminals are formed in deviated positions, the one ends of the relay terminals can be guided along the walls of the through holes in the penetration, so that the relay terminals can be adjusted to proper positions.
Abstract:
A method of manufacturing a power module is implemented which allows easy electrical connections between a control board and relay terminals. The diameter of through holes in the control board tapers down from a side of penetration of the relay terminals in a direction of the penetration, and respective one ends of the relay terminals have a smaller diameter than the other portions of the relay terminals. The diameter of the through holes on the side of penetration of the relay terminals is made sufficiently greater than the diameter of the one ends of the relay terminals, so that the relay terminals can easily penetrate the through holes. Further, even if the relay terminals are formed in deviated positions, the one ends of the relay terminals can be guided along the walls of the through holes in the penetration, so that the relay terminals can be adjusted to proper positions.
Abstract:
A card edge connector comprises a connector body and a conductive pad, and is constructed such that the conductive pad terminates at a predetermined distance from the end of the tip portion of the connector body, and that there is further provided a protective pad, adjacent to the terminating portion of the conductive pad, which is formed at the same time with the formation of a wiring pattern in a post-fabrication step of the wiring pattern. Using the card edge connector, an electric card and an electric equipment are also provided.
Abstract:
An electrical connector having a metal plate which is mounted under the housing with hot riveting. Location pegs are made so that low mounting force is possible. A wafer which is black in color or has another contrasting color makes it possible for a video camera to record the true position of the terminals. The surface of the top side of the housing is suited for vacuum pick up.
Abstract:
An electrical connector having a metal plate which is mounted under the housing with hot riveting. Location pegs are made so that low mounting force is possible. A wafer which is black in color or has another contrasting color makes it possible for a video camera to record the true position of the terminals. The surface of the top side of the housing is suited for vacuum pick up.