Abstract:
A card edge connector (100) for use with an electronic card (100) includes an elongated housing (1) having a pair of opposited side walls (10), a central slot (11) between the side walls (10), and a holding portion (12) at one end thereof. The holding portion (12) defining at least one leading hole (126) extending along a length direction of the housing (1). A retainer (3) is movably retained in the holding portion (12). The retainer (3) has a body portion (31) with a positioning post (315) received in the leading hole (126), a latch projection (12) protruding inwardly from the body portion (31) for locking the electronic card (200). Wherein the positioning post (315) is movable in the leading hole (126) along the length direction so as to prevent the retainer (3) from being separated from the holding portion (12).
Abstract:
A card edge connector (100) includes an insulative housing (1) having a pair of opposed side walls (11), a end wall (12) connected to the side walls (11), a retainer (15) and a reinforcement wall (16) both of which protruding outwardly from the end wall (12) in a lengthwise direction of the housing (1); a plurality of terminals (2) received in the housing (1); and a metal hook (3) retained on the reinforcement wall (16) along an upper-to-lower direction of the housing (1), and having a soldering tail (32) extending beyond the housing (1) for being mounted to a mother board. The retainer (15) is connected to the reinforcement wall (16) and defines a latch projection (153) extending from an inner surface for latching a daughter board.
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 for mating with a corresponding daughter card 200 with a locking notch 201 at a side thereof, comprises: an insulative housing 1, a plurality of contacts 2 assembled to the insulative housing 1 and an ejector 3 and a locking member 4 set on two longitudinal ends of the insulative housing 1. The insulative housing defines a central slot 14 along the longitudinal direction. The locking member 4 is formed with a retention portion 41 and a pair of elastic arms 42 extending upwardly from the retention portion 41 and symmetrically located on two opposite sides of the central slot along a transverse direction perpendicular to longitudinal direction, each elastic arm 42 having a locking portion 321 protruding toward each other for locking with the locking notch 201 of the daughter card 200.
Abstract:
A card edge connector (100) includes an elongated housing (1) and a plurality of contacts (2). The housing (1) has two side walls (103) and a central slot (109) between the two side walls (103) for receiving a memory module (9). The card edge connector (100) includes a latching mechanism (5) mounted on the two side walls (103) for resisting the memory module (9) downwardly. The latching mechanism (5) can prevent the memory module (9) from moving upwardly, thereby the memory module (9) could be stably connected with the card edge connector (100).
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 for use with an electronic card, comprises an elongated housing having a pair of opposed side walls along a lengthwise direction, a central slot between the side walls, a tower portion upwardly extending at one end thereof. The central slot extends into the tower portion along the lengthwise direction to define a trench for receiving a side edge of the electronic card. A latch mechanism is retained in the tower portion, and has a locking projection protruding into the trench 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 includes an elongated housing, a plurality of contacts retained to the housing, and a retainer located at one end of the housing along an elongated direction of the housing. The housing has a pair of side walls and a central slot between the side walls. The retainer has a resilient retention arm and a rigid stop arm diverging from the retention arm along a transverse direction perpendicular to the elongated direction. The retention arm has a locking section extending along the elongated direction to lock a daughter board and an operating section obliquely extending from the locking section along a third direction different from both elongated direction and transverse direction. The stop arm has an abutting section behind the operating section along a fourth direction perpendicular to the operating section to limit a deflection of the operating section.