Abstract:
A socket connector that is capable of supporting and blocking a chip module therein includes an insulating body, a plurality of conductive terminals and a plate-like blocking frame. The conductive terminals are provided in the insulating body. Four sides of the plate-like blocking frame enclose to form an accommodating space. The rear portion of the plate-like blocking frame is pivotally connected to the rear portion of the insulating body. The front portion of the plate-like blocking frame is locked to the front portion of the insulating body. Two adjacent sides of the plate-like blocking frame extend respectively to form a piece body having an abutting portion. The abutting portion extends into the accommodating space, so that the chip module can be pushed in position accurately to obtain a good electrical connection with the socket connector.
Abstract:
A conductive terminal is disclosed to be positioned in an insulative body to constitute an electrical connector. The insulative body is formed with a first face and a second face opposite to the first face. The conductive terminal is formed with a contact end projecting outwardly of the first face, and a solder end projecting outwardly of the second face. The contact end is disposed to electrically connect with an electronic component. A distal edge of the solder end is formed into a fork shape for electrical connection with a circuit board through a solder material. When the solder end contacts the corresponding solder material, the solder end and the surface of the solder material can form at least two contact points to prevent change of relative positions of the solder end and the solder material and to facilitate piercing of the solder end into the solder material when the solder material is softened such that the solder material can be positioned on the solder end in an encapsulating manner after cooling and curing thereof.
Abstract:
A socket connector that is capable of supporting and blocking a chip module therein includes an insulating body, a plurality of conductive terminals and a plate-like blocking frame. The conductive terminals are provided in the insulating body. Four sides of the plate-like blocking frame enclose to form an accommodating space. The rear portion of the plate-like blocking frame is pivotally connected to the rear portion of the insulating body. The front portion of the plate-like blocking frame is locked to the front portion of the insulating body. Two adjacent sides of the plate-like blocking frame extend respectively to form a piece body having an abutting portion. The abutting portion extends into the accommodating space, so that the chip module can be pushed in position accurately to obtain a good electrical connection with the socket connector.
Abstract:
An electrical connector comprises an insulating housing and a plurality of terminals. The insulating housing has a plurality of terminal passageways, and each of the terminals has a clipping device, a stopping portion, a first flexible arm, a second flexible arm, and a contacting portion. Each clipping device of the terminals is separately held firmly in the containing trough, and the clipping device further comprises a first clipping portion and a second clipping portion. A containing space is formed between the first clipping portion and the second clipping portion, and a solder ball is clipped relatively in the containing space without reflowing the solder ball to the terminal. A top end of the first flexible arm and a top end of the second flexible arm are connected separately with to the contacting portion so that a top end of the terminal is of closed shape and the terminal will not be hooked by external objects.
Abstract:
A socket connector that is capable of supporting and blocking a chip module therein includes an insulating body, a plurality of conductive terminals and a plate-like blocking frame. The conductive terminals are provided in the insulating body. Four sides of the plate-like blocking frame enclose to form an accommodating space. The rear portion of the plate-like blocking frame is pivotally connected to the rear portion of the insulating body. The front portion of the plate-like blocking frame is locked to the front portion of the insulating body. A piece body extends from an adjacent corner of the plate-like blocking frame. The distal end of the piece body is divided into two abutting portions. The two abutting portions are located in the accommodating space, so that the chip module can be pushed in position to obtain a good electrical connection with the socket connector.
Abstract:
An electronic connector includes an insulative housing having a plurality of terminal slots and a plurality of terminals received in the corresponding terminal slots. Each of the terminals includes a base having a top side and a bottom side, and both of the top side and the bottom side have a first end and a second end. A first elastic arm frontward extends from the first end of the top side and further laterally extends in a horizontal direction parallel to the top side toward the second end of the top side. A second elastic arm frontward extends from the first end of the bottom side and further laterally extends in a horizontal direction parallel to the bottom side toward the second end of the bottom side. The electronic connector of the present invention can effectively disperse pressing forces and improve an inserted stability of the terminal.
Abstract:
An electric cable connector includes a connector housing, a cable, and a wire management member. The connector housing includes a plurality of terminals, the terminals each having a tail extending out of one end of the connector housing for electrically soldering to respective wires of the cable. The wire management member is joined to the connector housing, and includes a plurality of terminal grooves adapted to receive the tail of each of the terminals, thereby preventing the tail of each terminal from being suspended in the air, and a plurality of wire grooves adapted to receive the wires of the cable for enabling the wires to be respectively positively soldered to the tail of each of the terminals. Positioning rods are also included on the wire management member to be received within cavities in the connector housing.
Abstract:
A conductive terminal is positioned in an insulative housing to constitute an electrical connector. The insulative housing is formed with a first face and a second face, and has a plurality of terminal receiving cavities. The conductive terminal includes a base abutting against the corresponding terminal receiving cavity to achieve positioning. The base has two adjacent sidewalls forming an angle therebetween. Each of the sidewalls is formed with opposite first and second edges in a direction of extension of the terminal receiving cavity. First and second resilient arms extend respectively from the first edges of the two sidewalls. The first resilient arm has a first contact portion extending from a free end. The second resilient arm extends to pass between the two sidewalls so as to form a second contact portion at a free end. The first contact portion and the second contact portion are respectively located on two sides of the base such that the first and the second contact portions electrically contact an electronic component and a circuit board, respectively, for signal transmission.
Abstract:
A conductive terminal is positioned in an insulative housing to constitute an electrical connector. The insulative housing is formed with a first face and a second face opposite to each other, and has a plurality of terminal receiving cavities extending through the first face and the second face. The conductive terminal includes a base for abutting against the corresponding terminal receiving cavity. The base has two adjacent sidewalls forming an angle therebetween. A resilient arm extends from one edge of one of the sidewalls in a direction of extension of the terminal receiving cavity. The resilient arm is bent back to approach the opposite other edge of the corresponding sidewall and forms a non-closed ring-shape with the corresponding sidewall. Two opposite ends of the resilient arm which are farthest away from the corresponding sidewall are respectively formed with a first contact portion and a second contact portion. The first contact portion and the second contact portion contact electrically and respectively an electronic component and a circuit board to enable signal transmission between the electronic component and the circuit board through the conductive terminal.
Abstract:
An electrical connector assembly for mounting on a circuit board includes a pressing frame, a base, and a pressing pole. The base and the pressing frame may be mounted on two opposite surfaces the circuit board so that a pivoting portion and protruding pieces of the base respectively pass through the circuit board. The pressing frame is mounted on the pivoting portion. The pressing pole mounts to the protruding pieces and can be translated so as to urge the pressing frame toward a closed position. A receptacle connector may be mounted between the pivoting portion and the protruding pieces and secured by the pressing frame. A radiator may be mounted over on the receptacle connector. A plurality of fastener may extend between the radiator and the base so as to secure the radiator in position.