Abstract:
An electrical card connector (100) includes an insulating housing (2), a metal shield (1) covering the insulating housing for defining a card receiving space therebetween, a printed circuit board (PCB) (5), an insulator (3) assembled on the PCB and a plurality of terminals (4) received in the insulator. The insulating housing defines a cutout (210) at a rear part thereof and the cutout communicates with the card receiving space. The PCB has a smaller size than the insulating housing and is received in the cutout. The PCB is fused with the insulating housing.
Abstract:
A shielded connector (100) includes an insulative housing (1) having a base portion (11) and an engaging portion (12), a plurality of contacts (2) disposed in the housing (1), each of said contacts (2) defining a contacting portion (21) extending into the engaging portion (12) and a soldering portion (22) extending out of the housing (1), a metallic shell (3) having side walls surrounding the engaging portion (12) and a pair of positioning brackets (31) folding outwards from an upper edge of the side walls (303). The shielded connector furthermore defines a pair of insulative supporting sections (15) respectively disposed and supported under the positioning brackets (31) thereby forming a positioning device.
Abstract:
An electrical connector (100) includes an insulative housing (10) with a base portion (11, 12), a first engaging portion (14) and a second engaging portion (121) extending from the base portion along same direction, a plurality of conductive terminals (30) retained in the insulative housing (10) and a shielding member (20) assembled on the housing. The shielding member (20) has a pair of sidewalls (21, 23) opposite to each other and a pair of end walls (22) surrounding the first engaging portion (14) thereby forming a mating cavity between thereof. One of the end walls (22) is served as a partition located between the first engaging portion (14) and the second engaging portion (121) which extends outwards through the shielding member (20) then nearly presses against the shielding member.
Abstract:
The present invention relates to an electrical card connector comprising: a first connector with a plurality of first contacts; a second connector located at the lateral side of the first connector and with a plurality of second contacts; a PCB located at the bottom of the first connector and the second connector; a shell covering the first connector; a bottom plate mounted at the bottom of the shell; the first connector and the second connector are held on the same side of the PCB, a first receiving room is defined between the shell and the bottom plate, and the second receiving room is defined between the bottom plate and the PCB.
Abstract:
A stacked card connector (100) includes a first electrical card connector (1), a second electrical card connector (2) under the first electrical card connector. The first card connector comprises a first insulating housing (12) received a plurality of first terminals (13), and the first terminals comprises a vertical portion (132). The second card connector (2) includes a second insulating housing (22) received a plurality of second terminals (24), the second terminals comprises a tail portion (242). And the tail portion of the second terminals defines at least one cutout (2420) among the tail portion (242), the distance between two adjacent vertical portions (132) being equal with the distance between two adjacent tail portions (242).
Abstract:
A card connector (100) includes a first connector (10), a second connector (20), a first ejecting mechanism (6) and a second mechanism (5). The first connector defining a first receiving space (14) includes a first insulating housing (30) located in the receiving space and a plurality of first terminals (4) retained in the first insulating housing. The second connector is assembled with the first connector and includes a second insulating housing (22) equipped with the first insulating housing to define a second receiving space (220), and a plurality of second terminals (24) assembled with the second insulating housing and protruding into the second receiving space. The first insulating housing forms a base section (31) and a base seat (33) extending laterally from the base section, and the first ejecting mechanism and the second ejecting mechanism are mounted on the base seat.
Abstract:
An stacked electrical card connector comprises: a first connector comprising an insulative housing and a first shell covering the insulative housing, said first shell comprising a plurality of retention pieces extending outwardly; a second connector stacking with the first connector, comprising a bottom plate with a protrusion extending outwardly; at least one stand off for combining the first connector and the second connector together, comprising an engagement portion with a group of openings, and one of the openings comprising an elastic piece therein, said retention pieces and protrusion retaining in corresponding openings of the stand off, and the elastic piece withstanding on one of the retention piece in the front-to-back direction.
Abstract:
A card connector (100) for connecting with an electronic element, includes a first connector (30) comprising a first insulating housing (50) retaining a plurality of first terminals (51) and a first cavity (20) for receiving a first card; a second connector (40) stacked with the first connector and comprising a second insulating housing (60) retaining a plurality of second terminals (131) and a second cavity (80) for receiving a second card; a printed circuit board (10) sandwiched by the first connector and the second connector, the first terminals and the second terminals set on opposite sides of the circuit board; and a third connector (14) mounted on the printed circuit board for connecting the first connector and the second connector with the electronic element electrically.
Abstract:
An electrical card connector (100) includes an insulating housing (2), a plurality of terminals (31) received in the insulating housing, a metal shield (1) shielding over the insulating housing and an ejector (4). The metal shield and the insulating housing define a card receiving room and a card inserting direction. The ejector includes a drawer plate (40), a slider pin (41) and a resilient portion (42). The drawer plate defines a retaining hole (4000) and a limiting hole (4001) at a backside of the retaining hole. The slider pin forms a bending corner (411, 412) at each end thereof, and one of the bending corners extends through the retaining hole and the other bending corner is confined to the limiting hole.
Abstract:
A stacked card connector (100) includes a first electrical card connector (1), a second electrical card connector (2) positioned under the first electrical card connector, a retaining member (4) provided on the second card connector and a converting mechanism plate (3) received in the retaining member. The first card connector comprises a first insulating housing (12) and a plurality of first terminals (13) received in the first insulating housing. The second card connector (2) includes a second insulating housing (22) received a plurality of second terminals (23). The first terminal comprises a vertical portion (132), the second terminal comprises a tail portion (232) arranged in a line with the vertical portions of the first terminal. The converting plate comprises a plurality of third terminals (32) electrically connecting with the first and the second terminals.