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 includes an elongated housing, the housing extends along a longwise direction thereof and has a pair of opposed side walls, a central slot between the side walls, and a tower portion disposed at one end thereof. A plurality of contacts are retained in the housing. An ejector mechanism is rotatable retained in the housing and has a body portion, a flexible arm divided from the body portion and a locking protrusion located on the flexible arm. The lock protrusion is adapted to resist the tower portion during the ejector mechanism rotates with respect to the housing.
Abstract:
A card edge connector includes an elongated housing and a number of contacts retained in the housing. Each contact has a retaining portion retained in the housing, a contact portion forwardly extending from a front end of the retaining portion and a connecting portion backwardly extending from a rear end of the retaining portion. The contacts are arranged in two rows and formed with a first receiving space between two rows of contact portions to receive a module and a second receiving space between two rows of connecting portions to receive a mother board. The first receiving space defines a first center line along an insertion direction of the module. The second receiving space defines a second center line which is parallel to the first center line and offset to the first center line along an up to down direction perpendicular to the insertion direction.
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.
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 (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).
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.