Abstract:
An electrical plug connector includes a plug insulated housing, first plug terminals, and second plug terminals. The plug insulated housing includes a bottom wall, a first side wall, a second side wall, and two end walls connected to the first side wall and the second side wall to enclose an insertion cavity. First plug-terminal assembling portions are on the first side wall. Second plug-terminal assembling portions are on the second side wall. The first plug-terminal assembling portions correspond to the second plug-terminal assembling portions in a one-to-one manner. The first plug terminals include one or more pair of first plug signal terminals. The second plug terminals include one or more pair of second plug signal terminals. The pair of the first plug signal terminals is shifted relative to the pair of the second plug signal terminals along a transversal direction.
Abstract:
An electrical plug connector includes a plug insulated housing which is integrally formed and plug terminals. A transition segment connected between first and second contact portions of each plug terminal allows the first contact portion to be in contact with and arranged substantially parallel to the second contact portion, so that connectors with reduced width can be manufactured. In addition, the shaping space between a first recessed portion and a second recessed portion of each plug terminal receive materials for forming the plug insulated housing, thus improving the structural strength of the connector. Moreover, embedded ends allow the plug terminals to be secured with the plug bottom wall, so that the plug terminals would not detach from the plug insulated housing easily during manufacturing or operation. The structural strength of the electrical plug connector can be improved, and the plug terminals can be properly assembled with the plug insulated housing.
Abstract:
An electrical plug connector includes a plug insulated housing which is integrally formed and plug terminals. A transition segment connected between first and second contact portions of each plug terminal allows the first contact portion to be in contact with and arranged substantially parallel to the second contact portion, so that connectors with reduced width can be manufactured. In addition, the shaping space between a first recessed portion and a second recessed portion of each plug terminal receive materials for forming the plug insulated housing, thus improving the structural strength of the connector. Moreover, embedded ends allow the plug terminals to be secured with the plug bottom wall, so that the plug terminals would not detach from the plug insulated housing easily during manufacturing or operation. The structural strength of the electrical plug connector can be improved, and the plug terminals can be properly assembled with the plug insulated housing.
Abstract:
An electrical connector includes insulating portions arranged side by side, terminal sets, shield sets, and a casing. Each terminal set includes signal terminals and ground terminals. Each signal/ground terminal includes a fixing section disposed in the insulating portion, an assembling section downwardly stretching from the fixing section to protrude from the insulating portion, and a contacting section forwardly stretching from the fixing section to protrude from the insulating portion. Each shield set including shields is disposed on a lateral surface of the insulating portion. Each shield is spacedly arranged and connected to the ground terminal. Each shield includes a body section having at least one bending section, and a protrusion section protruding from the body section. The body section and the protrusion section shield the assembling section and the contacting section of the signal terminal respectively. It can effectively suppress crosstalk between the signal terminals by the shield sets.
Abstract:
An electrical plug connector and an electrical receptacle connector adapted to be mated with the electrical plug connector are provided. The electrical receptacle connector includes an insulated housing integrally formed as a whole and a plurality of receptacle terminals. Based on a supporting arm of a first side arm of the receptacle terminal, when the plug terminal is abutted against the first side arm, the supporting arm is abutted against an abutting surface of the electrical receptacle connector for supporting the first side arm and improving the structural strength of the first side arm. Therefore, the first side arm can be prevented from being deformed or broken. In addition, based on a supporting segment of a second side arm of the receptacle terminal, the flexibility of second side arm can be improved and the structural strength of the second side arm can be enhanced.
Abstract:
A board to board male connector includes a male insulator, a first male signal contact set, a second male signal contact set, and a first male holding contact. The male insulator includes a first side wall, a second side wall, a first erect wall, and second erect wall. The first side wall is opposite to the second side wall. The first erect wall is opposite to the second erect wall. The first male signal contact set is disposed on the first erect wall. The second male signal contact set is disposed on the second erect wall. The first male holding contact includes a first male holding body disposed on the first side wall, and at least one first embedding wing extending from at least one side of the first male holding body and embedding into the first side wall.
Abstract:
A crosstalk-proof receptacle connector includes: multiple insulative boards arranged abreast; multiple sets of terminals mounted respectively in and corresponding to the insulative boards, and each set including signal terminals and grounding terminals; multiple shielding plates corresponding to the insulative boards and corresponding to the sets of the terminals, each shielding plate mounted on one of two opposite sides of a corresponding insulative board and having multiple current-path-interrupting holes defined through the shielding plate and kept hollow without being inserted by objects, and each shielding plate connected to the grounding terminals of a corresponding set of the terminals; and an outer casing covering the insulative boards to combine the insulative boards. The crosstalk-proof receptacle connector suppresses crosstalk and improves efficiency and stability of signal transmission.
Abstract:
An electrical connector structure includes a housing and signal modules mounted therein. Each signal module includes an insulating body, conductive terminals and a ground shield. The insulating body has a first side having a guide projection, and a second side opposite to the first side and having a guide groove. When a first signal module has been mounted in the housing, a second signal module is guided and moved to mount into the housing by the guide groove of the second signal module receiving the guide projection of the first signal module, or by the guide projection of the second signal module sliding into the guide groove of the first signal module, whereby reducing relative movement between signal modules in the housing. The signal modules may be mounted one by one in the housing, or may be stacked side by side and then mounted in the housing as a whole.
Abstract:
The invention relates to an electrical connector assembly comprising a first connector and a second connector. The first connector comprises a first insulating body and first terminals. The first insulating body comprises an inserting wall. The first terminal comprises a U-shaped segment fixed to the inserting wall and a first soldering foot. Two outer surfaces of the U-shaped segment respectively comprise a coupling part. The second connector comprises a second insulating body and second terminals. The second insulating body comprises a receiving trough, separating plates, and separating troughs. The receiving trough matches the inserting wall. The separating plate comprises a first chamfer and a second chamfer. The second terminal comprises a pair of elastic arms, a main arm, and a second soldering foot. The pair of elastic arms is fixed in the receiving trough and matches the U-shaped segment. The main arm is disposed in the separating trough.