Abstract:
A terminal for an antenna connector has a soldering base, two wings, a resilient electric contacting arm, and two pre-pressing elements. The wings are formed on the soldering base and each wing has an opening. The resilient electric contacting arm is formed on and protrudes from a rear end of the soldering base and has an extension section, a resilient section, and an electronic contacting section. The pre-pressing elements are located respectively in the openings of the wings, pre-press the resilient section of the resilient electric contacting arm toward the soldering base, and limit the resilient section to sway in an extent from an inner upper edge of each opening to the soldering base. The terminal with the pre-pressing elements performs excellent electrical contacting effect to improve signal transmission of the antenna connector and a corresponding antenna module.
Abstract:
An electric connector comprises an insulation body, a shielding shell, first and second conductive terminals, and a holding member. The insulation body has a base and a tongue blade extended horizontally forward from the base. The shielding shell encases the insulation body. Each first or second conductive terminal has an anchor section fixedly located in the insulation body, a contact section extended forward from the anchor section and located on the tongue blade, and a welding section bent upward from the anchor section and extended outside the base. The holding member located on the base has an elongate slot and apertures that run through the base up and down. The elongate slot allows the welding sections of the first conductive terminals to pass through and anchor therein. Each aperture allows the welding section of each second conductive terminal to pass through and anchor therein.
Abstract:
A plug connector includes a plug shell, a housing base and a plug contact. The housing base is combined with the plug shell and includes a main base and a tongue structure. The tongue structure extends from the main base and has a first face and a second face opposite to the first face. The plug contact includes a main body, a foot portion, a first end portion and a second end portion. The main body is mounted in the main base. The foot portion extends from the main body and stretches out of the main base. The first end portion is resiliently connected to the main body and protrudes out of the tongue structure via the first face. The second end portion corresponding to the first end portion is resiliently connected to the main body and protrudes out of the tongue structure via the second face.
Abstract:
A battery connector includes an insulated housing and conductive terminals. The insulated housing includes slots. The conductive terminals are disposed in the slots, respectively. Each conductive terminal includes an elastic connecting portion, a contacting portion, and a fixing portion. The elastic connecting portion includes elastic arms and connecting portions. Each elastic arm is obliquely extending leftwards and rightwards, separated from each other, and arranged sequentially. The connecting portions are formed at two sides of the elastic arms, where each elastic arm forms a rectangular structure by being enclosed from one end to the other end. The contacting portion extends beyond one side of the corresponding slot. The contacting portion includes a bent contacting portion extending from a front side of the elastic connecting portion and bent backwards. The fixing portion extends from a back side of the elastic connecting portion and extends beyond the other side of the corresponding slot.
Abstract:
A terminal for an antenna connector has a soldering base, two wings, a resilient electric contacting arm, and two pre-pressing elements. The wings are formed on the soldering base, and each wing has an opening. The resilient electric contacting arm is formed on and protrudes from a rear end of the soldering base and has an extension section, a resilient section, and an electronic contacting section. The pre-pressing elements are located respectively in the openings of the wings, pre-press the resilient section of the resilient electric contacting arm toward the soldering base, and limit the resilient section to sway in an extent from an inner upper edge of each opening to the soldering base. The terminal with the pre-pressing elements performs an excellent electrical contacting effect to improve signal transmission of the antenna connector and a corresponding antenna module.
Abstract:
An electric connector includes an insulation body, a shielding shell, first and second conductive terminals, and an organizer. The insulation body has a base portion and a tongue portion extended horizontally forward from the base portion. The shielding shell encloses the insulation body. Each first or second conductive terminal has a retaining section fixedly located in the insulation body, a contact section extended forward from the retaining section and located on the tongue portion, and a soldering section bent upward from the retaining section and extended outside the base portion. The organizer located on the base portion has an elongate slot and apertures that penetrate the base portion. The elongate slot allows the soldering sections of the first conductive terminals to pass through and anchor therein. Each aperture allows the soldering section of each second conductive terminal to pass through and anchor therein.
Abstract:
A Mini DisplayPort connector receptacle including an insulator, a plurality of contacts and a metal shell surrounding the insulator. The insulator includes a first insulator and a second insulator with a base portion, a positioning portion, and a tongue plate. The tongue plate defines first contact locations on a top side of the tongue plate and second contact locations on a bottom side of the tongue plate. The contacts include upper contacts at the corresponding first contact location and lower contacts at the corresponding second contact location. The connection portions of the lower contacts are held by the base portion and insert-molded in the base portion, and the partial soldering portions of the lower contacts are held by the positioning portion and insert-molded in the positioning portion.
Abstract:
A wire-to-board connector for connecting with a board-to-wire connector that includes a plastic body having a raised portion and two coupling portions, wherein the raised portion defines multiple through holes, each coupling portion is formed with an upright support having an enlarged top end, and multiple conductive terminals are fitted through the multiple through holes, wherein each conductive terminal has a fixed section, a solder section, and a connecting section. The wire-to-board connector comprises a dielectric housing and multiple conductive terminals. The dielectric housing defines two engaging holes and multiple positioning recesses. The conductive terminals of the wire-to-board connector are disposed in the positioning recesses for electrical connection to the connecting sections, wherein a protrusion is formed on an inner surface of each engaging hole, corresponding to the enlarged top end.
Abstract:
A board-to-wire connector for a circuit board includes a plastic body, two narrow metal brackets, and multiple conductive terminals. The plastic body has a connection plate, a raised portion, and two coupling portions at two opposite sides of the raised portion. The raised portion defines multiple channels. Each coupling portion is formed at its front with an upright support that has an enlarged top end. The two narrow metal brackets are provided for mounting with the coupling portions of the plastic body. Each narrow metal bracket has a main plate, front and rear interference tabs for being interfered with one coupling portion of the plastic body, and at least one positioning tab for being fixed onto the circuit board. Multiple conductive terminals are fitted through the channels of the raised portion, wherein each conductive terminal has a fixed section, a solder section, and a connecting section.