Abstract:
An electrical contact having one or more spring-biased tabs for mounting to a circuit board precludes the need for additional mechanical fasteners and obviates any additional manufacturing steps, except for soldering. The tabs are formed and shaped to provide springs which, when inserted into holes in a circuit board, compress and grip the interior wall of the hole.
Abstract:
A diode or other axial lead electronic component which requires mounting of its leads in a predetermined orientation is provided with leads of considerably different diameter. A printed circuit board is provided with holes sized to receive respective leads, so that the leads can be inserted into the holes only one way. Instead of having circular cross-sections and different diameters, one lead may have a circular cross-section while all or an end portion of the other lead has a non-circular cross-section with a diameter allowing that lead to fit in only the larger hole of the printed circuit board.
Abstract:
An electrical connector includes a housing and an array of terminal members having posts extending from the housing and adapted for insertion into through-holes of a circuit board. At least one board retention means is formed on at least one of the posts and is axially located a selected distance from the lower surface of the housing to be within a corresponding through-hole after insertion. The retention means is a swage defining wall engaging surfaces for engaging sidewalls of a respective through-holes during mounting of the connector to board. The swage is formed such that the far side of the post remains coplanar with the axially adjacent surfaces and a swage embossment extends laterally outwardly from at least the second side, the embossment being formed by the work end of a tool striking the third side at an angle. In the preferred embodiment, there are at least two swaged posts with embossment of the first terminal extending outwardly in a first direction and the embossment of the second post extending in a second opposing direction. The retention means of the first and second posts engage wall surface within respective through-holes with spring bias applied in opposite directions thereby defining means for temporarily securing the connector to the board prior to soldering.
Abstract:
A rolled up terminal end adapted for insertion into an opening in a PCB or the like comprising a first end section with an effective width less than the diameter of the PCB opening, a second section having a terminal retaining ramp means with an effective width greater than the diameter of the PCB opening and an elongated slot extending throughout at least a portion of the second section.
Abstract:
The present disclosure provides a LED module. The LED module includes a LED lamp, a heat radiator, and a PCB. The LED lamp includes a LED main body, and a heat conducting block and a pin configured to the main body. The heat conducting block is mounted on the bottom surface of the LED main body towards the PCB. The pin has a free end passing through the PCB, and electrically connecting a bonding pad of the PCB. The heat radiator is caught between the heat conducting block and the PCB, and the heat conducting block resists against the heat radiator. A display device is also provided. The heat introduced by the LED lamp can directly dissipate from the heat conducting block to the heat radiator, thus enhancing the heat dissipation of the LED lamp.
Abstract:
An electric connecting member and an LED lamp using the electric connecting member are provided. The electric connecting member is used for the electric connection between a light source substrate and a driving board of the LED lamp, and comprises an input terminal and an output terminal. The LED lamp comprises the driving board and the light source substrate. The output terminal is provided on the driving board of the LED lamp. The input terminal is disposed upon the light source substrate and is electrically connected to the light source substrate. The output terminal comprises two contacts, and one end of each of the two contacts is electrically connected to the driving board respectively. The input terminal comprises two connection heads which are respectively provided corresponding to the two contacts. One end of each of the two connection heads is electrically connected to the light source substrate respectively.
Abstract:
According to exemplary embodiments, a tapered surface interconnect is formed on a printed circuit board (PCB). A compliant pin of an electrical connector may be coupled to the tapered surface interconnect and soldered thereto. The surface interconnect may be formed by drilling through one or more layers of the PCB. The depth of the surface interconnect may be shorter than a height or a thickness of the PCB. The surface interconnect may have a tapered side wall to allow for a better fit with a tapered compliant pin. The inclination of the side wall of the surface interconnect may be linear or concave. The intersection between the tapered sidewall and the bottom of the surface interconnect may be rounded to minimize pin insertion issues and may allow for easier solder flux evacuation from the surface interconnect during the soldering process. The compliant pin may be soldered into place upon being coupled to the tapered surface interconnect.
Abstract:
An active electrical component is disclosed. The active electrical component comprises a contact extending away from an outer side of the component in an insertion direction, and a force transmission structure extending to the contact in a continuous manner from a side of the component opposite the contact.