Abstract:
A card edge connector includes an elongated housing extending along an elongated direction thereof, and having a first housing half, a second housing half being discrete from the first housing half, and a central slot formed between the first and the second housing halves. A plurality of contacts are retained in the housing, and each has a contact portion protruding into the central slot. A width of the central slot could be adjusted before mounting the card edge connector to a mother board for receiving different daughter boards with different thicknesses.
Abstract:
A card edge connector (100) includes an insulative housing, a set of contacts (2) retained in the insulative housing and an ejector (3). The insulative housing has a central slot (12) and at least one tower portion (13). The tower portion includes a pair of outer walls (131) and a receiving slot (135) formed between the outer walls. Each outer wall has a ladder with a circular hole (1312) formed therein. The ejector has a pair of spindles (312) received in the circular holes and a pair of standoffs (313). Each standoff has a horizontal surface (3131) abutting against a corresponding horizontal resisting surface (1314) formed on the ladder so as to make centers of the spindle and the circular hole overlap when the ejector rotates inwardly.
Abstract:
A card edge connector (100) includes an insulative housing (1) and a latch retained at one end of the insulative housing (1). The insulative housing (1) includes a mounting slot (16). The latch (3) has a resilience extending portion (311) retained in the mounting slot (16) upwardly. The mounting slot (16) defines a pressing face (112) latching with the extending portion (311) for preventing the extending portion (311) from moving downwardly, thereby the latch (3) could be stably retained on the housing.
Abstract:
A card edge connector includes a longitudinal insulative housing having a receiving slot formed therein and extending in a longitudinal direction for insertion of a module; a set of contacts retained in the insulative housing and protruding into the receiving slot for mating with the module; an ejector rotatably attached to one longitudinal end of the insulative housing for latching with or ejecting the module; and a spring member retained in the other longitudinal end of the insulative housing and having a pair of resilient locking arms for locking with the module.
Abstract:
A card edge connector includes an elongated insulative housing, a plurality of first terminals, a plurality of second terminals retained in the insulative housing. The insulative housing defining a central slot, a first side wall, and a second side wall opposite to the first side wall. The first terminals each defines a first level soldering portion extend out of the first side wall in a width direction of the insulative housing. The second terminals each defines a second level soldering portion merely under the insulative housing to closer to the first soldering portions for occupying less area of a mother board.
Abstract:
A card edge connector includes an elongated insulative housing, a plurality of first terminals, a plurality of second terminals retained in the insulative housing. The insulative housing defining a central slot, a first side wall, and a second side wall opposite to the first side wall. The first terminals each defines a first level soldering portion extend out of the first side wall in a width direction of the insulative housing. The second terminals each defines a second level soldering portion merely under the insulative housing to closer to the first soldering portions for occupying less area of a mother board.
Abstract:
A terminal strip includes a number of terminals and a strip connecting the terminals. The terminal has a body, a soldering portion extending downwardly from the body and a spring beam extending upwardly from the body. The strip has a number of slots defined during punching the soldering portion thereof. The body has a bottom edge and a connecting portion connecting with the soldering portion. A breaking cut is formed in the connecting place between the bottom edge and the strip. The breaking cut is distributed into a number of slots connecting with each other. The configuration of the breaking slot can make several slots each with a short tearing journey when the terminals are separated from the strip, that can improve the efficacy of the product yield.
Abstract:
A card edge connector (100) includes an insulative housing (1) and a latch retained at one end of the insulative housing (1). The insulative housing (1) includes a mounting slot (16). The latch (3) has a resilience extending portion (311) retained in the mounting slot (16) upwardly. The mounting slot (16) defines a pressing face (112) latching with the extending portion (311) for preventing the extending portion (311) from moving downwardly, thereby the latch (3) could be stably retained on the housing.
Abstract:
A card edge connector comprises an insulative housing defining a front mating face and a central slot recessed rearwardly from the mating face. A plurality of contacts each has a contact portion exposed into the central for mating with a complementary connector and a solder tail exposed to outside of the housing. A cover is assembled to a rear side of the housing. A spacer sandwiched between the housing and the cover along a front-to-rear direction. The spacer defines a plurality of through holes through which the solder tails of the contacts passing.