Abstract:
An electrical connector includes an insulating body, and at least four pins receiving in the insulating body, such as a first pin, a second pin, a third pin, and a fourth pin. The height of the first pin and second pin is higher than the third pin or fourth pin. The pin has a connecting arm. A flexible arm extends from one end of the connecting arm. The connecting arms are located on the same plane, and the flexible arms are not all located on the same plane. The electrical connector further includes eight pins. Because the height of the bent pins is different from each other and the connecting arms are located on the same plane, the shape of the pins can be versatile and the entire pin's structure is simple. Manufacturing efficiency is thereby increased, manufacturing costs reduced, and the assembly quality is enhanced.
Abstract:
An electrical connector is disclosed, comprising an insulating main body provided with a plurality of through spaces; at least an electrical terminal accommodated in the insulating main body; and a metal housing covering the insulating main body and having a plurality of stamped elastic pieces which are provided on at least one side of the metal housing close to the insulating main body and can pass through the through spaces, such that the electrical connector whose metal housing is provided with a plurality of stamped elastic pieces can not only effectively secure the insulating main body but also provide good electrical contact and butt connection between the electrical connector and electronic components without the need of additional securing devices.
Abstract:
An electric connector has an insulating body, a plurality of conductive terminals installed in the insulating body. The conductive terminals have a first set of conductive terminals and a second set of conductive terminals. The first set of conductive terminals are made of different materials from the second set of conductive terminals so as to reduce the impedance between the first set of conductive terminals and the second set of conductive terminals. The electric connector can reduce impedance among conductive terminals so as to increase electric functions, because the different conductive terminals are made of different materials.
Abstract:
The present invention is to provide an electrical connector assembly to ensure a good electrical connection between a chip and a circuit board. In order to achieve the object described above, the present invention provides an electrical connector assembly electrically connecting a chip module onto a circuit board, comprising: an insulating body, which is fixed on the circuit board through a fixing device, on which at least a hole is formed; a plurality of electrical terminals disposed in the insulating body; and a pressing plate, which is connected to one end of the insulating body for retaining the chip module such that the chip module are compressingly contacted with the electrical terminals, and one end of which is disposed with a retaining piece pivotally connected to the insulating body after being inserted through the hole. Compared with conventional prior art, the electrical connector assembly according to present invention can prevent the internal stress from causing the solder crack at the solder joints of the two ends of the insulating body. The reliability of the electrical connector can then be greatly enhanced, thereby ensuring a good electrical contact between the chip and the circuit board.
Abstract:
An improved chip module is described. The improved chip is comprised of a loading board for connecting with an external electronic component, a plurality of electrical conductors electrically disposed on the loading board. Each electrical conductor has an elastic body and a metal layer disposed thereon. The chip module connects with the external PCB directly. The electrical connector does not need to be disposed between the chip module and the external PCB, thereby reducing the manufacturing cost of the chip module.
Abstract:
The present invention discloses an electrical connector provided with a plurality of terminals, each of which is provided with a connecting arm, respectively, wherein one end of the connecting arm is formed with a securing arm and an elastic arm and an angle between the securing arm and the elastic arm is formed; the terminal comprises a plurality of channel terminals and a plurality of signal terminals, wherein the bending point of the channel terminal is higher than that of the signal terminal; the terminal is provided with a contact, wherein the first contact of the first terminal is located above the second contact of the second terminal and the first contact is in contact with the second contact under pressure. The advantage of the present invention includes the followings: since the terminal comprising different structures of the channel terminal and the signal terminal and the heights of the channel terminal and the signal channel are different after bending, the terminal can have a variety of shapes and a simple overall structure; the terminal is formed integratedly with the terminal blank so as to make ease of the assembly, enhance production efficiency, reduce production cost, and effectively increase assembly quality and quantity.
Abstract:
A heat dissipation device is used to dissipate the heat generated from an electronic device. The heat dissipation device includes at least two heat sinks and a heat pipe. Each of the heat sinks respectively contacts with the electronic device. Compared to the prior art, the heat dissipation device, according to the invention, is capable of increasing work efficiency and the life cycle of the chipset.
Abstract:
An electrical connector is used for connecting two electronic elements. The electrical connector includes an insulating body and conducting pins. There are a plurality of pin-receiving holes on the insulating body. Each of the conducting pins has a first conducting pin and a second conducting pin that moves relatively, and a flexible body is located between the first conducting pin and the second conducting pin for pushing the first conducting pin and the second conducting pin to move relatively. At least one conducting pin flexibly contacts and is connected with the corresponding electronic element. The two conducting pins contact each other to conduct the two electronic elements. The two conducting pins are flake-shaped. Thereby, the electrical connector is electrically connected with the electronic element well.
Abstract:
A manufacturing method for an electrical connector is disclosed, comprising the following steps: an insulating body having an elastic block is provided and conductive material is applied on the elastic block to form a conductive layer. Furthermore, the present invention provides an electrical connector, comprising: an insulating body; at least an elastic block provided on one side of the insulating body to contact with an connected electronic device; at least a through hole provided on one side of the elastic block; and a conductive layer provided on the elastic block. Compared with contemporary technique, the electrical connector according to the present invention has the advantages of simple frame and easy manufacturing as well as achieves effective contact between the electrical connector and its connected electronic devices, leading to low manufacturing cost.
Abstract:
An electrical connector set is disclosed to include a base frame, a first electrical connector and a second electrical connector mounted in the base framed at different elevations, and a plurality of retaining devices for securing the electrical connector set to a circuit board, each retaining device having an integral first retaining portion and an integral second retaining portion respectively fastened to the base frame.