Abstract:
A card edge connector 100 includes an insulative housing 1, a plurality of contacts 2 and at least an ejector 3 pivoted on the housing 1. The housing 1 has an longitudinal central slot 12 and at least a towers portion 14 located at one ends of thereof. The ejector 3 comprise a pair of elastic walls 32, a slit formed between the elastic walls 32. the elastic wall 32 comprise a pair of first elastic walls 321 and a pair of second elastic walls 322 extending downwardly from the first elastic walls 321 respectively, the second elastic walls 322 comprises a first connecting wall 3221 and a second connecting wall 3222 extending downwardly from the first connecting wall 3221, a thickness of the first connecting wall 3221 is equal to a sum of the thickness of the first elastic wall 321 and the second connecting wall 3222.
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 includes an elongated housing extending along a lengthwise direction thereof and having a pair of opposed side walls, and a central slot between the side walls. A plurality of contacts are retained in the housing and exposed to the central slot. A pair of ejector mechanisms are rotatable retained on two opposite ends of the housing. A pair of auxiliary insulators are attached to the ejector mechanisms, respectively. A tie wrap is located on the auxiliary insulators to urge the auxiliary insulators to prevent the ejector mechanisms from rotating.
Abstract:
A card edge connector for mating with an electronic card includes an elongated housing, a number of contacts and a retainer retained to the housing. The housing has a pair of side walls, a central slot between the side walls and a first tower upwardly extending at one end thereof. The first tower defines a first U-shaped cavity downwardly extending from a top end thereof and a mounting slot upwardly extending from a lower end thereof and located at outside of the first cavity. The first cavity communicates with the central slot along a length direction of the housing to receive the electronic card. The retainer has a non-flexible fastening portion retained in the mounting slot and a flexible locking barb obliquely protruding into the first cavity from a top end of the fastening portion to lock with the electronic card.
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 for mating with an electronic card includes an elongated housing, a number of contacts and a retainer disposed in the housing. The housing has a center slot extending along a lengthwise direction of the housing and a first tower section at one end thereof. The retainer is rotatably retained in the first tower section and does not extend beyond the first tower along the lengthwise direction, a thickness direction of the housing and a direction opposite to an insertion direction of the electronic card. The retainer has a locker to lock the electronic card and at least a spring sandwiched between the locker and an outer wall of the first tower section to make the locker automatically move in the lengthwise direction in an insertion process of the electronic card.
Abstract:
An electrical connector includes an insulative housing having a mating face, a mounting face, a pair of side walls, a elongated central slot recessed downwardly from the mating face, a first end wall and a second end wall, the central slot being positioned between the side walls, the first end wall and the second end wall, the side walls include a plurality of passageways communicating with the central slot; a plurality of contacts being retained in the passageways respectively and protruding into the central slot; a metal board lock extending downwardly through the first end wall and being attached to the first end wall; a retainer attached to the first end wall to mating with a corresponding card; the board lock is sandwiched between the retainer and the first end wall.
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.
Abstract:
A card edge connector for mating with an electronic card includes an elongated housing (1), a number of contacts retained to the housing (1), and a retainer (2) at one end of the housing (1). The housing (1) has a pair of opposed side walls (11), a central slot (12) between the side walls and a fitting section at one end thereof. The fitting section defines a pair of axes holes (145). The retainer (2) has a base portion (21) with a pair of pivots (211) engaging with the axes holes (145), a latch projection (22) inwardly extending from the base portion for locking the electronic card, a flexible arm (23) unitarily extending from the base portion (21) to resist an inner wall of the fitting section for fastening the retainer (2) to the housing (1).
Abstract:
A card edge connector (100) includes an elongate insulative housing (1), a number of contacts (2) and an ejector (3) retained on the insulative housing (1). The insulative housing (1) defines a pair of opposed side walls (11) and a central slot (12) between the side walls (11). The side wall (11) has a fitting section (13) at one end thereof. The fitting section (13) defines a cavity (131) extending therethrough along a width direction, and a slit (134) spaced apart from the cavity (131) along a length direction. The ejector (3) has a base (31) retained on the fitting section (13) and a spring tab (32) sandwiched between the insulative housing (1) and the base (31). The spring tab (32) defines two ends one of which being retained in the slit (134) and another abutting against an inner side of the base (31).