Abstract:
Disclosed in the invention is a connector structure that is used on a mother board for holding a central processing unit of cartridge type or card type. The connector structure comprises two connector halves. Each connector half has retaining slots and elongated notches formed on the upper portion thereof. Such an arrangement makes the connector structure adapted for holding cartridge type central processing units. The connector half has an incompletely connected retaining protrusion on one side. The retaining protrusion extends obliquely and inwardly and has locking means disposed on the lower end and an upwardly extending moving lever arranged on the outside of the locking means. The above arrangement makes the connector suitable for holding a card type central processing unit. Each connector half is composed of a stationary piece pivotally connected with a movable piece. Thus the connector can be folded when not in use to decrease the space it takes. Alternatively the connector half also can be integrally molded.
Abstract:
A compact disk box structure that can automatically push out compact disks in a preset sequence and then return them to original positions. The box primarily comprises a box body, a push plate, a front lid, a plurality of push rods, and a back lid and is completed with a switch mechanism. The box body is provided with slide guide grooves on two opposite sides of the top face, a row of parallel elongated openings on the rear portion of the top face, a plurality of partition ribs each separately formed on the inner wall surface of the top and the bottom of the box body, and a plurality of push rods seated between adjacent partition ribs by means an axle rod and extending through the openings on the top face.
Abstract:
A shielded connector. In one embodiment, the shielded connector includes: a seat, including an insulating body with a plurality of through slots and a plurality of positioning slots, in which a shielding body is disposed in the through slot and no shielding body is disposed in the positioning slot, at least one conductive body connected to the shielding bodies, and at least one lead-out portion electrically connecting the conductive body to a motherboard; and a plurality of conductive terminals, each including a contact portion, a body portion extending from the contact portion, and a connecting portion, in which the body portion includes a positioning section extending from the contact portion and in interference fit with the positioning slot, and a conducting section extending from the positioning section into the through slot and not in interference fit with the through slot.
Abstract:
An electrical connector includes: an insulating body, having a plurality of receiving slots formed through the insulating body; a plurality of conductive terminals, each disposed in one of the receiving slots, wherein the conductive terminal is formed with a solder contact surface, and the solder contact surface is substantially vertical; and a plurality of solders, respectively received in the receiving slots, in which the solder is in a flat shape, and each of the solders is formed with an abutting surface in a flat direction for abutting the solder contact surface.
Abstract:
The present invention provides an electrical connector for electrically connecting a mating device having pads, comprising: a body with a stopping portion and a plurality of terminals with contact parts contacting the pads. The terminals have a first and a second movement path. During the first path, contact part and mating device move toward stopping portion simultaneously. During the second path, contact part moves toward stopping portion relative to mating device, and the horizontal displacement of terminals is smaller than width of the pads. Compared with prior art, it is guaranteed the relative displacement between terminal and pad is reduced under the condition of fixed horizontal displacement of terminal. As the relative displacement still exists, terminal and pad can scrape the grime on surface while allowing movement of contact part within the area of the pads.
Abstract:
A grounding structure, for connecting to an opposite connecting electrical device with a metal casing, is assembled on a circuit board having at least one grounding component. The grounding structure includes a conductive mechanism electrically connected to the metal casing of the opposite connecting electrical device; and at least one conductive pad, disposed between the conductive mechanism and the circuit board, and contacting the conductive mechanism and the grounding component of the circuit board. The grounding structure of the invention can transmit the disturbance to be advantageous for signal transmitting between the opposite connecting electrical device and the circuit board.
Abstract:
An electrical connector that includes: an insulating body, having a plurality of receiving slots running through the insulating body, a plurality of terminals, respectively received in the receiving slots, in which the terminal has a base fixed in the receiving slot, two first abutting segments extending downwards from the base, two second abutting segments extending forwards the two first abutting segments, the two second abutting segments are exposed from the receiving slot and abut against the bottom surface of the insulating body, the width between the two second abutting segments is smaller than the diameter of a solder ball, a plurality of stop blocks, respectively disposed in the receiving slots, and a plurality of solder balls, respectively received in the receiving slots.
Abstract:
An electrical connector is provided, in which each conductive terminal is respectively provided with a first connecting portion at left and right sides of a contact pin of a chip module. A first contact arm and a second contact arm respectively extend upwards from each of the paired first connecting portions, the two first contact arms and the two second contact arms are respectively used for conducting the contact pin, and elastically deform in directions substantially perpendicular to a moving direction of the contact pin. The first contact arm and the second contact arm extending from the same first connecting portion are independent of each other.
Abstract:
An assembled electrical connector includes an insulating housing and at least two sets of electrical conducting terminals. The insulating housing has a main body, a first tongue and a second tongue extending from the main body and perpendicular to the main body. The first tongue is longer than the second tongue, and the second tongue is located at a side of the first tongue in a lengthwise direction. The at least two sets of electrical conducting terminals include a first terminal set and a second terminal set. The first terminal set is arranged at a side of the first tongue, and the second terminal set is arranged at a side of the second tongue. Compared with prior art, such a structure can miniaturize the volume of the electrical connector apparently and further miniaturize the volume of an electronic product utilizing the electrical connector.
Abstract:
An electrical element is revealed. At least one receiving hole disposes on an insulating body. A conductive layer disposes on surfaces of the receiving hole. At least one soldering body mounts in the receiving hole correspondingly and contacts with the conductive layer. Part of the soldering body exposes outside a surface of the insulating body to form a soldering part. The electrical element is further arranged with at least one conductive terminal mounted in the corresponding receiving hole movably and slantingly, the conductive terminal contacts with the conductive layer. Each conductive terminal includes a head part exposed outside the surface of the insulating body for being pressed and contacted. By electrical connection of the conductive layer, the assembly between the soldering body and the terminal is replaced and errors of the assembly between the soldering body and the terminal are eliminated. Therefore, the soldering quality is improved greatly.